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<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/quentry-bilddatenaustausch-in-der-cloud/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Surgery_Quentry_Sect42.jpg</image:loc>
<image:caption>Leistungsstarke klinische Applikationen von Brainlab</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>Direkter Zugriff auf Bilder auf digitalen OP-Systemen</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/vero-sbrt/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_Vero_Header1.jpg</image:loc>
<image:caption>Vollst&amp;auml;ndig integriert &amp;ndash; Vero SBRT-System</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>Vero &amp;ndash; stets verf&amp;uuml;gbare Bildgebungsmodalit&amp;auml;t </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>Nahtlose Planung und Durchf&amp;uuml;hrung koplanarer und nicht koplanarer Behandlungen</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/</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 INNOVATIVE BEHANDLUNGSOPTIONEN F&amp;Uuml;R MULTIPLE HIRNMETASTASEN</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/de/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>KRANIALE NAVIGATION</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>KRANIALE PLANUNG</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/de/home_org/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/04/Homepage_Teaser_big_640x480_Airo.jpg</image:loc>
<image:caption>Homepage_Teaser_big_640x480_Airo</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Software_SpinalNavigation.jpg</image:loc>
<image:caption>SPINALE NAVIGATION</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Airo_Spinal-Planning.jpg</image:loc>
<image:caption>PLANUNG F&amp;Uuml;R WIRBELS&amp;Auml;ULENCHIRURGIE</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Airo_Curve-Platform.jpg</image:loc>
<image:caption>CURVE-PLATTFORM</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/09/Homepage_Airo_Digital-OR.jpg</image:loc>
<image:caption>DIGITALER OP</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/uebersicht-ueber-plattformprodukte/handgesteuerte-knie-navigation/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Dash_Header.jpg</image:loc>
<image:caption>Dash-Navigationswerte k&amp;ouml;nnen f&amp;uuml;r Patientenberichte und Dokumentationen gespeichert werden</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Dash_Sect1.jpg</image:loc>
<image:caption>Dash Smart Instrument Technology f&amp;uuml;r eine gerade Ausrichtung von Knieendoprothesen</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/startseite-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/de/radiochirurgie-produkte/interaktive-segmentierung/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/Fibertracking_header_web.jpg</image:loc>
<image:caption>Fibertracking</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>Volumetrisches Einzeichnen von Objekten &amp;ndash; schnell und einfach mit SmartBrush</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>Fibertracking</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/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</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>VMAT basierend auf der DVH- und Dosisverteilung</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 erstellt volumetrisch modulierte Arc-Pl&amp;auml;ne mit einer konformalen oder modulierten Dosisleistung und Gantry-Geschwindigkeit</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>Verlagerung des Patienten zwischen verschiedenen Linearbeschleunigern im Fall von technischen St&amp;ouml;rungen</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>Vergleich und Auswahl des Behandlungsplans, der am besten f&amp;uuml;r den einzelnen Patienten geeignet ist</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/plattformen/</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>Nicht-koplanare Verifizierung</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 erstellt volumetrisch modulierte Arc-Pl&amp;auml;ne mit einer konformalen oder modulierten Dosisleistung und Gantry-Geschwindigkeit</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/automatische-segmentierung/</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/de/radiochirurgie-produkte/multiple-hirnmetastasen/</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>Abweichungen von der vorgegebenen Patientenposition werden sofort angezeigt, einschlie&amp;szlig;lich &amp;Auml;nderungen des Couch- oder Gantry-Winkels w&amp;auml;hrend Radiotherapie-/Radiochirurgie-Behandlungen.</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/kraniale-radiochirurgie/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/DSC07941_1_web.jpg</image:loc>
<image:caption>Volumetrisches Einzeichnen von Objekten &amp;ndash; schnell und einfach mit SmartBrush</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>Optimierung der Bogentrajektorien</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>Abweichungen von der vorgegebenen Patientenposition werden sofort angezeigt, einschlie&amp;szlig;lich &amp;Auml;nderungen des Couch- oder Gantry-Winkels w&amp;auml;hrend Radiotherapie-/Radiochirurgie-Behandlungen.</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/multiple-hirnmetastasen/</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>Abweichungen von der vorgegebenen Patientenposition werden sofort angezeigt, einschlie&amp;szlig;lich &amp;Auml;nderungen des Couch- oder Gantry-Winkels w&amp;auml;hrend Radiotherapie-/Radiochirurgie-Behandlungen.</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/kraniale-radiochirurgie/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/DSC07941_1_web.jpg</image:loc>
<image:caption>Volumetrisches Einzeichnen von Objekten &amp;ndash; schnell und einfach mit SmartBrush</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>Optimierung der Bogentrajektorien</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>Abweichungen von der vorgegebenen Patientenposition werden sofort angezeigt, einschlie&amp;szlig;lich &amp;Auml;nderungen des Couch- oder Gantry-Winkels w&amp;auml;hrend Radiotherapie-/Radiochirurgie-Behandlungen.</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-wirbelsaulen-trauma-produkte/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 &amp;ndash; revolution&amp;auml;res Design</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 &amp;ndash; vollst&amp;auml;ndige F&amp;uuml;hrung beim Bohren</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 &amp;ndash; zukunftssichere Modularit&amp;auml;t</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 &amp;ndash; einfaches Wechseln von Modulen</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/brainlab-innovativ-im-bereich-medizintechnische-soft-und-hardware/</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>Erweiterte Abschirmung der Wirbels&amp;auml;ule</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/digital-o-r/chirurgische-planung/</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/de/radiochirurgie-produkte/kraniale-radiochirurgie/analyse-der-kontrastmittelverteilung/</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>ELEMENTS 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>TRAMs &amp;ndash; Klinischer Einsatz</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>TRAMs &amp;ndash; Methodik</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/uebersicht-ueber-plattformprodukte/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>Flexibler Haltearm f&amp;uuml;r optimierte Patientenpositionierung</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>Freie Wahl zwischen optischer und elektromagnetischer Tracking-Technologie</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/uebersicht-ueber-plattformprodukte/curvebildgestuetztechirurgie/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2015/05/Curve_Sect1_20150526.jpg</image:loc>
<image:caption>Curve Dual Display mit DICOM Viewer und kranialer Navigation</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>Chirurgen und nicht steriles Personal bedienen separate Monitore</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>Der Chirurg kontrolliert beide Monitore auf kleiner Stellfl&amp;auml;che</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>Der Chirurg und die sterile Assistenz kontrollieren jeweils einen Monitor</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/uebersicht-ueber-plattformprodukte/intraoperativer-ct-scanner/</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 Mobile Intraoperative CT</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>Airo-CT-Bilder mit diagnostischer Bildqualit&amp;auml;t</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Airo_Sect3.jpg</image:loc>
<image:caption>Airo-Scanmodus</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>Airo-System im Transportmodus</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Airo_Sect5.jpg</image:loc>
<image:caption>Airo-Handsteuerung</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>Airo-Setup f&amp;uuml;r Wirbels&amp;auml;ulen-OPs mit Curve Image Guided Surgery</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-neurochirurgie-produkte/kraniale-navigation/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Cranial_Header1.jpg</image:loc>
<image:caption>Kraniale Navigationssoftware von 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>Intuitive Anwendung mit der Men&amp;uuml;leiste f&amp;uuml;r kraniale Navigation</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>Ber&amp;uuml;hrungslose Patientenregistrierung mit 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>Oberfl&amp;auml;chenregistrierung mit 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>VarioGuide&amp;reg;-Instrumentenhalter</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>Verfolgung der Einweg-Biopsienadel und des VarioGuide-Instrumentenhalters durch die Navigationskamera</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>Software-Anleitung f&amp;uuml;r hochpr&amp;auml;zise Ausrichtung auf vorgeplante Trajektorien</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>Verfolgung des Einweg-Stiletts durch die Navigationskamera und Anzeige auf dem Navigationsbildschirm</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>Neuronavigations-Screenshot mit Position des Einweg-Stiletts</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-neurochirurgie-produkte/intraoperative-mr-bildgebung/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_MRI_Sect11.jpg</image:loc>
<image:caption>Neuronavigationssoftware mit intraoperativen MR-Daten </image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-neurochirurgie-produkte/fibertracking-und-funktionelle-planung/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Neuro_Fibertracking_Header1.jpg</image:loc>
<image:caption>iPlan&amp;reg; FiberTracking- und BOLD MRI Mapping-Software</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>Nahtlose Integration von segmentierten 3D-Objekten und Faserbahnen</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>Die Ansicht &amp;bdquo;Time Series View&amp;ldquo; von iPlan&amp;reg; BOLD MRI</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/uebersicht-ueber-orthopaedische-chirurgie-produkte/digitale-vorlagen/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Ortho_TramaCad_Header.jpg</image:loc>
<image:caption>Screenshot der TraumaCAD-Software &amp;bdquo;Auto Hip&amp;ldquo; </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>Planung einer H&amp;uuml;ft-OP mit der TraumaCad-Software </image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-wirbelsaulen-trauma-produkte/bildregistrierung/</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>Wirbels&amp;auml;ulennavigation mit automatischer intraoperativer Bildregistrierung, z. B. mit Ziehm Vision RFD 3D-Scans</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>Wirbels&amp;auml;ulennavigation mit automatischer intraoperativer Bildregistrierung von 3D-Scans, z. B. f&amp;uuml;r das navigierte Einsetzen von Pedikelschrauben</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>Minimal-invasive, intraoperative Registrierung von Fluoroskopiebildern mit handgef&amp;uuml;hrtem Registrierinstrument </image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-wirbelsaulen-trauma-produkte/planung-fur-wirbelsaulenchirurgie/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalPlanning_Sect1.jpg</image:loc>
<image:caption>CT-Scan der gesamten Wirbels&amp;auml;ule in der axialen und sagittalen Ansicht</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>Die automatische und pr&amp;auml;zise Fusion kann in der Wirbels&amp;auml;ulennavigation eingesetzt werden, z. B. f&amp;uuml;r die navigierte Tumorresektion</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>Die Tumoreinzeichnung mit SmartBrush ist eine Option bei der spinalen Planung f&amp;uuml;r die navigierte Tumorresektion in der computergest&amp;uuml;tzten Chirurgie</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-wirbelsaulen-trauma-produkte/navigationssoftware-fur-wirbelsaulenchirurgie/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_SpinalNavApp_Header.jpg</image:loc>
<image:caption>Brainlab Navigationssoftware f&amp;uuml;r bildgest&amp;uuml;tzte Wirbels&amp;auml;ulenchirurgie</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>Spinale Navigation an der Halswirbels&amp;auml;ule zum Einsetzen der C1-C2-Schrauben, unter Verwendung von CT-Scans </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>Spinale Navigation an der Lendenwirbels&amp;auml;ule zum Einsetzen von Pedikelschrauben, unter Verwendung von Fluoroskopiebildern </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>Computergest&amp;uuml;tzte Chirurgie zur Tumorresektion an der Brustwirbels&amp;auml;ule</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-wirbelsaulen-trauma-produkte/trauma-navigation/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Spine_TraumaNavApp_Sect2.jpg</image:loc>
<image:caption>Navigierter Trauma-Eingriff bei einer Fraktur des Femurschafts mithilfe von Fluoroskopiebildern</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>Die einfache 2D-C-Bogen-basierte Bildregistrierung mit einem patentierten handgef&amp;uuml;hrten Registrierinstrument f&amp;uuml;r navigierte Trauma-Eingriffe eignet sich f&amp;uuml;r Indikationen wie Frakturen der R&amp;ouml;hrenknochen, artikul&amp;auml;re Frakturen oder proximale Femurfrakturen</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>Wirbels&amp;auml;ulen- und Trauma-Navigation mit automatischer intraoperativer Bildregistrierung, z. B. mit Ziehm Vision RFD 3D-Scans</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>Wirbels&amp;auml;ulen- und Trauma-Navigation mit automatischer intraoperativer Bildregistrierung von 3D-Scans, z. B. f&amp;uuml;r das navigierte Einsetzen von Pedikelschrauben</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>Generische Integration von Implantaten</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>Integrierte Instrumente f&amp;uuml;r die computergest&amp;uuml;tzte Chirurgie</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/uebersicht-ueber-orthopaedische-chirurgie-produkte/navigationssoftware-fuer-knieendoprothetik/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Ortho_Knee_Header.jpg</image:loc>
<image:caption>Softwaregest&amp;uuml;tzte Knieendoprothetik mit der Navigationssoftware von 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>Navigationssoftware 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>Gelenkstabilit&amp;auml;tsgraph in der Knie-Navigationssoftware von 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>Datenanalyse</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/uebersicht-ueber-orthopaedische-chirurgie-produkte/navigationssoftware-fur-huftendoprothetik/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/OrthoHip_Sect2.jpg</image:loc>
<image:caption>Pfannennavigation in Echtzeit mit der H&amp;uuml;ftsoftware von Brainlab</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-hno-mkg-chirurgie-produkte/iplancmfoptimierteplanungfurdienavigation/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/ENT_iPLAN_CMF_Sect1.jpg</image:loc>
<image:caption>Datensatzausrichtung nach den Symmetrieebenen</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>Automatische Atlas-Segmentierung der anatomischen und chirurgischen Regionen</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>Spiegelung der Strukturen von der gesunden zur defekten Seite</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>Import beliebiger STL-Daten, wie z. B. Orbita-Platten, und Export aller geplanten Strukturen mit 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>Navigation von pr&amp;auml;operativ geplanten MKG-DICOM-Daten</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>Mit dem Painter k&amp;ouml;nnen &amp;auml;ltere Daten einfach &amp;uuml;berlagert, aktualisiert und erneut navigiert werden </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>Die Navigationssoftware bietet die M&amp;ouml;glichkeit zur automatischen intraoperativen Bildfusion</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-hno-mkg-chirurgie-produkte/hno-navigationssoftware/</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>Schnelle Oberfl&amp;auml;chenregistrierung mit dem EM-Registrierpointer</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/kraniale-radiochirurgie/kraniale-konturierung/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/09/DSC07941_1_web.jpg</image:loc>
<image:caption>Volumetrisches Einzeichnen von Objekten &amp;ndash; schnell und einfach mit SmartBrush</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 &amp;ndash; Schnelle Definition eines kranialen Nidus</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/kraniale-radiochirurgie/positionierung-und-zielkontrolle/</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>Rahmenloses ExacTrac-Radiochirurgie-System f&amp;uuml;r nicht-invasive SRS-Behandlungen</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 erm&amp;ouml;glicht eine effektivere Radiotherapiebehandlung, da die Couch per Fernsteuerung bewegt werden kann</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>Nicht-koplanare Verifizierung</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/multiple-hirnmetastasen-konturierung/</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>Bildfusion und Korrektur kranialer Verzerrungen</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/spinale-radiochirurgie/</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>Monte Carlo-Optimierung</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/spinale-radiochirurgie/positionierung-und-bewegungskontrolle/</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/de/radiochirurgie-produkte/spinale-radiochirurgie/spinale-konturierung/</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, basierend auf synthetischem Gewebemodell</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>Kr&amp;uuml;mmungskorrektur</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>Automatische Zieldefinition mit SmartBrush Spine</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-neurochirurgie-produkte/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>Brainlab Elements Software-Module f&amp;uuml;r verschiedene klinische Fachgebiete</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Elements_Sect11.jpg</image:loc>
<image:caption>Einzeichnung der pathologischen Struktur im Gehirn </image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2016/11/Trajectory-Planning.jpg</image:loc>
<image:caption>Trajektorienplanung</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Elements_Sect51.jpg</image:loc>
<image:caption>Elements DICOM Viewer</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 mit Display-Cart</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/kraniale-radiochirurgie/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>Bestimmung des Umfangs der geplanten subtotalen Resektion unter Ber&amp;uuml;cksichtigung der Radiotoxizit&amp;auml;t</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>Darstellung der Dosisverteilung des geplanten Resttumors</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>Automatische Berechnung von Resttumoren basierend auf intraoperativen Kontrollpunkten</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/kraniale-radiochirurgie/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>Effiziente Behandlungsplanung f&amp;uuml;r kraniale Indikationen</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>Optimierung der Bogentrajektorien f&amp;uuml;r Cranial 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>Dynamischer Dosisabfall und MU-Optimierung</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>Einfache Kontrolle &amp;uuml;ber dosimetrische Stabilit&amp;auml;t</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>Spezielle Ansichten zur Dosisevaluierung</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-neurochirurgie-produkte/mikroskopnavigation/</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>Mikroskopintegration mit Neuronavigation</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>Optimierte Visualisierung von geplanten Strukturen einschlie&amp;szlig;lich der Darstellung eloquenter Faserbahnen</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>Maximumintensit&amp;auml;tsprojektion f&amp;uuml;r mehr vaskul&amp;auml;re Details</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>Virtuelle 360&amp;deg;-Target-Ansicht</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>Probe&amp;rsquo;s Eye-Ansicht</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>Erkennung von Verschiebungen der Anatomie</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>Kompensation von verschobener Anatomie durch Touch-basierte Angleichung der MIP zu sichtbaren Gef&amp;auml;&amp;szlig;en</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>Steuerungstasten am Mikroskop-Handgriff</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>Motorgest&amp;uuml;tzte Ausrichtung des Mikroskops auf das navigierte Instrument</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>Robotik-Optionsmen&amp;uuml;</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/uebersicht-ueber-plattformprodukte/kick-minimalistische-navigation/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Kick_header1.jpg</image:loc>
<image:caption>Flexible Kick-Systemkomponenten durch separates Monitor- und Kamera-Cart</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Kick_Sect1.jpg</image:loc>
<image:caption>Kick-Navigationssystem mit separatem Kamerastativ</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Kick_Sect2.jpg</image:loc>
<image:caption>Kick-Benutzerschnittstelle erm&amp;ouml;glicht einfachen Zugriff auf alle Funktionen</image:caption>
</image:image>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Kick_Sect3.jpg</image:loc>
<image:caption>Verbindung zwischen Kick und Buzz</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-neurochirurgie-produkte/stereotaxy/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2018/02/brainlab-elements-stereotaxy.jpg</image:loc>
<image:caption>Elements Stereotaxy von Brainlab ist eine Planungssoftware, die eine detaillierte Trajektorienplanung f&amp;uuml;r die stereotaktische Neurochirurgie erm&amp;ouml;glicht</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>Elements Segmentation software contours anatomical structures of the basal ganglia region for planning of stereotactic brain surgery</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>Elements Fibertracking software visualized eloquent white matter structures in the brain for stereotactic neurosurgery procedures</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 supports functional neurosurgery for stereotactic deep brain stimulation (DBS) surgery</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>Interoperability with Elekta stereotactic frames and Brainlab Stereotaxy planning software for deep brain stimulation</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/spinale-radiochirurgie/spinale-dosisplanung/</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>Spine SRS &amp;ndash; &amp;Uuml;berschrift</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>Automatische Bestrahlungsplanung</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>Erweiterte Abschirmung der Wirbels&amp;auml;ule</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>Dynamischer Dosisabfall und MU-Optimierung</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>Monte Carlo-Optimierung</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>Dosisdarstellung an der Wirbel-R&amp;uuml;ckenmark-Schnittstelle</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/radiochirurgie-produkte/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>Abweichungen von der vorgegebenen Patientenposition werden sofort angezeigt, einschlie&amp;szlig;lich &amp;Auml;nderungen des Couch- oder Gantry-Winkels w&amp;auml;hrend Radiotherapie-/Radiochirurgie-Behandlungen.</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>&amp;bdquo;Spy Glass&amp;ldquo;-Ansicht zur Bewertung der Fusion von Knochenstrukturen f&amp;uuml;r die intra-kraniale Radiochirurgie</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>Die R&amp;ouml;ntgen&amp;uuml;berwachung mit ExacTrac ist w&amp;auml;hrend Radiotherapie-/Radiochirurgie-Behandlungen mit jedem Couch- oder Gantry-Winkel m&amp;ouml;glich</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>Rahmenloses ExacTrac-Radiochirurgie-System f&amp;uuml;r nicht-invasive SRS-Behandlungen</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 erm&amp;ouml;glicht eine effektivere Radiotherapiebehandlung, da die Couch per Fernsteuerung bewegt werden kann</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>Kompatibilit&amp;auml;t mit 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>Kompatibilit&amp;auml;t mit Elektra</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>ExacTrac-Installation auf Siemens Oncor</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>Automatische Erkennung implantierter Marker mit ExacTrac 6D-Fusion</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>Fokus auf automatische Fusion anhand von Knochenstrukturen</image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/jobs-karriere/jobs-bei-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/de/radiochirurgie-produkte/novalis/</loc>
<image:image>
<image:loc>https://www.brainlab.com/wp-content/uploads/2014/01/Radiosurgery_Novalis_Sect31.jpg</image:loc>
<image:caption>Rahmenlose Radiochirurgie mit R&amp;ouml;ntgenverifizierung als Teil des Novalis Radiochirurgieprogramms mit dem Patientenpositionierungssystem ExacTrac </image:caption>
</image:image>
</url>
<url>
<loc>https://www.brainlab.com/de/chirurgie-produkte/ubersicht-uber-neurochirurgie-produkte/kraniale-em-navigationssoftware/</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>Schrittweise Benutzerf&amp;uuml;hrung mit Animationen gew&amp;auml;hrleistet einen reibungslosen Ablauf</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>Schnelle Oberfl&amp;auml;chenregistrierung mit dem EM-Registrierpointer</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>Maximale Flexibilit&amp;auml;t durch intraoperative Trajektorienplanung mit dem Pointer</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>Einweg-Stilett wird automatisch erkannt und auf dem Navigationsbildschirm angezeigt</image:caption>
</image:image>
</url>
</urlset>