首页> 外文期刊>Zoomorphology >Functional morphology of the compass-rotular ligament of Echinus esculentus (Echinodermata : Echinoida): a non-mutable collagenous component of Aristotle's lantern
【24h】

Functional morphology of the compass-rotular ligament of Echinus esculentus (Echinodermata : Echinoida): a non-mutable collagenous component of Aristotle's lantern

机译:es草(Echinodermata:Echinoida)的罗盘-旋转韧带的功能形态:亚里士多德灯笼的非可变胶原成分

获取原文
获取原文并翻译 | 示例
       

摘要

This paper provides the first detailed account of the histological and ultrastructural organisation of an echinoderm ligament that is non-mutable. Each of the five compass ossicles on the aboral side of the lantern of regular echinoids is linked to an underlying rotular ossicle by a compass-rotular ligament (CRL). The structure and anatomical relations of the CRL of Echinus esculentus L. were examined by light microscopy and scanning and transmission electron microscopy, and its responsiveness to neuroactive agents was observed in stress relaxation tests. The CRL consists of ( 1) thick collagen fibres that form an outer crossed fibre lattice and an internal system of parallel suspensory fibres and ( 2) regions composed mainly of bundles of ca. 12 nm microfibrils. The CRL is sparsely cellular, most cell bodies belonging to heterogeneous vesicle-containing cells that undergo apoptosis-like cytoplasmic fragmentation and produce linear aggregations of cell fragments. Coelothelia investing the CRL show intense secretory activity reminiscent of lamellar body production by mammalian mesothelia and are the source of bundles of cell processes that penetrate deeply into the CRL, branch sparingly and terminate between the thick fibres. Isolated CRL preparations are unresponsive to seawater containing 1 mM acetylcholine or 100 mM K+, but show a transient increase in stress relaxation rate when treated with 0.56 M KCl. The effects of solutions of other alkali metal chlorides suggest that the latter response is due to the direct action of KCl on extracellular components of the CRL and is not nervously mediated.
机译:本文首次介绍了不可变的棘突韧带的组织学和超微结构。常规类棘突类动物灯笼下侧的五个罗盘小骨中的每一个通过罗盘-旋转韧带(CRL)连接到下面的旋转小骨。用光学显微镜,扫描电镜和透射电镜观察了E草CRL的结构和解剖关系,并在应力松弛试验中观察了其对神经活性剂的反应性。 CRL由(1)形成外部交叉纤维晶格的粗胶原纤维和平行悬垂纤维的内部系统以及(2)主要由大约成束的碳纤维组成的区域组成。 12 nm微纤维。 CRL是稀疏的细胞,大多数细胞体属于异质性囊泡细胞,它们经历凋亡样细胞质碎裂并产生细胞碎片的线性聚集。投入CRL的上皮细胞显示出强烈的分泌活性,使人联想到哺乳动物间皮细胞产生的层状体,并且是细胞过程束的源头,这些细胞过程深入CRL中,很少分支并终止于粗纤维之间。分离的CRL制剂对含有1 mM乙酰胆碱或100 mM K +的海水没有反应,但在用0.56 M KCl处理时,应力松弛率会暂时升高。其他碱金属氯化物溶液的影响表明,后者的响应是由于KCl对CRL的细胞外成分的直接作用,而不是神经介导的。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号