Publication List
“X-Ray Based Nanoparticle Imaging”. In Nanoparticle Enhanced Radiation Therapy, 12–1 to 12–18. Nanoparticle Enhanced Radiation Therapy. IOP Publishing. doi:10.1088/978-0-7503-2396-3ch12. http://dx.doi.org/10.1088/978-0-7503-2396-3ch12.
. 2020. “Workflow Automation For Ultrafast Kilovoltage-Megavoltage Cone-Beam Ct For Image Guided Radiotherapy”. In 2Nd Estro Forum, Geneva, Switzerland. 2Nd Estro Forum, Geneva, Switzerland.
. 2013. “Workflow Automation For Ultrafast Kilovoltage-Megavoltage Cone-Beam Ct For Image Guided Radiotherapy”. In 2Nd Estro Forum, Geneva, Switzerland. 2Nd Estro Forum, Geneva, Switzerland.
. 2013. “A Volume Rendering System For Medicine”. In Proc. Informationssysteme Im Unternehmen Krankenhaus, 1-3. Proc. Informationssysteme Im Unternehmen Krankenhaus.
. 1995. “Volume Rendering On One Rle Compressed Data Set By A New Combination Of Ray-Casting And Shear-Warp”. In Siggraph 2004. Siggraph 2004.
. 2004. “Volume Rendering Fpga Hardware”. In 11Th Symp. Comp. Arch. And High Perf. Comp., Sbac 99. 11Th Symp. Comp. Arch. And High Perf. Comp., Sbac 99.
. 1999. “Virtual Planning And Simulation Of Complex Posttraumatic Deformities”. In 1Th Annual Meeting Computer Assisted Orthopaedic Surgery. 1Th Annual Meeting Computer Assisted Orthopaedic Surgery.
. 2001. “Virtual Intensive Care Unit (Icu): Real-Time Simulation Environment Applying Hybrid Approach Using Dynamic Bayesian Networks And Odes”. In Studies In Health Technology And Informatics, 142:1–6. Studies In Health Technology And Informatics.
. 2009. “Virim: The Real-Time 3D-Visualization System”. In Vde/vdi-Workshop Integrative 3D Visualisierung. Vde/vdi-Workshop Integrative 3D Visualisierung.
. 1994. “Virim: A Massively Parallel Processor For Real-Time Volume Visualization In Medicine”. Computer\&graphics 19. Computer\&graphics: 705-710.
. 1995. “Virim: A Massively Parallel Processor For Real-Time Volume Visualization In Medicine”. In Proc. Eurographics Workshop, 19:103-108. Proc. Eurographics Workshop.
. 1995. “Verwendung Mehrerer Bildmerkmale Mit Mutual Information In Der Multimodalen Bildregistrierung”. In 47. Jahrestagung Der Dgmp Und 19. Jahrestagung Der Ismrm-Ds. 47. Jahrestagung Der Dgmp Und 19. Jahrestagung Der Ismrm-Ds. Würzburg. http://www.dgmp.de/de-DE/131/dgmp-tagungsbaende.
. 2016. “Vergleich Zweier Ansaetze Zur Interaktiven Volumenvisualisierung”. In Bmbf-Statustagung, 225-244. Bmbf-Statustagung.
. 1997. “Vector Extrapolation Based Acceleration Of Regularized Richardson Lucy Image Deblurring”. In Bvm09, 400–404. Bvm09. Heidelberg.
. 2009. “Using Immunotherapy To Boost The Abscopal Effect. ”. Nature Reviews Cancer 18 (5). Nature Reviews Cancer: 322. doi:10.1038/nrc.2018.6. https://www.ncbi.nlm.nih.gov/pubmed/29449659.
. 2018. “Usct Imaging Acceleration Using Preconditioned Conjugate Gradient And Multigrid Methods”. In Strahlentherapie Und Onkologie, 194:S153–S154. Strahlentherapie Und Onkologie. SPRINGER HEIDELBERG TIERGARTENSTRASSE 17, D-69121 HEIDELBERG, GERMANY.
. 2018. “Usct Image Reconstruction: Acceleration Using Gauss-Newton Preconditioned Conjugate Gradient”. In Proceedings Of The International Workshop On Medical Ultrasound Tomography, 41–52. Proceedings Of The International Workshop On Medical Ultrasound Tomography. KIT Scientific Publishing.
. 2018. “Usct Image Reconstruction: Acceleration Using Gauss-Newton Preconditioned Conjugate Gradient”. In International Workshop On Medical Ultrasound Tomography. International Workshop On Medical Ultrasound Tomography. Speyer, Germany.
. 2017. “Ultrasound Transmission Tomography Image Reconstruction With A Fully Convolutional Neural Network”. Physics In Medicine & Biology 65. Physics In Medicine & Biology: 235021. doi:10.1088/1361-6560/abb5c3. https://doi.org/10.1088/1361-6560/abb5c3.
. 2020. “Ultrasound Image Reconstruction Using Nesterov's Accelerated Gradient”. In 2018 Ieee Nuclear Science Symposium And Medical Imaging Conference Proceedings (Nss/mic), 1–3. 2018 Ieee Nuclear Science Symposium And Medical Imaging Conference Proceedings (Nss/mic). IEEE.
. 2018. “Ultrasound - A New Tool For Surface Matching In Computer Navigated Surgery”. J. Milit. Medicine. J. Milit. Medicine: 151-154.
. 2001. . 2020.
“Transcutaneous Organ Function Measurement”. Google Patents.
. 2018. “Transcutaneous Assessment Of Renal Function In Conscious Rats With A Device For Measuring Fitc-Sinistrin Disappearance Curves”. Kidney Int 79. Kidney Int: 1254–1258. http://dx.doi.org/10.1038/ki.2011.31.
. 2011. “Towards Customizable Thin-Panel Low-Z Detector Arrays: Electrode Design For Increased Spatial Resolution Ion Chamber Arrays”. Physics In Medicine & Biology 65. Physics In Medicine & Biology: 08NT02. doi:10.1088/1361-6560/ab8109. https://doi.org/10.1088/1361-6560/ab8109.
. 2020.