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通过冷冻断裂技术揭示的蟑螂下颚须感觉器区域内一个特殊塑料角质层区域的微纤维纹理。

The microfiber texture in a specialized plastic cuticle area within a sensillum field on the cockroach maxillary palp as revealed by freeze fracturing.

作者信息

Altner H

出版信息

Cell Tissue Res. 1975 Dec 29;165(1):79-88. doi: 10.1007/BF00222801.

Abstract

A field of sensilla extends across the ventral surface of the terminal segment of the maxillary palps of Periplaneta americana. The sensilla project from a sheet of pliable cuticle. Ultrathin sections of the cuticle in this area reveal a clear-cut parabolic microfiber pattern. Microfibers can also be seen from freeze fracture faces running parallel to the cuticular surface. These microfibers have a diameter of 80 A and may consist of chitin crystallites surrounded by a matrix coat. The number of straight parallel microfibers visible in a fracture face increases the more closely parallel to the surface the fracture runs. This result suggests a helicoidal texture, as the model of Bouligand would demand. The layer-to-layer rotational displacement of the microfibers is about 12 degrees. This texture can be regarded as typical for flexible cuticles in general. Other structural properties such as the continuation of the epicuticular dense layer into deeper cuticular layers around the enveloping cells of sensilla can be interpreted as specializations connected with the function of the sensillum field.

摘要

在美洲大蠊下颚须末节的腹面有一片感觉器区域。感觉器从一层柔韧的表皮伸出。该区域表皮的超薄切片显示出清晰的抛物线状微纤维图案。从与表皮表面平行的冷冻断裂面也能看到微纤维。这些微纤维直径为80埃,可能由被基质层包围的几丁质微晶组成。在断裂面中可见的笔直平行微纤维数量,随着断裂面与表面的平行程度越高而增加。这一结果表明其具有螺旋纹理,正如布里甘德模型所要求的那样。微纤维的层间旋转位移约为12度。一般来说,这种纹理可被视为柔性表皮的典型特征。其他结构特性,如表皮致密层在感觉器包被细胞周围向更深层表皮的延续,可被解释为与感觉器区域功能相关的特化现象。

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