Chicken (Gallus domesticus) inner ear afferents.

Hirota Hara, Xiangdong Chen, Jershonda F. Hartsfield, J. Hara, D. Martin, C. Fermin
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引用次数: 3

Abstract

Neurons from the vestibular (VG) and the statoacoustic (SAG) ganglion of the chick (Gallus domesticus) were evaluated histologically and morphometrically. Embryos at stages 34 (E8 days), 39 (E13 days) and 44 (E18 days) were sacrificed and temporal bones microdissected. Specimens were embedded in JB-4 methacrylate plastic, and stained with a mixture of 0.2% toluidine blue (TB) and 0.1% basic Fuschin in 25% ethanol or with a mixture of 2% TB and 1% paraphenylenediamine (PDA) for axon and myelin measurement study. Images of the VIIIth nerve were produced by a V150 (R) color imaging system and the contour of 200-300 neuronal bodies (perikarya) was traced directly on a video screen with a mouse in real time. The cross-sectional area of VG perikarya was 67.29 micrometers2 at stage 34 (E8), 128.46 micrometers2 at stage 39 (E13) and 275.85 micrometers2 at stage 44 (E18). The cross-sectional area of SAG perikarya was 62.44 micrometers2 at stage 34 (E8), 102.05 micrometers2 at stage 39 (E13) and 165.02 micrometers2 at stage 44 (E18). A significant cross-sectional area increase of the VG perikarya between stage 39 (E13) and stage 44 (E18) was determined. We randomly measured the cross-sectional area of myelin and axoplasm of hatchling afferent nerves, and found a correspondence between axoplasmic and myelin cross-sectional area in the utricular, saccular and semicircular canal nerve branches of the nerve. The results suggest that the period between stage 34 (E8) and 39 (E13) is a critical period for afferent neuronal development. Physiological and behavioral vestibular properties of developing and maturing hatchlings may change accordingly. The results compliment previous work by other investigators and provide valuable anatomical measures useful to correlate physiological data obtained from stimulation of the whole nerve or its parts.
鸡(家鸡)内耳传入。
对鸡(Gallus domesticus)前庭神经节(VG)和静声神经节(SAG)的神经元进行了组织学和形态学评价。处死第34期(E8 d)、第39期(E13 d)和第44期(E18 d)胚胎,显微解剖颞骨。将标本包埋在j -4甲基丙烯酸酯塑料中,用0.2%甲苯胺蓝(TB)和0.1%碱性Fuschin在25%乙醇中或2% TB和1%对苯二胺(PDA)的混合物染色,用于轴突和髓鞘的测量研究。采用V150 (R)彩色成像系统对第viii神经进行成像,用鼠标直接在视频屏幕上实时追踪200-300个神经元体(核周)的轮廓。第34期(E8)、第39期(E13)和第44期(E18)的横截面积分别为67.29微米、128.46微米和275.85微米。第34期(E8)、第39期(E13)和第44期(E18)核周截面积分别为62.44、102.05和165.02微米。在第39期(E13)和第44期(E18)之间,VG核周的横截面积显著增加。我们随机测量了幼雏传入神经的髓磷脂和轴质横截面积,发现在神经的室、囊和半规管神经分支中,轴浆和髓磷脂横截面积具有对应关系。提示第34期(E8)至第39期(E13)是传入神经元发育的关键时期。发育和成熟的幼雏前庭系统的生理和行为特性可能会发生相应的变化。该结果补充了其他研究者先前的工作,并提供了有价值的解剖学测量,有助于将整个神经或其部分刺激获得的生理数据联系起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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