Sjöström A, Conradi N G, Andersson S A
Acta Physiol Scand. 1987 Aug;130(4):695-703. doi: 10.1111/j.1748-1716.1987.tb08194.x.
It was recently shown that an increase in latency of the cortical visual evoked response (VER) seen in young malnourished animals persists in adult rats given a low protein diet. In the present paper the VER latencies of the specific visual pathway were measured in order to establish the level at which the latency increase occurs in protein-deprived rats. The VER in the dorsal lateral geniculate nucleus (dLGN) showed no significant differences to onset or peak latencies between control (C) and the protein-deprived (PD) rats. The dLGN activity was higher in C rats than in PD rats. Late components differed in median values between the two groups, but the individual variations were large. Generally, the VER of the dLGN in PD rats was more stereotype compared with the C rats. Intracortical VER at a depth of 0.4-0.5 mm showed a small negative component of short onset latency in both C and PD rats. This component preceded the onset of the initial positivity recorded from the cortical surface by 1-2 ms in C rats and by 3-6 ms in PD rats. Following electrical stimulation of the dLGN, no differences in onset latency of the first cortical activity (monosynaptic response) were recorded between C and PD rats, whereas later activity was significantly delayed in PD compared with C rats. The laminar potential pattern was less distinct in PD compared with C rats, and the late components of the evoked response from deep cortical layers were markedly attenuated or lacking.(ABSTRACT TRUNCATED AT 250 WORDS)
最近研究表明,幼年营养不良动物所出现的皮质视觉诱发电位(VER)潜伏期增加现象,在给予低蛋白饮食的成年大鼠中依然存在。在本文中,为确定蛋白质缺乏大鼠潜伏期增加出现的水平,对特定视觉通路的VER潜伏期进行了测量。背外侧膝状核(dLGN)的VER在对照组(C)和蛋白质缺乏组(PD)大鼠之间,起始潜伏期或峰值潜伏期均无显著差异。C组大鼠的dLGN活性高于PD组大鼠。两组后期成分的中位数不同,但个体差异较大。一般来说,与C组大鼠相比,PD组大鼠dLGN的VER更具刻板性。在0.4 - 0.5毫米深度的皮质内VER在C组和PD组大鼠中均显示出起始潜伏期较短的小负成分。在C组大鼠中,该成分比从皮质表面记录到的初始正性成分的起始提前1 - 2毫秒,在PD组大鼠中提前3 - 6毫秒。电刺激dLGN后,C组和PD组大鼠之间首次皮质活动(单突触反应)的起始潜伏期没有差异,而与C组大鼠相比,PD组大鼠的后期活动明显延迟。与C组大鼠相比,PD组大鼠的层状电位模式不那么清晰,皮质深层诱发反应的后期成分明显减弱或缺失。(摘要截短于250字)