Suppr超能文献

猫腹侧基底丘脑神经元的形态学及膜特性(体外研究)

Morphology and membrane properties of neurones in the cat ventrobasal thalamus in vitro.

作者信息

Turner J P, Anderson C M, Williams S R, Crunelli V

机构信息

Physiology Unit, School of Molecular and Medical Biosciences, University of Wales Cardiff, UK.

出版信息

J Physiol. 1997 Dec 15;505 ( Pt 3)(Pt 3):707-26. doi: 10.1111/j.1469-7793.1997.707ba.x.

Abstract
  1. The morphological (n = 66) and electrophysiological (n = 41) properties of eighty-six thalamocortical (TC) neurones and those of one interneurone in the cat ventrobasal (VB) thalamus were examined using an in vitro slice preparation. The resting membrane potential for thirty-seven TC neurones was -61.9 +/- 0.7 mV, with thirteen neurones exhibiting delta oscillation with and without DC injection. 2. The voltage-current relationships of TC neurones were highly non-linear, with a mean peak input resistance of 254.4 M omega and a mean steady-state input resistance of 80.6 M omega between -60 and -75 mV. At potentials more positive than -60 mV, outward rectification led to a mean steady-state input resistance of 13.3 M omega. At potentials more negative than -75 mV, there was inward rectification, consisting of a fast component leading to a mean peak input resistance of 14.5 M omega, and a slow time-dependent component leading to a mean steady-state input resistance of 10.6 M omega. 3. Above -60 mV, three types of firing were exhibited by TC neurones. The first was an accelerating pattern associated with little spike broadening and a late component in the spike after-hyperpolarization. The second was an accommodating or intermittent pattern associated with spike broadening, while the third was a burst-suppressed pattern of firing also associated with spike broadening, but with broader spikes of a smaller amplitude. All TC neurones evoked high frequency (310-520 Hz) burst firing mediated by a low threshold Ca2+ potential. 4. Morphologically TC neurones were divided into two groups: Type I (n = 31 neurones) which had larger soma, dendritic arbors that occupied more space, thicker primary dendrites and daughter dendrites that followed a more direct course than Type II (n = 35). The only electrophysiological differences were that Type I neurones (n = 16) had smaller peak input and outward rectification resistance and spike after-hyperpolarization, but greater peak inward rectification resistance, and exhibited delta oscillation less often than Type II (n = 13). 5. The morphologically identified interneurone exhibited no outward rectification, only moderate inward rectification, and no high frequency firing associated with the offset of negative current steps below -55 mV. This interneurone had a regular accommodating firing pattern, but the spike after-hyperpolarization had a late component, unlike the accommodating firing in TC neurones. 6. Therefore, the differentiation of TC neuronal types in the cat VB thalamus based on their morphology was reflected by differences in peak input resistance, outward rectification and spike after-hyperpolarization, which could be accounted for by their difference in soma size. More importantly, the firing pattern of the majority of TC neurones in the cat VB thalamus were different from those of TC neurones in other sensory thalamic nuclei. 7. Thalamocortical neurones in the cat VB thalamus were also clearly distinguishable from the interneurone based on the presence of their prominent outward rectification, peak inward rectification and robust low threshold Ca2+ potentials.
摘要
  1. 使用体外脑片制备技术,研究了猫腹侧基底(VB)丘脑86个丘脑皮质(TC)神经元及1个中间神经元的形态学(n = 66)和电生理学(n = 41)特性。37个TC神经元的静息膜电位为-61.9±0.7 mV,其中13个神经元在有无直流注入时均表现出δ振荡。2. TC神经元的电压-电流关系高度非线性,在-60至-75 mV之间,平均峰值输入电阻为254.4 MΩ,平均稳态输入电阻为80.6 MΩ。在比-60 mV更正的电位下,外向整流导致平均稳态输入电阻为13.3 MΩ。在比-75 mV更负的电位下,存在内向整流,包括一个快速成分,导致平均峰值输入电阻为14.5 MΩ,以及一个缓慢的时间依赖性成分,导致平均稳态输入电阻为10.6 MΩ。3. 在-60 mV以上,TC神经元表现出三种放电类型。第一种是加速模式,伴有很少的峰加宽和峰后超极化中的晚期成分。第二种是适应或间歇模式,伴有峰加宽,而第三种是爆发抑制模式,也伴有峰加宽,但峰更宽且幅度更小。所有TC神经元均诱发由低阈值Ca2+电位介导的高频(310 - 520 Hz)爆发性放电。4. 形态学上,TC神经元分为两组:I型(n = 31个神经元),其胞体较大,树突分支占据更多空间,初级树突和子树突比II型(n = 35)更直。唯一的电生理学差异是,I型神经元(n = 16)的峰值输入和外向整流电阻以及峰后超极化较小,但峰值内向整流电阻较大,且比II型(n = 13)更少表现出δ振荡。5. 形态学鉴定的中间神经元未表现出外向整流,仅表现出中度内向整流,并且在低于-55 mV的负电流阶跃偏移时未出现高频放电。该中间神经元具有规则的适应放电模式,但峰后超极化有晚期成分,这与TC神经元的适应放电不同。6. 因此,基于形态学对猫VB丘脑中TC神经元类型的区分,通过峰值输入电阻、外向整流和峰后超极化的差异得以体现,这可由它们胞体大小的差异来解释。更重要的是,猫VB丘脑中大多数TC神经元的放电模式与其他感觉丘脑核团中的TC神经元不同。7. 基于其显著的外向整流、峰值内向整流和强大的低阈值Ca2+电位,猫VB丘脑中的丘脑皮质神经元也明显区别于中间神经元。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b36f/1160047/babfd8ee4a28/jphysiol00375-0162-a.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验