Merrill E G, Wall P D
J Physiol. 1972 Nov;226(3):825-46. doi: 10.1113/jphysiol.1972.sp010012.
A specialized type of spinal cord cell has its cell body in lamina IV and has a small low threshold cutaneous receptive field which is remarkable for its abrupt edge. No signs could be found of a subliminal fringe to this field since its size remains fixed during wide excursions of the cell's excitability. Reversible blocking of peripheral nerves and dorsal roots showed that the afferents responsible for exciting these cells following natural stimuli, run in a restricted area of peripheral nerve and dorsal root. When the fibres necessary to sustain the natural stimulus receptive field were blocked, it was shown that other large myelinated fibres in neighbouring roots were still capable of firing the cell monosynaptically following electrical stimulation of the root or periphery although no natural stimuli were able to change the cell's excitability. It is necessary to divide the afferent synapses on such cells into a class which is highly effective in firing the cell on natural stimulation and a second class which has no effect yet detected following natural stimuli but which can fire the cell monosynaptically if synchronously activated by electrical stimulation. Suggestions are made for possible presynaptic and post-synaptic mechanisms which might divide the effect of arriving impulses into two such classes.
一种特殊类型的脊髓细胞,其细胞体位于第IV层,具有一个小的低阈值皮肤感受野,该感受野以其明显的边缘而引人注目。由于在细胞兴奋性大幅度变化期间其大小保持固定,因此未发现该感受野有阈下边缘的迹象。对周围神经和背根的可逆性阻断表明,在自然刺激后负责兴奋这些细胞的传入神经,走行于周围神经和背根的一个受限区域。当维持自然刺激感受野所需的纤维被阻断时,结果表明,尽管没有自然刺激能够改变细胞的兴奋性,但相邻神经根中的其他大的有髓纤维在对神经根或外周进行电刺激后仍能够单突触地激发该细胞。有必要将这类细胞上的传入突触分为一类,这类突触在自然刺激时能高效激发细胞;另一类突触在自然刺激后尚未检测到有作用,但如果通过电刺激同步激活,则能单突触地激发细胞。针对可能的突触前和突触后机制提出了建议,这些机制可能将到达冲动的效应分为这样两类。