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猫内苍白球核的突触组织,特别提及内苍白球-丘脑投射神经元传入纤维之间的关系:一项结合变性法和辣根过氧化物酶追踪技术的电子显微镜研究

Synaptic organization of the cat entopeduncular nucleus with special reference to the relationship between the afferents to entopedunculothalamic projection neurons: an electron microscope study by a combined degeneration and horseradish peroxidase tracing technique.

作者信息

Moriizumi T, Nakamura Y, Okoyama S, Kitao Y

出版信息

Neuroscience. 1987 Mar;20(3):797-816. doi: 10.1016/0306-4522(87)90241-7.

Abstract

The synaptic organization of the feline entopeduncular nucleus was studied electron microscopically. After horseradish peroxidase injections into the ventral anterior and ventral lateral nuclear complex of the thalamus, normal axon terminals synapsing with entopedunculothalamic projection neurons were classified into four types on the basis of the size and shape of synaptic vesicles in them, and types of the postsynaptic membrane differentiation. Type I and type II axon terminals were characterized by symmetrical synaptic contacts, and large ovoid or small ovoid synaptic vesicles, respectively. Type II axon terminals were further classified into two subtypes as to their sizes: one was small (IIa), the other large (IIb). Type III and type IV axon terminals were characterized by asymmetrical synaptic contacts, and large ovoid or small ovoid synaptic vesicles, respectively. To determine the origin of each type of terminal, electrolytic lesions of the caudate nucleus or the subthalamic nuclear region were combined with horseradish peroxidase injections into the thalamus or the subthalamic nuclear region. After electrolytic lesions of the caudate nucleus, degeneration was seen in type I axon terminals contacting entopedunculothalamic projection neurons. Following electrolysis or horseradish peroxidase injection into the subthalamic nuclear region, type IIa and type IV axon terminals showed degenerations or horseradish peroxidase labelling. Such terminals also synapsed with entopedunculothalamic projection neurons. It was demonstrated that these projection neurons relay the striatal or subthalamic inputs directly to the thalamus. After horseradish peroxidase injection into the thalamus, many labelled type II axon terminals were observed to synapse with entopedunculothalamic projection neurons. Type III axon terminals were left unchanged throughout these experiments. In addition, the entopeduncular neuron was observed to receive convergent inputs from both the caudate nucleus and probably the subthalamic nucleus. Axoaxonal synapses were also found to be involved in the synaptic triad. These results indicate that type I axon terminals originate from the caudate nucleus, part of type IIa and type IV axon terminals originate from the subthalamic nucleus or caudal to the subthalamic nuclear region, and part of type IIa and type IIb terminals come from intrinsic axon collaterals.

摘要

用电子显微镜研究了猫内苍白球核的突触组织。将辣根过氧化物酶注入丘脑腹前核和腹外侧核复合体后,根据与内苍白球 - 丘脑投射神经元形成突触的正常轴突终末内突触小泡的大小和形状以及突触后膜分化类型,将其分为四种类型。I型和II型轴突终末的特征分别是对称突触接触以及大卵圆形或小卵圆形突触小泡。II型轴突终末根据其大小进一步分为两个亚型:一个小(IIa),另一个大(IIb)。III型和IV型轴突终末的特征分别是非对称突触接触以及大卵圆形或小卵圆形突触小泡。为了确定每种终末类型的起源,将尾状核或丘脑底核区域的电解损伤与向丘脑或丘脑底核区域注射辣根过氧化物酶相结合。尾状核电解损伤后,在与内苍白球 - 丘脑投射神经元接触的I型轴突终末中可见变性。向丘脑底核区域进行电解或注射辣根过氧化物酶后,IIa型和IV型轴突终末出现变性或辣根过氧化物酶标记。这些终末也与内苍白球 - 丘脑投射神经元形成突触。结果表明,这些投射神经元将纹状体或丘脑底核的输入直接中继至丘脑。向丘脑注射辣根过氧化物酶后,观察到许多标记的II型轴突终末与内苍白球 - 丘脑投射神经元形成突触。在所有这些实验中,III型轴突终末保持不变。此外,观察到内苍白球神经元接受来自尾状核以及可能来自丘脑底核汇聚的输入。还发现轴 - 轴突突触参与了突触三联体。这些结果表明,I型轴突终末起源于尾状核,部分IIa型和IV型轴突终末起源于丘脑底核或丘脑底核区域尾侧,部分IIa型和IIb型终末来自内在轴突侧支。

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