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STRUCTURE AND FUNCTION OF THE MIDDLE EAR APPARATUS OF THE AQUATIC FROG, XENOPUS LAEVIS

机译:水产青蛙中耳装置的结构和功能,Xenopus Laevis

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We report the results of anatomical and vibrometric studies of the middle ear of the African clawed frog, Xenopus laevis. The cartilaginous tympanic disk of Xenopus shows pronounced sexual dimorphism, that of male frogs being much larger than that of females, relative to body size. The stapes footplate, however, is not enlarged in males. The cucullaris muscle was found to insert on the stapes in frogs of both sexes. Using laser interferometry to examine the response of middle ear structures to airborne sound, the stapes footplate was found to vibrate close to 180 deg out-of-phase with the tympanic disk across a range of frequencies, this resembling the relationship between tympanic membrane and footplate movement previously described in ranid frogs. By contrast, whereas there is a pronounced difference in vibration velocity between tympanic membrane and footplate in ranids, the footplate vibration velocity in Xenopus was found to be similar to that of the tympanic disk. This may be interpreted as an adaptation to improve the detection of sound underwater.
机译:我们报道了非洲爪青蛙中耳的解剖和振动研究结果,Xenopus Laevis。 Xenopus的软骨盆鼓耳蛇圆盘显示出明显的性别二态,男性青蛙比女性大小大得多,相对于体积大小。然而,镫骨踏板在雄性中没有扩大。发现Cucullaris肌肉在两性的青蛙中插入镫骨。使用激光干涉测量来检查中耳结构对空气发声的响应,发现镫骨踏板在一系列频率上,鼓起的鼓膜磁盘振动接近180°外相,这类似于鼓膜和脚踏板之间的关系先前在RANID FROG中描述的运动。相反,而在RANID的鼓膜和脚踏板之间存在振动速度的显着差异,发现XENOPUS的脚踏板振动速度与鼓膜磁盘的脚踏板振动速度相似。这可以被解释为改善水下声音检测的适应性。

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