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家鸡前庭复合动作电位的个体发生

Ontogeny of vestibular compound action potentials in the domestic chicken.

作者信息

Jones S M, Jones T A

机构信息

Department of Surgery, University of Missouri School of Medicine, Columbia 65212, USA.

出版信息

J Assoc Res Otolaryngol. 2000 Nov;1(3):232-42. doi: 10.1007/s101620010026.

Abstract

Compound action potentials of the vestibular nerve were measured from the surface of the scalp in 148 chickens (Gallus domesticus). Ages ranged from incubation day 18 (E18) to 22 days posthatch (P22). Responses were elicited using linear acceleration cranial pulses. Response thresholds decreased at an average rate of -0.45 dB/day. The decrease was best fit by an exponential model with half-maturity time constant of 5.1 days and asymptote of approximately -25.9 dB re:1.0 g/ms. Mean threshold approached within 3 dB of the asymptote by ages P6-P9. Similarly, response latencies decreased exponentially to within 3% of mature values at ages beyond P9. The half-maturity time constant for peripheral response peak latencies P1, N1, and P2 was comparable to thresholds and ranged from approximately 4.6 to 6.2 days, whereas central peaks (N2, P3, and N3) ranged from 2.9 to 3.4 days. Latency-intensity slopes for P1, N1, and P2 tended to decrease with age, reaching mature values within approximately 100 hours of hatching. Amplitudes increased as a function of age with average growth rates for response peaks ranging from 0.04 to 0.09 microV/day. There was no obvious asymptote to the growth of amplitudes over the ages studied. Amplitude-intensity slopes also increased modestly with age. The results show that gravity receptors are responsive to transient cranial stimuli as early as E19 in the chicken embryo. The functional response of gravity receptors continues to develop for many days after all major morphological structures are in place. Distinct maturational processes can be identified in central and peripheral neural relays. Functional improvements during maturation may result from refinements in the receptor epithelia, improvements in central and peripheral synaptic transmission, increased neural myelination, as well as changes in the mechanical coupling between the cranium and receptor organ.

摘要

在148只鸡(家鸡)的头皮表面测量了前庭神经的复合动作电位。年龄范围从孵化第18天(E18)到出壳后22天(P22)。使用线性加速度颅骨脉冲引发反应。反应阈值以平均-0.45 dB/天的速率下降。这种下降最适合用指数模型拟合,半成熟时间常数为5.1天,渐近线约为-25.9 dB re:1.0 g/ms。到P6 - P9龄时,平均阈值接近渐近线3 dB以内。同样,反应潜伏期在P9龄之后呈指数下降至成熟值的3%以内。外周反应峰潜伏期P1、N1和P2的半成熟时间常数与阈值相当,范围约为4.6至6.2天,而中枢峰(N2、P3和N3)范围为2.9至3.4天。P1、N1和P2的潜伏期 - 强度斜率倾向于随年龄下降,在孵化后约100小时内达到成熟值。振幅随年龄增长而增加,反应峰的平均生长速率为0.04至0.09 μV/天。在所研究的年龄范围内,振幅增长没有明显的渐近线。振幅 - 强度斜率也随年龄适度增加。结果表明,重力感受器早在鸡胚胎的E19期就对短暂的颅骨刺激有反应。在所有主要形态结构形成后,重力感受器的功能反应仍会持续发展许多天。在中枢和外周神经传导中可以识别出不同的成熟过程。成熟过程中的功能改善可能源于感受器上皮的优化、中枢和外周突触传递的改善、神经髓鞘化增加以及颅骨与感受器器官之间机械耦合的变化。

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