目的为了探讨汉语为母语者在处理双耳分听模式下汉语听觉信号的脑区分布特征及偏侧化特点,本研究利用低通过滤的方法获取韵律信号,结合双耳分听技术,通过脑功能磁共振成像得到汉语语言和韵律双耳分听信号的神经处理模型。材料与方法从2...目的为了探讨汉语为母语者在处理双耳分听模式下汉语听觉信号的脑区分布特征及偏侧化特点,本研究利用低通过滤的方法获取韵律信号,结合双耳分听技术,通过脑功能磁共振成像得到汉语语言和韵律双耳分听信号的神经处理模型。材料与方法从2022年1月至5月在昆明医科大学第一附属医院共招募30位志愿者,年龄(25.36±0.88)岁,汉语为母语,强右利手者。汉语短句音频信号通过低通滤波器,只保留低频率语言韵律信号(<320 Hz),并得到两组双耳分听语音信号:左耳低通过滤右耳不过滤组(filtered in the left ear and unfiltered in the right ear,FL);右耳低通过滤左耳不过滤组(filtered in the right ear and unfiltered in the left ear,FR)。受试者依次聆听两组语音信号,同时进行两组组块设计的脑功能磁共振成像。使用SPM 12软件对得到的影像数据进行预处理后,进行组内单样本t检验、组间双样本t检验,以此观察两组语音信号激活脑区的分布和强度的共性、差异性。根据单样本t检验的统计结果,确定感兴趣区域,计算相应脑区的偏侧化指数,以获得大脑在处理双耳分听模式下的汉语语言和韵律信号时的脑区偏侧化特点。结果两组信号都激活了双侧颞中回、颞上回、额下回,左侧中央前回和右侧额中回(P<0.05,FDR校正);FL信号诱导左侧额中回血氧水平增高(P<0.05,FDR校正);FR信号还激活了双侧顶下小叶(P<0.05,FDR校正)。对两组语音信号进行双样本t检验后,发现FR与FL相比,右侧颞中回、颞上回具有明显差异(P<0.05,FDR校正);FL与FR相比无明显差异性脑区。对两组语音信号进行偏侧化指数计算后发现,在大脑半球水平上两组语音信号无明显的偏侧化表现。两组信号的额中回具有右侧优势,中央前回都表现出左侧化趋势;顶下小叶在FR刺激下呈现左侧化趋势。结论大脑处理两种语音信号时具有一个由双侧颞中回、�展开更多
This paper proposes a predictive compensation strategy to reduce the detrimental effect of stochastic time delays induced by communication networks on control performance. Values of a manipulated variable at the prese...This paper proposes a predictive compensation strategy to reduce the detrimental effect of stochastic time delays induced by communication networks on control performance. Values of a manipulated variable at the present sampling instant and future time instants can be determined by performing a receding horizon optimal procedure only once. When the present value of the manipulated variable does not arrive at a smart actuator, its predictive one is imposed to the corresponding process. Switching of a manipulated variable between its true present value and the predictive one usually results in unsmooth operation of a control system. This paper shows: 1) for a steady process,as long as its input is sufficiently smooth, the smoothness of its output can be guaranteed; 2) a manipulated variable can be switched smoothly by filtering the manipulated variable just using a simple low-pass filter. Thus the control performance can be improved. Finally, the effectiveness of the proposed method is demonstrated by simulation study.展开更多
文摘目的为了探讨汉语为母语者在处理双耳分听模式下汉语听觉信号的脑区分布特征及偏侧化特点,本研究利用低通过滤的方法获取韵律信号,结合双耳分听技术,通过脑功能磁共振成像得到汉语语言和韵律双耳分听信号的神经处理模型。材料与方法从2022年1月至5月在昆明医科大学第一附属医院共招募30位志愿者,年龄(25.36±0.88)岁,汉语为母语,强右利手者。汉语短句音频信号通过低通滤波器,只保留低频率语言韵律信号(<320 Hz),并得到两组双耳分听语音信号:左耳低通过滤右耳不过滤组(filtered in the left ear and unfiltered in the right ear,FL);右耳低通过滤左耳不过滤组(filtered in the right ear and unfiltered in the left ear,FR)。受试者依次聆听两组语音信号,同时进行两组组块设计的脑功能磁共振成像。使用SPM 12软件对得到的影像数据进行预处理后,进行组内单样本t检验、组间双样本t检验,以此观察两组语音信号激活脑区的分布和强度的共性、差异性。根据单样本t检验的统计结果,确定感兴趣区域,计算相应脑区的偏侧化指数,以获得大脑在处理双耳分听模式下的汉语语言和韵律信号时的脑区偏侧化特点。结果两组信号都激活了双侧颞中回、颞上回、额下回,左侧中央前回和右侧额中回(P<0.05,FDR校正);FL信号诱导左侧额中回血氧水平增高(P<0.05,FDR校正);FR信号还激活了双侧顶下小叶(P<0.05,FDR校正)。对两组语音信号进行双样本t检验后,发现FR与FL相比,右侧颞中回、颞上回具有明显差异(P<0.05,FDR校正);FL与FR相比无明显差异性脑区。对两组语音信号进行偏侧化指数计算后发现,在大脑半球水平上两组语音信号无明显的偏侧化表现。两组信号的额中回具有右侧优势,中央前回都表现出左侧化趋势;顶下小叶在FR刺激下呈现左侧化趋势。结论大脑处理两种语音信号时具有一个由双侧颞中回、�
基金Supported by National High Technology Research and Development Program of P. R. China (2002AA412510)National Natural Science Foundation of P. R. China (60274034)
文摘This paper proposes a predictive compensation strategy to reduce the detrimental effect of stochastic time delays induced by communication networks on control performance. Values of a manipulated variable at the present sampling instant and future time instants can be determined by performing a receding horizon optimal procedure only once. When the present value of the manipulated variable does not arrive at a smart actuator, its predictive one is imposed to the corresponding process. Switching of a manipulated variable between its true present value and the predictive one usually results in unsmooth operation of a control system. This paper shows: 1) for a steady process,as long as its input is sufficiently smooth, the smoothness of its output can be guaranteed; 2) a manipulated variable can be switched smoothly by filtering the manipulated variable just using a simple low-pass filter. Thus the control performance can be improved. Finally, the effectiveness of the proposed method is demonstrated by simulation study.