Austin M Sloop
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Explore the profile of Austin M Sloop including associated specialties, affiliations and a list of published articles.
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8
Citations
12
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Recent Articles
1.
Sunnerberg J, Tavakkoli A, Petusseau A, Daniel N, Sloop A, Schreiber W, et al.
Int J Radiat Oncol Biol Phys
. 2024 Oct;
121(4):1053-1062.
PMID: 39461597
Purpose: This study aimed to assess the impact of tissue oxygen levels on transient oxygen consumption induced by ultra-high dose rate (UHDR) electron radiation in murine flank and to examine...
2.
Dai T, Sloop A, Ashraf M, Sunnerberg J, Clark M, Bruza P, et al.
Phys Med Biol
. 2024 Jul;
69(16).
PMID: 39084661
. The FLASH effect can potentially be used to improve the therapeutic ratio of radiotherapy (RT) through delivery of Ultra-high-dose-rate (UHDR) irradiation. Research is actively being conducted to translate UHDR-RT...
3.
Dai T, Sloop A, Schonfeld A, Flatten V, Kozelka J, Hildreth J, et al.
Med Phys
. 2024 May;
51(8):5738-5745.
PMID: 38762909
Background: Ultra-high-dose-rate (UHDR) electron beams have been commonly utilized in FLASH studies and the translation of FLASH Radiotherapy (RT) to the clinic. The EDGE diode detector has potential use for...
4.
Tavakkoli A, Clark M, Kheirollah A, Sloop A, Soderholm H, Daniel N, et al.
Adv Radiat Oncol
. 2024 May;
9(6):101492.
PMID: 38711960
Purpose: Ultra High Dose-Rate (UHDR) radiation has been reported to spare normal tissue, compared with Conventional Dose-Rate (CDR) radiation. However, important work remains to be done to improve the reproducibility...
5.
Dai T, Sloop A, Rahman M, Sunnerberg J, Clark M, Young R, et al.
Med Phys
. 2024 Mar;
51(7):5109-5118.
PMID: 38493501
Background: FLASH radiotherapy based on ultra-high dose rate (UHDR) is actively being studied by the radiotherapy community. Dedicated UHDR electron devices are currently a mainstay for FLASH studies. Purpose: To...
6.
Tavakkoli A, Clark M, Kheirollah A, Sloop A, Soderholm H, Daniel N, et al.
bioRxiv
. 2023 Nov;
PMID: 37961549
Introduction: Ultra-high dose-rate (UHDR) radiation has been reported to spare normal tissue compared to conventional dose-rate (CDR) radiation. However, reproducibility of the FLASH effect remains challenging due to varying dose...
7.
Rahman M, Kozelka J, Hildreth J, Schonfeld A, Sloop A, Ashraf M, et al.
Med Phys
. 2023 May;
50(9):5875-5883.
PMID: 37249058
Background: Ultra-high dose rate (UHDR) FLASH beams typically deliver dose at rates of >40 Gy/sec. Characterization of these beams with respect to dose, mean dose rate, and dose per pulse...
8.
Wickramasinghe V, Decker S, Streeter S, Sloop A, Petusseau A, Alexander D, et al.
J Biomed Opt
. 2023 Mar;
28(3):036005.
PMID: 36923987
Significance: High-energy x-ray delivery from a linear accelerator results in the production of spectrally continuous broadband Cherenkov light inside tissue. In the absence of attenuation, there is a linear relationship...