Dilharreguy Bixente, Jones Richard A, Moonen Chrit T W
Imagerie Moléculaire et Fonctionnelle: de la Physiologie à la Thérapie, ERT CNRS/Université Bordeaux 2, 146 Rue Léo Saignat (case 117), 33076 Bordeaux, France.
Neuroimage. 2003 Aug;19(4):1820-8. doi: 10.1016/s1053-8119(03)00289-1.
Experimental and modeling studies were used to estimate the effect of different sampling rates (repetition times, TR) and different sampling positions on the estimates of the temporal properties of the hemodynamic response function (HRF) derived from fMRI studies. Data were acquired at a TR of 250 ms and then subjected to various degrees of undersampling. Using a gaussian fitting function it is demonstrated that the accuracy of HRF peak time determination decreases with lower sampling rate (higher TR). The decrease in accuracy amounts to about 50 ms per second of TR increase. In addition, temporal shifts of the HRF peak time are found when reducing the influence of the more variable descending part of HRF curve by using a temporal cut-off after HRF peak time. The shift scales with TR, amounts up to 100 ms for a TR of 1500 ms and a cut-off of 3-4 s and depends on the sampling position. The use of the full HRF function does not lead to a shift but increases the influence of potential confounding factors as large veins and poststimulus undershoot. Since both accuracy and potential shifts of HRF peak determination scale with TR, it is important that temporal fMRI studies are carried out with high sampling rates.
实验和建模研究用于估计不同采样率(重复时间,TR)和不同采样位置对功能磁共振成像(fMRI)研究中所推导的血液动力学响应函数(HRF)时间特性估计值的影响。数据在250毫秒的TR下采集,然后进行不同程度的欠采样。使用高斯拟合函数表明,HRF峰值时间确定的准确性随着采样率降低(TR增加)而降低。准确性的降低幅度约为每增加一秒TR降低50毫秒。此外,当通过在HRF峰值时间后使用时间截止来减少HRF曲线变化较大的下降部分的影响时,会发现HRF峰值时间的时间偏移。该偏移与TR成比例,对于1500毫秒的TR和3 - 4秒的截止时间,偏移量可达100毫秒,并且取决于采样位置。使用完整的HRF函数不会导致偏移,但会增加诸如大静脉和刺激后下冲等潜在混杂因素的影响。由于HRF峰值确定的准确性和潜在偏移均与TR成比例,因此以高采样率进行时间fMRI研究很重要。