Zobrazeno 1 - 10
of 207
pro vyhledávání: '"D Henzen"'
Autor:
P.-H. Mackeprang, D. Vuong, W. Volken, D. Henzen, D. Schmidhalter, M. Malthaner, S. Mueller, D. Frei, W. Kilby, D. M. Aebersold, M. K. Fix, P. Manser
Publikováno v:
Radiation Oncology, Vol 14, Iss 1, Pp 1-11 (2019)
Abstract Background Vendor-independent Monte Carlo (MC) dose calculation (IDC) for patient-specific quality assurance of multi-leaf collimator (MLC) based CyberKnife treatments is used to benchmark and validate the commercial MC dose calculation engi
Externí odkaz:
https://doaj.org/article/f1db79f732694c8e8226911cddf41367
Akademický článek
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Autor:
Benjamin Haas, Daniel Schmidhalter, Hossein Hemmatazad, Werner Volken, Paul-Henry Mackeprang, Michael K. Fix, Jonas Honegger, Ekin Ermiş, D. Henzen, Evelyn Herrmann, Peter Manser
Publikováno v:
Radiation Oncology, Vol 14, Iss 1, Pp 1-13 (2019)
Schmidhalter, Daniel; Henzen, Dominik; Herrmann, Evelyn; Volken, Werner; Mackeprang, Paul-Henry; Ermis, Ekin; Hemmatazad, Hossein; Honegger, Jonas; Haas, Benjamin; Fix, Michael; Manser, Peter (2019). Evaluation of a new software prototype for frameless radiosurgery of arteriovenous malformations. Radiation oncology, 14(1), pp. 1-13. BioMed Central 10.1186/s13014-019-1422-x
Radiation Oncology (London, England)
Schmidhalter, Daniel; Henzen, Dominik; Herrmann, Evelyn; Volken, Werner; Mackeprang, Paul-Henry; Ermis, Ekin; Hemmatazad, Hossein; Honegger, Jonas; Haas, Benjamin; Fix, Michael; Manser, Peter (2019). Evaluation of a new software prototype for frameless radiosurgery of arteriovenous malformations. Radiation oncology, 14(1), pp. 1-13. BioMed Central 10.1186/s13014-019-1422-x
Radiation Oncology (London, England)
Background In order to locate an arteriovenous malformation, typically, a digital subtraction angiography (DSA) is carried out. To use the DSA for target definition an accurate image registration between CT and DSA is required. Carrying out a non-inv
Autor:
D. Henzen, Michael K. Fix, Silvan Mueller, Marco Stampanoni, R. Kueng, Werner Volken, Daniel Frei, A. Joosten, Daniel M. Aebersold, Peter Manser
Publikováno v:
Physics in Medicine & Biology. 62:5840-5860
The aim of this work is to develop and investigate an inverse treatment planning process (TPP) for mixed beam radiotherapy (MBRT) capable of performing simultaneous optimization of photon and electron apertures. A simulated annealing based direct ape
Autor:
Werner Volken, Paul-Henry Mackeprang, Daniel Frei, Michael K. Fix, Hossein Hemmatazad, Jonas Honegger, Ekin Ermiş, Peter Manser, D. Henzen, Evelyn Herrmann, Benjamin Haas, D. Terribilini, Daniel Schmidhalter
Publikováno v:
Radiotherapy and Oncology. 152:S808-S809
Autor:
S. Mueller, Diem Vuong, M. Malthaner, Daniel Schmidhalter, W. Kilby, Peter Manser, Werner Volken, Paul-Henry Mackeprang, Daniel Frei, Daniel M. Aebersold, Michael K. Fix, D. Henzen
Publikováno v:
Radiation Oncology (London, England)
Radiation Oncology, Vol 14, Iss 1, Pp 1-11 (2019)
Mackeprang, Paul-Henry; Vuong, D; Volken, Werner; Henzen, Dominik; Schmidhalter, Daniel; Malthaner, Marco; Müller, Silvan Andreas; Frei, Daniel; Kilby, W; Aebersold, Daniel; Fix, Michael; Manser, Peter (2019). Benchmarking Monte-Carlo dose calculation for MLC CyberKnife treatments. Radiation oncology, 14(1), p. 172. BioMed Central 10.1186/s13014-019-1370-5
Radiation Oncology, Vol 14, Iss 1, Pp 1-11 (2019)
Mackeprang, Paul-Henry; Vuong, D; Volken, Werner; Henzen, Dominik; Schmidhalter, Daniel; Malthaner, Marco; Müller, Silvan Andreas; Frei, Daniel; Kilby, W; Aebersold, Daniel; Fix, Michael; Manser, Peter (2019). Benchmarking Monte-Carlo dose calculation for MLC CyberKnife treatments. Radiation oncology, 14(1), p. 172. BioMed Central 10.1186/s13014-019-1370-5
Background Vendor-independent Monte Carlo (MC) dose calculation (IDC) for patient-specific quality assurance of multi-leaf collimator (MLC) based CyberKnife treatments is used to benchmark and validate the commercial MC dose calculation engine for ML
Autor:
Dominic Leiser, Alexandros Tsikkinis, Burim Sermaxhaj, Nikola Cihoric, M. Malthaner, Daniel Schmidhalter, Hossein Hemmatazad, Ekin Ermiş, Daniel M. Aebersold, Marcela Blatti-Moreno, D. Henzen, Evelyn Herrmann
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::f18904d828c2346e090519a2214bab93
Autor:
Werner Volken, D. Henzen, Michael K. Fix, M. Malthaner, Paul-Henry Mackeprang, Peter Manser, Claudia Christina Zanella, Daniel Schmidhalter
Publikováno v:
Journal of Applied Clinical Medical Physics
Journal of Applied Clinical Medical Physics, 19 (1)
Henzen, Dominik; Schmidhalter, Daniel; Zanella, Claudia Christina; Volken, Werner; Mackeprang, Paul-Henry; Malthaner, Marco; Fix, Michael; Manser, Peter (2018). Evaluation of clinically applied treatment beams with respect to bunker shielding parameters for a Cyberknife M6. Journal of applied clinical medical physics, 19(1), pp. 243-249. American Association of Physicists in Medicine 10.1002/acm2.12215
Journal of Applied Clinical Medical Physics, 19 (1)
Henzen, Dominik; Schmidhalter, Daniel; Zanella, Claudia Christina; Volken, Werner; Mackeprang, Paul-Henry; Malthaner, Marco; Fix, Michael; Manser, Peter (2018). Evaluation of clinically applied treatment beams with respect to bunker shielding parameters for a Cyberknife M6. Journal of applied clinical medical physics, 19(1), pp. 243-249. American Association of Physicists in Medicine 10.1002/acm2.12215
Compared to a conventional linear accelerator, the Cyberknife (CK) is a unique system with respect to radiation protection shielding and the variety and number of non-coplanar beams are two key components regarding this aspect. In this work, a framew
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::610f95a7d668fa9b9254efd630b80e84
Autor:
Marco Stampanoni, Werner Volken, M. Malthaner, Diem Vuong, Paul-Henry Mackeprang, Daniel Frei, Daniel M. Aebersold, A. Dal Pra, Daniel Schmidhalter, Michael K. Fix, D. Henzen, Silvan Mueller, Peter Manser
Publikováno v:
Physics in medicine and biology. 63(1)
This work aims to develop, implement and validate a Monte Carlo (MC)-based independent dose calculation (IDC) framework to perform patient-specific quality assurance (QA) for multi-leaf collimator (MLC)-based CyberKnife® (Accuray Inc., Sunnyvale, CA
Autor:
S. Mueller, K. Loessl, Daniel Frei, D. Henzen, Peter Manser, Marco Stampanoni, Michael K. Fix, D. Frauchiger
Publikováno v:
Physics in medicine and biology. 63(2)
Standard electron treatments are currently still performed using standard or molded patient-specific cut-outs placed in the electron applicator. Replacing cut-outs and electron applicators with a photon multileaf collimator (pMLC) for electron beam c