원문정보
초록
영어
Cryoablation device is a surgical instrument to produce the cooling effect to destroy detrimental biological tissue by utilizing low temperature around 110 K. Usually, this device has the concentrated cooling region, so that it is suitable for concentrated and thick target. Accordingly, it is hard to apply this device for the target which is distributed and thin target. In this study, the design procedure of a closed-loop cryoablation device with multiple J-T expansion part is developed for the treatment of incompetent of great saphenous vein. The developed cyoablation device is designed with the analysis of 1-dimensional (1-D) bio-heat equation. The energy balance is considered to determine the minimum mass flow rate of refrigerant for consecutive flow boiling to develop the uniform cooling temperature. Azeotropic mixed refrigerant R410A and zeotropic mixed refrigerant (MR) of R22 (CHClF2) and R23 (CHF3) are utilized as operating fluids of the developed cryoablation device to form the sufficient temperature and to verify the quality of the inside of cryoablation probe. The experimental results of R410A and the zeotropic MR show the temperature non-uniformity over the range are 244.8 K ±2.7 K and 239.8 K ±4.7 K respectively. The experimental results demonstrate that the probe experiences the consecutive flow boiling over the target range of 200 mm.
목차
1. 서론
2. 극저온 수술용 프로브의 설계
2.1 세포 파괴 메커니즘
2.2 냉각용량 모델링
2.3 폐쇄형 사이클 설계
2.4 질량유량 예측
3. 설계법에 따른 극저온 수술용 프로브의 구현
3.1 극저온 수술용 프로브의 구현
3.2 R410A의 실험결과 및 고찰
3.3 비공비 혼합냉매의 실험결과 및 고찰
4. 결론
ACKNOWLEDGMENT
REFERENCES