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Cortical spreading depression in the gyrencephalic feline brain studied by magnetic resonance imaging

机译:磁共振成像研究人脑型猫脑皮质扩散

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摘要

class="enumerated" style="list-style-type:decimal">Time-lapse diffusion-weighted magnetic resonance imaging (DWI) was used to detect and characterize complex waves of cortical spreading depression (CSD) evoked with KCl placed upon the suprasylvian gyrus of anaesthetized cats.The time-lapse representations successfully demonstrated primary CSD waves that propagated with elliptical wavefronts selectively over the ipsilateral cerebral hemispheres with a velocity of 3.8 ± 0.70 mm min−1 (mean ± s.e.m. of 5 experiments).In contrast, the succeeding secondary waves often remained within the originating gyrus, were slower (velocity 2.0 ± 0.18 mm min−1), more fragmented and varied in number.Computed traces of the apparent diffusion coefficients (ADCs) showed negative deflections followed by monotonic decays (amplitudes: primary wave, -19.9 ± 2.8 %; subsequent waves, -13.6 ± 1.9 %; duration at half-maximal decay, 150-200 s) when determined from regions of interest (ROIs) through which both primary and succeeding CSD waves propagated.The passage of both the primary and the succeeding waves often correlated with transient DC potential deflections recorded from the suprasylvian gyrus.The detailed waveforms of the ADC and the T2*-weighted (blood oxygenation level-dependent: BOLD) traces showed a clear reciprocal correlation. These imaging features that reflect disturbances in cellular water balance agree closely with BOLD measurements that followed the propagation velocities of the first and subsequent CSD events. They also provide a close physiological correlate for clinical observations of cortical blood flow disturbances associated with human migraine.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 延时扩散加权磁共振成像(DWI)用于检测和表征在麻醉的猫的腕上回上放置KCl引起的皮层扩展抑制(CSD)引起的复杂波。 延时表示成功地证明了CSD主波以椭圆形波前选择性传播到同侧大脑半球上,速度为3.8±0.70 mm min -1 (5个实验的平均值±sem)。
  • 相反,随后的次波通常留在始发回中,速度较慢(速度2.0±0.18 mm min −1 ),更零碎且数量变化。 已计算视在扩散系数(ADC)的迹线显示为负挠度,随后为单调衰减(振幅:主波,-19.9±2.8%;随后波,-13.6±1.9%;从主要和后续CSD波均通过其传播的感兴趣区域(ROI)确定时,最大衰减的持续时间为150-200 s。 主要和后续波的通过通常相关 ADC的详细波形和T2 *加权(血液氧合程度取决于:BOLD)迹线的详细波形显示出明显的相互关系。这些反映细胞水平衡扰动的成像特征与跟随第一个和后续CSD事件的传播速度的BOLD测量非常吻合。它们还为与人类偏头痛相关的皮质血流障碍的临床观察提供了密切的生理相关性。
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