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Distribution and Kinetic Properties of GABAergic Inputs to Layer V Pyramidal Cells in Rat Auditory Cortex

机译:大鼠听皮层V层锥体细胞GABA能输入的分布和动力学特性

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摘要

Neocortical layer V is distinguished by both its pyramidal cells and its varied cortical and extracortical projections. Several studies suggest that the layer V pyramidal cell types, intrinsically bursting (IB) and regular spiking (RS) cells, differ both in the circuits in which they participate and in their inhibitory inputs. We quantified differences in inhibitory inputs to RS and IB cells using whole-cell voltage clamp techniques in the auditory cortex. We recorded miniature inhibitory postsynaptic currents (mIPSCs) and spontaneous IPSCs to gain kinetic, amplitude, and frequency information about GABAergic synapses. We then used focal sucrose applications to elicit mIPSC rate increases at the soma or dendrites of both cell types. We also electrically stimulated the axons giving rise to inhibitory synaptic inputs to measure minimally evoked IPSCs occurring at the soma or apical dendrites. We found that spontaneous and evoked IPSCs recorded from the auditory cortex have faster rise and decay kinetics when directly compared with those of the same layer V cells in other sensory cortical areas. We also found that mIPSCs observed in auditory IB and RS cells are different from one another. RS cell mIPSCs are larger and have faster rises and decays than IB cell mIPSCs, but IB cell mIPSCs occur more frequently. Focal sucrose application showed that most IB cell mIPSCs originate in the dendrites and are subject to dendritic filtering while most RS cell mIPSCs originate at the soma and are not filtered. These findings suggest that, first, IB and RS cells process their inputs in fundamentally different ways and, second, auditory cortical RS and IB cells may have specializations that allow them to process inhibitory inputs faster.
机译:新皮质层V的特征在于其锥体细胞以及皮质和皮质外投影的变化。多项研究表明,第V层锥体细胞类型,即内在爆发(IB)和常规刺突(RS)细胞,在它们参与的回路和抑制性输入方面都不同。我们使用听觉皮层中的全细胞电压钳技术量化了对RS和IB细胞抑制输入的差异。我们记录了微型抑制性突触后电流(mIPSCs)和自发的IPSCs,以获取有关GABA能突触的动力学,振幅和频率信息。然后,我们使用局灶性蔗糖应用在两种细胞类型的体细胞或树突中引起mIPSC速率增加。我们还通过电刺激轴突产生抑制性突触输入,以测量在躯体或根尖树突上最小诱发的IPSC。我们发现从听觉皮层记录的自发和诱发的IPSC与其他感觉皮层区域中的同层V细胞直接相比具有更快的上升和衰减动力学。我们还发现在听觉IB和RS细胞中观察到的mIPSC彼此不同。 RS单元mIPSC比IB单元mIPSC更大,并且具有更快的上升和下降,但是IB单元mIPSC的发生频率更高。焦点蔗糖的应用表明,大多数IB细胞mIPSC起源于树突,并经过树突过滤,而大多数RS细胞mIPSC起源于体细胞而不被过滤。这些发现表明,首先,IB细胞和RS细胞以根本不同的方式处理其输入,其次,听觉皮层RS细胞和IB细胞可能具有使它们更快处理抑制性输入的专长。

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