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新生小猫触觉传入纤维的功能能力

Functional capacities of tactile afferent fibres in neonatal kittens.

作者信息

Ferrington D G, Rowe M J

出版信息

J Physiol. 1980 Oct;307:335-53. doi: 10.1113/jphysiol.1980.sp013438.

Abstract
  1. Responses were recorded from individual tactile afferent fibres isolated by microdissection from the median nerve of pentobarbitone-anaesthetized neonatal kittens (1-5 days post-natal age). Experiments were also conducted on adult cats to permit precise comparisons between neonatal and adult fibres.2. Neonatal fibres with receptive fields on the glabrous skin of the foot pads were classified into two broad groups, a slowly adapting class (40%) which responded throughout a 1 sec period of steady indentation and a rapidly adapting or dynamically sensitive class comprising 60% of units. Fibres in these two groups had overlapping conduction velocities in the range 4.3 to 7.5 m/sec and were believed to be the developing Group II afferents of the adult.3. Neonatal slowly adapting fibres qualitatively resembled their adult counter-parts. They displayed graded stimulus-response relations which, over the steepest segment of the curves, had mean slopes of 15.7 impulses/100 mum of indentation. Plateau levels of response were often reached at amplitudes of skin indentation of < 0.5-0.7 mm.4. Dynamically sensitive fibres with receptive fields on the glabrous skin were studied using sinusoidal cutaneous vibration which in the adult enables them to be divided into two distinct classes. However, in the neonate, they formed a continuum whether criteria of sensitivity or responsiveness were used.5. In response to vibration neonatal fibres differed from adult ones according to the following quantitative indices: (i) sensitivity as measured by both absolute thresholds and thresholds for a 1: 1 pattern of response, both of which were higher in the neonate than in the adult at all frequencies > 50 Hz and differed by an order of magnitude at frequencies >/= 200 Hz; (ii) responsiveness based on the mean impulse rate evoked at a fixed amplitude of cutaneous vibration; (iii) band width of vibratory sensitivity which in the neonate was confined to approximately 5-300 Hz whereas in the two classes of adult units it covered the range 5-800 Hz; (iv) capacity for coding information about vibration frequency. Impulse activity of neonatal fibres was less tightly phase-locked to the vibratory stimulus and showed a poorer reflection of the periodic nature of the vibratory stimulus than impulse patterns of adult units.6. The results reveal that tactile receptors and afferent fibres in the neonate are functionally immature. Their restricted coding capacities suggest that peripheral tactile sensory mechanisms impose limits on the ability of the new-born animal to derive information about its tactile environment.
摘要
  1. 从经戊巴比妥麻醉的新生小猫(出生后1 - 5天)正中神经中通过显微解剖分离出的单个触觉传入纤维记录反应。还对成年猫进行了实验,以便对新生纤维和成年纤维进行精确比较。

  2. 在脚垫无毛皮肤上具有感受野的新生纤维分为两大类,一类是慢适应型(40%),在持续1秒的稳定压痕期间持续反应;另一类是快适应或动态敏感型,占单位数量的60%。这两组纤维的传导速度在4.3至7.5米/秒范围内重叠,被认为是成年动物发育中的Ⅱ类传入纤维。

  3. 新生慢适应纤维在质量上与其成年对应物相似。它们表现出分级的刺激 - 反应关系,在曲线最陡的部分,平均斜率为15.7个冲动/100微米压痕。在皮肤压痕幅度<0.5 - 0.7毫米时,通常会达到反应的平台水平。

  4. 对在无毛皮肤上具有感受野的动态敏感纤维使用正弦皮肤振动进行研究,在成年动物中,这能使它们分为两个不同的类别。然而,在新生儿中,无论使用敏感性标准还是反应性标准,它们都形成一个连续体。

  5. 对振动的反应中,新生纤维与成年纤维在以下定量指标上存在差异:(i)以绝对阈值和1:1反应模式的阈值衡量的敏感性,在所有频率>50赫兹时,新生儿的这两个阈值都高于成年动物,在频率>/=200赫兹时相差一个数量级;(ii)基于在固定皮肤振动幅度下诱发的平均冲动率的反应性;(iii)振动敏感性的带宽,新生儿的带宽限制在约5 - 300赫兹,而成年动物的两类单位的带宽范围是5 - 800赫兹;(iv)编码振动频率信息的能力。新生纤维的冲动活动与振动刺激的相位锁定不紧密,与成年单位的冲动模式相比,对振动刺激周期性的反映较差。

  6. 结果表明,新生儿的触觉感受器和传入纤维在功能上不成熟。它们有限的编码能力表明,外周触觉感觉机制对新生动物获取其触觉环境信息的能力施加了限制。

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