• Optics and Precision Engineering
  • Vol. 29, Issue 11, 2640 (2021)
Chuan-ye CHAI1,2, Guo-zheng YAN1,2,*, Ding HAN1,2, Kai ZHAO1,2, and Fang-fang HUA1,2
Author Affiliations
  • 1School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai200240, China
  • 2Institute of Medical Robotics, Shanghai Jiao Tong University, Shanghai0040, China
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    DOI: 10.37188/OPE.20212911.2640 Cite this Article
    Chuan-ye CHAI, Guo-zheng YAN, Ding HAN, Kai ZHAO, Fang-fang HUA. Design and optimization of an artificial anal sphincter clamping mechanism[J]. Optics and Precision Engineering, 2021, 29(11): 2640 Copy Citation Text show less
    References

    [1] Z R ZHOU, G Z YAN, Z W WANG et al. Inhibition of hyperplasia during the implantation of the puborectalis-like artificial anal sphincter. The International Journal of Artificial Organs, 43, 482-493(2020).

    [2] J CHRISTIANSEN, M LORENTZEN. Implantation of artificial sphincter for anal incontinence. The Lancet, 330, 244-245(1987).

    [3] E FATTORINI, T BRUSA, C GINGERT et al. Artificial muscle devices: innovations and prospects for fecal incontinence treatment. Annals of Biomedical Engineering, 44, 1355-1369(2016).

    [4] 4舒晶, 颜德田, 颜国正. 生物反馈式括约肌的研制[J]. 光学 精密工程, 2004, 12(1): 43-46. doi: 10.3321/j.issn:1004-924X.2004.01.009SHUJ, YAND T, YANG ZH. Development of constrictor with bio-feedback function[J]. Opt. Precision Eng., 2004, 12(1): 43-46. (in Chinese). doi: 10.3321/j.issn:1004-924X.2004.01.009

    [5] U BAUMGARTNER. Technique of anal band implantation for fecal incontinence. Coloproctology, 42, 392-399(2020).

    [6] R H OSGOUEI, L MARECHAL, C KONTOVOUNISIOS et al. Soft pneumatic actuator for rendering anal sphincter tone. IEEE Transactions on Haptics, 13, 183-190(2020).

    [7] F PAKRAVAN, C HELMES, I ALLDINGER. Magnetic sphincter augmentation in patients with fecal incontinence after failure of an implanted artificial bowel sphincter. coloproctology, 40, 127-129(2018).

    [8] DER WILT A AVAN, S O BREUKINK, R STURKENBOOM et al. The artificial bowel sphincter in the treatment of fecal incontinence, long-term complications. Diseases of the Colon and Rectum, 63, 1134-1141(2020).

    [9] L MARZIALE, G LUCARINI, T MAZZOCCHI et al. Comparative analysis of occlusion methods for artificial sphincters. Artificial Organs, 44, 995-1005(2020).

    [10] P ZAN, Q DING, B H YANG et al. Design of an actuator for artificial anal sphincter based on finite element analysis, 98-101(2020).

    [11] Z R ZHOU, G Z YAN, Z W WANG et al. Design and evaluation of puborectalis-like artificial anal sphincter that replicates rectal perception. Artificial Organs, 44, E300-E312(2020).

    [12] M H WANG, H L YU. The study for constant force characteristic of C-shaped superelastic SMA. International Journal of Applied Electromagnetics and Mechanics, 64, 1253-1259(2020).

    [13] S AMAE, M WADA, Y LUO et al. Development of an implantable artificial anal sphincter by the use of the shape memory alloy. ASAIO Journal (American Society for Artificial Internal Organs, 47, 346-350(2001).

    [14] L KE, G Z YAN, H LIU et al. A novel artificial anal sphincter system in an in vitro and in vivo experiment. The International Journal of Artificial Organs, 37, 253-263(2014).

    [15] D H LIAO, E B MARK, J B ZHAO et al. Modeling and measurements of the mechanophysiological function of the gastrointestinal organs. Physiological Measurement, 41, 114004(2020).

    [16] W E STOKES, D G JAYNE, A ALAZMANI et al. A biomechanical model of the human defecatory system to investigate mechanisms of continence. Proceedings of the Institution of Mechanical Engineers Part H, 233, 114-126(2019).

    [17] P J YANG, M LAMARCA, C KAMINSKI et al. Hydrodynamics of defecation. Soft Matter, 13, 4960-4970(2017).

    [18] 18GregersenHans, 樊艳华, 王虹, 窦艳玲主. doi: 10.15385/yb.miracle.2006译.胃肠生物力学: 胃肠动力新视角[M]. 北京: 人民卫生出版社, 2006. doi: 10.15385/yb.miracle.2006GREGERSENH, FANY H, WANGH, DouY L main translator. Biomechanics of the gastrointestinal tract Biomechanics of the gastrointestinal tract[M]. Beijing: People's Medical Publishing House, 2006. (in Chinese). doi: 10.15385/yb.miracle.2006

    [19] 19艾辽元, 葛书晨, 许晶晶, 等. 大肠组织端端吻合的有限元建模与分析[J]. 医用生物力学, 2017, 32(4): 342-347. doi: 10.16156/j.1004-7220.2017.04.008AIL Y, GESH CH, XUJ J, et al. Finite element modeling and analysis on end-to-end anastomosis of the large intestine[J]. Journal of Medical Biomechanics, 2017, 32(4): 342-347. (in Chinese). doi: 10.16156/j.1004-7220.2017.04.008

    [20] 20汪炜, 颜国正, 王志武, 等. 肠道机器人扩张机构设计与优化[J]. 光学 精密工程, 2017, 25(7): 1815-1824. doi: 10.3788/OPE.20172507.1815WANGW, YANG ZH, WANGZH W, et al. Design and optimization of expanding mechanism of intestinal robot[J]. Opt. Precision Eng., 2017, 25(7): 1815-1824. (in Chinese). doi: 10.3788/OPE.20172507.1815

    [21] D HAN, G Z YAN, Z W WANG et al. The modelling, analysis, and experimental validation of a novel micro-robot for diagnosis of intestinal diseases. Micromachines, 11, 896(2020).

    Chuan-ye CHAI, Guo-zheng YAN, Ding HAN, Kai ZHAO, Fang-fang HUA. Design and optimization of an artificial anal sphincter clamping mechanism[J]. Optics and Precision Engineering, 2021, 29(11): 2640
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