Suppr超能文献

体表平行皮肤刺激的速度和方向对猫有毛皮肤中机械感受器反应的影响。

Influence of velocity and direction of surface-parallel cutaneous stimuli on responses of mechanoreceptors in feline hairy skin.

作者信息

Greenspan J D

机构信息

Department of Neurosurgery, State University of New York Health Science Center, Syracuse 13210.

出版信息

J Neurophysiol. 1992 Sep;68(3):876-89. doi: 10.1152/jn.1992.68.3.876.

Abstract
  1. The responses of cutaneous mechanoreceptors in feline hairy skin were examined in vivo with systematic variations in the velocity and direction of stimulus motion across the receptive fields (RF). The mechanoreceptor classes studied were guard hair afferents, field afferents, down hair afferents, and slowly adapting type I (SAI) mechanoreceptors. A camel's hair brush, moved by a high-precision motor, provided surface-parallel stimulation at velocities ranging from 0.4 to 100 cm/s. The stimulating device and protocols were similar to those previously used to evaluate human perception, thus allowing direct comparison of the two sets of data. 2. Each mechanoreceptor produced highly reliable mean firing rates with repeated stimulation. All mechanoreceptors showed a growth in evoked activity with increased stimulus velocity. With few exceptions, the relationship between brush velocity and mean firing rate was well described by a power function throughout the range of velocities tested. The exponents of these power functions, reflecting the degree of velocity dependency for each mechanoreceptor, were largest for the field type 1 units (F1) and guard hair type 1 units (G1). 3. The capacity of the mechanoreceptors to discriminate velocity was examined in the context of signal detection theory. For each unit, a velocity discriminability estimate (velocity delta'e) was calculated for responses to 5 versus 10 cm/s brushing and 10 versus 20 cm/s. The G1 and F1 units exhibited the largest velocity delta'e values, which were comparable to human velocity discriminability (d'e) values. Thus these data show the quantitative parallel between the velocity discriminability of G1 and F1 mechanoreceptors and of human perception similarly tested. 4. Most mechanoreceptors generated different response rates with stimuli moving in opposing directions (in the proximal-distal axis of the hindlimb). However, no mechanoreceptor class showed a consistently preferred direction of movement. A directional delta'e value was calculated for each mechanoreceptor at each stimulus velocity. These values were quite variable, even within a single mechanoreceptor class. In general, a mechanoreceptor's directional delta'e value either 1) decreased with increasing velocity or 2) remained constant across velocities. The way in which human directional discriminability varies with stimulus velocity did not parallel the way in which mechanoreceptor's directional delta'e values varied with the same range of stimulus velocities. 5. Some mechanoreceptors were tested with both the standardized brush, which was smaller than most mechanoreceptors' RFs, and a much larger brush, which was at least twice the size of the mechanoreceptors' RFs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在猫的有毛皮肤中,通过系统改变刺激在感受野(RF)上运动的速度和方向,对皮肤机械感受器的反应进行了体内研究。所研究的机械感受器类别包括触毛传入纤维、场传入纤维、茸毛传入纤维和慢适应I型(SAI)机械感受器。由高精度电机驱动的骆驼毛刷,以0.4至100厘米/秒的速度提供与表面平行的刺激。刺激装置和方案与先前用于评估人类感知的类似,从而可以直接比较两组数据。2. 每个机械感受器在重复刺激下产生高度可靠的平均放电率。所有机械感受器的诱发活动都随着刺激速度的增加而增强。除少数例外,在整个测试速度范围内,毛刷速度与平均放电率之间的关系都能用幂函数很好地描述。这些幂函数的指数反映了每个机械感受器对速度的依赖程度,对于场1型单位(F1)和触毛1型单位(G1)来说最大。3. 在信号检测理论的背景下,研究了机械感受器区分速度的能力。对于每个单位,计算了对5厘米/秒与10厘米/秒刷毛以及10厘米/秒与20厘米/秒刷毛反应的速度辨别力估计值(速度δ'e)。G1和F1单位表现出最大的速度δ'e值,与人类速度辨别力(d'e)值相当。因此,这些数据表明G1和F1机械感受器的速度辨别力与同样测试的人类感知之间存在定量的相似性。4. 大多数机械感受器在刺激沿相反方向(在后肢的近 - 远轴上)移动时产生不同的反应率,但没有一个机械感受器类别表现出始终偏好的运动方向。在每个刺激速度下,为每个机械感受器计算一个方向δ'e值。这些值变化很大,即使在单个机械感受器类别中也是如此。一般来说,机械感受器的方向δ'e值要么1)随着速度增加而减小,要么2)在不同速度下保持不变。人类方向辨别力随刺激速度变化的方式与机械感受器方向δ'e值在相同刺激速度范围内变化的方式并不相似。5. 一些机械感受器用标准化毛刷(比大多数机械感受器的RF小)和大得多的毛刷(至少是机械感受器RF大小的两倍)进行了测试。(摘要截断于400字)

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验