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新型实时 OEP 相位角反馈系统用于训练功能障碍性呼吸模式——一项急性干预研究。

Novel Real-Time OEP Phase Angle Feedback System for Dysfunctional Breathing Pattern Training-An Acute Intervention Study.

机构信息

School of Sport & Exercise Sciences, University of Kent, Canterbury CT2 7NB, UK.

School of Sport, Exercise and Health Sciences, Loughborough University, Loughborough LE11 3TU, UK.

出版信息

Sensors (Basel). 2021 May 26;21(11):3714. doi: 10.3390/s21113714.

Abstract

Dysfunctional breathing patterns (DBP) can have an impact on an individual's quality of life and/or exercise performance. Breathing retraining is considered to be the first line of treatment to correct breathing pattern, for example, reducing ribcage versus abdominal movement asynchrony. Optoelectronic plethysmography (OEP) is a non-invasive 3D motion capture technique that measures the movement of the chest wall. The purpose of this study was to investigate if the use of a newly developed real-time OEP phase angle and volume feedback system, as an acute breathing retraining intervention, could result in a greater reduction of phase angle values (i.e., an improvement in movement synchrony) when compared to real-time OEP volume feedback alone. Eighteen individuals with a DBP performed an incremental cycle test with OEP measuring chest wall movement. Participants were randomly assigned to either the control group, which included the volume-based OEP feedback or to the experimental group, which included both the volume-based and phase angle OEP feedback. Participants then repeated the same cycle test using the real-time OEP feedback. The phase angle between the ribcage versus abdomen (RcAbPhase), between the pulmonary ribcage and the combined abdominal ribcage and abdomen (RCpAbPhase), and between the abdomen and the shoulders (AbSPhase) were calculated during both cycle tests. Significant increases in RcAbPhase (pre: -2.89°, post: -1.39°, < 0.01), RCpAbPhase (pre: -2.00°, post: -0.50°, < 0.01), and AbSPhase (pre: -2.60°, post: -0.72°, < 0.01) were found post-intervention in the experimental group. This indicates that the experimental group demonstrated improved synchrony in their breathing pattern and therefore, reverting towards a healthy breathing pattern. This study shows for the first time that dysfunctional breathing patterns can be acutely improved with real-time OEP phase angle feedback and provides interesting insight into the feasibility of using this novel feedback system for breathing pattern retraining in individuals with DBP.

摘要

呼吸模式障碍(DBP)会影响个人的生活质量和/或运动表现。呼吸训练被认为是纠正呼吸模式的第一线治疗方法,例如,减少肋骨相对于腹部的运动不同步。光体积描记术(OEP)是一种非侵入性的 3D 运动捕捉技术,用于测量胸壁运动。本研究的目的是调查一种新开发的实时 OEP 相位角和体积反馈系统,作为急性呼吸训练干预措施,与仅使用实时 OEP 体积反馈相比,是否可以导致相位角值更大的降低(即运动同步性的改善)。18 名呼吸模式障碍患者进行了一项递增式的自行车测试,同时使用 OEP 测量胸壁运动。参与者被随机分配到对照组,该组包括基于体积的 OEP 反馈,或实验组,该组包括基于体积和相位角的 OEP 反馈。然后,参与者使用实时 OEP 反馈重复相同的自行车测试。在两次自行车测试中,计算了肋骨与腹部之间的相位角(RcAbPhase)、肺肋骨与腹部肋骨和腹部之间的相位角(RCpAbPhase)以及腹部与肩部之间的相位角(AbSPhase)。实验组干预后,RcAbPhase(预:-2.89°,后:-1.39°,<0.01)、RCpAbPhase(预:-2.00°,后:-0.50°,<0.01)和 AbSPhase(预:-2.60°,后:-0.72°,<0.01)均显著增加。这表明实验组呼吸模式的同步性得到了改善,因此恢复到了健康的呼吸模式。本研究首次表明,呼吸模式障碍可以通过实时 OEP 相位角反馈急性改善,并为使用这种新型反馈系统对呼吸模式障碍患者进行呼吸模式训练提供了有趣的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/513d/8199249/0ab763bd29d0/sensors-21-03714-g001.jpg

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