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正常成年小鼠与单胺氧化酶A基因敲除(Tg8)成年小鼠初级体感皮层(S1)躯体感觉处理的差异。

Differences in somatosensory processing in S1 barrel cortex between normal and monoamine oxidase A knockout (Tg8) adult mice.

作者信息

Yang Z, Seif I, Armstrong-James M

机构信息

Neuroscience Section, Biomedical Sciences Division, St Bartholomews and the Royal London School of Medicine, Queen Mary and Westfield College, London University, Mile End Road, London E1 4NS, UK.

出版信息

Cereb Cortex. 2001 Jan;11(1):26-36. doi: 10.1093/cercor/11.1.26.

Abstract

Spatio-temporal processing of whisker information was analysed in vivo for single neurons in D2 barrel columns of S1 cortex in Tg8 mutant mice, which lack barrels. Findings were compared with normal C3H mice of the same genetic background. The topographical organization of functional columns was similar in Tg8 and normal mice. Response magnitudes (RMs) to D2 principal whisker deflections in D2 columns for Tg8 were similar to normals for layers I-III and layer IV cells but short latency responses (>10 ms post-stimulus) were twice the magnitude of normal mice. The surrounding whiskers D1 and D3 yielded smaller RMs in layer IV of mutants than normal mice whereas RMs in layers I-III were equipotent (P>0.5). Modal latencies were shorter in Tg8 mice in all layers. Latency distributions for whisker D2 responses in both laminae were bimodal in normal mice, peaking at 6-8 and 12 ms post-stimulus, but unimodal in Tg8 mice in both laminae, peaking at 6-8 ms. Hence, despite an absence of barrels, segregation of columns is enhanced in layer IV and sensory processing is faster in layers I-IV compared with normal mice. This contrasts with adenylyl cyclase knockout mice where both an absence of barrels and enhanced surrounding whisker responses have been observed. These findings suggest that factors other than barrels and clustering of thalamo-cortical terminals define receptive field geometry.

摘要

在缺乏桶状结构的Tg8突变小鼠初级体感皮层(S1)D2桶状柱中的单个神经元上,对触须信息的时空处理进行了体内分析。研究结果与具有相同遗传背景的正常C3H小鼠进行了比较。Tg8小鼠和正常小鼠功能柱的拓扑组织相似。Tg8小鼠D2柱中对D2主要触须偏转的反应幅度(RM)在I-III层和IV层细胞中与正常小鼠相似,但短潜伏期反应(刺激后>10毫秒)的幅度是正常小鼠的两倍。突变体IV层中周围触须D1和D3产生的RM比正常小鼠小,而I-III层中的RM相当(P>0.5)。Tg8小鼠所有层的模态潜伏期都较短。正常小鼠两层中触须D2反应的潜伏期分布是双峰的,在刺激后6-8毫秒和12毫秒达到峰值,但Tg8小鼠两层中均为单峰,在6-8毫秒达到峰值。因此,尽管缺乏桶状结构,但与正常小鼠相比,IV层中柱的分离增强,I-IV层中的感觉处理更快。这与腺苷酸环化酶敲除小鼠形成对比,在后者中既观察到缺乏桶状结构,又观察到周围触须反应增强。这些发现表明,除了桶状结构和丘脑-皮质终末的聚集之外,还有其他因素决定感受野几何形状。

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