Reading vascular changes in brain imaging: is dendritic calcium the key?

被引:0
作者
Martin Lauritzen
机构
[1] Glostrup Hospital,Department of Clinical Neurophysiology
[2] Panum Institute,Department of Medical Physiology
[3] University of Copenhagen,undefined
来源
Nature Reviews Neuroscience | 2005年 / 6卷
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摘要
A key goal in functional neuroimaging is to use signals that are related to local changes in metabolism and blood flow to track the neuronal correlates of mental activity. Recent findings indicate that the dendritic processing of excitatory synaptic inputs correlates more closely than the generation of spikes with brain imaging signals. The correlation is often nonlinear and context-sensitive, and cannot be generalized for every condition or brain region. The vascular signals are mainly produced by increases in intracellular calcium in neurons and possibly astrocytes, which activate important enzymes that produce vasodilators to generate increments in flow and the positive blood oxygen level dependent signal. Our understanding of the cellular mechanisms of functional imaging signals places constraints on the interpretation of the data.
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页码:77 / 85
页数:8
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[1]  
Heeger DJ(2000)Spikes versus BOLD: what does neuroimaging tell us about neuronal activity? Nature Neurosci. 3 631-633
[2]  
Huk AC(2000)A direct quantitative relationship between the functional properties of human and macaque V5 Nature Neurosci. 3 716-723
[3]  
Geisler WS(1954)Activity of single neurons in the tactile thalamic region of the cat in response to a transient peripheral stimulus Bull. Johns Hopkins Hosp. 94 238-282
[4]  
Albrecht DG(1957)Modality and topographic properties of single neurons of cat's somatic sensory cortex J. Neurophysiol. 20 408-434
[5]  
Rees G(1965)Comparison of the effects of unilateral and bilateral eye closure on cortical unit responses in kittens J. Neurophysiol. 28 1029-1040
[6]  
Friston K(1998)Modification of activity-dependent increases of cerebral blood flow by excitatory synaptic activity and spikes in rat cerebellar cortex J. Physiol. (Lond.) 512 555-566
[7]  
Koch C(2001)Neurophysiological investigation of the basis of the fMRI signal Nature 412 150-157
[8]  
Rose JE(2004)A comparison of hemodynamic and neural responses in cat visual cortex using complex stimuli Cereb. Cortex 14 881-891
[9]  
Mountcastle VB(2004)Principle neuron spiking: neither necessary nor sufficient for cerebral blood flow at rest or during activation in rat cerebellum J. Physiol. (Lond.) 560 181-189
[10]  
Mountcastle VB(2001)Cerebral energetics and the glycogen shunt: neurochemical basis of functional imaging Proc. Natl Acad. Sci. USA 98 6417-6422