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小猫触觉感觉纤维的功能成熟

Functional maturation of tactile sensory fibers in the kitten.

作者信息

Ferrington D G, Hora M O, Rowe M J

出版信息

J Neurophysiol. 1984 Jul;52(1):74-85. doi: 10.1152/jn.1984.52.1.74.

Abstract

The maturation of tactile coding capacities was investigated in sensory fibers supplying the forelimb footpads in anesthetized kittens. Fibers were isolated by microdissection from the median or ulnar nerves of neonatal kittens (1st to 5th postnatal day) and kittens in the age categories 10-15, 25-30, 55-63, and 83-90 days. The use of quantitative, reproducible tactile stimuli, in particular, cutaneous vibration, and objective analytical procedures enabled response parameters to be quantified and compared at different ages with those of adult fibers. While three classes of myelinated tactile sensory fibers are associated with the footpads in adult cats, one of them slowly adapting (SA) and two, the rapidly adapting (RA) and pacinian corpuscle (PC) classes, showing pure dynamic sensitivity, this breakdown into three classes is not apparent until 10-15 days after birth. In all age groups, the SA fibers displayed responses that were graded depending on the magnitude of the skin indentation. However, in younger kittens (less than 25-30 days) plateau levels of response were sometimes attained over a narrow range (0.5 mm) of indentation. From 10-15 days, when RA fibers are identifiable, their sensitivity, as measured by absolute and 1:1 thresholds to cutaneous vibration, was independent of age at low vibration frequencies, less than or equal to 80 Hz. However, at high frequencies, e.g., 200 Hz, their thresholds appeared to decrease during the 1st postnatal month with a resulting expansion in their bandwidth of vibratory sensitivity. At their best frequency, around 30 Hz, RA fibers appear mature by 10-15 days in their capacity for encoding vibratory frequency information. The PC class of tactile afferents displayed the most striking functional changes with age. Their vibratory bandwidths, at 50-micron amplitude, expand from an upper limit of about 200-300 Hz in the neonate to mature values of about 800-1,000 Hz over a 2-mo postnatal period.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在麻醉的小猫中,研究了供应前肢脚垫的感觉纤维中触觉编码能力的成熟情况。通过显微解剖从新生小猫(出生后第1至5天)以及10 - 15、25 - 30、55 - 63和83 - 90天龄的小猫的正中神经或尺神经中分离出纤维。使用定量的、可重复的触觉刺激,特别是皮肤振动,以及客观的分析程序,能够对不同年龄的反应参数进行量化,并与成年纤维的参数进行比较。虽然成年猫的脚垫与三类有髓触觉感觉纤维相关,其中一类是慢适应(SA)纤维,另外两类是快适应(RA)纤维和帕西尼小体(PC)纤维,表现出纯动态敏感性,但这种分为三类的情况直到出生后10 - 15天才明显。在所有年龄组中,SA纤维的反应根据皮肤压痕的大小分级。然而,在较年幼的小猫(小于25 - 30天)中,有时在狭窄的压痕范围(0.5毫米)内会达到反应的平稳水平。从10 - 15天开始,当RA纤维可识别时,其对皮肤振动的绝对阈值和1:1阈值所测量的敏感性,在低振动频率(小于或等于80赫兹)下与年龄无关。然而,在高频,例如200赫兹时,它们的阈值在出生后的第一个月似乎会降低,导致其振动敏感带宽扩大。在其最佳频率约30赫兹时,RA纤维在编码振动频率信息的能力方面在10 - 15天时似乎已成熟。触觉传入的PC类纤维随年龄表现出最显著的功能变化。它们在50微米振幅下的振动带宽,从新生儿的约200 - 300赫兹上限扩展到出生后2个月内的约800 - 1000赫兹的成熟值。(摘要截断于400字)

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