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小鼠桶状皮层在功能上可补偿新生期触须毛囊损伤所导致的功能缺失。

Mouse barrel cortex functionally compensates for deprivation produced by neonatal lesion of whisker follicles.

作者信息

Melzer P, Crane A M, Smith C B

机构信息

Laboratory of Cerebral Metabolism, National Institute of Mental Health, Bethesda, MD 20892.

出版信息

Eur J Neurosci. 1993 Dec 1;5(12):1638-52. doi: 10.1111/j.1460-9568.1993.tb00232.x.

Abstract

In the murine somatosensory pathway, the metabolic whisker map in barrel cortex derived with the autoradiographic deoxyglucose method is spatially in register with the morphological whisker map represented by the barrels. The barrel cortex of adult mice, in which we had removed three whisker follicles from the middle row of whiskers shortly after birth, contained a disorganized zone surrounded by enlarged barrels with partially disrupted borders. With the fully quantitative autoradiographic deoxyglucose method, we investigated in barrel cortex of such mice the magnitude and the pattern of metabolic responses evoked by the deflection of whiskers. Most remarkably, the simultaneous deflection of six whiskers neighbouring the lesion activated not only the territory of the corresponding barrels, but also the unspecifiable area intercalated between the clearly identified barrels. This metabolic whisker map, unpredictable from the morphological 'barrel' map, may reflect a functional compensation for the deficit in input.

摘要

在小鼠体感通路中,通过放射自显影脱氧葡萄糖法得出的桶状皮质中的代谢性触须图谱在空间上与由桶状结构所代表的形态学触须图谱对齐。在成年小鼠的桶状皮质中,我们在其出生后不久从中间一排触须中移除了三个触须毛囊,该桶状皮质包含一个杂乱区域,其周围是边界部分 disrupted 的扩大桶状结构。通过完全定量的放射自显影脱氧葡萄糖法,我们在这类小鼠的桶状皮质中研究了触须偏转所诱发的代谢反应的幅度和模式。最显著的是,与损伤相邻的六根触须同时偏转不仅激活了相应桶状结构的区域,还激活了在明确识别的桶状结构之间插入的无法确定的区域。这种代谢性触须图谱,从形态学的“桶状”图谱无法预测,可能反映了对输入缺陷的功能补偿。

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