两点可辨别性:与体感系统特性的关系。

J L Fuchs, P B Brown
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引用次数: 33

摘要

分辨两个间隔很近的皮肤刺激的能力大概取决于两个响应神经元群之间重叠的程度。重叠程度由感受野(RF)的几何形状和位置以及横向抑制等交互因素决定。在本文中,我们首先考虑了RFs的一些方面,预计将影响两点敏锐度。在某些体感脑区,相对较少的射频信号与身体中线重叠。正如所预料的那样,对跨越脊柱的两点的歧视有所加强。这并不仅仅反映了中外侧的视力梯度,因为我们发现侧侧的视力更高。在肢体上,rf沿肢体长度延长,横向两点锐度大于纵向锐度。然而,在背部,RFs相当圆的地方,定向效应更大,纵向刺激的两点敏锐度比横向刺激的两点敏锐度更高。因此,两点敏锐度随背部刺激方向的显著变化不能仅用射频几何来解释。我们讨论的可能性,在侧面抑制的差异和程度相似的皮肤组成有助于观察到的刺激定向效应。
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Two-point discriminability: relation to properties of the somatosensory system.

The ability to resolve two closely spaced cutaneous stimuli presumably depends upon the degree of overlap between the two populations of responding neurons. The degree of overlap is determined by receptive field (RF) geometry and location, and by interactive factors such as lateral inhibition. In this paper, we first consider some aspects of RFs that would be expected to influence two-point acuity. In some somatosensory brain regions, relatively few RFs overlap the body midline. As would be expected, discrimination is enhanced for two points straddling the backbone. This does not simply reflect a mediolateral gradient of acuity, as we found higher acuity laterally. On the limbs, where RFs are elongated along the length of the limb, transverse two-point acuity was greater than longitudinal acuity. However, on the back, where RFs are fairly round, there was an even larger orientation effect, with two-point acuity greater for stimuli longitudinal than for stimuli transverse to the spine. Thus, the substantial variation of two-point acuity with stimulus orientation on the back cannot be explained by RF geometry alone. We discuss the possibility that differences in lateral inhibition and degree of similarity in dermatomal composition contribute to the observed stimulus orientation effects.

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