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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Spatiotemporal patterns of cortical activity with bilateral cochlear implants in congenital deafness.
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Spatiotemporal patterns of cortical activity with bilateral cochlear implants in congenital deafness.

机译:先天性耳聋的双侧人工耳蜗皮质活动的时空模式。

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Congenital deafness affects developmental processes in the auditory cortex. In this study, local field potentials (LFPs) were mapped at the cortical surface with microelectrodes in response to cochlear implant stimulation. LFPs were compared between hearing controls and congenitally deaf cats (CDCs). Pulsatile electrical stimulation initially evoked cortical activity in the rostral parts of the primary auditory field (A1). This progressed both in the approximate dorsoventral direction (along the isofrequency stripe) and in the rostrocaudal direction. The dorsal branch of the wavefront split into a caudal branch (propagating in A1) and another smaller one propagating rostrally into the AAF (anterior auditory field). After the front reached the caudal border of A1, a reflection wave approximately 13-15 ms to propagate along A1 and return back. In CDCs, the propagation pattern was significantly disturbed, with a more synchronous activation of distant cortical regions. The maps obtained from contralateral and ipsilateral stimulation overlapped in both groups of animals. Although controls showed differences in the latency-amplitude patterns, cortical waves evoked by contralateral and ipsilateral stimulation were more similar in CDCs. Additionally, in controls, LFPs with contralateral and ipsilateral stimulation were more similar in caudal A1 than in rostral A1. This dichotomy was lost in deaf animals. In conclusion, propagating cortical waves are specific for the contralateral ear, they are affected by auditory deprivation, and the specificity of the cortex for stimulation of the contralateral ear is reduced by deprivation.
机译:先天性耳聋会影响听觉皮层的发育过程。在这项研究中,响应于耳蜗植入物刺激,利用微电极在皮质表面绘制了局部场电势(LFP)。在听力控制者和先天性聋猫(CDC)之间比较了LFP。搏动性电刺激最初在主要听觉区域(A1)的喙部引起皮质活动。这在大约背腹方向(沿着等频条纹)和在后脑尾方向上都进行了。波前的背分支分为尾支(在A1中传播)和另一个较小的分支,向后向AAF(前听觉场)传播。在前部到达A1的尾部边界后,大约13-15毫秒的反射波沿A1传播并返回。在CDC中,随着远程皮质区域的更同步激活,传播模式受到了明显干扰。从对侧和同侧刺激获得的图在两组动物中重叠。尽管对照组在潜伏期-振幅模式上显示出差异,但对侧和同侧刺激诱发的皮质波在CDC中更为相似。此外,在对照组中,具有对侧和同侧刺激的LFP在尾A1中比在鼻尖A1中更相似。这种二分法在聋的动物中消失了。总之,传播的皮层电波是对侧耳特有的,它们受到听觉剥夺的影响,而皮层刺激对侧耳的特异性由于剥夺而降低。

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