Mayer-Gostan N, Hirano T
J Exp Biol. 1976 Apr;64(2):461-75. doi: 10.1242/jeb.64.2.461.
The IXth and the Xth cranial nerves in Anguilla anguilla were transected, and the effects upon ion and water balance were studied in fresh water and sea water, and during transfer from fresh water and vice versa. In fresh water there is a slow demineralization due to an excess loss of Na and Cl ions. During freshwater to seawater transfer the eel survives only for 4-5 days. The fish do not drink and Na efflux does not increase enough to extrude excess ions. In sea water the glossopharyngeal and vagus nerves are necessary for the maintenance of the hydromineral balance. Denervation is followed by an increase in plasma ion concentrations. Na fluxes are not modified and increased water loss is not compensated by drinking. The rapid reduction of Na efflux during transfer from sea water to fresh water is not modified by denervation.
对欧洲鳗鲡的第九和第十对脑神经进行横切,并研究其在淡水和海水中以及在淡水与海水相互转换期间对离子和水平衡的影响。在淡水中,由于钠和氯离子的过度流失,会出现缓慢的脱矿质现象。在从淡水转移到海水的过程中,鳗鱼仅能存活4至5天。鱼不饮水,钠外流增加不足,无法排出多余的离子。在海水中,舌咽神经和迷走神经对于维持水盐平衡是必需的。去神经支配后血浆离子浓度会升高。钠通量未改变,饮水也无法补偿增加的水分流失。从海水转移到淡水过程中钠外流的快速减少不受去神经支配的影响。