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从仓鼠上丘浅层到深层的投射:一项细胞内辣根过氧化物酶注射研究

The projection from the superficial to the deep layers of the superior colliculus: an intracellular horseradish peroxidase injection study in the hamster.

作者信息

Mooney R D, Nikoletseas M M, Hess P R, Allen Z, Lewin A C, Rhoades R W

机构信息

Department of Anatomy, University of Medicine and Dentistry of New Jersey, School of Osteopathic Medicine, Piscataway 08854.

出版信息

J Neurosci. 1988 Apr;8(4):1384-99. doi: 10.1523/JNEUROSCI.08-04-01384.1988.

Abstract

Intracellular recording and horseradish peroxidase (HRP) injection techniques were employed to examine the projections of superficial layer [stratum griseum superficiale (SGS) and stratum opticum (SO)] superior collicular (SC) neurons in the hamster that sent axon collaterals into the deep laminae (those ventral to the SO) of this structure. Sixty-nine neurons were studied, selected from a sample of over 185 HRP-filled superficial layer cells on the basis of having heavily stained axons. Of the 69 cells included in the study, 43.4% (n = 30) sent at least one axon collateral to the deep laminae. Not all cell types in the superficial layers contributed equally to this interlaminar projection: 78.6% (n = 11) of the recovered wide-field vertical cells, 55.0% (n = 11) of the narrow-field vertical cells, 16.7% (n = 2) of the stellate cells, 40.0% (n = 2) of the marginal cells, 18.2% (n = 2) of the horizontal cells, and 28.6% (n = 2) of neurons we could not classify on the basis of their somadendritic morphology projected to the deep layers. Within a given cell class, there were no significant morphological or physiological differences between the neurons that possessed deep axon collaterals and those that did not. The deep axon collaterals of most of the interlaminar projection neurons were restricted to the stratum griseum intermediate (SGI). In this layer, the largest segment of the axon arbor was located lateral to a projection line that was orthogonal to the SC surface and that passed through the soma of the cell in question. These results, along with those of a previous study (Mooney et al., 1984), which demonstrated that the dendrites of deep layer cells may extend through the SO and into the SGS, indicate that there is an extensive anatomical substrate by which sensory information may be communicated from superficial to deep layer SC neurons.

摘要

采用细胞内记录和辣根过氧化物酶(HRP)注射技术,研究了仓鼠上丘浅层[灰质浅层(SGS)和视层(SO)]中那些将轴突侧支发送到该结构深层(SO腹侧那些层)的神经元的投射情况。共研究了69个神经元,这些神经元是从185多个充满HRP的浅层细胞样本中挑选出来的,挑选依据是其轴突染色较深。在纳入研究的69个细胞中,43.4%(n = 30)向深层发送了至少一条轴突侧支。浅层中的并非所有细胞类型对这种层间投射的贡献都相同:回收的宽视野垂直细胞中有78.6%(n = 11)、窄视野垂直细胞中有55.0%(n = 11)、星状细胞中有16.7%(n = 2)、边缘细胞中有40.0%(n = 2)、水平细胞中有18.2%(n = 2)以及我们无法根据其胞体树突形态分类的神经元中有28.6%(n = 2)投射到深层。在给定的细胞类别中,具有深层轴突侧支的神经元与没有深层轴突侧支的神经元之间在形态或生理上没有显著差异。大多数层间投射神经元的深层轴突侧支局限于中间灰质层(SGI)。在该层中,轴突分支的最大部分位于一条与上丘表面正交且穿过所研究细胞胞体的投射线的外侧。这些结果,连同先前一项研究(穆尼等人,1984年)的结果,该研究表明深层细胞的树突可能延伸穿过SO并进入SGS,表明存在一个广泛的解剖学基础,通过该基础感觉信息可以从浅层上丘神经元传递到深层上丘神经元。

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