[1]HONG K D, SILVA G, WEXNER S D. What is the best option for failed sphincter repair [J]. Colorectal Disease, 2014, 16(4): 298-303.
[2]LAMBLIN G, BOUVIER P, DAMON H, et al. Long-term outcome after overlapping anterior anal sphincter repair for fecal incontinence [J]. International Journal of Colorectal Disease, 2014, 29(11): 1377-1383.
[3]FORTE M L, ANDRADE K E, LOWRY A C, et al. Systematic review of surgical treatments for fecal incontinence [J]. Diseases of the Colon & Rectum, 2016, 59(5): 443-469.
[4]LIN Y H, YANG H Y, HUNG S L, et al. Effects of pelvic floor muscle exercise on fecal incontinence in rectal cancer patients after stoma closure [J]. European Journal of Cancer Care, 2016, 25(3): 449-457.
[5]NORDENSTAM J, BOLLER A M, MELLGREN A. Sacral nerve stimulation in the treatment of bowel disorders [J]. Progress in Neurological Surgery, 2015, 29: 200-212.
[6]BOCHENSKA K, BOLLER A M. Fecal incontinence: Epidemiology, impact, and treatment [J]. Clinics in Colon and Rectal Surgery, 2016, 29(3): 264-270.
[7]AMAE S, WADA M, LUO Y, et al. Development of an implantable artificial anal sphincter by the use of the shape memory alloy [J]. Asaio Journal, 2000, 47(4): 346-350.
[8]LAAKSO I, SHIMAMOTO T, HIRATA A, et al. Applicability of quasistatic approximation for exposure assessment of wireless power transfer [C]//2014 International Symposium on Electromagnetic Compatibility. Tokyo: IEEE, 2014: 430-433.
[9]CHEN X L, UMENEI A E, BAARMAN D W, et al. Human exposure to close-range resonant wireless power transfer systems as a function of design parameters [J]. IEEE Transactions on Electromagnetic Compatibility, 2014, 56(5): 1027-1034.
[10]FRIEDMANN J, GROEDL F, KENNEL R. A novel universal control scheme for transcutaneous energy transfer (TET) applications [J]. IEEE Journal of Emerging and Selected Topics in Power Electronics, 2015, 3(1): 296-305.
[11]KNECHT O, BOSSHARD R, KOLAR J W. High-efficiency transcutaneous energy transfer for implantable mechanical heart support systems [J]. IEEE Transactions on Power Electronics, 2015, 30(11): 6221-6236.
[12]FU Y, HU L, RUAN X, et al. A transcutaneous energy transmission system for artificial heart adapting to changing impedance [J]. Artificial Organs, 2015, 39(4): 378-387.
[13]KNECHT O, KOLAR J W. Performance evaluation of series-compensated IPT systems for transcutaneous energy transfer [J]. IEEE Transactions on Power Electronics, 2019, 34(1): 438-451.
[14]JIN W T, YAN G Z, WU H, et al. Preliminary study of a novel puborectalis-like artificial anal sphincter[J]. Artificial Organs, 2017, 41(9): 845-851.
[15]克磊, 颜国正, 颜胜,等.植入式医疗设备经皮能量充电系统设计与实验[J].仪器仪表学报, 2013, 34(12): 2846-2853.
KE Lei, YAN Guozheng, YAN Sheng, et al. Design and experiment on transcutaneous energy charging system in implantable medical device [J]. Chinese Journal of Scientific Instrument, 2013, 34(12): 2846-2853. |