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The Papilla Neglecta of Turtles: A Detector of Head Rotations with Unique Sensory Coding Properties

机译:海龟的乳头忽视:具有独特的感官编码属性的头部旋转检测器

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摘要

The turtle papilla neglecta (PN) is a small organ lying in the ventrolateral utricular wall between the posterior crista (PC) and the utriculosaccular foramen. Innervated by a branch of the posterior ampullary nerve, the organ is covered by a cupula extending only a small distance into the endolymphatic space. Although most rotation-sensitive units in the posterior division of the eighth nerve have sensory coding properties expected of PC fibers, a few have unique properties. Intra-axonal labeling studies show that the former are PC units and the latter are PN units. PC units are maximally responsive to head rotations in the posterior canal plane and are sensitive to a combination of angular velocity and angular acceleration. PN units respond maximally to pitch rotations and are sensitive to a combination of angular acceleration and angular jerk. A maximal response to pitches can be related to the location of the PN, which allows it to sample endolymph flow from both vertical semicircular canals. Differences in response dynamics may reflect macromechanics. Because the cupula of each vertical canal occludes the endolymphatic space, its displacement should be proportional to endolymph displacement. In contrast, the PN cupula is probably coupled to endolymph flow by viscous forces, in which case its displacement should be proportional to endolymph velocity. In many vertebrates, the PN is similar to that seen in turtles in its location and in the size and shape of its cupula, which suggests that its function in these other species is also similar.
机译:乌龟乳头疏通症(PN)是位于后cr(PC)与眼球囊孔之间的腹外侧室壁的小器官。受壶腹后神经支支支配,该器官被伸入内淋巴间隙仅一小段距离的吸盘覆盖。尽管在第八神经后分区的大多数旋转敏感单位具有PC纤维所期望的感觉编码特性,但也有一些具有独特的特性。轴突内标记研究表明,前者是PC单位,后者是PN单位。 PC单元最大程度地响应头部在后管平面内的旋转,并且对角速度和角加速度的组合敏感。 PN单元最大程度地响应俯仰旋转,并且对角加速度和角加速度的组合敏感。对音调的最大响应可能与PN的位置有关,从而使PN可以采样来自两个垂直半圆管的内淋巴流量。响应动力学的差异可能反映了宏观力学。因为每个垂直管的吸盘都阻塞了内淋巴间隙,所以其位移应与内淋巴位移成比例。相反,PN吸盘可能通过粘性力与内淋巴流耦合,在这种情况下,其位移应与内淋巴速度成比例。在许多脊椎动物中,PN的位置,吸盘的大小和形状与海龟中的PN相似,这表明其在其他物种中的功能也相似。

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