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通过 RBC 流量图揭示大鼠胡须皮层中的频率调谐。

Frequency tuning in the rat whisker barrel cortex revealed through RBC flux maps.

机构信息

Department of Radiology, UMDNJ-New Jersey Medical School, Newark, NJ, USA.

出版信息

Brain Res. 2011 Oct 12;1417:16-26. doi: 10.1016/j.brainres.2011.08.026. Epub 2011 Aug 19.

Abstract

The rodent whisker barrel cortex is ideal for studies related to sensory processing and neural plasticity in the brain. However, its small spatial dimensions challenge optical and other imaging technologies mapping cortical hemodynamics as functional resolution (the ability to spatially and selectively discriminate signals from microvascular compartments) limit measurement accuracy. To precisely map hemodynamic activity within the rat posteriomedial barrel subfield (PMBSF), we used functional Laser Doppler Imaging (fLDI) at high spatial resolution with optimized detection and analysis. In this configuration, we demonstrate prominent whisker deflection-induced fLDI hemodynamic responses from microvascular regions indicating the technique's specificity to smaller vessel compartments. Clusters of fLDI activation were confined within the PMBSF region during deflection of either single or all whiskers. Stereotaxic co-ordinate mapping was performed over all animals leading to an average maximum activity cluster at +5.3, -3.5 from the Bregma. The maximum activity cluster during all whisker stimulation combined with the principal activation cluster during deflection of the C1 whisker were used as a reference to characterize the fLDI maps within the PMBSF. fLDI activation area increased with the frequency of whisker deflection. In a quantitative analysis, we reveal the increase in the spatial extent of fLDI activation with stimulation frequency as spatially non-uniform with a bias towards the caudal region for low and rostral region for higher stimulation frequencies.

摘要

啮齿动物胡须桶皮层是研究大脑感觉处理和神经可塑性的理想选择。然而,其较小的空间尺寸挑战了光学和其他成像技术对皮质血液动力学的映射,因为功能分辨率(即从微血管隔室空间和选择性地辨别信号的能力)限制了测量精度。为了精确绘制大鼠后内侧桶状皮层亚区(PMBSF)内的血液动力学活动,我们使用了具有优化检测和分析功能的高空间分辨率的功能性激光多普勒成像(fLDI)。在这种配置中,我们展示了来自微血管区域的明显的胡须偏转诱导的 fLDI 血液动力学响应,表明该技术对较小的血管隔室具有特异性。在单个或所有胡须偏转期间,fLDI 激活簇被限制在 PMBSF 区域内。在所有动物上进行立体坐标映射,导致在 Bregma 处的+5.3、-3.5 处有平均最大活动簇。所有胡须刺激期间的最大活动簇加上 C1 胡须偏转期间的主要激活簇被用作参考,以描述 PMBSF 内的 fLDI 图谱。fLDI 激活面积随胡须偏转频率的增加而增加。在定量分析中,我们揭示了 fLDI 激活的空间范围随刺激频率的增加而增加,其空间分布不均匀,对于低刺激频率偏向尾侧区域,对于较高刺激频率偏向头侧区域。

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