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首页> 外文期刊>Kobe journal of medical sciences >Subcortically and Callosally Projecting Neurons are Distinct Neuronal Pools in the Motor Cortex of the Reeler Mouse
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Subcortically and Callosally Projecting Neurons are Distinct Neuronal Pools in the Motor Cortex of the Reeler Mouse

机译:皮层下和Call部投射的神经元是Reeler小鼠运动皮层中不同的神经元池

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摘要

Subcortically projecting neurons and callosally projecting ones are distinct neuronal pools in the cerebral cortex of the rodents. However, cortical efferent neurons are known to project multiple targets transiently by plural collateral axons. These plural axons are eliminated during prenatal and postnatal development. In the cerebral cortex of the Reelin-deficient mouse, reeler, which is caused by mutation of the reelin gene, cortical efferent neurons are ectopically distributed. However, it is still unknown whether cortical efferent neurons in the reeler mouse lose surplus collateral axons or maintain them during developmental periods. If surplus collaterals of malpositioned cortical neurons are not eliminated, neurons projecting subcortically may project their axons to the contralateral hemisphere. To test this plausible hypothesis, we made double injections of two fluorescent dyes, Fast Blue and Diamidino yellow dihydrochloride into two of three regions, i.e., upper cervical cord, ventral lateral thalamic nucleus, and contralateral motor cortex of the normal and reeler mice, to label corticospinal, corticothalamic and callosal commissure neurons in the motor cortex, retrogradely. No double labeled neurons were identified in the motor cortex of the normal and reeler mice, although the distribution patterns of these cortical efferent neurons were completely different between normal and reeler mice. These findings strongly suggest that collateral elimination of cortical efferent neurons during developing periods are not affected in this mutant mouse.
机译:皮层下投射神经元和and体投射神经元是啮齿动物大脑皮层中不同的神经元库。然而,已知皮质传出神经元通过多个副轴突瞬时投射多个靶标。在产前和产后发育过程中消除了这些轴突。在由reelin基因突变引起的Reelin缺陷小鼠reeler的大脑皮层中,皮质传出神经元异位分布。然而,仍不清楚在发育期小鼠中皮质皮质传出神经元是否会丢失多余的副轴突或维持它们。如果不能消除皮质神经元位置不正确的多余侧支,则皮层下投射的神经元可能会将其轴突投射到对侧半球。为了验证这一合理的假设,我们向正常和dye鼠的上颈部脊髓,腹侧丘脑外侧核以及对侧运动皮层这三个区域中的两个区域中两次注射了两种荧光染料,分别为Fast Blue和Diamidino yellow dihydrochloride。在运动皮层中逆行标记皮质脊髓,皮质丘脑和call的连合神经元。尽管正常和re鼠的运动皮质皮层神经元的分布方式完全不同,但在正常和re鼠的运动皮层中未发现双标记神经元。这些发现有力地表明,在这种突变小鼠中,在发育期的皮质神经传出神经元的旁侧消除并不受影响。

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