Royl Georg, Leithner Christoph, Sellien Heike, Müller Jan Philipp, Megow Dirk, Offenhauser Nikolas, Steinbrink Jens, Kohl-Bareis Matthias, Dirnagl Ulrich, Lindauer Ute
Department of Experimental Neurology, Charité Universitätsmedizin Berlin, 10098 Berlin, Germany.
Brain Res. 2006 Nov 22;1121(1):95-103. doi: 10.1016/j.brainres.2006.08.125. Epub 2006 Oct 9.
Laser Speckle Contrast Analysis (LASCA), a novel, high-resolution blood flow imaging method, was performed on rat somatosensory cortex during functional activation. In the same animals, cerebral blood flow (CBF) was measured with Laser Doppler Flowmetry. To obtain a quantitative estimate of the underlying neuronal activity, somatosensory evoked potentials were recorded simultaneously with an epidural EEG. Our results show that: 1. CBF changes measured by LASCA or LDF are nonlinearly dependent on the magnitude of electrical neural activity revealed by somatosensory evoked potentials. 2. The magnitude of relative CBF changes measured by LASCA and LDF shows a strong correlation. 3. LASCA imaging localizes the highest relative changes of CBF in microcirculatory areas, with a smaller contribution by larger vessels. This study demonstrates that LASCA is a reliable method that provides 2D-imaging of CBF changes that are comparable to LDF measurements. It further suggests that functional neuroimaging methods based on CBF enhance areas of microcirculation and thus might prove more accurate in localizing neural activity than oxygenation related methods like BOLD-fMRI.
在功能激活期间,对大鼠体感皮层进行了激光散斑对比分析(LASCA),这是一种新型的高分辨率血流成像方法。在同一批动物中,用激光多普勒血流仪测量脑血流量(CBF)。为了获得对潜在神经元活动的定量估计,同时通过硬膜外脑电图记录体感诱发电位。我们的结果表明:1. 通过LASCA或LDF测量的CBF变化与体感诱发电位所揭示的神经电活动强度呈非线性相关。2. 通过LASCA和LDF测量的相对CBF变化幅度显示出很强的相关性。3. LASCA成像在微循环区域定位了CBF的最高相对变化,较大血管的贡献较小。这项研究表明,LASCA是一种可靠的方法,可提供与LDF测量相当的CBF变化的二维成像。它进一步表明,基于CBF的功能神经成像方法增强了微循环区域,因此在定位神经活动方面可能比像BOLD-fMRI这样的与氧合相关的方法更准确。