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NEUROENERGETIC BASIS OF FUNCTIONAL MRI: IMPLICATIONS FOR EFFICIENCY OF BRAIN WORK

机译:功能MRI的神经元基础:脑工作效率的影响

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The conventional functional MRI (fMRI) map offers information indirectly about localized changes in neural activity because it reflects changes in blood oxygenation, not the actual neuronal activity. To provide neural basis of fMRI researchers have combined electrophysiology to show correlations of fMRI and electrical signals. But quantitative interpretation of "How much has the neural activity changed by?" still cannot be made from conventional fMRI data. The fMRI signal (S) has two partitions, one that describes the correlation between oxidative metabolism (CMR{sub}(O{sub}2)) and blood flow (CBF) which supports the bioelectric work to sustain neuronal excitability and the other is the requisite dilation of blood vessels (CBV) which is the mechanical response involved in removal of waste while providing nutrients. Since changes in energy metabolism is related to bioelectric work, we tested if spiking frequency of a neuronal ensemble (ν) is reflected by local energy metabolism (CMR{sub}(O{sub}2)) in rat brain. We used extracellular recordings to measure Δν/ν and calibrated fMRI (using S, CBF, and CBV maps) to measure ΔCMR{sub}(O{sub}2)/CMR{sub}(O{sub}2) during sensory stimulation. We found that ΔCMR{sub}(O{sub}2)/CMR{sub}(O{sub}2) = Δν/ν which suggests efficient energy use during brain work. Thus calibrated fMRI provides data on where and by how much the neural activity has changed.
机译:传统的功能MRI(FMRI)地图间接地提供了神经活动的局部变化的信息,因为它反映了血氧变化,而不是实际的神经元活动。为了提供FMRI研究人员的神经基础,可以组合电生理学以显示FMRI和电信号的相关性。但对“神经活动有多大的变化?”的定量解释仍然无法由传统的FMRI数据进行。 FMRI信号具有两个分区,描述氧化代谢(CMR {sub}(o {sub} 2)之间的相关性和支持生物电工作以维持神经元兴奋的血流(CBF)是血管(CBV)的必要扩张,这是在提供营养素的同时除去废物的机械反应。由于能量代谢的变化与生物电工作有关,因此如果神经元集合(ν)的尖峰频率被大鼠大脑中的局部能量代谢(CMR {um}(o}(o}))反映,则测试。我们使用的筛选录制来测量ΔΣ/ν并校准的FMRI(使用S,CBF和CBV映射)来测量感觉刺激期间测量ΔCMR{SUB}(O {SUB}(O {SUB} 2)/ CMR {SUB}(O {SUB} 2) 。我们发现ΔCMR{sub}(o {sub} 2)/ cmr {sub}(o {sub} 2)=ΔΣ/ν,其建议在脑工作期间有效的能量使用。因此,校准的FMRI提供了在神经活动发生的地点和何处的数据。

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