首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Simultaneous blood oxygenation level-dependent and cerebral blood flow functional magnetic resonance imaging during forepaw stimulation in the rat.
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Simultaneous blood oxygenation level-dependent and cerebral blood flow functional magnetic resonance imaging during forepaw stimulation in the rat.

机译:大鼠前爪刺激过程中同时进行的血氧水平依赖性和脑血流功能磁共振成像。

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The blood oxygenation level-dependent (BOLD) contrast mechanism can be modeled as a complex interplay between CBF, cerebral blood volume (CBV), and CMRO2. Positive BOLD signal changes are presumably caused by CBF changes in excess of increases in CMRO2. Because this uncoupling between CBF and CMRO2 may not always be present, the magnitude of BOLD changes may not be a good index of CBF changes. In this study, the relation between BOLD and CBF was investigated further. Continuous arterial spin labeling was combined with a single-shot, multislice echo-planar imaging to enable simultaneous measurements of BOLD and CBF changes in a well-established model of functional brain activation, the electrical forepaw stimulation of alpha-chloralose-anesthetized rats. The paradigm consisted of two 18- to 30-second stimulation periods separated by a 1-minute resting interval. Stimulation parameters were optimized by laser Doppler flowmetry. For the same cross-correlation threshold, the BOLD and CBF active maps were centered within the size of one pixel (470 microm). However, the BOLD map was significantly larger than the CBF map. Measurements taken from 15 rats at 9.4 T using a 10-millisecond echo-time showed 3.7 +/- 1.7% BOLD and 125.67 +/- 81.7% CBF increases in the contralateral somatosensory cortex during the first stimulation, and 2.6 +/- 1.2% BOLD and 79.3 +/- 43.6% CBF increases during the second stimulation. The correlation coefficient between BOLD and CBF changes was 0.89. The overall temporal correlation coefficient between BOLD and CBF time-courses was 0.97. These results show that under the experimental conditions of the current study, the BOLD signal changes follow the changes in CBF.
机译:可以将血液氧合水平依赖性(BOLD)对比机制建模为CBF,脑血容量(CBV)和CMRO2之间的复杂相互作用。大胆的正信号变化可能是由CBF变化超过CMRO2的增加引起的。因为CBF和CMRO2之间的这种解耦可能并不总是存在,所以BOLD变化的幅度可能不是CBF变化的良好指标。在这项研究中,进一步研究了BOLD和CBF之间的关系。连续动脉自旋标记与单次,多层回波平面成像相结合,可以在功能完善的功能性大脑激活模型(α-氯醛糖麻醉的大鼠的前额电刺激)中同时测量BOLD和CBF的变化。该范式由两个18到30秒的刺激时间间隔为1分钟的休息时间间隔组成。通过激光多普勒血流仪优化刺激参数。对于相同的互相关阈值,BOLD和CBF有源图的中心位于一个像素(470微米)的大小内。但是,BOLD图远大于CBF图。用10毫秒回波时间在9.4 T下从15只大鼠中获得的测量结果显示,在第一次刺激期间,对侧体感皮层的BOLD增加3.7 +/- 1.7%,CBF增加125.67 +/- 81.7%,2.6 +/- 1.2%在第二次刺激期间,BOLD和79.3 +/- 43.6%CBF增加。 BOLD和CBF变化之间的相关系数为0.89。 BOLD和CBF时间过程之间的总体时间相关系数为0.97。这些结果表明,在当前研究的实验条件下,BOLD信号的变化遵循CBF的变化。

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