基于力学的人体括约肌功能在功能性腔内成像探针测压中的作用。

IF 1.7 4区 医学 Q4 BIOPHYSICS
Guy Elisha, Sourav Halder, Dustin A Carlson, Wenjun Kou, Peter J Kahrilas, John E Pandolfino, Neelesh A Patankar
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引用次数: 0

摘要

功能性管腔成像探头(FLIP)用于测量括约肌的横截面积(CSA)和压力。它包括一个导管,周围是一个充满液体的圆柱形袋子,两端封闭。通过FLIP测试,可以绘制收缩周期中括约肌的压力- csa迟滞,提供有关其功能的信息,并可以提供诊断见解。然而,有限的工作已经做了解释这些压力- csa循环的机制。这项工作提出了不同括约肌压力- csa循环的综合图片。临床资料显示,尽管括约肌具有相似的目的(通过打开和关闭来控制液体和固体的流动),但出现了两种不同的压力- csa环路模式:负斜率环路(NSL)和正斜率环路(PSL)。我们表明,环路类型是两种机械模式相互作用(或缺乏相互作用)的结果:(i)神经源性介导的括约肌松弛或外力施加的牵拉,以及(ii)括约肌近端肌肉收缩导致机械扩张。我们得出结论,仅通过机制(i)显示NSL的括约肌,而由于(i)和(ii)同时打开的括约肌显示PSL。这项工作提供了对人类括约肌的基本机械理解。这可用于识别不同括约肌的正常和异常表型,并有助于根据工作计算创建生理标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Mechanics-Based Perspective on the Function of Human Sphincters During Functional Luminal Imaging Probe Manometry.

Functional luminal imaging probe (FLIP) is used to measure cross-sectional area (CSA) and pressure at sphincters. It consists of a catheter surrounded by a fluid filled cylindrical bag, closed on both ends. Plotting the pressure-CSA hysteresis of a sphincter during a contraction cycle, which is available through FLIP testing, offers information on its functionality, and can provide diagnostic insights. However, limited work has been done to explain the mechanics of these pressure-CSA loops. This work presents a consolidated picture of pressure-CSA loops of different sphincters. Clinical data reveal that although sphincters have a similar purpose (controlling the flow of liquids and solids by opening and closing), two different pressure-CSA loop patterns emerge: negative slope loop (NSL) and positive slope loop (PSL). We show that the loop type is the result of an interplay between (or lack thereof) two mechanical modes: (i) neurogenic mediated relaxation of the sphincter muscle or pulling applied by external forces, and (ii) muscle contraction proximal to the sphincter which causes mechanical distention. We conclude that sphincters which only function through mechanism (i) exhibition NSL whereas sphincters which open as a result of both (i) and (ii) display a PSL. This work provides a fundamental mechanical understanding of human sphincters. This can be used to identify normal and abnormal phenotypes for the different sphincters and help in creating physiomarkers based on work calculation.

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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
169
审稿时长
4-8 weeks
期刊介绍: Artificial Organs and Prostheses; Bioinstrumentation and Measurements; Bioheat Transfer; Biomaterials; Biomechanics; Bioprocess Engineering; Cellular Mechanics; Design and Control of Biological Systems; Physiological Systems.
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