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Titlebook: Neurobiology of Interval Timing; Hugo Merchant,Victor de Lafuente Book 20141st edition The Editor(s) (if applicable) and The Author(s), un

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0065-2598 sychophysics, functional imaging, system neurophysiology, an.The study of how the brain processes temporal information is becoming one of the most important topics in systems, cellular, computational, and cognitive neuroscience, as well as in the physiological bases of music and language. During the
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Dedicated Clock/Timing-Circuit Theories of Time Perception and Timed Performances well as the potential limitations. Novel implementations of the original SBF model that allow it to be incorporated into ACT-R in a more fundamental fashion than the earlier simulations of Scalar Timing Theory are also considered in conjunction with the proposed properties and neural correlates of the “internal clock”.
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Motor and Perceptual Timing in Parkinson’s Diseasehavioural studies. This is followed by a critique of neuroimaging studies that have given insight into the pattern of neural activity during motor and perceptual timing in PD. Finally, discussion of the effects of medical and surgical treatment on timing in PD enables further evaluation of the role of dopamine in interval timing.
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About the (Non)scalar Property for Time Perceptionain empirical facts relative to this question are reviewed, along with a report of the theoretical impact of these facts on the hypotheses about the nature of the internal mechanisms responsible for estimating time.
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Elucidating the Internal Structure of Psychophysical Timing Performance in the Sub-second and Second or of distinct timing mechanisms underlying interval timing in the sub-second and second range, respectively. The assumption of two distinct timing mechanisms which are completely independent of each other was not supported by our data. The model assuming a unitary timing mechanism underlying inter
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Neurophysiology of Timing in the Hundreds of Milliseconds: Multiple Layers of Neuronal Clocks in theose to the temporal control of movements are two separate populations of ramping cells that code for elapsed or remaining time for a tapping movement during the SCT. Thus, the sensorimotor loops engaged during the task may depend on the cyclic interplay between two neuronal chronometers that quantif
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