Bai L S, Kinosada Y, Okuda Y, Ning M, Nakagawa T
Department of Radiology. Mie University School of Medicine.
Nihon Igaku Hoshasen Gakkai Zasshi. 1996 Nov;56(13):955-60.
We assessed the age-related changes in magnetization transfer ratio (MTR) value and the ratio of water content in rat brain (frontal lobe and pons) during normal development. All studies were done on 42 normal Wistar rats. MTR was calculated by using the equation (Moff-Mon)/Moff, where Moff and Mon were the measured signal intensities on the conventional and MT-prepared SPGR images, respectively. The ratios of water content were measured by comparing the wet weight with the dry weight of the frontal lobe and the pons, which were extracted from a rat brain soon after MTR measurements. The ratio of water content was calculated by using the equation 100 x (wet weight-dry weight)/wet weight (%). The ratio of water content decreased markedly during the first 30 days, but the decrease was very slight there after both in the frontal lobe and the pons. The change in MTR was similar to that of the ratio of water content, though the direction of change was opposite. Statistically significant inverse relationships existed between MTR and the ratio of water content both in the frontal lobe and the pons. MTR could be a new parameter with which to assess brain development.
我们评估了正常发育过程中大鼠脑(额叶和脑桥)的磁化传递率(MTR)值及含水量比率的年龄相关变化。所有研究均在42只正常Wistar大鼠上进行。MTR通过公式(Moff - Mon)/Moff计算得出,其中Moff和Mon分别是常规和MT制备的SPGR图像上测得的信号强度。含水量比率通过比较额叶和脑桥的湿重与干重进行测量,额叶和脑桥是在MTR测量后不久从大鼠脑中取出的。含水量比率通过公式100×(湿重 - 干重)/湿重(%)计算得出。含水量比率在前30天显著下降,但之后在额叶和脑桥中下降都非常轻微。MTR的变化与含水量比率相似,尽管变化方向相反。额叶和脑桥中MTR与含水量比率之间均存在统计学上显著的负相关关系。MTR可能是评估脑发育的一个新参数。