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<url>
<loc>https://www.brainlab.com/es/home_4/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/08/V4_S2_BrainMets_320x240.jpg</image:loc>
<image:caption>Automatic Brain Metastases Planning OPCIONES REVOLUCIONARIAS DE TRATAMIENTO PARA MET&amp;Aacute;STASIS CEREBRALES M&amp;Uacute;LTIPLES</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/04/V3_S3_ImageFusion_320x240.jpg</image:loc>
<image:caption>V3_S3_ImageFusion_320x240</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Software_Smartbrush1.jpg</image:loc>
<image:caption>Software_Smartbrush</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/home-adaptive-hybird-surgery/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Teaser_big_640x480_AHS.jpg</image:loc>
<image:caption>Homepage_Teaser_big_640x480_AHS</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_AHS_Cranial-Navigation.jpg</image:loc>
<image:caption>NAVEGACI&amp;Oacute;N CRANEAL</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_AHS_Cranial-Planning.jpg</image:loc>
<image:caption>PLANIFICACI&amp;Oacute;N CRANEAL</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_AHS_Novalis.jpg</image:loc>
<image:caption>NOVALIS</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Novalis-Certified_ExacTrac.jpg</image:loc>
<image:caption>EXACTRAC</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/quentry-compartir-imagenes-y-mucho-mas/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Surgery_Quentry_Sect42.jpg</image:loc>
<image:caption>Potentes herramientas Brainlab de planificaci&amp;oacute;n y tratamiento avanzado de im&amp;aacute;genes</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Surgery_Quentry_Sect5.jpg</image:loc>
<image:caption>Acceso directo a las im&amp;aacute;genes desde sistemas de quir&amp;oacute;fano digital</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/vero-sbrt/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_Vero_Header1.jpg</image:loc>
<image:caption>Completamente integrado: el sistema Vero SBRT</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_Vero_Sect11.jpg</image:loc>
<image:caption>El sistema Vero, siempre listo para obtener im&amp;aacute;genes</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_Vero_Sect31.jpg</image:loc>
<image:caption>Planificaci&amp;oacute;n y administraci&amp;oacute;n de calidad superior de tratamientos coplanares y no coplanares</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-plataforma/navegacion-de-rodilla-al-alcance-de-su-mano/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Dash_Header.jpg</image:loc>
<image:caption>Los valores de la navegaci&amp;oacute;n Dash se pueden guardar para utilizarlos en informes de paciente y documentaci&amp;oacute;n</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Dash_Sect1.jpg</image:loc>
<image:caption>La tecnolog&amp;iacute;a Dash Smart de instrumentos contribuye a alcanzar una buena alineaci&amp;oacute;n en las artroplastias de rodilla</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/inicio-novalis-certified/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Teaser_big_640x480_NovalisCertified.jpg</image:loc>
<image:caption>Homepage_Teaser_big_640x480_NovalisCertified</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/08/V4_S1_ExacTrac_320x240.jpg</image:loc>
<image:caption>EXACTRAC</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Novalis-Certified_Brain-Metastases.jpg</image:loc>
<image:caption>MULTIPLE BRAIN METS SRS</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Novalis-Certified_Smartbrush-Angio.jpg</image:loc>
<image:caption>SMARTBRUSH ANGIO</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Novalis-Certified_Smartbrush.jpg</image:loc>
<image:caption>SMARTBRUSH</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/segmentacion-interactiva/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/Fibertracking_header_web.jpg</image:loc>
<image:caption>Fibertracking_header_web</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/DSC07941_1_web.jpg</image:loc>
<image:caption>Smartbrush, herramienta de delimitaci&amp;oacute;n volum&amp;eacute;trica f&amp;aacute;cil y r&amp;aacute;pida</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/09/Smartbrush-Angio.jpg</image:loc>
<image:caption>Smartbrush Angio</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/DSC07933_1_web.jpg</image:loc>
<image:caption>localizaci&amp;oacute;n de fibras</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/inversearc/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/11/InverseArc_Header_Gold-Standard_20141125.jpg</image:loc>
<image:caption>InverseArc_Header_Gold Standard_20141125</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/11/InverseArc_Sect1_Volumetric-Modulation_20141121.jpg</image:loc>
<image:caption>Generaci&amp;oacute;n de un plan de VMAT a partir del diagrama DVH y de la distribuci&amp;oacute;n de la dosis</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/11/InverseArc_Sect2_VMAT-Solution-for-Every_20141121.jpg</image:loc>
<image:caption>InverseArc genera planes de arcoterapia modulada volum&amp;eacute;tricamente (VMAT) con tasas de dosis y velocidades del gantry fijas o moduladas</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/11/InverseArc_Sect3_Backup-Planning_20141121.jpg</image:loc>
<image:caption>En caso de problemas t&amp;eacute;cnicos, se puede tratar al paciente con otro acelerador lineal.</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/11/InverseArc_Sect5_Sophisticated-Plan-Comparison_20141121.jpg</image:loc>
<image:caption>Compare y seleccione el plan m&amp;aacute;s apropiado para cada paciente</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/plataformas/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Target-Control_Section4_non-coplanar-verification_20161123.jpg</image:loc>
<image:caption>Verificaci&amp;oacute;n no coplanar</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_Novalis_Sect1.jpg</image:loc>
<image:caption>Radiosurgery_Novalis_Sect1</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/11/InverseArc_Sect2_VMAT-Solution-for-Every_20141121.jpg</image:loc>
<image:caption>InverseArc genera planes de arcoterapia modulada volum&amp;eacute;tricamente (VMAT) con tasas de dosis y velocidades del gantry fijas o moduladas</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/segmentacion-automatica/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/Atlas_Segmentation-header_web.jpg</image:loc>
<image:caption>Atlas_Segmentation-header_web</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/segmentation-cranial_web.jpg</image:loc>
<image:caption>segmentation-cranial_web</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/distortion_correction.jpg</image:loc>
<image:caption>distortion_correction</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/metastasis-cerebrales-multiples/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/07/Anatomical-Mapping_MBM.jpg</image:loc>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/07/DosePlanning_MBM_newJuly2017.jpg</image:loc>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect2.jpg</image:loc>
<image:caption>El sistema indica inmediatamente desviaciones de la posici&amp;oacute;n planificada del paciente, incluidos los desplazamientos angulares del gantry o de la mesa que se producen durante tratamientos de radioterapia/radiocirug&amp;iacute;a.</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/craneal/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/DSC07941_1_web.jpg</image:loc>
<image:caption>Smartbrush, herramienta de delimitaci&amp;oacute;n volum&amp;eacute;trica f&amp;aacute;cil y r&amp;aacute;pida</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/12/arc-trajectory-optimization_web_02_for_overview.jpg</image:loc>
<image:caption>Optimizaci&amp;oacute;n de la trayectoria de arco</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect2.jpg</image:loc>
<image:caption>El sistema indica inmediatamente desviaciones de la posici&amp;oacute;n planificada del paciente, incluidos los desplazamientos angulares del gantry o de la mesa que se producen durante tratamientos de radioterapia/radiocirug&amp;iacute;a.</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/brainlab-innovadores-en-hardware-y-software-medico/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/SpineSRS_Section2_Selective-Blocking2_20160915-300x225.jpg</image:loc>
<image:caption>Bloqueo selectivo de la columna</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-de-traumatologia-y-columna/cirq-robotics/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/01/Cirq_Section_1_web.jpg</image:loc>
<image:caption>Cirq Robotics, dise&amp;ntilde;o revolucionario</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/01/Cirq-Surgical-Assistant-Full-Drilling-Guidance.jpg</image:loc>
<image:caption>Cirq Robotics, guiado completo de perforaci&amp;oacute;n</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/01/Cirq_Section3_web_new.jpg</image:loc>
<image:caption>Cirq Robotics, concepto modular preparado para avances futuros</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/01/Cirq-Surgical-Assistant-Simple-Exchange-of-Modules.jpg</image:loc>
<image:caption>Cirq Robotics, f&amp;aacute;cil intercambio de m&amp;oacute;dulos</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/digital-o-r/planificacion-quirurgica/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/06/Elements-Fibertracking-300x225.jpg</image:loc>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/06/Brainlab-DICOM-Viewer-1-300x200.jpg</image:loc>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/craneal/contrast-clearance-analysis/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/TRAMS_Header_Clearens-vs-Accumulation2_20160919.jpg</image:loc>
<image:caption>TRAMs</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/TRAMS_Section1_Methodology_20160919.jpg</image:loc>
<image:caption>Uso cl&amp;iacute;nico de los mapas TRAMs</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/TRAMS_Section2_Methodology_20160919.jpg</image:loc>
<image:caption>Metodolog&amp;iacute;a TRAMs</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-plataforma/kick-em/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/10/KickEM_Smart-Connections-and-setup-flexibility_Kick-Hybrid-Technology_20161019-2.jpg</image:loc>
<image:caption>Brazo flexible para optimizar la colocaci&amp;oacute;n del paciente</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/10/KickEM_Freedom-of-choice_.Kick-Hybrid-Technology_20161018-2.jpg</image:loc>
<image:caption>Posibilidad de elegir entre tecnolog&amp;iacute;a de seguimiento electromagn&amp;eacute;tica u &amp;oacute;ptica</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-plataforma/curve-cirugia-guiada-por-imagenes/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/05/Curve_Sect1_20150526.jpg</image:loc>
<image:caption>Curve con pantalla dual con DICOM Viewer y navegaci&amp;oacute;n craneal</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Curve_Sect4.jpg</image:loc>
<image:caption>Curve_Sect4</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/05/Curve_Sect5_1_20150526.jpg</image:loc>
<image:caption>El cirujano y el personal no est&amp;eacute;ril manejan monitores separados.</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/05/Curve_Sect5_2_20150526.jpg</image:loc>
<image:caption>El cirujano controla ambos monitores, con lo que el equipo ocupa poco espacio en el suelo</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/05/Curve_Sect6_3_20150526.jpg</image:loc>
<image:caption>El cirujano y el enfermero est&amp;eacute;ril controlan distintos monitores</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-plataforma/tc-intraoperatorio/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/08/Airo_Header_MG_5289CONVERTED_NewLogos_06White_RGB_700x480.jpg</image:loc>
<image:caption>Airo, TC m&amp;oacute;vil intraoperatorio</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/08/movingGantry_ForBob_04_flat_2.jpg</image:loc>
<image:caption>Calidad de diagn&amp;oacute;stico de las im&amp;aacute;genes de TC</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Airo_Sect3.jpg</image:loc>
<image:caption>Modo de exploraci&amp;oacute;n Airo</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/04/Airo_Sect3_-Moving-System.jpg</image:loc>
<image:caption>Equipo Airo en modo transporte</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Airo_Sect5.jpg</image:loc>
<image:caption>Unidad manual de control Airo</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/AiroWithPatientDoctorsCurve_31march14_transformed.jpg</image:loc>
<image:caption>Configuraci&amp;oacute;n de Airo para columna con Curve, el sistema de cirug&amp;iacute;a guiada por im&amp;aacute;genes</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-neurocirugia/navegacion-craneal/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Cranial_Header1.jpg</image:loc>
<image:caption>Aplicaci&amp;oacute;n de navegaci&amp;oacute;n craneal de Brainlab</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/07/Neuro_Cranial_Sect1_newGUI_1024x768.jpg</image:loc>
<image:caption>La barra del men&amp;uacute; del software de navegaci&amp;oacute;n craneal facilita un uso intuitivo del programa</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/02/Neuro_Cranial_Sect2.2_correct-laser-label1.jpg</image:loc>
<image:caption>Registro del paciente sin contacto alguno con Z-touch</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Cranial_Sect2_2.jpg</image:loc>
<image:caption>Registro por correlaci&amp;oacute;n de superficies con Softouch</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Cranial_Sect3_31.jpg</image:loc>
<image:caption>Soporte VarioGuide&amp;reg; de instrumental</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/07/Neuro_Cranial_Sect3_1_Cranial3.0_1024x768.jpg</image:loc>
<image:caption>Aguja desechable para biopsias y soporte VarioGuide para instrumental detectado por la c&amp;aacute;mara de navegaci&amp;oacute;n</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/07/Neuro_Cranial_Sect3_2_newGUI_1024x768.jpg</image:loc>
<image:caption>Asistente inform&amp;aacute;tico para hacer alinear el dispositivo con alta precisi&amp;oacute;n seg&amp;uacute;n trayectorias planificadas</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/07/Neuro_Cranial_Sect4_5_Cranial3.0_1024x768.jpg</image:loc>
<image:caption>Estilete desechable detectado por la c&amp;aacute;mara de navegaci&amp;oacute;n y visualizado en la pantalla de navegaci&amp;oacute;n</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Cranial_Sect4_21.jpg</image:loc>
<image:caption>Captura de neuronavegaci&amp;oacute;n en la que se muestra la posici&amp;oacute;n del estilete desechable</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-neurocirugia/rm-intraoperatoria/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_MRI_Sect11.jpg</image:loc>
<image:caption>Software de neuronavegaci&amp;oacute;n con im&amp;aacute;genes intraoperatorias de RM</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-neurocirugia/fibertracking-y-planificacion-funcional/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Fibertracking_Header1.jpg</image:loc>
<image:caption>Software iPlan&amp;reg; FiberTracking y BOLD MRI Mapping</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Fibertracking_Sect1.jpg</image:loc>
<image:caption>Integraci&amp;oacute;n perfecta de objetos en 3D y tractos de fibras segmentados</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Fibertracking_Sect3.jpg</image:loc>
<image:caption>Ventana de visualizaci&amp;oacute;n de las series temporales de iPlan&amp;reg; BOLD MRI</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-ortopedica/plantillas-digitales/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Ortho_TramaCad_Header.jpg</image:loc>
<image:caption>Capturas de pantalla del software TraumaCad Auto Hip</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Ortho_TramaCad_Sect1.jpg</image:loc>
<image:caption>Artroplastia de rodilla con el software TraumaCad</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-de-traumatologia-y-columna/registro-de-imagenes/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/07/C-Bogen_YES_WEBSITE_FINAL_1024x768-1024x768.jpg</image:loc>
<image:caption>Navegaci&amp;oacute;n de columna de Brainlab con el registro autom&amp;aacute;tico intraoperatorio de im&amp;aacute;genes, p.&amp;nbsp;ej. ex&amp;aacute;menes en 3D Vision RFD de Ziehm</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/03/Spine_ImageRegistration_Sect1_new_resizeWeb-1024x768.jpg</image:loc>
<image:caption>La navegaci&amp;oacute;n de columna de Brainlab con el registro autom&amp;aacute;tico intraoperatorio de im&amp;aacute;genes de ex&amp;aacute;menes en 3D se utiliza para intervenciones como la colocaci&amp;oacute;n de tornillos pediculares</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_ImageRegistration_Sect2.jpg</image:loc>
<image:caption>Registro intraoperatorio, m&amp;iacute;nimamente invasivo, de im&amp;aacute;genes fluorosc&amp;oacute;picas con un dispositivo patentado de registro de sujeci&amp;oacute;n manual</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-de-traumatologia-y-columna/planificacion-de-columna/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalPlanning_Sect1.jpg</image:loc>
<image:caption>Estudio de TC de una columna completa en las vistas axiales y sagitales</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalPlanning_Sect2.jpg</image:loc>
<image:caption>En la navegaci&amp;oacute;n de columna se pueden aplicar procesos de fusi&amp;oacute;n autom&amp;aacute;ticos y precisos, p.&amp;nbsp;ej. para la resecci&amp;oacute;n navegada de tumores.</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalPlanning_Sect3.jpg</image:loc>
<image:caption>La delimitaci&amp;oacute;n del tumor con Smartbrush es una opci&amp;oacute;n de planificaci&amp;oacute;n de columna para la resecci&amp;oacute;n navegada de tumores con cirug&amp;iacute;a asistida por ordenador</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-de-traumatologia-y-columna/navegacion-de-columna/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalNavApp_Header.jpg</image:loc>
<image:caption>Sistema de navegaci&amp;oacute;n de columna de Brainlab para cirug&amp;iacute;a de columna guiada por la imagen</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalNavApp_Sect1.jpg</image:loc>
<image:caption>Navegaci&amp;oacute;n de columna en ex&amp;aacute;menes de TC para colocaci&amp;oacute;n de tornillos C1-C2</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalNavApp_Sect2.jpg</image:loc>
<image:caption>Navegaci&amp;oacute;n de columna lumbar en im&amp;aacute;genes fluorosc&amp;oacute;picas para colocaci&amp;oacute;n de tornillos pediculares</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalNavApp_Sect3.jpg</image:loc>
<image:caption>Cirug&amp;iacute;a asistida por ordenador para resecciones de tumores en la columna tor&amp;aacute;cica</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-de-traumatologia-y-columna/navegacion-de-traumatologia/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_TraumaNavApp_Sect2.jpg</image:loc>
<image:caption>Intervenci&amp;oacute;n de traumatolog&amp;iacute;a navegada de una fractura de la di&amp;aacute;fisis del f&amp;eacute;mur en im&amp;aacute;genes fluorosc&amp;oacute;picas</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_TraumaNavApp_Sect3.jpg</image:loc>
<image:caption>El registro sencillo de im&amp;aacute;genes del arco en&amp;nbsp;C en 2D con un dispositivo patentado de registro de sujeci&amp;oacute;n manual se utiliza en cirug&amp;iacute;a de traumatolog&amp;iacute;a navegada para indicaciones como fracturas de huesos largos, fracturas articulares o fracturas de f&amp;eacute;mur proximal</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/07/C-Bogen_YES_WEBSITE_FINAL_1024x768-1024x768.jpg</image:loc>
<image:caption>Navegaci&amp;oacute;n de columna y traumatolog&amp;iacute;a de Brainlab con el registro autom&amp;aacute;tico intraoperatorio de im&amp;aacute;genes, p.&amp;nbsp;ej. ex&amp;aacute;menes en 3D Vision RFD de Ziehm</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/03/Spine_ImageRegistration_Sect1_new_resizeWeb-1024x768.jpg</image:loc>
<image:caption>La navegaci&amp;oacute;n de columna y traumatolog&amp;iacute;a de Brainlab con el registro autom&amp;aacute;tico intraoperatorio de im&amp;aacute;genes de ex&amp;aacute;menes en 3D se utiliza para intervenciones como la colocaci&amp;oacute;n de tornillos pediculares</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/06/slide-22_Spine_TraumaNavApp_Sect_6_1_cropped_highres_01FEB14_no_arrow_WEB.jpg</image:loc>
<image:caption>Integraci&amp;oacute;n universal de implantes</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_traumaNavApp_Sect6_2.jpg</image:loc>
<image:caption>Instrumentos listos para la navegaci&amp;oacute;n para cirug&amp;iacute;a asistida por ordenador</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-ortopedica/aplicacion-de-navegacion-de-rodilla/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Ortho_Knee_Header.jpg</image:loc>
<image:caption>Artroplastia de rodilla guiada por el software con la aplicaci&amp;oacute;n de rodilla de Brainlab</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/01/MG_1617_02_RGB_YES_web.jpg</image:loc>
<image:caption>Software de navegaci&amp;oacute;n KNEE3</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Ortho_Knee_Sect3_1.jpg</image:loc>
<image:caption>Gr&amp;aacute;fico de estabilidad de ligamentos con el software de navegaci&amp;oacute;n de rodilla de Brainlab</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/01/Express-Title-Img-web.jpg</image:loc>
<image:caption>KNEE3 Express</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/01/MG_9851_03_RGB_web.jpg</image:loc>
<image:caption>ClearLens</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/01/DSC00509_YES_web.jpg</image:loc>
<image:caption>An&amp;aacute;lisis de datos</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-ortopedica/aplicacion-de-navegacion-cadera/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/OrthoHip_Sect2.jpg</image:loc>
<image:caption>Navegaci&amp;oacute;n en directo del cotilo con la aplicaci&amp;oacute;n Hip de Brainlab</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-de-orl-cmf/iplan-cmf-planificacion-y-navegacion-simplificadas/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/ENT_iPLAN_CMF_Sect1.jpg</image:loc>
<image:caption>Orientaci&amp;oacute;n del estudio seg&amp;uacute;n los planos de simetr&amp;iacute;a</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/ENT_iPLAN_CMF_Sect21.jpg</image:loc>
<image:caption>Segmentaci&amp;oacute;n autom&amp;aacute;tica por atlas de las estructuras anat&amp;oacute;micas y quir&amp;uacute;rgicas</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/ENT_iPLAN_CMF_Sect3.jpg</image:loc>
<image:caption>Reproducci&amp;oacute;n especular de las estructuras sanas en el lateral da&amp;ntilde;ado</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/ENT_iPLAN_CMF_Sect4.jpg</image:loc>
<image:caption>Importaci&amp;oacute;n de cualquier dato estereolitogr&amp;aacute;fico (STL), como mallas para &amp;oacute;rbitas, y exportaci&amp;oacute;n de cualquier estructura planificada con la funci&amp;oacute;n STL-Export</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/ENT_iPLAN_CMF_Sect5.jpg</image:loc>
<image:caption>Navegaci&amp;oacute;n de im&amp;aacute;genes DICOM de CMF sometidas a tratamiento avanzado antes de la intervenci&amp;oacute;n</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/ENT_iPLAN_CMF_Sect6.jpg</image:loc>
<image:caption>Superponga la nueva informaci&amp;oacute;n para actualizar las im&amp;aacute;genes y siga navegando con Painter</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/ENT_iPLAN_CMF_Sect7.jpg</image:loc>
<image:caption>El software de navegaci&amp;oacute;n permite fusionar im&amp;aacute;genes autom&amp;aacute;ticamente durante la intervenci&amp;oacute;n</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-los-productos-de-cirugia-de-orl-cmf/aplicacion-de-navegacion-orl/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Cranial-EM_Simple-Registration_patient-registration_20161111-2.jpg</image:loc>
<image:caption>Correlaci&amp;oacute;n r&amp;aacute;pida de superficies con el puntero de registro EM</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/craneal/delimitacion-de-estructuras-craneales/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/DSC07941_1_web.jpg</image:loc>
<image:caption>Smartbrush, herramienta de delimitaci&amp;oacute;n volum&amp;eacute;trica f&amp;aacute;cil y r&amp;aacute;pida</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/09/Smartbrush-Angio.jpg</image:loc>
<image:caption>Smartbrush Angio, definici&amp;oacute;n r&amp;aacute;pida de un nidus craneal</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/craneal/posicionamiento-control-del-blanco/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Header.jpg</image:loc>
<image:caption>ExacTrac</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect5.jpg</image:loc>
<image:caption>Sistema para radiocirug&amp;iacute;a sin marco ExacTrac para tratamientos de radiocirug&amp;iacute;a estereot&amp;aacute;ctica no invasivos</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect9.jpg</image:loc>
<image:caption>ExacTrac permite realizar los movimientos de la mesa por control remoto, lo que optimiza la eficacia del tratamiento con radioterapia</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Target-Control_Section4_non-coplanar-verification_20161123.jpg</image:loc>
<image:caption>Verificaci&amp;oacute;n no coplanar</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/delimitacion-de-varias-metastasis-cerebrales/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/07/Anatomical-Mapping_MBM.jpg</image:loc>
<image:caption>Anatomical Mapping</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/07/Distortion-Correction_MBM.jpg</image:loc>
<image:caption>Image Fusion con Cranial Distortion Correction</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/columna/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/Contouring_Section3_Smartbrush_20160915.jpg</image:loc>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/SpineSRS_Section4_Dose-Distribution_20160915.jpg</image:loc>
<image:caption>Optimizaci&amp;oacute;n Monte Carlo</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/columna/posicionamiento-y-control-del-movimiento/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Header.jpg</image:loc>
<image:caption>ExacTrac</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/columna/delimitacion-de-columna/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/Contouring_Section1_Segmentation_20160915-1.jpg</image:loc>
<image:caption>Anatomical Mapping (cartograf&amp;iacute;a anat&amp;oacute;mica) basada en el Synthetic Tissue Model</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Contouring_Section2_Curvature-Correction_20161115.jpg</image:loc>
<image:caption>Correcci&amp;oacute;n de la curvatura</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/Contouring_Section3_Smartbrush_20160915.jpg</image:loc>
<image:caption>Definici&amp;oacute;n automatizada del blanco con Smartbrush Spine</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-neurocirugia/brainlab-elements/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/01/Elements_Keyvisual_Surgery_700x480.jpg</image:loc>
<image:caption>M&amp;oacute;dulos de software Brainlab Elements dise&amp;ntilde;ados para distintas disciplinas cl&amp;iacute;nicas</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Elements_Sect11.jpg</image:loc>
<image:caption>Delimitaci&amp;oacute;n de estructuras patol&amp;oacute;gicas en el cerebro</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Trajectory-Planning.jpg</image:loc>
<image:caption>Planificaci&amp;oacute;n de trayectorias</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Elements_Sect51.jpg</image:loc>
<image:caption>DICOM Viewer de Brainlab Elements</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/04/3D-Stereo-Viewer-for-web-1024x768.jpg</image:loc>
<image:caption>Dicom Viewer 3D Stereo y carrito con pantalla</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/craneal/adaptive-hybrid-surgery/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/08/Adaptive-Hybrid-Surgery_Sect2_Subtotal-resection_14Aug20.jpg</image:loc>
<image:caption>Determinar el volumen de resecci&amp;oacute;n parcial considerando la toxicidad de la radiaci&amp;oacute;n</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/08/Adaptive-Hybrid-Surgery_Sect3_Dose-distribution-visualization_14Aug20.jpg</image:loc>
<image:caption>Visualizaci&amp;oacute;n de la distribuci&amp;oacute;n de la dosis para el tumor residual planificado</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/08/Adaptive-Hybrid-Surgery_Sect4_Intraoperative-Structure-Update_14Aug20.jpg</image:loc>
<image:caption>C&amp;aacute;lculo automatizado del tumor residual a partir de los puntos de control intraoperatorios</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/craneal/cranial-srs/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/BEV-header_web.jpg</image:loc>
<image:caption>cranial-header_web</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/efficient-treatment-planning-for-cranial-indication_web.jpg</image:loc>
<image:caption>Planificaci&amp;amp;oacute;n eficaz de tratamiento para indicaciones craneales</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/12/arc-trajectory-optimization_web_02_for_overview.jpg</image:loc>
<image:caption>Optimizaci&amp;amp;oacute;n de la trayectoria de arco para Craneal SRS</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/dynamic-gradient-and-mu-optimization_web.jpg</image:loc>
<image:caption>Gradiente din&amp;amp;aacute;mico y optimizaci&amp;amp;oacute;n de las UM</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/easy-user-control-over-dosimetric-robustness_web1.jpg</image:loc>
<image:caption>Facilidad de control de usuario para ajustar la estabilidad dosim&amp;amp;eacute;trica del plan</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/unique-views-for-dose-evaluation_web.jpg</image:loc>
<image:caption>Vistas &amp;amp;uacute;nicas para evaluaci&amp;amp;oacute;n de la dosis</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-neurocirugia/navegacion-de-microscopio-quirurgico/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/12/Microscope-integration-with-neuronavigation_Sect1_web.jpg</image:loc>
<image:caption>Integraci&amp;amp;oacute;n del microsc&amp;amp;oacute;pico quir&amp;amp;uacute;rgico con la neuronavegaci&amp;amp;oacute;n</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/04/MS-Nav_Sect2_1.2.jpg</image:loc>
<image:caption>Visualizaci&amp;amp;oacute;n aumentada de estructuras planificadas, incluida la informaci&amp;amp;oacute;n de las &amp;amp;aacute;reas elocuentes de fibra</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/04/MS-Nav_Sect2_2.jpg</image:loc>
<image:caption>Proyecciones de m&amp;amp;aacute;xima intensidad para visualizar con m&amp;amp;aacute;s detalle la informaci&amp;amp;oacute;n vascular</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/04/MS-Nav_Sect2_3.jpg</image:loc>
<image:caption>Vista Virtual 360&amp;amp;deg; Target</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/04/MS-Nav_Sect2_4.jpg</image:loc>
<image:caption>Vista Probe&amp;amp;rsquo;s Eye</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/04/MS-Nav_Sect3_1.2.jpg</image:loc>
<image:caption>Detecci&amp;amp;oacute;n de los desplazamientos anat&amp;amp;oacute;micos</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/04/MS-Nav_Sect3_2.2.jpg</image:loc>
<image:caption>Compensaci&amp;amp;oacute;n de la anatom&amp;amp;iacute;a desplazada haciendo coincidir los vasos sangu&amp;amp;iacute;neos visualizados y la MIP a trav&amp;amp;eacute;s de la pantalla t&amp;amp;aacute;ctil</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/12/Microscope-handle-control-buttons_Sect3_1_web.jpg</image:loc>
<image:caption>Botones de control en el pu&amp;amp;ntilde;o del microscopio</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2017/12/Robotic-alignment-of-Microscope-to-a-navigated-instrument_Sect4-1.jpg</image:loc>
<image:caption>Posicionamiento automatizado del microscopio seg&amp;amp;uacute;n un instrumento navegado</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/04/DSC00346-Robotic-options-menu.jpg</image:loc>
<image:caption>Men&amp;amp;uacute; de opciones de movimiento robotizado</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-plataforma/kick-navegacion-en-estado-puro/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Kick_header1.jpg</image:loc>
<image:caption>Componentes caracterizados por su alta flexibilidad; carritos independientes para el monitor y la c&amp;amp;aacute;mara</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Kick_Sect1.jpg</image:loc>
<image:caption>Sistema de navegaci&amp;amp;oacute;n Kick con soporte separado para la c&amp;amp;aacute;mara</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Kick_Sect2.jpg</image:loc>
<image:caption>La interfaz de usuario Kick proporciona acceso f&amp;amp;aacute;cil a un sinf&amp;amp;iacute;n de funciones</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Kick_Sect3.jpg</image:loc>
<image:caption>Asociaci&amp;amp;oacute;n entre Kick y Buzz</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-neurocirugia/estereotaxia/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/02/brainlab-elements-stereotaxy.jpg</image:loc>
<image:caption>Elements Stereotaxy de Brainlab es un software de planificaci&amp;oacute;n dise&amp;ntilde;ado para la planificaci&amp;oacute;n de trayectorias en neurocirug&amp;iacute;a estereot&amp;aacute;ctica</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/02/brainlab-elements-segmentation-basal-ganglia.jpg</image:loc>
<image:caption>El software Elements Segmentation dibuja estructuras anat&amp;oacute;micas de la regi&amp;oacute;n de los ganglios basales para la planificaci&amp;oacute;n de intervenciones cerebrales estereot&amp;aacute;cticas</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/02/brainlab-elements-fibertracking.jpg</image:loc>
<image:caption>El software Elements Fibertracking visualiza estructuras elocuentes de sustancia blanca en el cerebro para procedimientos de neurocirug&amp;iacute;a estereot&amp;aacute;ctica</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/02/brainlab-elements-lead-localization.jpg</image:loc>
<image:caption>Elements Lead Localization se utiliza para la estimulaci&amp;oacute;n cerebral profunda (ECP) en neurocirug&amp;iacute;a funcional</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/02/brainlab-elekta-stereotactic-solutions.jpg</image:loc>
<image:caption>Integraci&amp;oacute;n de los marcos estereot&amp;aacute;cticos de Elekta y el software Stereotaxy de Brainlab para estimulaci&amp;oacute;n cerebral profunda</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/columna/planificacion-de-la-dosis-de-la-columna/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/SpineSRS_Header_Dose-Distribution-Zoom2_20160916.jpg</image:loc>
<image:caption>Header Spine SRS</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/SpineSRS_Section1_Arcs_20160915.jpg</image:loc>
<image:caption>Planificaci&amp;amp;oacute;n autom&amp;amp;aacute;tica de tratamientos</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/SpineSRS_Section2_Selective-Blocking2_20160915.jpg</image:loc>
<image:caption>Bloqueo selectivo de la columna</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/SpineSRS_Section3_Sliders_20160915-1.jpg</image:loc>
<image:caption>Gradiente din&amp;amp;aacute;mico y optimizaci&amp;amp;oacute;n de las UM</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/SpineSRS_Section4_Dose-Distribution_20160915.jpg</image:loc>
<image:caption>Optimizaci&amp;amp;oacute;n Monte Carlo</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/SpineSRS_Section5_Dose-Falloff_20160915.jpg</image:loc>
<image:caption>Ilustraci&amp;amp;oacute;n de la dosis en la interfaz v&amp;amp;eacute;rtebra/m&amp;amp;eacute;dula espinal</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/exactrac/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Header.jpg</image:loc>
<image:caption>ExacTrac</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect2.jpg</image:loc>
<image:caption>El sistema indica inmediatamente desviaciones de la posici&amp;amp;oacute;n planificada del paciente, incluidos los desplazamientos angulares del gantry o de la mesa que se producen durante tratamientos de radioterapia/radiocirug&amp;amp;iacute;a.</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect6.jpg</image:loc>
<image:caption>La funci&amp;amp;oacute;n de lupa ayuda al usuario a evaluar la fusi&amp;amp;oacute;n de las estructuras &amp;amp;oacute;seas utilizada para la radiocirug&amp;amp;iacute;a craneal </image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect1.jpg</image:loc>
<image:caption>La supervisi&amp;amp;oacute;n por rayos X con ExacTrac se puede efectuar con cualquier &amp;amp;aacute;ngulo de la mesa o del gantry durante los tratamientos de radioterapia/radiocirug&amp;amp;iacute;a</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect5.jpg</image:loc>
<image:caption>Sistema para radiocirug&amp;amp;iacute;a sin marco ExacTrac para tratamientos de radiocirug&amp;amp;iacute;a estereot&amp;amp;aacute;ctica no invasivos</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect9.jpg</image:loc>
<image:caption>ExacTrac permite realizar los movimientos de la mesa por control remoto, lo que optimiza la eficacia del tratamiento con radioterapia</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/06/ExacTrac_Sect6_Compatibility-with-Varian_20160601.jpg</image:loc>
<image:caption>Compatibilidad con Varian</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/06/ExacTrac_Sect7_Compatibility-with-Elekta_20160601.jpg</image:loc>
<image:caption>Compatibilidad con Elekta</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect12.jpg</image:loc>
<image:caption>Instalaci&amp;amp;oacute;n de ExacTrac en Oncor de Siemens</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect8.jpg</image:loc>
<image:caption>Detecci&amp;amp;oacute;n autom&amp;amp;aacute;tica de marcadores con el m&amp;amp;oacute;dulo ExacTrac 6D</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_ExacTrac_Sect7.jpg</image:loc>
<image:caption>Se basa en la fusi&amp;amp;oacute;n de estructuras &amp;amp;oacute;seas del &amp;amp;aacute;rea anat&amp;amp;oacute;mica relevante</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/empleo/ofertas-de-empleo-de-brainlab/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/02/1_1268x300.jpg</image:loc>
<image:caption>1_1268x300</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-radiocirugia/novalis/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_Novalis_Sect31.jpg</image:loc>
<image:caption>La radiocirug&amp;amp;iacute;a sin marco con verificaci&amp;amp;oacute;n por rayos X forma parte del sistema de radiocirug&amp;amp;iacute;a Novalis con el sistema ExacTrac de posicionamiento del paciente </image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/es/productos-de-cirugia/relacion-de-productos-de-neurocirugia/aplicacion-de-navegacion-craneal-em/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Cranial-EM_step-by-step_animated-workflow-guidance_20161111.jpg</image:loc>
<image:caption>Gu&amp;amp;iacute;a animada por las tareas de la aplicaci&amp;amp;oacute;n para garantizar un procedimiento m&amp;amp;aacute;s r&amp;amp;aacute;pido</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Cranial-EM_Simple-Registration_patient-registration_20161111-2.jpg</image:loc>
<image:caption>Correlaci&amp;amp;oacute;n r&amp;amp;aacute;pida de superficies con el puntero de registro EM</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Cranial-EM_on-the-fly_trajectory-planning_20161111-2.jpg</image:loc>
<image:caption>M&amp;amp;aacute;xima flexibilidad gracias a la funci&amp;amp;oacute;n de planificaci&amp;amp;oacute;n de trayectorias por control remoto</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Cranial-EM_navigated-stylet_stylet-navigation_20161111.jpg</image:loc>
<image:caption>Estilete desechable detectado autom&amp;amp;aacute;ticamente por el sistema y visualizado en la pantalla de navegaci&amp;amp;oacute;n</image:caption>
</image:image>
</url>
</urlset>