Linear Systems Analysis of Functional Magnetic Resonance Imaging in Human V1

Анализ линейных систем функциональной магнитно-резонансной визуализации в V1 человека
Gary H. Glover, Geoffrey M. Boynton, David J. Heeger, Stephen A. Engel
1996-07-01

contrast-response functionfunctional magnetic resonance imaginghuman V1linear transform modeltemporal impulse-response function
The linear transform model of functional magnetic resonance imaging (fMRI) hypothesizes that fMRI responses are proportional to local average neural activity averaged over a period of time. This work reports results from three empirical tests that support this hypothesis. First, fMRI responses in human primary visual cortex (V1) depend separably on stimulus timing and stimulus contrast. Second, responses to long-duration stimuli can be predicted from responses to shorter duration stimuli. Third, the noise in the fMRI data is independent of stimulus contrast and temporal period. Although these tests can not prove the correctness of the linear transform model, they might have been used to reject the model. Because the linear transform model is consistent with our data, we proceeded to estimate the temporal fMRI impulse-response function and the underlying (presumably neural) contrast-response function of human V1.
1
Empirical tests did not reject the linear transform model, supporting that fMRI responses are proportional to local average neural activity over time.
2
Noise in the fMRI data is independent of stimulus contrast and temporal period.
3
Responses to long-duration stimuli in V1 can be predicted from responses to shorter-duration stimuli.
4
Using the linear transform model, the authors estimated the temporal fMRI impulse-response function and an underlying neural contrast-response function for human V1.
5
fMRI responses in human primary visual cortex (V1) depend separably on stimulus timing and stimulus contrast.

Functional magnetic resonance imaging (fMRI) responses in human primary visual cortex (V1)

Validity of the linear transform model relating fMRI responses to local average neural activity, specifically separable dependence on stimulus timing and contrast, predictability of long-duration responses from short-duration responses, independence of noise from contrast and temporal period, and estimation of the temporal fMRI impulse-response and neural contrast-response functions

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1996-07-01
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Gary H. Glover
Geoffrey M. Boynton
David J. Heeger
Stephen A. Engel
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