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测量肠道收缩对固体食团的接触力。

Measurements of the contact force from myenteric contractions on a solid bolus.

作者信息

Terry Benjamin S, Schoen Jonathan A, Rentschler Mark E

机构信息

Department of Mechanical Engineering, University of Colorado at Boulder, 427 UCB, 1111 Engineering Drive, Boulder, CO, 80303-0427, USA.

University of Colorado Hospital, Aurora, CO, USA.

出版信息

J Robot Surg. 2013 Mar;7(1):53-7. doi: 10.1007/s11701-012-0346-3. Epub 2012 Mar 14.

Abstract

The development of robotic capsule endoscopes (RCEs) is one avenue presently investigated by multiple research groups to minimize invasiveness and enhance outcomes of enteroscopic procedures. Understanding the biomechanical response of the small bowel to RCEs is needed for design optimization of these devices. In previous work, the authors developed, characterized, and tested the migrating motor complex force sensor (MFS), a novel sensor for quantifying the contact forces per unit of axial length exerted by the myenteron on a solid bolus. This work is a continuation, in which the MFS is used to quantify the contractile strength in the small intestine proximal, middle, and distal regions of five live porcine models. The MFSs are surgically implanted in a generally anesthetized animal, and force data from 5 min of dwell time are analyzed. The mean myenteric contact force from all porcine models and locations within the bowel is 1.9 ± 1.0 N cm(-1). Examining the results based on the small bowel region shows a statistically significant strengthening trend in the contractile force from proximal to middle to distal with mean forces of 1.2 ± 0.5, 1.9 ± 0.9, and 2.3 ± 1.0 N cm(-1), respectively (mean ± one standard deviation). Quantification of the contact force against a solid bolus provides developers of RCEs with a valuable, experimentally derived parameter of the intraluminal environment.

摘要

机器人胶囊内窥镜(RCE)的研发是目前多个研究团队探索的一个方向,旨在将侵入性降至最低并提高肠镜检查的效果。为了对这些设备进行优化设计,需要了解小肠对RCE的生物力学反应。在之前的工作中,作者开发、表征并测试了移行性运动复合力传感器(MFS),这是一种新型传感器,用于量化肌层对固体食团每单位轴向长度施加的接触力。这项工作是之前研究的延续,其中使用MFS来量化五个活猪模型小肠近端、中间和远端区域的收缩强度。将MFS通过手术植入处于全身麻醉状态的动物体内,并分析5分钟停留时间内的力数据。所有猪模型以及肠道内各位置的平均肌层接触力为1.9±1.0 N cm-1。根据小肠区域检查结果显示,从近端到中间再到远端,收缩力存在统计学上显著的增强趋势,平均力分别为1.2±0.5、1.9±0.9和2.3±1.0 N cm-1(平均值±一个标准差)。对固体食团接触力的量化为RCE开发者提供了一个有价值的、通过实验得出的腔内环境参数。

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