Suppr超能文献

静水椎实螺(Lymnaea stagnalis (L.))中的环境渗透压与神经分泌神经元

Environmental osmolarity and neurosecretory neurones in Lymnaea stagnalis (L.).

作者信息

Soffe S R, Slade C T, Benjamin P R

出版信息

Malacologia. 1979;18(1-2):583-6.

PMID:491760
Abstract

Cell body volume and Alcian blue-Alcian Yellow staining properties of neurosecretory neurones in the brain of Lymnaea stagnalis were compared for snails kept in de-ionised water and standard tapwater. In the same experiment, the ionic content of the blood, blood volume and body weight and environmental ionic composition were measured. Five days of immersion in de-ionised water resulted in significant decreases in body weight, blood volume and blood, Na+ and Cl- concentrations but no change in blood Ca2+, K+,and HCO3- concentrations, compared with controls. No consistently significant differences across the 5 day period were found in cell body volumes for Dark Green Cells, Yellow Cells or Light Green Cells (used as a control) when these volumes were compared for large numbers of cells from snails kept in de-ionised water and standard tapwater. However, the number of Yellow Cells which could be counted in snails kept in de-ionised water was lower than the number from standard tapwater by day 2 of the experiment and lower for Yellow-green Cells by day 5. We interpret this lower number to be the result of depletion of Alcian blue-Alcian Yellow stained neurosecretory material in these cells which made them impossible to distinguish. This was confirmed by examination of visceral Yellow Cells which could be identified on the basis of known location close to the visceral-right parietal connective.

摘要

比较了静水椎实螺在去离子水和标准自来水中饲养时,其脑中神经分泌神经元的细胞体体积以及阿尔辛蓝-阿尔辛黄染色特性。在同一实验中,测量了血液的离子含量、血容量、体重以及环境离子组成。与对照组相比,在去离子水中浸泡五天导致体重、血容量以及血液中Na⁺和Cl⁻浓度显著降低,但血液中Ca²⁺、K⁺和HCO₃⁻浓度没有变化。当比较大量饲养在去离子水和标准自来水中的蜗牛的细胞体体积时,在五天的时间里,深绿色细胞、黄色细胞或浅绿色细胞(用作对照)的细胞体体积没有发现一致的显著差异。然而,在实验的第2天,饲养在去离子水中的蜗牛中可计数的黄色细胞数量低于标准自来水中的数量,到第5天,黄绿细胞的数量更低。我们将这种较低的数量解释为这些细胞中阿尔辛蓝-阿尔辛黄染色的神经分泌物质耗尽的结果,这使得它们无法区分。通过检查内脏黄色细胞证实了这一点,这些细胞可以根据靠近内脏-右顶叶结缔组织的已知位置来识别。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验