Ogilvy C S, DuBois A B
Am J Physiol. 1982 Jan;242(1):R70-6. doi: 10.1152/ajpregu.1982.242.1.R70.
Tolerance of the circulatory system of fish for gravitational stress has not been measured previously. We examined this in bluefish (Pomatomus saltatrix) and smooth dogfish (Mustelus canis) by placing them horizontally on a V-board in air while their gills were perfused with aerated seawater, then tilting them head up for 0.5 h, and finally returning them to horizontal. Meanwhile, we recorded the blood pressure, pulse pressure, and heart rate in the ventral aorta, and interstitial fluid pressure in the head and tail. All four bluefish tolerated a 30 degrees tilt or even a 60 degrees tilt with little change in blood pressure or interstitial pressure in the anterior and posterior regions. All recovered afterward. However, in the seven dogfish examined, the posterior interstitial fluid pressure increased from 2.8 +/- 1.0 cmH2O before tilting to 11.8 +/- 3.3 cmH2O toward the end of a 30 degrees tilt lasting 30 min. The blood pressure decreased as the pulse pressure approached zero, showing that circulatory insufficiency had developed due to insufficient venous return to the heart. Most of the dogfish died within a few hours after the experiment. These findings are in keeping with the conclusion that the vasculature of bluefish has more rigidity, less permeability, and perhaps more compensatory tone than that of smooth dogfish. We speculate that bluefish may have evolved their circulatory tolerance for gravity as a cross-adaptation to the stresses imposed on the circulation by forward acceleration and by regional differences of transcutaneous pressure occurring during fast carangiform swimming.
此前尚未对鱼类循环系统对重力应激的耐受性进行过测量。我们通过将蓝鱼(Pomatomus saltatrix)和星鲨(Mustelus canis)水平放置在空气中的V形板上,同时用充氧海水灌注它们的鳃,然后将它们头部向上倾斜0.5小时,最后再将它们恢复到水平状态,对其进行了研究。与此同时,我们记录了腹主动脉的血压、脉压和心率,以及头部和尾部的组织液压力。所有四条蓝鱼都能耐受30度甚至60度的倾斜,前后区域的血压或组织液压力几乎没有变化。之后所有蓝鱼都恢复了。然而,在接受检查的七条星鲨中,在持续30分钟的30度倾斜接近尾声时,后部组织液压力从倾斜前的2.8±1.0厘米水柱增加到11.8±3.3厘米水柱。随着脉压接近零,血压下降,这表明由于静脉回流到心脏不足,已经出现了循环功能不全。大多数星鲨在实验后的几个小时内死亡。这些发现与以下结论一致,即蓝鱼的血管系统比星鲨具有更高的刚性、更低的通透性,也许还具有更强的代偿张力。我们推测,蓝鱼可能已经进化出了对重力的循环耐受性,作为对快速鲹形游泳过程中向前加速和经皮压力区域差异对循环施加的应激的一种交叉适应。