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使用B型超声评估皮下软组织变形以预防压疮的可行性。

Feasibility of sub-dermal soft tissue deformation assessment using B-mode ultrasound for pressure ulcer prevention.

作者信息

Doridam J, Macron A, Vergari C, Verney A, Rohan P-Y, Pillet H

机构信息

Arts et Métiers ParisTech, LBM/Institut de Biomécanique Humaine Georges Charpak, 151 bd de l'Hôpital, 75013, Paris, France; Department of Anatomy, University Paris XIII, UFR Santé Médecine Biologie Humaine, Bobigny, France.

Arts et Métiers ParisTech, LBM/Institut de Biomécanique Humaine Georges Charpak, 151 bd de l'Hôpital, 75013, Paris, France; CEA, LIST, Interactive Robotics Laboratory, F-91191, Gif-sur-Yvette, France.

出版信息

J Tissue Viability. 2018 Nov;27(4):238-243. doi: 10.1016/j.jtv.2018.08.002. Epub 2018 Aug 11.

Abstract

Pressure Ulcer (PU) prevention remains a main public health issue. The physio-pathology of this injury is not fully understood, and a satisfactory therapy is currently not available. Recently, several works suggested that mechanical strains are responsible of deformation-induced damage involved in the initiation of Deep Tissue Injury (DTI). A better assessment of the internal behavior could allow to enhance the modeling of the transmission of loads into the different structures composing the buttock. A few studies focused on the experimental in vivo buttock deformation quantification using Magnetic Resonance Imaging (MRI), but its use has important drawbacks. In clinical practice, ultrasound imaging is an accessible, low cost, and real-time technic to study the soft tissue. The objective of the present work was to show the feasibility of using B-mode ultrasound imaging for the quantification of localised soft-tissue strains of buttock tissues during sitting. An original protocol was designed, and the intra-operator reliability of the method was assessed. Digital Image Correlation was used to compute the displacement field of the soft tissue of the buttock during a full realistic loading while sitting. Reference data of the strains in the frontal and sagittal planes under the ischium were reported for a population of 7 healthy subjects. The average of shear strains over the region of interest in the fat layer reached levels up to 117% higher than the damage thresholds previously quantified for the muscular tissue in rats. In addition, the observation of the muscles displacements seems to confirm previous results which already reported the absence of muscular tissue under the ischium in the seated position, questioning the assumption commonly made in Finite Element modeling that deep tissue injury initiates in the muscle underlying the bone.

摘要

压疮(PU)预防仍然是一个主要的公共卫生问题。这种损伤的生理病理学尚未完全了解,目前也没有令人满意的治疗方法。最近,一些研究表明,机械应变是导致深部组织损伤(DTI)起始阶段变形诱导损伤的原因。更好地评估内部行为可以增强对载荷传递到构成臀部的不同结构的建模。一些研究集中于使用磁共振成像(MRI)对体内臀部变形进行实验量化,但其应用存在重要缺陷。在临床实践中,超声成像技术是一种可用于研究软组织的、低成本且实时的技术。本研究的目的是展示使用B型超声成像量化坐姿时臀部组织局部软组织应变的可行性。设计了一个原始方案,并评估了该方法在操作人员内部的可靠性。使用数字图像相关技术计算了7名健康受试者在完全真实的坐姿加载过程中臀部软组织的位移场。报告了坐骨下方额面和矢状面应变的参考数据。脂肪层感兴趣区域的平均剪切应变水平比先前对大鼠肌肉组织量化的损伤阈值高出117%。此外,对肌肉位移的观察似乎证实了先前的结果,即先前已有研究报道坐姿时坐骨下方不存在肌肉组织,这对有限元建模中普遍认为深部组织损伤起始于骨下方肌肉的假设提出了质疑。

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