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首页> 外文期刊>Studies in Applied Mathematics >On the cardiovascular effects of whole-body vibration - Part II. Lateral effects: Statistical analysis
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On the cardiovascular effects of whole-body vibration - Part II. Lateral effects: Statistical analysis

机译:全身振动对心血管的影响-第二部分。横向影响:统计分析

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Lateral vibrations of vessels generate relative lateral motions between red blood cells and plasma. These relative motions would cause additional transport of longitudinal momentum between different layers and therefore would increase the viscosity. Particularly for arterioles, which play the major role for the total peripheral resistance (TPR), the lateral vibration would destroy the cell-free plasma layer near the wall if the local lateral amplitude of vibration were larger than 40 mu m. Thus, if the local vibration gets stronger, one would expect TPR to increase if the vessels were not dilated. In order to test the possible dilations of vessels, a special design was made as follows. Three male subjects participated in this study. Each of them carried out a series of vibration tests on each of three vibrating devices. Accelerations at three locations on the body and various cardiovascular parameters were measured simultaneously. Each vibration test was divided into two or three parts with different body modes in a way that each change of body mode would increase the transmissibility and the local amplitudes. For the majority of changes of body mode, a decrease instead of an increase of TPR was observed. Statistical analysis (ANOVA Within Within) confirmed that the observed reduction of TPR during the changes of body mode was significant (p = 0.0235). This gives indirect but clear evidences for the dilation of vessels, particularly the dilation of arterioles. Since the dilation of vessels, particularly of arterioles, is an important ability of human body to prevent the blood pressure from getting too high during strong exercises, competitions and heavy physical work, the present study suggests a potential benefit, among others, of vibration training to improve this ability.
机译:血管的横向振动会在红细胞和血浆之间产生相对的横向运动。这些相对运动将在不同层之间引起纵向动量的附加传输,因此将增加粘度。特别是对于在总外周阻力(TPR)中起主要作用的小动脉,如果局部横向振动幅度大于40μm,则横向振动会破坏壁附近的无细胞血浆层。因此,如果局部振动变强,如果血管没有扩张,人们会期望TPR会增加。为了测试血管的可能扩张,进行了如下特殊设计。三名男性受试者参加了这项研究。他们每个人都对三个振动装置分别进行了一系列振动测试。同时测量了人体三个部位的加速度和各种心血管参数。每种振动测试均以不同的人体模式分为两部分或三部分,每种方式的人体模式变化都会增加透射率和局部振幅。对于大多数身体模式变化,TPR下降而不是增加。统计分析(ANOVA Inside Inside)证实,在体模变化期间观察到的TPR降低是显着的(p = 0.0235)。这为血管扩张,尤其是小动脉扩张提供了间接但明确的证据。由于血管的扩张,特别是小动脉的扩张,是人体在剧烈运动,比赛和繁重的体育锻炼过程中防止血压升高的重要能力,因此本研究表明,振动训练具有潜在的好处提高这种能力。

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