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The Secretion of Oxygen into the Swim-bladder of Fish

机译:鱼的游泳膀胱中的氧气分泌

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Toadfish, Opsanus tau , L., were maintained in sea water equilibrated with gas mixtures containing a fixed proportion of oxygen and varying proportions of carbon monoxide. The swim-bladder was emptied by puncture, and, after an interval of 24 or 48 hours, the newly secreted gases were withdrawn and analyzed. Both carbon monoxide and oxygen are accumulated in the swim-bladder at tensions greater than ambient. The ratio of concentrations, carbon monoxide (secreted): carbon monoxide (administered) bears a constant relation to the ratio, oxygen (secreted): oxygen (administered). The value of the partition coefficient describing this relation is (α = 5.44). The two gases are considered to compete for a common intracellular carrier mediating their active transport. The suggestion is advanced that the intracellular oxygen carrier is a hemoglobin. Comparison of the proportions of carboxy- and oxyhemoglobin in the blood with the composition of the secreted gas proves that the secreted gases are not evolved directly from combination with blood hemoglobin. The suggestion is advanced that cellular oxygen secretion occurs in the rete mirabile: the rete may build up large oxygen tensions in the gas gland capillaries. It is suggested that the gas gland acts as a valve impeding back diffusion of gases from the swim-bladder.
机译:蟾蜍鱼(Opsanus tau,L.)保持在海水中,该海水中所含的混合气体中含有固定比例的氧气和不同比例的一氧化碳。通过刺穿将膀胱放空,并在间隔24或48小时后,取出并分析新分泌的气体。一氧化碳和氧气都以大于周围环境的张力积聚在游泳囊中。一氧化碳(分泌的):一氧化碳(施用)的浓度比与氧气(分泌的):氧气(施用)的比具有恒定的关系。描述该关系的分配系数的值为(α= 5.44)。两种气体被认为竞争介导其主动转运的常见细胞内载体。有人提出细胞内氧气载体是血红蛋白。将血液中羧基和氧合血红蛋白的比例与分泌气体的组成进行比较,可以证明分泌气体不是直接与血液中的血红蛋白结合而放出的。有人提出细胞氧分泌发生在网状奇迹中:网状菌可能在气腺毛细血管中建立较大的氧气张力。有人建议,气体密封套可作为阻止气体从泳囊向后扩散的阀门。

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