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Fresh-water Fish Chemoreceptors Responsive to Dilute Solutions ofElectrolytes

机译:淡水鱼化学感受器对稀溶液的响应电解质

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摘要

The existence of the palatal chemoreceptors responding specifically to dilute solutions of salts with monovalent cations was demonstrated in carp. The distilled water effect (a response produced by the application of distilled water after chemoreceptors had been rinsed out with hypertonic salt solutions) was assigned to the activity of the same receptor. Intensity of the response to dilute solutions of salts depended on the valency of the anion: the larger the valency, the greater the response. Positively charged sites of the receptor responsive to dilute salt solutions were suggested by previous treatments with acid and alkali, and dye salts. Increase in the ionic strength of the stimulating solution by the addition of supporting electrolytes caused a depression of response. In particular, strong depression of response was caused by the addition of a supporting electrolyte with a divalent cation. Effects of polarizing current on the chemoreceptor activity were investigated. Based upon the findings in this paper, a hypothesis is presented, which explains mechanisms underlying chemoreceptor responses to dilute solutions of electrolytes in terms of an interfacial electro-kinetic process.
机译:在鱼中证实了specifically化学感受器的存在,该che化学感受器对含单价阳离子的盐的稀溶液有特殊反应。蒸馏水的效果(化学感受器已经用高渗盐溶液冲洗掉后施加蒸馏水产生的反应)被分配给同一受体的活性。对盐的稀溶液的响应强度取决于阴离子的化合价:化合价越大,响应越大。先前用酸,碱和染料盐处理表明,对稀盐溶液有响应的受体带正电荷的位点。通过添加支持电解质,刺激溶液的离子强度增加,导致响应降低。特别地,响应的强烈降低是由于添加了具有二价阳离子的支持电解质而引起的。研究了极化电流对化学感受器活性的影响。基于本文的发现,提出了一个假设,该假设以界面电动过程的方式解释了化学感受器对电解质稀溶液的化学反应的潜在机制。

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