Sanderson M J, Sleigh M A
J Cell Sci. 1981 Feb;47:331-47. doi: 10.1242/jcs.47.1.331.
The beat pattern of rabbit tracheal cilia has been investigated using high-speed cine photography and scanning electron microscopy, on cultured epithelia of known orientation. The cilia normally rest in the position reached at the end of the effective stroke, the ciliary tips pointing towards the oropharynx. Each beat begins with a recovery (or preparative) stroke in which a bend is propagated up the cilium causing the cilium to rotate backwards in a clockwise sweep, as viewed from above. At the end of its recovery stroke the cilium progresses immediately into the effective (or power) stroke, which is almost planar and in a cephalad direction. The active cilium describes an arc of almost 110 degrees before reaching the rest stage. This beat pattern is not significantly altered over an increase in frequency from 13-29 Hz; the relative duration of the 2 active phases of the beat remain similar over this range. Metachronal waves exist in the form of short erratic areas of coordinated beating which travel only short distances. Within each area, the non-planar recovery strokes initiate an antilaeoplectic wave of activity which recruits inactive cilia to extent the wave. As cilia perform their effective strokes, adjacent cilia in the plane of beating move in an antiplectic sequence. This pattern of coordination is related to the pattern of beat of the cilia and their distribution on the epithelium.
利用高速电影摄影术和扫描电子显微镜,在已知取向的培养上皮细胞上研究了兔气管纤毛的搏动模式。纤毛通常处于有效摆动末端所达到的位置,纤毛尖端指向口咽。每次搏动始于一个恢复(或准备)摆动,在此过程中,一个弯曲沿纤毛向上传播,导致纤毛从上方看以顺时针方向向后旋转。在恢复摆动结束时,纤毛立即进入有效(或动力)摆动,该摆动几乎是平面的且朝着头侧方向。活跃的纤毛在达到静止阶段之前描绘出近110度的弧线。在频率从13 - 29赫兹增加的过程中,这种搏动模式没有明显改变;在此范围内,搏动的两个活跃阶段的相对持续时间保持相似。同步波以短的、不规则的协调搏动区域的形式存在,仅传播很短的距离。在每个区域内,非平面的恢复摆动引发一个反斜向活动波,该波招募不活跃的纤毛以扩展波。当纤毛进行有效摆动时,搏动平面内相邻的纤毛以反斜向顺序移动。这种协调模式与纤毛的搏动模式及其在上皮细胞上的分布有关。