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呼吸频率和气流对高强度马匹运动中肺功能的影响。

Effect of breathing frequency and airflow on pulmonary function in high-intensity equine exercise.

作者信息

Bayly W M, Redman M J, Sides R H

机构信息

Department of Veterinary Clinical Sciences, College of Veterinary Medicine, Washington State University, Pullman 99164-6610, USA.

出版信息

Equine Vet J Suppl. 1999 Jul(30):19-23. doi: 10.1111/j.2042-3306.1999.tb05181.x.

Abstract

It has been postulated that the hypoxaemia and hypercapnoea that characterize strenuous equine exercise are partly due to flow limitations imposed by high breathing frequencies (fb), and that gas exchange would be improved if fb could be lowered. To evaluate this possibility, 6 Thoroughbred horses underwent 4 incremental treadmill exercise tests at inclines of 0, 5, 10 and 25%, respectively. In the test, horses were given a warm-up for 2 min, then ran sequentially for 1 min each at 60, 100 and 115% VO2max. Oxygen consumption (VO2), blood gas tensions (PaO2, PaCO2), fb, tidal volume (VT), minute ventilation (Ve), transpulmonary pressure (Ptp), peak inspiratory and expiratory airflows (VI, VE) and work of breathing (Wrm) were determined during the last 15 s of exercise at each intensity. The only effect of fb on PaO2 was seen at 60% VO2max. Also, maximal transpulmonary pressure difference (delta Ptpmax), and peak VI, and VE on a 25% slope were lower than those recorded at the other 3 inclines at 60% VO2max. At 100 and 115% VO2max, the effect of fb was less clear. While fb still differed, the only effects of fb at 100% VO2max were on delta Ptpmax. At 115% VO2max, fb on a 25% incline was lower than that for 0 and 5% slopes. The only other difference noted at this intensity was in VT on 10% slope. However, there was no difference between VTS recorded at inclines of 0, 5 or 25% at 115% VO2max. There was no effect of fb or exercise intensity on Ve at 100 or 115% VO2max. There was no change in PaO2, fb, VT, delta Ptpmax or VI and VE as exercise intensity increased from 60-115% VO2max on slopes of 0, 5 or 10%. However, for exercise on the 25% incline (i.e. with lower fb), each of these parameters increased (or decreased for PaO2) from 60-100%, but not from 100-115% VO2max. Failure of peak airflow and VT to increase when intensity increased was associated with the development of hypoxaemia and hypercapnoea, regardless of slope or fb. It is concluded that while a low fb may have some beneficial effect on gas exchange during submaximal exercise at approximately 60% VO2max, this effect disappears as exercise intensity increases. There appear to be limits to the peak airflows that can be generated by horses during strenuous exercise, and these limits may be reached regardless of fb. Flow limitation per se may play a greater role in the development of exercise-induced hypoxaemia and hypercapnoea in horses than dose fb.

摘要

据推测,剧烈的马匹运动所特有的低氧血症和高碳酸血症部分归因于高呼吸频率(fb)所导致的流量限制,并且如果能够降低fb,气体交换将会得到改善。为了评估这种可能性,6匹纯种马分别在0%、5%、10%和25%的坡度下进行了4次递增式跑步机运动测试。在测试中,马匹先进行2分钟的热身,然后依次以最大摄氧量(VO2max)的60%、100%和115%各跑1分钟。在每次强度运动的最后15秒内测定耗氧量(VO2)、血气张力(PaO2、PaCO2)、fb、潮气量(VT)、分钟通气量(Ve)、跨肺压(Ptp)、吸气和呼气峰值气流(VI、VE)以及呼吸功(Wrm)。fb对PaO2的唯一影响出现在VO2max的60%时。此外,在25%坡度下的最大跨肺压差(delta Ptpmax)以及60%VO2max时的峰值VI和VE低于在其他3个坡度下记录的值。在VO2max的100%和115%时,fb的影响不太明显。虽然fb仍然存在差异,但在VO2max的100%时,fb的唯一影响是对delta Ptpmax。在VO2max的115%时,25%坡度下的fb低于0%和5%坡度下的fb。在该强度下观察到的唯一其他差异是10%坡度下的VT。然而,在VO2max的115%时,0%、5%或25%坡度下记录的VT之间没有差异。在VO2max的100%或115%时,fb或运动强度对Ve没有影响。当运动强度从VO2max的60%增加到115%时,在0%、5%或10%的坡度上,PaO2、fb、VT、delta Ptpmax或VI和VE没有变化。然而,对于在25%坡度上的运动(即fb较低),这些参数中的每一个从60%增加到100%时(PaO2为降低),但从100%增加到115%VO2max时没有变化。当强度增加时峰值气流和VT未能增加与低氧血症和高碳酸血症的发生有关,无论坡度或fb如何。结论是,虽然低fb在大约VO2max的60%的次最大运动期间可能对气体交换有一些有益影响,但随着运动强度增加这种影响消失。在剧烈运动期间马匹能够产生的峰值气流似乎存在限制,并且无论fb如何都可能达到这些限制。流量限制本身在马匹运动诱导的低氧血症和高碳酸血症的发展中可能比fb起更大的作用。

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