感觉毛

  • 网络Sensory hair;sense hair;bristles;Vibrissa;sensory bristle
感觉毛感觉毛
  1. 豚鼠内耳前庭感觉毛细胞的分离

    Isolation and Identification of Inner Ear Vestibular Hair Cells of Guinea Pig

  2. 美洲大蠊触角无感觉毛感受器的扫描电镜观察

    Observation on the unhaired sensilla of the antenna of Periplaneta americana by SEM

  3. 基底乳头在内淋巴腔面有感觉毛细胞,其表面可见盖膜。

    Sensory hair cells with overlymg tectorial membrane could be identified in the basilar papilla .

  4. 但是,尾器的感觉毛数量多、分布广,可能在完成交配行为中具有重要意义。

    However , the hairs on or in the male terminaliae may be of importance in copulation .

  5. 中国对虾体表感觉毛结构和功能的研究Ⅱ.嗅毛的神经调控方式

    STRUCTURE AND FUNCTION OF CUTICULAR SENSILLAE ON THE PRAWN PENAEUS CHINENSIS ⅱ . Innervation of the aesthetasc hairs

  6. 前庭终器感觉毛细胞亦出现变性。

    Part of the hair cells of the cochlea and some hair cells of the vestibular organs were degenerated .

  7. 到蛹期,翅芽、触角和足明显长大,并出现感觉毛。

    In the pupal stage , the wing buds , antennae and legs are prolonged and covered with abundant sensory hairs .

  8. 半规管的壶腹嵴由一排感觉毛细胞和2~3排支持细胞构成。

    The crista awpullaris of the semicircular canal consisted of a layer of sensory hair cells and2-3 layers of supporting cells .

  9. 蟋蟀产卵器背侧产卵瓣外侧的感觉毛的感觉信号传入在其产卵过程中有重要的作用。

    The input sense signals of the hairs on the dorsal valvula of the ovipositor have important function in cricket oviposition behaviour .

  10. 多数种类第5跗节跖面上具有许多感觉毛,其数量和分布在不同种甚至两性之间均有差异,拟可用于分类鉴定。

    The sensory hairs located on the plantar surface are different in number and distribution in the species of flea examined and difference even exists between the sexes of the same species .

  11. 在许多情况下非先天性听力损失的原因是在内耳的特殊感觉细胞毛细胞的变性造成的。

    In many cases of non-congenital hearing loss , the cause is degeneration of specialized sensory cells in the inner ear , called hair cells .

  12. 工业噪声主要损伤内耳的感觉细胞&毛细胞。

    Industrial noise induces special damage to the auditory organ , principally to the sensory cells-hair cells of the inner ear .

  13. 用机械分离法从豚鼠前庭感觉上皮中分离出不同种类的前庭感觉毛细胞(VHC)。

    Living vestibular hair cells ( VHCs ) were separated from vestibular sensory epithelium of guinea pig by micromanipulation .