Studying the impact of different body positioning, squatting, and unipodal flexion on perfusion in the lower limb – an exploratory approach complemented with optical spectroscopy (TiVi)

Sergio Nuno, M. Florindo, H. Silva, L. Monteiro Rodrigues
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引用次数: 2

Abstract

Body posture and movement seem to be responsible for multiple variations of microcirculation in the foot, although difficulties associated with measurement during movement have limited their characterization. This pilot study sought to explore a new non-invasive instrument based on polarized light spectroscopy – the TiVi system, under orthostatic and dynamic conditions. Five healthy participants (duly informed, 26.0 ± 6.5 years of age) of both genders were selected. The protocol involved sequential posture changes (orthostatic variation) and dynamic movements (squatting and unipodal flexion). Perfusion variations were evaluated in both feet by laser-Doppler flowmetry (LDF) and polarized spectroscopy (TiVi). Both systems revealed the same type of modification of these flow-related variables. The most pronounced changes were obtained with exercise, especially with squatting, which caused a marked increase in foot perfusion. Less dramatic but in the same direction, the increased perfusion with unipodal flexion was also observed in the contralateral limb. This study confirmed the interest in using the TiVi system in these domains, as well as the appropriateness of this experimental design to look deeper into the impact of lower limb movement on the functional dynamics of the foot.
研究不同体位、下蹲和单足屈曲对下肢灌注的影响——一种探索性方法与光学光谱(TiVi)相结合
身体姿势和运动似乎对足部微循环的多种变化负责,尽管运动过程中测量的困难限制了它们的表征。本初步研究旨在探索一种新的基于偏振光光谱的非侵入性仪器- TiVi系统,在直立和动态条件下。选取健康受试者5名,年龄为26.0±6.5岁,男女均可。该方案包括顺序姿势变化(直立变化)和动态运动(下蹲和单足屈曲)。采用激光多普勒血流法(LDF)和偏振光谱法(TiVi)评估双脚灌注变化。两种系统都揭示了这些与流体相关的变量的相同类型的修改。最明显的变化发生在运动中,尤其是深蹲运动,它会导致足部灌注显著增加。在对侧肢体中也观察到单足屈曲灌注增加,但幅度较小,但方向相同。该研究证实了在这些领域使用TiVi系统的兴趣,以及该实验设计的适当性,以深入研究下肢运动对足部功能动力学的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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