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兔气管(纤毛)上皮的高速电影显微摄影研究:气管纤毛搏动模式的测定

High speed cinemicrographic studies on rabbit tracheal (ciliated) epithelia: determination of the beat pattern of tracheal cilia.

作者信息

Cheung A T, Jahn T L

出版信息

Pediatr Res. 1976 Feb;10(2):140-4. doi: 10.1203/00006450-197602000-00014.

Abstract

High speed cinemicrographs reveal that the ciliary configuration and beat pattern of rabbit tracheal cilia differ significantly from classid descriptions, although the basic forward and return pattern is still observed. The tracheal cilia are short and stout (about 6 mum in length) and are of a slightly bent original configuration bent original configuration. At the start of the forward stroke, the cilia bear about 75-90 degrees to the epithelial surface in the direction of the forward stroke. The forward stroke is planar and consists of a simple "bowing" movement, without showing any progressive bending and without changing the original ciliary configuration. The complete forward stroke sweeps through an arc of about 35-40 degrees, with the tips of the cilia penetrating the bottom of the mucous layer through an arc of about 5-8 degrees at the start of each forward stroke. The return stroke starts from close to the epithelial surface and returns to the starting position of the forward stroke by reversing the planer forward pathway at a reduced speed. The stout nature of the cilia, the original bent ciliary configuration, the near vertical starting position of the forward stroke, the extent of the angular sweeps of the strokes, the peculiar "bowing" forward stroke movement, and the nature of the return stroke all serve to enhance efficiency in moving fluid forward. It has been documented that each forward stroke of the tracheal cilia caused and maintains a swift forward movement of the intermediate serous (liquid) layer of the mucociliary system. This movement, in turn, reacts hydrodynamically with the top mucous layer, and together with the clawing action of the tips of the cilia at the start of the forward stroke, causes the mucous layer to move cephalad in the manner of a conveyor belt.

摘要

高速电影显微摄影显示,尽管仍能观察到兔气管纤毛基本的向前和返回模式,但其纤毛的形态结构和摆动模式与经典描述有显著差异。气管纤毛短而粗(长度约为6微米),初始形态略呈弯曲状。在前向摆动开始时,纤毛相对于上皮表面向前向摆动方向呈约75 - 90度角。前向摆动是平面的,由简单的“弯曲”运动组成,不显示任何渐进性弯曲,也不改变纤毛的原始形态结构。完整的前向摆动扫过约35 - 40度的弧度,在每次前向摆动开始时,纤毛尖端通过约5 - 8度的弧度穿透黏液层底部。返回摆动从靠近上皮表面处开始,通过以较低速度反转平面的前向路径回到前向摆动的起始位置。纤毛粗壮的特性、原始弯曲的纤毛形态结构、前向摆动近乎垂直的起始位置、摆动的角度范围、独特的“弯曲”前向摆动运动以及返回摆动的性质,都有助于提高向前移动液体的效率。据记载,气管纤毛的每次前向摆动都会引起并维持黏液纤毛系统中间浆液(液体)层的快速向前运动。反过来,这种运动通过流体动力学作用于顶部黏液层,并且与前向摆动开始时纤毛尖端的抓扒作用一起,使黏液层以传送带的方式向头部移动。

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