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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Neuronal organization of the utricular macula concerned with innervation of single vestibular neurons in the cat.
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Neuronal organization of the utricular macula concerned with innervation of single vestibular neurons in the cat.

机译:猫黄斑的神经元组织与单前庭神经元的神经支配有关。

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摘要

We investigated whether cross-striolar inhibition, which may increase sensitivity to linear acceleration, contributed to utricular (UT) afferent innervation of single vestibular neurons (VNs). Excitatory and inhibitory postsynaptic potentials (EPSPs, IPSPs, respectively) were recorded from VNs after focal stimulation of the UT macula (M). From a total of 83 VNs, 25 (30%) neurons received inputs from both sides of the UTM, and the response patterns were opposite, i.e. cross-striolar inhibition was observed. In roughly 2/3 of these neurons, stimulation of the medial side of the UTM evoked EPSPs, while stimulation of the lateral side evoked IPSPs. In the remaining 1/3 neurons, the response patterns were opposite. Thirty-two (39%) of the 83 neurons received the identical pattern of inputs from both sides of the UTM: EPSPs in 26 neurons and IPSPs in six neurons. Twenty-six (31%) of the 83 neurons received inputs from either the medial or the lateral side of the UTM. These findings suggest that cross-striolar inhibition existed in the UT system, although it was not a dominant circuit that increased the sensitivity as in the saccular system [15].
机译:我们调查了跨纹状体抑制,这可能会增加对线性加速度的敏感性,是否有助于单个前庭神经元(VNs)的入室神经支配。局灶性刺激UT黄斑(M)后,从VNs记录兴奋性和抑制性突触后电位(分别为EPSPs,IPSPs)。在总共83个VN中,有25个(30%)神经元从UTM的两侧接收输入,并且响应方式相反,即观察到跨纹状体抑制。在大约2/3的这些神经元中,UTM内侧的刺激引起EPSP,而外侧的刺激引起IPSP。在其余的1/3个神经元中,反应模式相反。 83个神经元中的32个(39%)从UTM的两侧收到了相同的输入模式:26个神经元中的EPSP和6个神经元中的IPSP。 83个神经元中有26个(31%)从UTM的内侧或外侧接收输入。这些发现表明,在横纹肌系统中存在跨纹状体抑制作用,尽管它不是像在囊状系统中那样增加敏感性的主要电路[15]。

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