[运动耐量对心电图的影响,以年轻一代为重点]。

M Kuriyama
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引用次数: 0

摘要

研究了年轻健康成人运动耐量的影响。所得结果如下:研究对象是100名年龄在20到25岁之间的不吸烟的志愿者,他们没有呼吸和循环系统的记忆。运动量为Master两步法中规定的上下试验的3倍(试验1)或4倍(试验2)。以耐量前心电图为对照,测定耐量后即刻和5分钟的心率(HR)、ST、QT时间、QT比率和QX/QT的变化。1. 1)心率(HR)(耐受前HR: 100%)试验1几乎没有变化。但试验2显示,耐受性后立即和5分钟的HR分别增加了201.8%和150.1%。2) ST变化试验2显示,公差后即刻和公差后5分钟ST变化分别为0.4mm和0.1mm。3) QT时间和QT比率试验2显示,耐受后即刻和耐受后5分钟QT时间分别为0.29秒和0.34秒。随着运动耐量的增加,比值有减小的趋势,试验1的比值分别为0.92和0.98,试验2的比值分别为0.77和0.93。4) QX/QT试验1显示,耐受后即刻QX/QT为0.48,耐受后5分钟QX/QT为0.49。试验2显示耐量后即刻和耐量后5分钟的QX/QT分别为0.44和0.47。2. HR与各项测定结果的相关性与ST变化呈极显著相关,在试验2中r = -0.410 (p < 0.01),即耐受后立即(p < 0.01)。HR与QT比值显著相关,即试验1中对照、耐受后即刻和耐受后5 min分别r = -0.629、r = -0.653和r = -0.553,试验2中对照、耐受后即刻和耐受后5 min分别r = -0.712、r = -0.708和r = -0.785 (p < 0.01)。3.hr变化率与st变化率的相关性。在r = 0.672 (p < 0.01)时得到ST = -0.379 + 0.0174x (HR)的初级公式,表明ST变化率随着HR的增加而降低。(摘要删节为400字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effects of exercise tolerance on electrocardiogram (ECG) with emphasis laid on younger generation].

Effects of Exercise Tolerance on young healthy adults were studied. The results obtained were as follows. The subjects selected were non-smoking 100 volunteers aged 20 to 25 years old, without anamnesis in respiratory and circulatory systems. Exercise was conducted in an amount 3 times (test 1) or 4 times (test 2) of that in a going up and down test stipulated in the Master two step method. The results were subjected to determine changes in heart rate (HR) and ST, QT time, QT ratio and QX/QT immediately after and 5 minutes after tolerance, using ECG taken prior to the tolerance as a control. 1. Changes in each determination 1) Heart rate (HR) (HR before tolerance: 100%) Hardly any change was observed in test 1. But test 2 showed a marked increase in HR, that is 201.8% and 150.1% immediately after and 5 minutes after tolerance respectively. 2) ST change Test 2 showed ST changes of 0.4mm and 0.1mm immediately after and 5 minutes after tolerance respectively. 3) QT time and QT ratio Test 2 showed QT time of 0.29 sec. and 0.34 sec. immediately after and 5 minutes after tolerance respectively. The ratio tended to decrease as exercise tolerance increases, that is 0.92 and 0.98 in test 1 and 0.77 and 0.93 in test 2 immediately after and 5 minutes after tolerance respectively. 4) QX/QT Test 1 showed QX/QT of 0.48 and 0.49 immediately after and 5 minutes after tolerance respectively. Test 2 showed QX/QT of 0.44 and 0.47 immediately after and 5 minutes after tolerance respectively in ST change. 2. Correlation between HR and each determination HR was significantly correlated with ST changing, that is in test 2 r = -0.410 (p less than 0.01) immediately after tolerance (p less than 0.01). HR was significantly correlated with QT ratio, that is in test 1, r = -0.629, r = -0.653 and r = -0.553 control, immediately after and 5 minutes after tolerance respectively, and in test 2 r = -0.712, r = -0.708 and r = -0.785 control, immediately after and 5 minutes after tolerance respectively (p less than 0.01). 3. Correlation between HR-changing and ST-changing rate. Primary formula, that is, ST = -0.379 + 0.0174x (HR) was obtained in r = 0.672 (p less than 0.01), suggesting that ST-changing rate decreases as HR increases.(ABSTRACT TRUNCATED AT 400 WORDS)

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