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大鼠顶颞叶皮质诱发电位的解剖组织:体感和听觉反应。

Anatomic organization of evoked potentials in rat parietotemporal cortex: somatosensory and auditory responses.

作者信息

Barth D S, Kithas J, Di S

机构信息

Department of Psychology, University of Colorado, Boulder 80309-0345.

出版信息

J Neurophysiol. 1993 Jun;69(6):1837-49. doi: 10.1152/jn.1993.69.6.1837.

Abstract
  1. Two 8 x 8-channel microelectrode arrays were used to map epicortical field potentials from a 3.5 x 3.5-mm2 area in homologous regions of right and left parietotemporal cortex of four rats. Potentials were evoked with bilaterally presented click stimuli and with bilateral tactile stimulation of the 25 major vibrissae. The spatial distribution of temporal components of the somatosensory evoked potential (SEP) and auditory evoked potential (AEP) complex were compared directly with cytochrome oxidase-stained sections of the recorded region. 2. Epicortical responses in both hemispheres to bilateral vibrissal stimuli consisted of a biphasic sharp wave (P1a-N1) constrained to the vibrissa/barrel granular region of primary somatosensory cortex (SmI). A slightly later sharp positive wave (P1b) was localized to secondary somatosensory cortex (SmII) and to perigranular cortex medial to the vibrissa/barrel field. The SEP complex ended with a biphasic slow wave (P2-N2). The P2 was centered on SmI and spread to dysgranular lateral cortex, caudal to but excluding SmII. The N2 was centered on SmII and spread to dysgranular cortex caudal to but excluding SmI. 3. The anatomic organization of the AEP in many ways approximated that of the SEP in the same animals. The timing and morphology of the AEP were nearly identical to the SEP. The AEP consisted of a P1a-N1 sharp wave constrained to the estimated region of primary auditory cortex (AI) in the lateral parietotemporal region, a later P1b localized to secondary auditory cortex (AII), and subsequent slow waves (P2 and N2) that were centered on AI and AII, respectively, and spread to dysgranular regions overlapping the distributions of the P2 and N2 of the SEP complex. 4. These data suggest that the basic neural generators for the SEP and AEP in parietotemporal cortex are quite similar, and provide evidence for the functional anatomy of each temporal component of the sensory evoked potential complex. It is concluded that the early fast waves of the SEP and AEP are modality specific and may represent the parallel activation of primary and secondary sensory cortex through established parallel afferent projections from lateral and medial thalamic nuclei. The later slow waves of the SEP and AEP appear to selectively involve primary and secondary sensory cortex but are more widely distributed, possibly reflecting a less modality-specific level of information processing in dysgranular cortex.
摘要
  1. 使用两个8×8通道微电极阵列,对4只大鼠左右顶颞叶皮质同源区域中3.5×3.5平方毫米的区域进行皮质表面场电位测绘。通过双侧呈现的点击刺激以及对25根主要触须进行双侧触觉刺激来诱发电位。将体感诱发电位(SEP)和听觉诱发电位(AEP)复合体的时间成分的空间分布与记录区域的细胞色素氧化酶染色切片直接进行比较。2. 两个半球对双侧触须刺激的皮质表面反应包括一个双相锐波(P1a-N1),局限于初级体感皮质(SmI)的触须/桶状颗粒区域。稍晚出现的一个锐正波(P1b)定位于次级体感皮质(SmII)以及触须/桶状区内侧的颗粒周围皮质。SEP复合体以一个双相慢波(P2-N2)结束。P2以SmI为中心并扩散至颗粒减少的外侧皮质,位于SmII的尾侧但不包括SmII。N2以SmII为中心并扩散至颗粒减少的皮质,位于SmI的尾侧但不包括SmI。3. 在许多方面,AEP的解剖组织与同一只动物的SEP相似。AEP的时间和形态与SEP几乎相同。AEP由一个局限于外侧顶颞叶区域初级听觉皮质(AI)估计区域的P1a-N1锐波、一个定位于次级听觉皮质(AII)的较晚的P1b以及随后分别以AI和AII为中心并扩散至与SEP复合体的P2和N2分布重叠的颗粒减少区域的慢波(P2和N2)组成。4. 这些数据表明,顶颞叶皮质中SEP和AEP的基本神经发生器非常相似,并为感觉诱发电位复合体各时间成分的功能解剖学提供了证据。得出的结论是,SEP和AEP的早期快波具有模态特异性,可能代表通过外侧和内侧丘脑核既定的平行传入投射对初级和次级感觉皮质的平行激活。SEP和AEP的后期慢波似乎选择性地涉及初级和次级感觉皮质,但分布更广泛,可能反映了颗粒减少皮质中信息处理的模态特异性较低的水平。

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