大鼠睾丸输尿管的结构分化和液体重吸收。

R C Jones, K M Jurd
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摘要

大鼠睾丸的滤管形成一束嵌在脂肪组织中的索。脊髓在解剖学上分为近端圆柱形区(初始区)和壶腹区(血管圆锥区)。最初的区域包含6或7个导管,它们离开睾丸网,以一条蜿蜒的路径运行,彼此大致平行。然而,大血管内的小管比初始区更弯曲,并相互吻合;成对连接在一起最终形成一个单一的,共同的小管。石蜡切片的体视学研究和电子显微照片显示,导管在组织和细胞水平上分化为两部分。体视学和微穿刺研究表明,大部分离开睾丸的液体被输出管重吸收,并得出结论,大部分重吸收发生在初始区。据估计,液体的吸收速率在输尿管小管比在近曲小管肾脏大。讨论中考虑了液体在导管粘膜上的输送机制。由此可见,在囊泡和液泡中的运输不能解释液体重吸收率,主要的运输机制可能是水和活性盐运输的耦合。
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Structural differentiation and fluid reabsorption in the ductuli efferentes testis of the rat.

The ductuli efferentes testis of the rat form a cord which is embedded in adipose tissue. The cord is anatomically differentiated into a proximal cylindrical region, the initial zone, and an ampulla, the coni vasculosi. The initial zone contains six or seven ductuli which leave the rete testis and run in a sinuous path, roughly parallel with one another. However, the ductuli in the coni vasculosi are more sinuous than in the initial zone and they anastomose; pairs join together to form ultimately a single, common ductulus efferens. Stereological studies of paraffin sections and electron micrographs showed that the differentiation of the ductuli into two parts can be recognized at tissue and cellular levels of organization. Stereological and micropuncture studies showed that the ductuli efferentes reabsorb most of the fluid leaving the testis and it was concluded that most reabsorption occurred in the initial zone. It was estimated that the rate of fluid absorption is greater in the ductuli efferentes than in the proximal convoluted tubules of the kidney. The mechanism of fluid transport across the mucosa of the ductuli is considered in the Discussion. It is concluded that transport in vesicles and vacuoles could not account for the rate of fluid reabsorption and that the main mechanism of transport probably involves the coupling of water and active salt transport.

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