Falk Poenisch
Overview
Explore the profile of Falk Poenisch including associated specialties, affiliations and a list of published articles.
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36
Citations
573
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Recent Articles
1.
Wang L, Sanders J, Ward J, Lee S, Poenisch F, Swanson D, et al.
Cancers (Basel)
. 2024 Feb;
16(3).
PMID: 38339376
Background: Current fiducial markers (FMs) in external-beam radiotherapy (EBRT) for prostate cancer (PCa) cannot be positively visualized on magnetic resonance imaging (MRI) and create dose perturbation and significant imaging artifacts...
2.
Zhu X, Li Y, Yang M, Whitaker T, Taylor P, Zhang X, et al.
J Radiosurg SBRT
. 2023 Nov;
9(1):75-82.
PMID: 38029015
Our randomized clinical study comparing stereotactic body radiotherapy (SBRT) and stereotactic body proton therapy (SBPT) for early stage non-small cell lung cancer (NSCLC) was closed prematurely owing to poor enrollment,...
3.
Cao W, Li Y, Zhang X, Poenisch F, Yepes P, Sahoo N, et al.
J Appl Clin Med Phys
. 2023 Mar;
24(7):e13954.
PMID: 36913484
Purpose: We developed and tested a novel method of creating intensity modulated proton arc therapy (IMPAT) plans that uses computing resources similar to those for regular intensity-modulated proton therapy (IMPT)...
4.
Tang T, Zawaski J, Kesler S, Beamish C, Inoue T, Perez E, et al.
Int J Radiat Oncol Biol Phys
. 2021 Sep;
112(2):554-564.
PMID: 34509550
Purpose: Compared with photon cranial radiation therapy (X-CRT), proton cranial radiation therapy (P-CRT) offers potential advantages in limiting radiation-induced sequalae in the treatment of pediatric brain tumors. This study aims...
5.
Pasalic D, Strom E, Allen P, Williamson T, Poenisch F, Amos R, et al.
Int J Radiat Oncol Biol Phys
. 2020 Sep;
109(2):441-448.
PMID: 32946965
Purpose: To perform a planned interim analysis of acute (within 12 months) and late (after 12 months) toxicities and cosmetic outcomes after proton accelerated partial breast irradiation (APBI). Methods And...
6.
Chen M, Yepes P, Hojo Y, Poenisch F, Li Y, Chen J, et al.
Br J Radiol
. 2019 Dec;
93(1107):20190669.
PMID: 31799859
Objective: This study is part of ongoing efforts aiming to transit from measurement-based to combined patient-specific quality assurance (PSQA) in intensity-modulated proton therapy (IMPT). A Monte Carlo (MC) dose-calculation algorithm...
7.
Yang Z, Li H, Li Y, Li Y, Chang Y, Li Q, et al.
Radiat Oncol
. 2019 Jul;
14(1):129.
PMID: 31324257
Purpose: To assess the worst-case robust optimization IMPT plans with setup and range uncertainties and to test the hypothesis that the worst-case robust optimization strategies could cover most possible setup...
8.
Yang Z, Chang Y, Brock K, Cazoulat G, Koay E, Koong A, et al.
Radiother Oncol
. 2019 Apr;
134:101-109.
PMID: 31005203
Purpose: To evaluate the effect of setup uncertainties including uncertainties between different breath holds (BH) and inter-fractional anatomical changes under CT-guided BH with intensity-modulated proton therapy (IMPT) in patients with...
9.
Cao W, Khabazian A, Yepes P, Lim G, Poenisch F, Grosshans D, et al.
Phys Med Biol
. 2019 Feb;
64(5):058002.
PMID: 30811349
In this reply we present additional description of our linear model for LET optimization in response to the comments by Dr Gorissen. We clarify that this model cannot guarantee global...
10.
Yepes P, Adair A, Frank S, Grosshans D, Liao Z, Liu A, et al.
Adv Radiat Oncol
. 2019 Feb;
4(1):156-167.
PMID: 30706024
Purpose: To evaluate how using models of proton therapy that incorporate variable relative biological effectiveness (RBE) versus the current practice of using a fixed RBE of 1.1 affects dosimetric indices...