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Microfluidic Chip Calorimeter for Small-Field Radiation Dosimetry

Authors
Kim, JonghyunNam, Sung MinKim, JihyeChoi, Yo-NaKim, Tae HoonChun, Kook JinChung, Hyun-TaiLee, Wonhee
Issue Date
15-5월-2020
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Temperature measurement; Thermistors; Heating systems; Semiconductor device measurement; Microfluidics; Dosimetry; Temperature sensors; Chip calorimeter; nanofabrication; miniaturized dosimeter; small field radiation dosimetry
Citation
IEEE SENSORS JOURNAL, v.20, no.10, pp.5165 - 5175
Indexed
SCIE
SCOPUS
Journal Title
IEEE SENSORS JOURNAL
Volume
20
Number
10
Start Page
5165
End Page
5175
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/55680
DOI
10.1109/JSEN.2020.2968189
ISSN
1530-437X
Abstract
Recent advances in medical radiation technologies have enabled small field radiotherapy with a beam size as small as a few millimeters for precise dose delivery to patients. However, conventional radiation dosimeters for small field radiotherapy suffer from inaccurate dose measurements due to their large absorber size. Herein, we present a nanofabricated chip calorimeter as a new platform for a miniaturized dosimeter for measurements of the absorbed dose. The calorimeter consists of a microscale absorber body built with a SU-8 photoresist and a microfluidic water container. The measurement system was constructed such that the calorimeter operates in the heat compensation mode, where the temperature change of the absorber was proportional to the absorbed energy. The operability of the heat compensation calorimeter was examined with electric heating and a visible light source. The feasibility of application of the microfluidic chip calorimeter for medical radiation sensor was successfully demonstrated by measuring the absorbed dose from the small radiation field of the Gamma Knife.
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