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通过热成像进行呼吸训练特征分析:一项案例研究。

Breathing training characterization by thermal imaging: a case study.

作者信息

Ludwig Nicola, Gargano Marco, Formenti Damiano, Bruno Davide, Ongaro Lucio, Alberti Giampietro

机构信息

Department of Physics, Università degli Studi di Milano, 20133 Milano, Italy.

出版信息

Acta Bioeng Biomech. 2012;14(3):41-7.

Abstract

Specific respiratory muscle training improves athletes' performance particularly at high intensities. This work aims to study the usability of infrared thermography to evaluate two types of breathing, thoracic and diaphragmatic, on the cartographies of the cutaneous temperature of the trunk. IR thermography is a non-invasive technique that visually represents the whole process during and after training. A well trained subject in both respirations performed the exercise with SpiroTiger® for 5 minutes, followed by 5 minutes of recovery. Ten Regions of Interest on the subject skin were selected following anatomical and functional correspondence with the muscles involved in breathing. In order to check functional behaviour of respiratory muscles, we calculated the correlation among thermal data of all the ROI. Global temperature of body trunk showed a general decrease of few degrees during both kinds of the training but thermal imaging documented also thermal spots of increasing temperature in pectoral areas due to the superficial vasocirculation in thoracic breathing. The results indicate that thermal imaging can be used for quantitative evaluation of the cutaneous temperature in various trunk zones characterized by thoracic and diaphragmatic breathing. This work can be considered a preliminary study to the development of future statistical study.

摘要

特定的呼吸肌训练可提高运动员的表现,尤其是在高强度运动时。这项研究旨在探讨红外热成像技术在评估两种呼吸方式(胸廓呼吸和膈肌呼吸)对躯干皮肤温度分布图影响方面的实用性。红外热成像技术是一种非侵入性技术,可直观呈现训练期间及训练后的整个过程。一名在两种呼吸方式上均训练有素的受试者使用SpiroTiger®进行5分钟的训练,随后进行5分钟的恢复。根据与呼吸相关肌肉的解剖学和功能对应关系,在受试者皮肤上选取了10个感兴趣区域(ROI)。为了检查呼吸肌的功能行为,我们计算了所有ROI热数据之间的相关性。在两种训练过程中,躯干的整体温度均出现了几度的普遍下降,但热成像也记录到,由于胸廓呼吸时浅表血管循环,胸部区域出现了温度升高的热点。结果表明,热成像可用于定量评估以胸廓呼吸和膈肌呼吸为特征的躯干不同区域的皮肤温度。这项研究可被视为未来统计学研究发展的初步研究。

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