首页> 外文会议>17th international conference on biomagnetism advances in biomagnetism - Biomag2010 >Effects of Adaptation on Visual Sensitivity and MEG Responses to the Envelope of AM Flicker
【24h】

Effects of Adaptation on Visual Sensitivity and MEG Responses to the Envelope of AM Flicker

机译:自适应对AM闪烁信封的视觉灵敏度和MEG响应的影响

获取原文
获取原文并翻译 | 示例

摘要

For a sinusoidal flickering light amplitude-modulated (AM) sinusoidally, flicker with a periodicity of a temporal envelope (modulation-frequency) of the light is perceived even though there is no such frequency component. However, the mechanisms underlying the perception are still unclear. In human visual system, it is known that there are two temporal channels with a lower and a higher peak frequency. Therefore, we investigated whether the two temporal channels affected the perception of the envelope of the AM flickering light. Visual sensitivity and magnetoencephalographic (MEG) responses to the envelope periodicity were measured when the sensitivity of each of the temporal channel was reduced by adaptation. Sinusoidal flickering lights with a low (2 Hz) and a high (16 Hz) temporal frequency were used as adapting stimuli. The sinusoidal flickering lights of 2 and 16 Hz and an AM flickering light with a modulation-frequency of 2 Hz and a carrier-frequency of 16 Hz were presented as test stimuli. The results showed that the sensitivity and MEG responses to the sinusoidal flickering light decreased more when the sensitivity of the temporal channel tuned for the test stimulus frequency was reduced than when that of the other temporal channel was reduced. On the other hand, the sensitivity and MEG responses to the envelope periodicity decreased more when the sensitivity to the frequency corresponding to the envelope periodicity was reduced than when that to the carrier frequency was reduced, even though a frequency component corresponding to the envelope periodicity did not exist in the stimulus. The results indicated that the envelope component of AM flickering light was affected by the low-frequency channel and suggest the possibility that the envelope component arises before or while the AM flickering signal passes the low-frequency channel.
机译:对于正弦的正弦闪烁光幅度调制(AM),即使没有这样的频率分量,也可以感知到具有光的时间包络(调制频率)的周期性的闪烁。但是,知觉的潜在机制仍不清楚。在人类视觉系统中,已知存在两个具有较低和较高峰值频率的时间通道。因此,我们调查了两个时间通道是否影响AM闪烁光的包络感知。当通过适应降低每个颞通道的敏感性时,测量对包膜周期性的视觉敏感性和脑磁图(MEG)反应。具有低(2 Hz)和高(16 Hz)时间频率的正弦闪烁灯用作适应性刺激。呈现2和16 Hz的正弦闪烁光以及调制频率为2 Hz和载波频率为16 Hz的AM闪烁光作为测试刺激。结果表明,当针对测试刺激频率而调整的时态通道的灵敏度降低时,对其他正时性通道的灵敏度和MEG响应的降低幅度要比对其他时态通道的灵敏度降低的幅度更大。另一方面,即使降低了与包络周期性相对应的频率成分,但降低了对与包络周期性相对应的频率的灵敏度与降低对载波频率的灵敏度相比,对包络周期性的灵敏度和MEG响应的降低幅度更大。在刺激中不存在。结果表明,AM闪烁光的包络分量受低频通道的影响,并暗示了在AM闪烁信号通过低频通道之前或同时出现包络分量的可能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号