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行为猕猴中血容量和血氧测定功能图谱的柱状分辨率;对功能磁共振成像的启示

Columnar resolution of blood volume and oximetry functional maps in the behaving monkey; implications for FMRI.

作者信息

Vanzetta Ivo, Slovin Hamutal, Omer David B, Grinvald Amiram

机构信息

Department of Neurobiology, The Weizmann Institute of Science, 76100 Rehovot, Israel.

出版信息

Neuron. 2004 Jun 10;42(5):843-54. doi: 10.1016/j.neuron.2004.04.004.

Abstract

The ultimate goal of high-resolution functional brain mapping is single-condition (stimulus versus no-stimulus maps) rather than differential imaging (comparing two "stimulus maps"), because the appropriate ("orthogonal") stimuli are rarely available. This requires some component(s) of activity-dependent hemodynamic signals to closely colocalize with electrical activity, like the early increase in deoxyhemoglobin, shown previously to yield high-quality functional single-condition maps. Conversely, nonlocal vascular responses dominate in cerebral blood volume (CBV)-based single-condition maps. Differential CBV maps are largely restricted to the parenchyma, implying that part of the CBV response does colocalize with electrical activity at fine spatial scale. By removing surface vascular activation from optical imaging data, we document the existence of a capillary CBV response component, regulated at fine spatial scale and yielding single-condition maps exhibiting approximately 100 microm resolution. Blood volume and -flow based single-condition functional mapping at columnar level should thus be feasible, provided that the capillary response component is selectively imaged.

摘要

高分辨率功能性脑图谱的最终目标是单条件(刺激与无刺激图谱)而非差异成像(比较两个“刺激图谱”),因为合适的(“正交”)刺激很少可得。这要求活动依赖的血液动力学信号的某些成分与电活动紧密共定位,如先前所示产生高质量功能性单条件图谱的脱氧血红蛋白早期增加。相反,非局部血管反应在基于脑血容量(CBV)的单条件图谱中占主导。差异CBV图谱很大程度上局限于实质,这意味着CBV反应的一部分在精细空间尺度上确实与电活动共定位。通过从光学成像数据中去除表面血管激活,我们记录了毛细血管CBV反应成分的存在,该成分在精细空间尺度上受到调节,并产生分辨率约为100微米的单条件图谱。因此,只要选择性地对毛细血管反应成分进行成像,基于血容量和血流的柱状水平单条件功能图谱应该是可行的。

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