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动态运动对清醒犬左心房功能的影响。

Effect of dynamic exercise on left atrial function in conscious dogs.

作者信息

Nishikawa Y, Roberts J P, Tan P, Klopfenstein C E, Klopfenstein H S

机构信息

Department of Internal Medicine, Bowman Gray School of Medicine, Winston-Salem, NC 27157-1045, USA.

出版信息

J Physiol. 1994 Dec 1;481 ( Pt 2)(Pt 2):457-68. doi: 10.1113/jphysiol.1994.sp020454.

Abstract
  1. Dynamic changes in left atrial (LA) function during treadmill exercise were studied in ten conscious dogs instrumented to measure left ventricular (LV) pressure and diameter, LA pressure and diameter, and pulmonary venous blood flow (PVF, transit time flowmeter). 2. Systolic PVF volume (reservoir volume; a measure of LA reservoir function) increased from 38 +/- 4% of total PVF volume at baseline to 52 +/- 8% of total PVF volume during exercise, and diastolic PVF volume (conduit volume; a measure of LA conduit function) decreased from 62 +/- 5% at baseline to 48 +/- 8% during exercise (P < 0.005). 3. The increases in reservoir volume and the decrease in conduit volume were due not only to a greater decrease in diastolic interval than systolic interval but were also caused by a significantly greater increase (P < 0.05) in the mean systolic filling rate (93%) than in the mean diastolic filling rate (51%). 4. During exercise the pattern of LV filling derived from changes in LV diameter showed that a greater percentage of LV filling occurred during the second half of diastole at the time of atrial contraction (P < 0.05), suggesting that LA booster function was enhanced. 5. Changes in LA dimension revealed that during exercise more blood volume was reserved in the LA during systole and that this change was associated with an increase in the LA dimension at the beginning of LA contraction (r = 0.61, P < 0.05). 6. We conclude that LA reservoir and booster functions were augmented during exercise, whereas conduit function was not. Increased reservoir function may play an important role in accelerating LV filling by helping to maintain an enhanced atrioventricular pressure gradient during diastole and also by increasing LA booster function through an increase in LA preload.
摘要
  1. 对10只清醒犬进行研究,这些犬通过仪器测量左心室(LV)压力和直径、左心房(LA)压力和直径以及肺静脉血流量(PVF,通过渡越时间流量计测量),以研究跑步机运动期间左心房功能的动态变化。2. 收缩期PVF容积(储存容积;左心房储存功能的一种度量)从基线时占总PVF容积的38±4%增加到运动期间占总PVF容积的52±8%,而舒张期PVF容积(管道容积;左心房管道功能的一种度量)从基线时的62±5%降至运动期间的48±8%(P<0.005)。3. 储存容积的增加和管道容积的减少不仅是由于舒张期间隔比收缩期间隔有更大程度的缩短,还因为平均收缩期充盈率(93%)比平均舒张期充盈率(51%)有显著更大程度的增加(P<0.05)。4. 在运动期间,由左心室直径变化得出的左心室充盈模式表明,在舒张期后半段心房收缩时,左心室充盈的百分比更大(P<0.05),这表明左心房辅助功能增强。5. 左心房尺寸的变化显示,在运动期间,收缩期更多的血容量被储存在左心房,并且这种变化与左心房收缩开始时左心房尺寸的增加相关(r = 0.61,P<0.05)。6. 我们得出结论,运动期间左心房的储存和辅助功能增强,而管道功能未增强。增加的储存功能可能通过在舒张期帮助维持增强的房室压力梯度以及通过增加左心房前负荷来增加左心房辅助功能,从而在加速左心室充盈方面发挥重要作用。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74b5/1155944/b4bb5d7ae4b7/jphysiol00334-0205-a.jpg

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