...
首页> 外文期刊>Transactions of the American Fisheries Society >Cardiovascular responses of largemouth bass to exhaustive exercise and brief air exposure over a range of water temperatures
【24h】

Cardiovascular responses of largemouth bass to exhaustive exercise and brief air exposure over a range of water temperatures

机译:在水温范围内,大口黑鲈对力竭运动和短暂空气暴露的心血管反应

获取原文
获取原文并翻译 | 示例

摘要

In this study we examined the effects of exhaustive exercise and brief air exposure on the cardiovascular function of largemouth bass Micropterus salmoides at four water temperatures (13, 17, 21, and 25degreesC). We used Doppler flow probes to monitor cardiac output and its components (i.e., stroke volume and heart rate) while we manually chased fish to exhaustion to simulate angling, exposed them to air for 30 s, and then recorded patterns of recovery. Resting cardiac variables generally increased with increasing water temperature except for stroke volume, which was temperature independent. Fish heart rate became erratic during exercise, and during air exposure fish exhibited severe bradycardia before becoming tachycardic when returned to the water. Maximal change occurred most rapidly for cardiac output (about 5 min). Several minutes later, changes in heart rate (increase) and stroke volume (decrease) simultaneously reached maximal deviations from resting values. Cardiac output and heart rate increased 150-200% relative to resting values despite 50% reductions in stroke volume, suggesting that largemouth bass are primarily frequency modulators. Maximal changes generally increased with water temperature for cardiac output and heart rate but not for stroke volume, resulting in heightened scope for cardiac output and heart rate with increasing water temperature. Recovery patterns were not influenced by water temperature. Cardiac output and heart rate generally returned to predisturbance levels in approximately 135 min, whereas stroke volume recovered more rapidly (about 110 min). Based on these findings, we suggest that largemouth bass exposed to exhaustive exercise and brief air exposure are capable of recovering from handling disturbances in several hours across the range of water temperatures that we examined (13-25degreesC).
机译:在这项研究中,我们研究了在四种水温(13、17、21和25摄氏度)下,剧烈运动和短暂暴露于空气对大嘴鲈鱼的心血管功能的影响。我们使用多普勒流量探针监测心输出量及其组成部分(即中风量和心律),同时我们手动追逐鱼以进行疲劳捕捞以模拟成角度,将它们暴露于空气中30 s,然后记录恢复模式。除中风量外,静息心脏变量通常随水温的升高而增加,这与温度无关。鱼的心率在运动过程中变得不稳定,并且在暴露于空气中时,鱼表现出严重的心动过缓,而回到水中后会出现心动过速。最大的变化发生在心输出量上最快(约5分钟)。几分钟后,心率(增加)和中风量(减少)的变化同时达到了与静止值的最大偏差。尽管搏动量减少了50%,但相对于静止值,心输出量和心率仍提高了150-200%,这表明大口黑鲈主要是频率调制器。对于心排血量和心率,最大变化通常随水温增加而增加,但对于中风量则不随最大温度的变化而变化,导致随水温升高心输出量和心率的范围增加。回收方式不受水温的影响。心输出量和心率通常在大约135分钟内恢复到干扰前水平,而中风量恢复得更快(大约110分钟)。根据这些发现,我们建议在我们检查的水温范围(13-25°C)内,数小时暴露于力竭运动和短暂空气暴露的鲈鱼能够从处理干扰中恢复过来。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号