Journal of Shanghai Jiaotong University >
Thermal Analysis and Control of Transcutaneous Energy Transfer Modulus of Puborectalis-Like Artificial Anal Sphincter
Received date: 2019-06-28
Online published: 2020-08-18
The puborectalis-like artificial anal sphincter system (PAAS) uses transuctaneous energy transmission (TET) to charge lithium batteries integrated within the charging module. Therefore, the system can work stably during in-vivo experiments for a long period of time. Massive in-vivo experiments show that the large amount of heat generated in the wireless charging process is unfavorable to the biological safety of the living tissue near the charging module after PAAS implantation, so it is necessary to reasonably plan the wireless charging process. In this paper, by analyzing the heat conduction relationship of the internal components of the charging module, the internal thermal resistance model of the charging module is established, verified, and modified by in-vitro experiments. The modified model can reliably describe the temperature changes of the living tissue during charging. Based on the modified model, this paper formulates the single maximum continuous wireless charging time during the in-vivo experiment, thus improving the biological safety of PAAS during in-vivo experiments, and then prolonging the implantation time of PAAS.
ZHOU Zerun, YAN Guozheng, WANG Zhiwu, HUA Fangfang, YAO Shengjian, DING Zifan . Thermal Analysis and Control of Transcutaneous Energy Transfer Modulus of Puborectalis-Like Artificial Anal Sphincter[J]. Journal of Shanghai Jiaotong University, 2020 , 54(8) : 813 -819 . DOI: 10.16183/j.cnki.jsjtu.2019.188
[1] | JEREZ-ROIG J, SOUZA D L B, AMARAL F L J S, et al. Prevalence of fecal incontinence (FI) and associated factors in institutionalized older adults[J]. Archives of Gerontology and Geriatrics, 2015,60(3):425-430. |
[2] | MUNEER A, PEARCE I, RALPH D. Prosthetic surgery in urology[M]. Cham, Switzerland: Springer International Publishing, 2016. |
[3] | NORDENSTAM J, BOLLER A M, MELLGREN A. Sacral nerve stimulation in the treatment of bowel disorders[J]. Progress in Neurological Surgery, 2016,29:200-212. |
[4] | CHRISTIANSEN J, LORENTZEN M. Implantation of artificial sphincter for anal incontinence[J]. The Lancet, 1987,330(8553):244-245. |
[5] | JAMES M H, MCCAMMON K A. Artificial urinary sphincter for post-prostatectomy incontinence: A review[J]. International Journal of Urology, 2014,21(6):536-543. |
[6] | FATTORINI E, BRUSA T, GINGERT C, et al. Artificial muscle devices: Innovations and prospects for fecal incontinence treatment[J]. Annals of Biomedical Engineering, 2016,44(5):1355-1369. |
[7] | BHARUCHA A E, DUNIVAN G, GOODE P S, et al. Epidemiology, pathophysiology, and classification of fecal incontinence: State of the science su-mmary for the national institute of diabetes and digestive and kidney diseases (NIDDK) workshop[J]. The American Journal of Gastroenterology, 2015,110(1):127-136. |
[8] | FORTE M L, ANDRADE K E, LOWRY A C, et al. Systematic review of surgical treatments for fecal incontinence[J]. Diseases of the Colon and Rectum, 2016,59(5):443-469. |
[9] | KUMAR L, EMMANUEL A. Internal anal sphincter: Clinical perspective[J]. The surgeon: Journal of the Royal Colleges of Surgeons of Edinburgh and Ireland, 2016,15(4):211-216. |
[10] | WANG X, DASILVA G, MARON D J, et al. Outcomes of reimplantation of the artificial bowel sphincter[J]. Diseases of the Colon and Rectum, 2016,59(2):122-126. |
[11] | PAKRAVAN F, HELMES C. Magnetic anal sphincter augmentation in patients with severe fecal incontinence[J]. Diseases of the Colon and Rectum, 2015,58(1):109-114. |
[12] | KE L, YAN G, YAN S, et al. Optimal design of litz wire coils with sandwich structure wirelessly powering an artificial anal sphincter system[J]. Artificial Organs, 2015,39(7):615-626. |
[13] | JIN W, YAN G, WU H, et al. Preliminary study of a novel puborectalis-like artificial anal sphincter[J]. Artificial Organs, 2017,41(9):845-851. |
[14] | ZHOU Z, YAN G, WANG Z, et al. A novel power supply system for puborectalis-like artificial anal sphincter[J]. Artificial Organs, 2019,43(6):109-123. |
[15] | RUTHMANN O, RICHTER S, SEIFERT G. The first teleautomatic low-voltage prosjournal with multiple therapeutic applications: A new version of the German artificial sphincter system[J]. Artificial Organs, 2010,34(8):635-641. |
[16] | 贾智伟, 颜国正, 石煜, 等. 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, 2012,46(7):1127-1131. |
[16] | JIA Zhiwei, YAN Guozheng, SHI Yu, et al. Optimization design of transmitting coils in a wireless power transmission system based on the human tissue safety[J]. Journal of Shanghai Jiao Tong University, 2012,46(7):1127-1131. |
/
〈 |
|
〉 |