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基于光学相干断层扫描的喷气式压痕系统和组织超声触诊系统测量的前足足底软组织的生物力学特性。

Biomechanical properties of the forefoot plantar soft tissue as measured by an optical coherence tomography-based air-jet indentation system and tissue ultrasound palpation system.

作者信息

Chao Clare Y L, Zheng Yong-Ping, Huang Yan-Ping, Cheing Gladys L Y

机构信息

Physiotherapy Department, Queen Elizabeth Hospital, Hong Kong SAR, China.

出版信息

Clin Biomech (Bristol). 2010 Jul;25(6):594-600. doi: 10.1016/j.clinbiomech.2010.03.008. Epub 2010 Apr 13.

Abstract

BACKGROUND

The forefoot medial plantar area withstand high plantar pressure during locomotion, and is a common site that develops foot lesion problems among elderly people. The aims of the present study were to (1) determine the correlation between the biomechanical properties of forefoot medial plantar soft tissue measured by a newly developed optical coherence tomography-based air-jet indentation system and by tissue ultrasound palpation system, and (2) to compare the biomechanical properties of plantar soft tissues of medial forefoot between a young and old adult group.

METHODS

Thirty healthy subjects were classified as the young or older group. The biomechanical properties of plantar soft tissues measured at the forefoot by the air-jet indentation system and tissue ultrasound palpation system were performed, and the correlation of the findings obtained in the two systems were compared.

FINDINGS

A strong positive correlation was obtained from the findings in the two systems (r=0.88, P<0.001). The forefoot plantar soft tissue of the older group was significantly stiffer at the second metatarsal head and thinner at both metatarsal heads than that of the young group (all P<0.05). The stiffness coefficient at the second metatarsal head was 28% greater than that at the first metatarsal head in both study groups.

INTERPRETATION

Older subjects showed a loss of elasticity and reduced thickness in their forefoot plantar soft tissue, with the second metatarsal head displaying stiffer and thicker plantar tissue than the first metatarsal head. The air-jet indentation system is a useful instrument for characterizing the biomechanical properties of soft tissue.

摘要

背景

前足内侧足底区域在行走过程中承受较高的足底压力,是老年人足部病变问题的常见发生部位。本研究的目的是:(1)确定通过新开发的基于光学相干断层扫描的喷气式压痕系统和组织超声触诊系统测量的前足内侧足底软组织生物力学特性之间的相关性;(2)比较年轻和老年成人组前足内侧足底软组织的生物力学特性。

方法

30名健康受试者被分为年轻组或老年组。通过喷气式压痕系统和组织超声触诊系统测量前足足底软组织的生物力学特性,并比较两个系统所得结果的相关性。

结果

两个系统的结果显示出强正相关(r = 0.88,P < 0.001)。老年组前足足底软组织在第二跖骨头处明显更硬,在两个跖骨头处均比年轻组更薄(所有P < 0.05)。在两个研究组中,第二跖骨头处的硬度系数均比第一跖骨头处大28%。

解读

老年受试者前足足底软组织出现弹性丧失和厚度减小,第二跖骨头处的足底组织比第一跖骨头处更硬且更厚。喷气式压痕系统是表征软组织生物力学特性的有用工具。

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