生理学报
生理學報
생이학보
ACTA PHYSIOLOGICA SINICA
2007年
6期
784-790
,共7页
杨文伟%周晓明%张季平%孙心德
楊文偉%週曉明%張季平%孫心德
양문위%주효명%장계평%손심덕
内侧额叶前皮质%听皮层%频率感受野%可塑性%大鼠
內側額葉前皮質%聽皮層%頻率感受野%可塑性%大鼠
내측액협전피질%은피층%빈솔감수야%가소성%대서
medial prefrontal cortex%auditory cortex%frequency receptive field%plasticity%rat
本文应用常规电生理学技术,研究电刺激大鼠内侧额叶前皮质(medial prefrontal cortex,mPFC)对初级听皮层神经元频率感受野(receptive field,RF)可塑性的调制.电刺激mPFC,137个听皮层神经元(72.8%)RF可塑性受到影响,其中抑制性调制71个神经元(37.7%),易化性调制66个神经元(35.1%),其余51个神经元(27.2%)不受影响.mPFC的抑制性调制效应表现为,RF的偏移时间延长,恢复时间缩短.相反,mPFC的易化性调制效应表现为,RF的偏移时间缩短,恢复时间延长.电刺激mPFC对RF可塑性的调制与声、电刺激之间的时间间隔有关,最佳时间间隔介于5~30 ms之间.结果提示,大鼠mPFC可以调制听皮层神经元的功能活动,可能参与听觉学习记忆过程.
本文應用常規電生理學技術,研究電刺激大鼠內側額葉前皮質(medial prefrontal cortex,mPFC)對初級聽皮層神經元頻率感受野(receptive field,RF)可塑性的調製.電刺激mPFC,137箇聽皮層神經元(72.8%)RF可塑性受到影響,其中抑製性調製71箇神經元(37.7%),易化性調製66箇神經元(35.1%),其餘51箇神經元(27.2%)不受影響.mPFC的抑製性調製效應錶現為,RF的偏移時間延長,恢複時間縮短.相反,mPFC的易化性調製效應錶現為,RF的偏移時間縮短,恢複時間延長.電刺激mPFC對RF可塑性的調製與聲、電刺激之間的時間間隔有關,最佳時間間隔介于5~30 ms之間.結果提示,大鼠mPFC可以調製聽皮層神經元的功能活動,可能參與聽覺學習記憶過程.
본문응용상규전생이학기술,연구전자격대서내측액협전피질(medial prefrontal cortex,mPFC)대초급은피층신경원빈솔감수야(receptive field,RF)가소성적조제.전자격mPFC,137개은피층신경원(72.8%)RF가소성수도영향,기중억제성조제71개신경원(37.7%),역화성조제66개신경원(35.1%),기여51개신경원(27.2%)불수영향.mPFC적억제성조제효응표현위,RF적편이시간연장,회복시간축단.상반,mPFC적역화성조제효응표현위,RF적편이시간축단,회복시간연장.전자격mPFC대RF가소성적조제여성、전자격지간적시간간격유관,최가시간간격개우5~30 ms지간.결과제시,대서mPFC가이조제은피층신경원적공능활동,가능삼여은각학습기억과정.
Using conventional electrophysiological technique,we investigated the effects of stimulating the medial prefrontal cortex (mPFC) on plasticity of frequency receptive field(RF)in auditory cortical (AC) neurons in rats.When the mPFC was electrically stimulated,the RF plasticity of 51 (27.2%) neurons was not affected and that of 137 neurons (72.8%) was either inhibited (71 neurons,37.7%) or facilitated (66 neurons,35.1%).The modulation of RF plasticity by the stimulation of mPFC was dependent upon the time interval between acoustic and electrical stimuli.The best interval time that produced optimal modulation(inhibition or facilitation)ranged from 5 to 30 ms.The inhibitory modulation of mPFc prolonged RF shifting time and shortened RF recovery time.Conversely.the facilitatory modulation of mPFC shortened RF shifting time and prolonged RF recovery time.Our results suggest that the mPFC may affect the plasticity of functional activity in AC neurons,and also may participate in the process of auditory learning and memory.