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下肢不同评估部位的界面压力与气动袖带充气压力之间的关系,以辅助软外骨骼设计。

Relationship Between Interface Pressures and Pneumatic Cuff Inflation Pressure at Different Assessment Sites of the Lower Limb to Aid Soft Exoskeleton Design.

机构信息

8808 University of Limerick, Ireland.

出版信息

Hum Factors. 2021 Sep;63(6):1061-1075. doi: 10.1177/0018720820908758. Epub 2020 Mar 13.

DOI:10.1177/0018720820908758
PMID:32167798
Abstract

OBJECTIVE

The aim was to develop a means of predicting interface pressure from cuff inflation pressure during circumferential compression at the lower limb, in order to inform the design of soft exoskeletons.

BACKGROUND

Excessive mechanical loading of tissues can cause discomfort and soft tissue injury. Most ergonomic studies on exoskeletons are of interface pressure, but soft exoskeletons apply circumferential pressures similar to tourniquet cuffs by way of cuff inflation pressure. This study details the relationship between interface and cuff inflation pressures for pneumatic tourniquet cuffs.

METHOD

Pneumatic cuffs of different widths were inflated to target pressures on (A) a rigid cylinder, (B) the dominant thigh and calf, and (C) knee of healthy participants standing still. Interface pressures were measured under the cuffs using a pressure-sensing mat. Average interface pressures were then compared to cuff inflation pressures. The influence of cuff width, cuff inflation pressure, and participants' anthropometric data on pressure transmission was assessed.

RESULTS

A strong linear relationship between cuff inflation pressures and interface pressures was observed. Interface pressures were generally higher than cuff inflation pressures. The efficiency of pressure transmission to the lower limb depended on assessment site, adipose tissue thickness, cuff size, cuff inflation pressure, and possibly limb circumference. Regression equations were developed to predict interface pressures at the thigh, calf, and knee.

CONCLUSION

Interface pressures under pneumatic cuffs are influenced by the cuff size, cuff inflation pressure, and tissue compressibility. Predicted interface pressure from cuff inflation pressure and vice versa can be used to aid the design of soft exoskeletons.

摘要

目的

旨在开发一种方法,以便根据下肢环状压缩时袖带充气压力预测界面压力,从而为软外骨骼的设计提供信息。

背景

组织的过度机械加载会引起不适和软组织损伤。大多数关于外骨骼的人机工程学研究都是针对界面压力的,但是软外骨骼通过袖带充气压力施加类似于止血带袖带的周向压力。本研究详细介绍了气动止血带袖带的界面压力和袖带充气压力之间的关系。

方法

将不同宽度的气动袖带充气至刚性圆柱体(A)、健康参与者站立时的主要大腿和小腿(B)以及膝盖(C)上的目标压力。使用压力感应垫在袖带下测量界面压力。然后将平均界面压力与袖带充气压力进行比较。评估袖带宽度、袖带充气压力和参与者人体测量数据对压力传递的影响。

结果

观察到袖带充气压力与界面压力之间存在很强的线性关系。界面压力通常高于袖带充气压力。向下肢传递压力的效率取决于评估部位、脂肪组织厚度、袖带尺寸、袖带充气压力,可能还有肢体周长。开发了预测大腿、小腿和膝盖处界面压力的回归方程。

结论

气动袖带下的界面压力受袖带尺寸、袖带充气压力和组织可压缩性的影响。从袖带充气压力预测界面压力和反之亦然,可以用于辅助软外骨骼的设计。

相似文献

1
Relationship Between Interface Pressures and Pneumatic Cuff Inflation Pressure at Different Assessment Sites of the Lower Limb to Aid Soft Exoskeleton Design.下肢不同评估部位的界面压力与气动袖带充气压力之间的关系,以辅助软外骨骼设计。
Hum Factors. 2021 Sep;63(6):1061-1075. doi: 10.1177/0018720820908758. Epub 2020 Mar 13.
2
Discomfort/Pain and Tissue Oxygenation at the Lower Limb During Circumferential Compression: Application to Soft Exoskeleton Design.下肢周向加压时的不适/疼痛与组织氧合:在软外骨骼设计中的应用。
Hum Factors. 2020 May;62(3):475-488. doi: 10.1177/0018720819892098. Epub 2020 Jan 13.
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Circumferential tissue compression at the lower limb during walking, and its effect on discomfort, pain and tissue oxygenation: Application to soft exoskeleton design.行走时下肢体周向组织受压及其对不适感、疼痛和组织氧合的影响:在软性外骨骼设计中的应用。
Appl Ergon. 2020 Jul;86:103093. doi: 10.1016/j.apergo.2020.103093. Epub 2020 Mar 28.
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Wide tourniquet cuffs more effective at lower inflation pressures.较宽的止血带袖带在较低的充气压力下更有效。
Acta Orthop Scand. 1988 Aug;59(4):447-51. doi: 10.3109/17453678809149401.
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Occlusion of arterial flow in the extremities at subsystolic pressures through the use of wide tourniquet cuffs.通过使用宽止血带袖带在收缩压下阻断四肢的动脉血流。
Clin Orthop Relat Res. 1993 Jan(286):257-61.
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The use of lower tourniquet inflation pressures in extremity surgery facilitated by curved and wide tourniquets and an integrated cuff inflation system.在四肢手术中,使用弯曲且宽大的止血带以及集成袖带充气系统可降低止血带充气压力。
Clin Orthop Relat Res. 1993 Feb(287):237-44.
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The effect of simulated circumferential soft exoskeleton compression at the knee on discomfort and pain.模拟环形软外骨骼对膝关节的压迫对不适和疼痛的影响。
Ergonomics. 2020 May;63(5):618-628. doi: 10.1080/00140139.2020.1743373. Epub 2020 Mar 30.
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Wide tourniquets eliminate blood flow at low inflation pressures.宽止血带在低充气压力下即可阻止血流。
J Hand Surg Am. 1987 Nov;12(6):1006-11. doi: 10.1016/s0363-5023(87)80098-9.
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Tourniquet-induced neuromuscular injury. A recent review of rabbit and clinical experiments.止血带引起的神经肌肉损伤。近期对兔子及临床实验的综述。
Acta Orthop Scand Suppl. 1991;245:1-33.
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An investigation of the hammocking effect associated with interface pressure measurements using pneumatic tourniquet cuffs.一项关于使用气动止血带袖带进行界面压力测量时的吊床效应的调查。
Med Eng Phys. 2001 Sep;23(7):511-7. doi: 10.1016/s1350-4533(01)00077-7.

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