topics in mammalian learning and memory including cellular mechanisms of neural plasticity, electrophysiology, and behavior 有關(guān)哺乳類動(dòng)物學(xué)習(xí)和記憶的主題,包括神經(jīng)可塑性的細(xì)胞機(jī)制、電生理和行為。
practising visual signal discrimination can change neural plasticity in the visual pathway, the mechanism of which remains unknown 視覺(jué)信號(hào)識(shí)別訓(xùn)練可改變視覺(jué)通路神經(jīng)元的可塑性,其神經(jīng)機(jī)制尚不清楚。
the result above indicates that orientation discrimination practising can leads to specific shift of orientation sensitivity for at least part of the dlgn neurons, which may contribute to the neural plasticity of orientation coding in visual cortex 以上結(jié)果提示,方位識(shí)別訓(xùn)練可特異性改變外膝體部分神經(jīng)元(特定離心度上)的方位敏感性,這種敏感性改變可能對(duì)視皮層細(xì)胞的方位編碼可塑性有貢獻(xiàn)。
his research interests centre on neural plasticity . recent projects focus on developmental establishment of space-centered coordinates in relation to auditory-vestibular cues as well as on strategies to stimulate neuroprotection and repair of the adult nervous system 在學(xué)術(shù)研究方面,對(duì)中樞神經(jīng)細(xì)胞處理從內(nèi)耳傳入的空間定向信息進(jìn)行了廣泛的研究工作,并進(jìn)一步探討該類神經(jīng)細(xì)胞在動(dòng)物幼年發(fā)育臨界期前后可塑性的變化。