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首页> 外文期刊>The Journal of Physiology >All thalamocortical neurones possess a T-type Ca2+ 'window' current that enables the expression of bistability-mediated activities.
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All thalamocortical neurones possess a T-type Ca2+ 'window' current that enables the expression of bistability-mediated activities.

机译:所有丘脑皮质神经元都具有T型Ca2 +“窗口”电流,该电流能够表达双稳态介导的活动。

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1. The existence of a non-negligible steady-state ('window') component of the low threshold, T-type Ca2+current (IT) and an appropriately large ratio of IT to ILeak conductance (i.e. gT/gLeak) have been shown to underlie a novel form of intrinsic bistability that is present in about 15 % of thalamocortical (TC) neurones. 2. In the present experiments, the dynamic clamp technique was used to introduce into mammalian TC neurones in vitro either an artificial, i.e. computer-generated, IT in order to enhance endogenous IT, or an artificial inward ILeak to decrease endogenous ILeak. Using this method, we were able to investigate directly whether the majority of TC neurones appear non-bistable because their intrinsic ionic membrane properties are essentially different (i.e. presence of a negligible IT 'window' component), or simply because they possess a gT or gLeak conductance that is insufficiently large or small, respectively. 3. The validity of the dynamic clamp arrangement and the accuracy of artificial IT were confirmed by (i) recreating the low threshold calcium potential (LTCP) with artificial IT following its block by Ni2+ (0.5-1 mM), and (ii) blocking endogenous LTCPs with an artificial outward IT. 4. Augmentation of endogenous IT by an artificial analog or introduction of an artificial inward ILeak transformed all non-bistable TC neurones to bistable cells that expressed the full array of bistability-mediated behaviours, i.e. input signal amplification, slow oscillatory activity and membrane potential bistability. 5. These results demonstrate the existence of a non-negligible IT 'window' component in all TC neurones and suggest that rather than being a novel group of neurones, bistable cells are merely representative of an interesting region of dynamical modes in the (gT, gLeak) parameter space that may be expressed under certain physiological or pathological conditions by all TC neurones and other types of excitable cells that possess an IT 'window' component with similar biophysical properties.
机译:1.低阈值,T型Ca2 +电流(IT)和IT与ILeak电导的适当比例(即gT / gLeak)存在不可忽略的稳态(“窗口”)成分。被证明是一种固有形式的双稳态的基础,这种形式存在于约15%的丘脑皮质(TC)神经元中。 2.在本实验中,使用动态钳技术将人工的,即计算机产生的IT,以增强内源性IT,或人工的内向性ILeak,以减少内源性的ILeak,引入到体外的哺乳动物TC神经元中。使用这种方法,我们能够直接调查大多数TC神经元是否因其固有的离子膜特性本质上不同(即存在可忽略的IT“窗口”成分)而显得不稳定,或者仅仅是因为它们具有gT或g泄漏电导分别不足或过小。 3.通过以下方法证实了动态钳位装置的有效性和人工IT的准确性:(i)用Ni2 +(0.5-1 mM)阻断后,利用人工IT重建低阈值钙电势(LTCP),并且(ii)阻断具有人工向外IT的内生LTCP。 4.通过人工类似物增强内源性IT或引入人工内向性ILeak将所有非双稳态TC神经元转化为双稳态细胞,该双稳态细胞表达了由双稳态介导的行为的完整阵列,即输入信号放大,缓慢的振荡活动和膜电位双稳态。 5.这些结果表明,在所有TC神经元中都存在不可忽略的IT“窗口”成分,这表明双稳态细胞不是新的神经元组,而只是(gT, gLeak)参数空间,在某些生理或病理条件下,所有TC神经元和其他类型的具有IT“窗口”成分且具有类似生物物理特性的可兴奋细胞都可以表达该参数空间。

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