نتایج جستجو برای: MOSkin

تعداد نتایج: 18  

Journal: :Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine 2014
G Gambarini M Carrara C Tenconi N Mantaut M Borroni D Cutajar M Petasecca I Fuduli M Lerch E Pignoli A Rosenfeld

MOSkin detectors were studied to perform real-time in vivo dose measurements in high dose rate prostate brachytherapy. Measurements were performed inside an urethral catheter in a gel phantom simulating a real prostate implant. Measured and expected doses were compared and the discrepancy was found to be within 8.9% and 3.8% for single MOSkin and dual-MOSkin configurations, respectively. Result...

2014
Wei Loong Jong Jeannie Hsiu Ding Wong Ngie Min Ung Kwan Hoong Ng Gwo Fuang Ho Dean L. Cutajar Anatoly B. Rosenfeld

In vivo dosimetry is important during radiotherapy to ensure the accuracy of the dose delivered to the treatment volume. A dosimeter should be characterized based on its application before it is used for in vivo dosimetry. In this study, we characterize a new MOSFET-based detector, the MOSkin detector, on surface for in vivo skin dosimetry. The advantages of the MOSkin detector are its water eq...

Journal: :Medical physics 2015
M J Safari J H D Wong K H Ng W L Jong D L Cutajar A B Rosenfeld

PURPOSE The MOSkin is a MOSFET detector designed especially for skin dose measurements. This detector has been characterized for various factors affecting its response for megavoltage photon beams and has been used for patient dose measurements during radiotherapy procedures. However, the characteristics of this detector in kilovoltage photon beams and low dose ranges have not been studied. The...

2017
Kimberley Legge Peter B Greer Daryl J O'Connor Lee Wilton Matthew Richardson Perry Hunter Alex Wilfert Jarad Martin Anatoly Rosenfeld Dean Cutajar

BACKGROUND MOSFET dosimetry is a method that has been used to measure in-vivo doses during brachytherapy treatments and during linac based radiotherapy treatment. Rectal displacement devices (RDDs) allow for safe dose escalation for prostate cancer treatment. This study used dual MOSkin detectors to assess real-time in vivo rectal wall dose in patients with an RDD in place during a high dose pr...

2015
Eyad A. Alhakeem Sami AlShaikh Anatoly B. Rosenfeld Sergei F. Zavgorodni

The purpose of this study is to compare performance of several dosimetric meth-ods in heterogeneous phantoms irradiated by 6 and 18 MV beams. Monte Carlo (MC) calculations were used, along with two versions of Acuros XB, anisotropic analytical algorithm (AAA), EBT2 film, and MOSkin dosimeters. Percent depth doses (PDD) were calculated and measured in three heterogeneous phantoms. The first two ...

2015
Sarah J. Alnaghy Shrikant Deshpande Dean L. Cutajar Kemal Berk Peter Metcalfe Anatoly B. Rosenfeld

Verification of dose to the anterior rectal wall in helical tomotherapy to the prostate is important due to the close proximity of the rectal wall to the treatment field. The steep dose gradient makes these measurements challenging. A phantom-based study was completed, aimed at developing a system for measurement of anterior rectal wall doses during hypofractionated prostate stereotactic body r...

2017
Kananan Utitsarn Nauljun Stansook Michael L. F Lerch Marco Petasecca Anatoly B. Rosenfeld

We evaluate the impact of an air gap and optimization of this air gap for the MP512 silicon detector array when operated in dosimetry mode for small photon field measurements in solid water. We present output factor measurements for 6MV and 10 MV photon beams with the square field sizes ranging from 0.5 to 10 cm2. The size of the air gap above the MP512 detector was changed from 0.5, 1.0, 1.2, ...

abbas haghparast, Mahdi Mohammadi Razieh Zaghian

Introduction: Due to the prevalence of skin problems in patients after radiotherapy, skin dose measuring is importance. Content: Skin in vivo dosimetry means measuring the patient's (or phantom) skin dose during radiotherapy. According to the ICRP 59, the dose at the depth of 0.07 mm is known as a skin dose. The most radiosensitive epidermis cells are located...

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