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平衡组织灌注需求:暴露于低盐度和缺氧环境下的马氏癌蟹的心血管动力学

Balancing tissue perfusion demands: cardiovascular dynamics of Cancer magister during exposure to low salinity and hypoxia.

作者信息

McGaw Iain J, McMahon Brian R

机构信息

Department of Biological Sciences, University of Nevada at Las Vegas, Las Vegas, Nevada 89154, USA.

出版信息

J Exp Zool A Comp Exp Biol. 2003 Jan 1;295(1):57-70. doi: 10.1002/jez.a.10176.

Abstract

Decapod crustaceans inhabit aquatic environments that are frequently subjected to changes in salinity and oxygen content. The physiological responses of decapod crustaceans to either salinity or hypoxia are well documented; however, there are many fewer reports on the physiological responses during exposure to these parameters in combination. We investigated the effects of simultaneous and sequential combinations of low salinity and hypoxia on the cardiovascular physiology of the Dungeness crab, Cancer magister. Heart rate, as well as haemolymph flow rates through the anterolateral, hepatic, sternal and posterior arteries were measured using a pulsed-Doppler flowmeter. Summation of flows allowed calculation of cardiac output and division of this by heart rate yielded stroke volume. When hypoxia and low salinity were encountered simultaneously, the observed changes in cardiac properties tended to be a mix of both factors. Hypoxia caused a bradycardia, whereas exposure to low salinity was associated with a tachycardia. However, the hypoxic conditions had the dominant effect on heart rate. Although hypoxia caused an increase in stroke volume of the heart, the low salinity had a more pronounced effect, causing an overall decrease in stroke volume. The patterns of haemolymph flow through the arterial system also varied when hypoxia and low salinity were offered together. The resulting responses were a mix of those resulting from exposure to either parameter alone. When low salinity and hypoxia were offered sequentially, the parameter experienced first tended to have the dominant effect on cardiac function and haemolymph flows. Low salinity exposure was associated with an increase in heart rate, a decrease in stroke volume and cardiac output, and a concomitant decrease in haemolymph flow rates. Subsequent exposure to hypoxic conditions caused a slight decrease in rate, but other cardiovascular variables were largely unaffected. In contrast, when low salinity followed acclimation to hypoxic conditions, apart from an increased heart rate, there were no other cardiovascular changes associated with the low salinity episode. The implications of these changes in cardiovascular dynamics are discussed in relation to physiological mechanisms and the ecology of decapod crustaceans, in hypoxic or low salinity environments.

摘要

十足目甲壳动物栖息于盐度和含氧量经常变化的水生环境中。十足目甲壳动物对盐度或低氧的生理反应已有充分记录;然而,关于同时暴露于这些参数组合下的生理反应的报道则少得多。我们研究了低盐度和低氧同时及先后组合对邓杰内斯蟹(Cancer magister)心血管生理的影响。使用脉冲多普勒流量计测量心率以及通过前侧动脉、肝动脉、胸骨动脉和后动脉的血淋巴流速。流量总和可用于计算心输出量,心输出量除以心率得出每搏输出量。当同时遇到低氧和低盐度时,观察到的心脏特性变化往往是两种因素的混合。低氧导致心动过缓,而暴露于低盐度则与心动过速有关。然而,低氧条件对心率的影响占主导。尽管低氧导致心脏每搏输出量增加,但低盐度的影响更为显著,导致每搏输出量总体下降。当低氧和低盐度同时出现时,通过动脉系统的血淋巴流动模式也会发生变化。由此产生的反应是单独暴露于任一参数时产生的反应的混合。当低盐度和低氧先后出现时,首先经历的参数往往对心脏功能和血淋巴流动具有主导作用。暴露于低盐度与心率增加、每搏输出量和心输出量减少以及血淋巴流速随之降低有关。随后暴露于低氧条件下导致心率略有下降,但其他心血管变量基本未受影响。相比之下,当在适应低氧条件后出现低盐度时,除了心率增加外,没有其他与低盐度事件相关的心血管变化。本文结合十足目甲壳动物在低氧或低盐度环境中的生理机制和生态学,讨论了这些心血管动力学变化的意义。

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