首页> 外文期刊>Journal of computer assisted tomography >Age-dependent change in metabolic response to photic stimulation of the primary visual cortex in infants: functional magnetic resonance imaging study.
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Age-dependent change in metabolic response to photic stimulation of the primary visual cortex in infants: functional magnetic resonance imaging study.

机译:对婴儿初级视觉皮层的光刺激的代谢反应的年龄依赖性变化:功能磁共振成像研究。

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摘要

The blood oxygen level-dependent (BOLD) response to photic stimulation in the primary visual cortex (V1) reverses from positive to negative around 8 weeks of age. This phenomenon may be caused by increased oxygen consumption during stimulation as the result of a rapid increase of synaptic density at this age. To test this hypothesis, we applied existing mathematic models of BOLD signals to the experimental data from infants. When the stimulus-related increments of cerebral blood flow and cerebral blood volume were fixed at 60% and 20%, respectively, the mean estimated increment of the cerebral metabolic rate of oxygen of the V1 in the elder infant group (57.1% +/- 8.8%) was twice as large as that in the younger infant group (32.2% +/- 4.7%), which corresponds to the reported difference in synaptic density. The present data confirmed that a change in oxygen consumption could explain a transition from a positive to a negative BOLD response.
机译:初级视皮层(V1)对光刺激的血氧水平依赖性(BOLD)反应在大约8周龄时从阳性反转为阴性。这种现象可能是由于在这个年龄的突触密度迅速增加的结果,是刺激过程中耗氧量增加所致。为了检验该假设,我们将现有的BOLD信号数学模型应用于婴儿的实验数据。当刺激相关的脑血流量和脑血流量的增量分别固定为60%和20%时,高龄婴儿组中V1的大脑氧的新陈代谢率的平均估计增量(57.1%+/- 8.8%)是幼儿组(32.2%+/- 4.7%)的两倍,这与报道的突触密度差异相对应。目前的数据证实,耗氧量的变化可以解释从阳性反应到阴性反应的转变。

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