MGH/MIT/HMS Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital, Charlestown, MA 02129, USA.
Neuroimage. 2011 Aug 1;57(3):979-90. doi: 10.1016/j.neuroimage.2011.05.017. Epub 2011 May 12.
Time of arrival (TOA) of a bolus of contrast agent to the tissue voxel is a reference time point critical for the Early Time Points Perfusion Imaging Method (ET) to make relative cerebral blood flow (rCBF) maps. Due to the low contrast to noise (CNR) condition at TOA, other useful reference time points known as relative time of arrival data points (rTOA) are investigated. Candidate rTOA's include the time to reach the maximum derivative, the maximum second derivative, and the maximum fractional derivative. Each rTOA retains the same relative time distance from TOA for all tissue flow levels provided that ET's basic assumption is met, namely, no contrast agent has a chance to leave the tissue before the time of rTOA. The ET's framework insures that rCBF estimates by different orders of the derivative are theoretically equivalent to each other and monkey perfusion imaging results supported the theory. In rCBF estimation, maximum values of higher order fractional derivatives may be used to replace the maximum derivative which runs a higher risk of violating ET's assumption. Using the maximum values of the derivative of orders ranging from 1 to 1.5 to 2, estimated rCBF results were found to demonstrate a gray-white matter ratio of approximately 3, a number consistent with flow ratio reported in the literature.
对比剂团块到达组织体素的时间(TOA)是早期时间点灌注成像方法(ET)制作相对脑血流(rCBF)图的关键参考时间点。由于在 TOA 时的对比噪声比(CNR)较低,因此研究了其他一些有用的参考时间点,称为相对到达时间数据点(rTOA)。候选 rTOA 包括达到最大导数的时间、最大二阶导数的时间和最大分数阶导数的时间。只要满足 ET 的基本假设,即没有对比剂有机会在 rTOA 之前离开组织,那么对于所有组织血流水平,每个 rTOA 都保留与 TOA 的相同相对时间距离。ET 的框架确保不同阶导数的 rCBF 估计在理论上彼此等效,并且猴子灌注成像结果支持了这一理论。在 rCBF 估计中,更高阶分数阶导数的最大值可用于替代最大导数,因为最大导数更有可能违反 ET 的假设。使用从 1 阶到 1.5 阶再到 2 阶的导数的最大值,估计的 rCBF 结果表明灰质-白质比约为 3,这与文献中报道的血流比一致。