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Adaptation to Speed in Macaque Middle Temporal and Medial Superior Temporal Areas

机译:在猕猴中部和中部上中部地区适应速度

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摘要

The response of a sensory neuron to an unchanging stimulus typically adapts, showing decreases in response gain that are accompanied by changes in the shape of tuning curves. It remains unclear whether these changes arise purely due to spike rate adaptation within single neurons or whether they are dependent on network interactions between neurons. Further, it is unclear how the timescales of neural and perceptual adaptation are related. To examine this issue, we compared speed tuning of middle temporal (MT) and medial superior temporal neurons in macaque visual cortex after adaptation to two different reference speeds. For 75% of speed-tuned units, adaptation caused significant changes in tuning that could be explained equally well as lateral shifts, vertical gain changes, or both. These tuning changes occurred rapidly, as both neuronal firing rate and Fano factor showed no evidence of changing beyond the first 500 ms after motion onset, and the magnitude of tuning curve changes showed no difference between trials with adaptation durations shorter or longer than 1 s. Importantly, the magnitude of tuning shifts was correlated with the transient-sustained index, which measures a well characterized form of rapid response adaptation in MT, and is likely associated with changes at the level of neuronal networks. Tuning curves changed in a manner that increased neuronal sensitivity around the adapting speed, consistent with improvements in human and macaque psychophysical performance that we observed over the first several hundred ms of adaptation.
机译:感觉神经元对不变刺激的反应通常会适应,显示出响应增益的下降,并伴有调谐曲线形状的变化。尚不清楚这些变化是否纯粹是由于单个神经元内的尖峰速率适应引起的还是它们是否取决于神经元之间的网络相互作用。此外,还不清楚神经和知觉适应的时间尺度如何相关。为了研究这个问题,我们比较了适应两种不同参考速度后猕猴视觉皮层中颞(MT)和内侧颞上神经元的速度调节情况。对于75%的速度调整单位,适应会导致调整发生重大变化,这可以解释为横向偏移,垂直增益变化或两者兼有。这些调整变化迅速发生,因为神经元放电率和Fano因子在运动发作后的前500 ms内均未显示变化的迹象,并且调整曲线变化的幅度在适应时间短于或长于1 s的试验之间无差异。重要的是,调音移位的幅度与瞬态持续指数相关,瞬态持续指数衡量MT中快速响应适应的特征形式,并且很可能与神经元网络水平的变化有关。调整曲线以增加适应速度附近的神经元敏感性的方式变化,这与我们在适应的最初几百毫秒中观察到的人类和猕猴心理生理性能的改善一致。

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