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A physical simulation to investigate the effect of anorectal angle on continence

机译:物理模拟研究肛肠角度对大便的影响

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This paper investigates the effect of the anorectal angle on continence using a physical model of the anatomical system. A method to fabricate, measure and control a physical model for the simulation of human faecal continence is presented. A model rectum and associated soft tissues, based on geometry from an anonymised CT dataset, was fabricated from silicone and showed behavioural realism to ex vivo tissue. Simulated stool matter with similar rheological properties to human faeces was developed. Instrumentation and control hardware are used to regulate injection of simulated stool into the system, define the anorectal angle and monitor stool flow rate, intra-rectal pressure and puborectalis force. A study was then conducted in which simulated stool was introduced to the system for anorectal angles between 80° and 100°. Results obtained from the study give insight into the effect of the anorectal angle on continence. Stool leakage was reduced as the angle became more acute. Conversely, intra-rectal pressure increased. These data demonstrate that the anorectal angle is fundamental in maintaining continence. This work is valuable in helping improve our understanding of the physical behaviour of the faecal system. It has particular relevance facilitating improved technologies to treat or manage severe faecal incontinence.
机译:本文使用解剖学系统的物理模型研究肛门直肠角度对节制的影响。提出了一种制造,测量和控制用于模拟人类粪便失禁的物理模型的方法。基于匿名CT数据集的几何形状的模型直肠和相关的软组织是由硅树脂制成的,并且对离体组织表现出行为真实感。开发了具有与人类粪便类似的流变特性的模拟粪便。仪器和控制硬件用于调节模拟粪便向系统中的注射,定义肛门直肠角度并监控粪便流量,直肠内压力和耻骨直肠肌力。然后进行了一项研究,其中将模拟大便引入系统的肛门直肠角度在80°和100°之间。从研究中获得的结果使人们了解了肛门直肠角度对尿失禁的影响。随着角度变得更锐利,粪便泄漏减少了。相反,直肠内压力升高。这些数据表明,肛门直肠角度是维持尿失禁的基础。这项工作对帮助增进我们对粪便系统物理行为的理解非常有价值。它具有特殊意义,可促进改进技术来治疗或管理严重的大便失禁。

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