上海交通大学学报 ›› 2021, Vol. 55 ›› Issue (9): 1151-1157.doi: 10.16183/j.cnki.jsjtu.2020.196
所属专题: 《上海交通大学学报》2021年12期专题汇总专辑; 《上海交通大学学报》2021年“机械工程”专题
收稿日期:
2020-06-30
出版日期:
2021-09-28
发布日期:
2021-10-08
通讯作者:
颜国正
E-mail:gzhyan@sjtu.edu.cn
作者简介:
杨 辰(1998-),男,江西省宜春市人,硕士生,主要从事经皮无线供能系统研究.
基金资助:
YANG Chen, YAN Guozheng(), ZHOU Zerun, HUA Fangfang
Received:
2020-06-30
Online:
2021-09-28
Published:
2021-10-08
Contact:
YAN Guozheng
E-mail:gzhyan@sjtu.edu.cn
摘要:
通过仿真与实验相结合,对人造肛门括约肌经皮无线供能系统的生物安全性问题及植入后的生物相容性问题进行研究.生物安全性研究基于生物电磁辐射量仿真及供能时的温升情况.生物相容性研究基于活体实验中供能系统周围组织切片染色实验结果.生物安全性研究结果表明,经皮无线供能系统在谐振频率为110 kHz,发射端输出功率为10 W的实验环境下,生物电磁安全性优异,局部比吸收率远低于国际人体电磁安全标准;且经过30 min的快速充电,系统温升仅为2.81 ℃,低于温升阈值4.8 ℃,具有较好的温控安全性.无线供能系统的切片染色实验结果表明,采用聚醚醚酮外壳能够显著减少免疫排斥,提升系统的生物相容性.
中图分类号:
杨辰, 颜国正, 周泽润, 华芳芳. 人造肛门括约肌经皮无线供能系统安全性及相容性分析[J]. 上海交通大学学报, 2021, 55(9): 1151-1157.
YANG Chen, YAN Guozheng, ZHOU Zerun, HUA Fangfang. Biocompatibility and Biosafety Analysis of Transcutaneous Energy Transfer System of Artificial Anal Sphincter[J]. Journal of Shanghai Jiao Tong University, 2021, 55(9): 1151-1157.
表3
仔猪的常规血液参数
组别 | 白细胞 数×10-9/ L-1 | 红细胞 数×10-9/ L-1 | 血小板 数×10-9/ L-1 | 红细胞比容 | 血红蛋白 浓度/ (g·L-1) | 平均红细胞 体积/fL | 平均红细胞 血红蛋白/pg | 平均红细胞 血红蛋白浓度/ (g·L-1) |
---|---|---|---|---|---|---|---|---|
实验前1号猪 | 24.11 | 7.72 | 569 | 0.48 | 141 | 61.1 | 17.7 | 307 |
1号猪 | 15.43 | 7.62 | 367 | 0.46 | 142 | 61.2 | 18.6 | 305 |
实验前2号猪 | 22.94 | 7.71 | 608 | 0.49 | 141 | 62.5 | 18.2 | 309 |
2号猪 | 13.20 | 7.64 | 475 | 0.49 | 140 | 61.7 | 19.0 | 308 |
健康巴马猪 参数范围 | 23.65±0.95 | 7.70±0.09 | 599.30±26.1 | 0.48±0.01 | 139.3±2 | 55.60±3.16 | 16.88±0.9 | 303.8±8.04 |
[1] | SAINSBURY A, HEATLEY R V. Review article: Psychosocial factors in the quality of life of patients with inflammatory bowel disease[J]. Alimentary Pharmacology & Therapeutics, 2005, 21(5):499-508. |
[2] |
PRETLOVE S J, RADLEY S, TOOZS-HOBSON P M, et al. Prevalence of anal incontinence according to age and gender: A systematic review and meta-regression analysis[J]. International Urogynecology Journal, 2006, 17(4):407-417.
doi: 10.1007/s00192-005-0014-5 URL |
[3] |
GUINANE J. Management of faecal incontinence in residential aged care[J]. Australian Journal of General Practice, 2018, 47(1/2):40-42.
doi: 10.31128/AJGP URL |
[4] | FERNANDO R, SULTAN A H, KETTLE C, et al. Methods of repair for obstetric anal sphincter injury[J]. The Cochrane Database of Systematic Reviews, 2006(3): CD002866. |
[5] | GLASGOW S C, LOWRY A C. Long-term outcomes of anal sphincter repair for fecal incontinence: A systematic review[J]. Diseases of the Colon & Rectum, 2012, 55(4):482-490. |
[6] |
ZHOU M W, WANG Z H, CHEN Z Y, et al. Advantages of early preventive ileostomy closure after total mesorectal excision surgery for rectal cancer: An institutional retrospective study of 123 consecutive patients[J]. Digestive Surgery, 2017, 34(4):305-311.
doi: 10.1159/000452676 URL |
[7] |
SOERENSEN M M, PEDERSEN B G, SANTORO G A, et al. Long-term function and morphology of the anal sphincters and the pelvic floor after primary repair of obstetric anal sphincter injury[J]. Colorectal Disease, 2014, 16(10):O347-O355.
doi: 10.1111/codi.2014.16.issue-10 URL |
[8] | KAGA T, SHIBA K J. Measurement of energy transmission efficiency of transcutaneous energy transformer in NaCl solution for ventricular assist devices by reducing common-mode current in the range of 200—1500 kHz[C]// 2017 IEEE Biomedical Circuits and Systems Conference (BioCAS). Turin, Italy: IEEE, 2017: 17681168. |
[9] | 昝鹏, 张春东, 刘颜凯, 等. 基于经皮能量传输的人工肛门括约肌生物电磁相容性研究[J]. 上海交通大学学报, 2018, 52(8):997-1002. |
ZAN Peng, ZHANG Chundong, LIU Yankai, et al. Research on bio-electromagnetic compatibility of artificial anal sphincter based on transcutaneous energy transfer[J]. Journal of Shanghai Jiao Tong University, 2018, 52(8):997-1002. | |
[10] |
XIAO C Y, CHENG D N, WEI K Z. An LCC-C compensated wireless charging system for implantable cardiac pacemakers: Theory, experiment, and safety evaluation[J]. IEEE Transactions on Power Electronics, 2018, 33(6):4894-4905.
doi: 10.1109/TPEL.63 URL |
[11] |
ZHOU Z R, YAN G Z, WANG Z W, et al. A novel power supply system for puborectalis-like artificial anal sphincter[J]. Artificial Organs, 2019, 43(6):E109-E123.
doi: 10.1111/aor.2019.43.issue-6 URL |
[12] |
KRITIKOS H N, FOSTER K R, SCHWAN H P. Temperature profiles in spheres due to electromagnetic heating[J]. Journal of Microwave Power, 1981, 16(3/4):327-344.
doi: 10.1080/16070658.1981.11689256 URL |
[13] | FOSTER K R. Thermal effects of microwave and radiofrequency radiation[M]// Non-ionizing Radiation Protection. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2017: 163-185. |
[14] |
WU J, LEI Y Z. Analytical expression to impedance for solenoid coil with a coaxial cylindrical ferrite core of finite length[J]. Journal of Physics D: Applied Physics, 2002, 35(6):570-575.
doi: 10.1088/0022-3727/35/6/312 URL |
[15] | ZHANG S X, HENG P A, LIU Z J. Chinese visible human project[J]. Clinical Anatomy: The Official Journal of the American Association of Clinical Anatomists and the British Association of Clinical Anatomists, 2006, 19(3):204-215. |
[16] | REPACHOLI M H, GRANDOLFO M, AHLBOM A, et al. Health issues related to the use of hand-held radiotelephones and base transmitters[J]. Health Physics, 1996, 70(4):587-593. |
[17] | OZOVEHE A, IBRAHIM M, HAMDALLAH A. Analysis of electromagnetic pollution due to high voltage transmission lines[J]. Journal of Energy Technologies and Policy, 2012, 2(7):1-11. |
[18] |
BASAR M, AHMAD M, CHO J, et al. Application of wireless power transmission systems in wireless capsule endoscopy: An overview[J]. Sensors, 2014, 14(6):10929-10951.
doi: 10.3390/s140610929 URL |
[1] | 华芳芳, 颜国正, 王立超, 柴川页, 肖敦玺. 双轴驱动式人造肛门括约肌系统经皮无线供能[J]. 上海交通大学学报, 2022, 56(11): 1502-1508. |
[2] | 克磊1,颜国正1,刘志强1,颜胜1,王志武1,王永兵2. 人工肛门括约肌性能与生物相容性的动物实验[J]. 上海交通大学学报(自然版), 2014, 48(02): 193-198. |
[3] | 贾智伟, 颜国正, 石煜, 朱柄全. 基于生物安全性的无线能量传输系统接收线圈优化设计[J]. 上海交通大学学报(自然版), 2012, 46(07): 1127-1131. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||