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Decoding brain responses to pixelized images in the primary visual cortex: implications for visual cortical prostheses 被引量:4
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作者 Bing-bing Guo Xiao-lin Zheng +4 位作者 Zhen-gang Lu Xing Wang Zheng-qin Yin Wen-sheng Hou Ming Meng 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第10期1622-1627,共6页
Visual cortical prostheses have the potential to restore partial vision. Still limited by the low-resolution visual percepts provided by visual cortical prostheses, implant wearers can currently only "see" pixelized... Visual cortical prostheses have the potential to restore partial vision. Still limited by the low-resolution visual percepts provided by visual cortical prostheses, implant wearers can currently only "see" pixelized images, and how to obtain the specific brain responses to different pixelized images in the primary visual cortex(the implant area) is still unknown. We conducted a functional magnetic resonance imaging experiment on normal human participants to investigate the brain activation patterns in response to 18 different pixelized images. There were 100 voxels in the brain activation pattern that were selected from the primary visual cortex, and voxel size was 4 mm × 4 mm × 4 mm. Multi-voxel pattern analysis was used to test if these 18 different brain activation patterns were specific. We chose a Linear Support Vector Machine(LSVM) as the classifier in this study. The results showed that the classification accuracies of different brain activation patterns were significantly above chance level, which suggests that the classifier can successfully distinguish the brain activation patterns. Our results suggest that the specific brain activation patterns to different pixelized images can be obtained in the primary visual cortex using a 4 mm × 4 mm × 4 mm voxel size and a 100-voxel pattern. 展开更多
关键词 nerve regeneration primary visual cortex electrical stimulation visual cortical prosthesis low resolution vision pixelized image functional magnetic resonance imaging voxel size neural regeneration brain activation pattern
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Spatiotemporal expression of Nogo-66 receptor after focal cerebral ischemia 被引量:2
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作者 Yue Cao Ya-xian Dong +3 位作者 Jie Xu Guo-liang Chu Zhi-hua Yang Yan-ming Liu 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第1期132-136,共5页
Ng R, the receptor for the neurite outgrowth inhibitor Nogo-66, plays a critical role in the plasticity and regeneration of the nervous system after injury such as ischemic stroke. In the present study, we used immuno... Ng R, the receptor for the neurite outgrowth inhibitor Nogo-66, plays a critical role in the plasticity and regeneration of the nervous system after injury such as ischemic stroke. In the present study, we used immunohistochemistry to investigate the regional expression of Ng R in rat brain following middle cerebral artery occlusion(MCAO). Ng R protein expression was not observed in the center of the lesion, but was elevated in the marginal zone compared with control and sham-operated rats. The cerebral cortex and hippocampus(CA1, CA2, and CA3) showed the greatest expression of Ng R. Furthermore, Ng R expression was higher in the ipsilesional hemisphere than on the control side in the same coronal section. Although time-dependent changes in Ng R expression across brain regions had their own characteristics, the overall trend complied with the following rules: Ng R expression changes with time showed two peaks and one trough; the first peak in expression appeared between 1 and 3 days after MCAO; expression declined at 5 days; and the second peak occurred at 28 days. 展开更多
关键词 nerve regeneration focal cerebral ischemia cerebral cortex hippocampus Ng R Nogo-A immunohistochemistry neural regeneration
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Cortical regulation of striatal projection neurons and interneurons in a Parkinson's disease rat model 被引量:1
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作者 Jia-jia Wu Si Chen +9 位作者 Li-si Ouyang Yu Jia Bing-bing Liu Shu-hua Mu Yu-xin Ma Wei-ping Wang Jia-you Wei You-lan Li Zhi Chen Wan-long Lei 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第12期1969-1975,共7页
Striatal neurons can be either projection neurons or interneurons, with each type exhibiting distinct susceptibility to various types of brain damage. In this study, 6-hydroxydopamine was injected into the right media... Striatal neurons can be either projection neurons or interneurons, with each type exhibiting distinct susceptibility to various types of brain damage. In this study, 6-hydroxydopamine was injected into the right medial forebrain bundle to induce dopamine depletion, and/or ibotenic acid was injected into the M1 cortex to induce motor cortex lesions. Immunohistochemistry and western blot assay showed that dopaminergic depletion results in significant loss of striatal projection neurons marked by dopamine- and cyclic adenosine monophosphate-regulated phosphoprotein, molecular weight 32 k Da, calbindin, and μ-opioid receptor, while cortical lesions reversed these pathological changes. After dopaminergic deletion, the number of neuropeptide Y-positive striatal interneurons markedly increased, which was also inhibited by cortical lesioning. No noticeable change in the number of parvalbumin-positive interneurons was found in 6-hydroxydopamine-treated rats. Striatal projection neurons and interneurons show different susceptibility to dopaminergic depletion. Further, cortical lesions inhibit striatal dysfunction and damage induced by 6-hydroxydopamine, which provides a new possibility for clinical treatment of Parkinson's disease. 展开更多
关键词 nerve regeneration motor cortex lesions dopaminergic neurons GABAergic neurons Darpp32 calbindin μ-opioid receptor neuropeptide Y parvalbumin neural regeneration
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Activation of immediate-early response gene c-Fos protein in the rat paralimbic cortices after myocardial infarction 被引量:2
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作者 Ji Yun Ahn Hyun-Jin Tae +9 位作者 Jeong-Hwi Cho In Hye Kim Ji Hyeon Ahn Joon Ha Park Dong Won Kim Jun Hwi Cho Moo-Ho Won Seongkweon Hong Jae-Chul Lee Jeong Yeol Seo 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第8期1251-1257,共7页
c-Fos is a good biological marker for detecting the pathogenesis of central nervous system disorders. Few studies are reported on the change in myocardial infarction-induced c-Fos expression in the paralimbic regions.... c-Fos is a good biological marker for detecting the pathogenesis of central nervous system disorders. Few studies are reported on the change in myocardial infarction-induced c-Fos expression in the paralimbic regions. Thus, in this study, we investigated the changes in c-Fos expression in the rat cingulate and piriform cortices after myocardial infarction. Neuronal degeneration in cingulate and piriform cortices after myocardial infarction was detected using cresyl violet staining, Neu N immunohistochemistry and Fluoro-Jade B histofluorescence staining. c-Fos-immunoreactive cells were observed in cingulate and piriform cortices at 3 days after myocardial infarction and peaked at 7 and 14 days after myocardial infarction. But they were hardly observed at 56 days after myocardial infarction. The chronological change of c-Fos expression determined by western blot analysis was basically the same as that of c-Fos immunoreactivity. These results indicate that myocardial infarction can cause the chronological change of immediate-early response gene c-Fos protein expression, which might be associated with the neural activity induced by myocardial infarction. 展开更多
关键词 nerve regeneration paralimbic cortices myocardial infarction c-Fos cingulate cortex piriform cortex immunohistochemistry western analysis neural regeneration
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