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1、飞利浦磁共振临床应用培训磁共振序列原理JaneZhuangMarch17,20151.什么是磁共振序列?射频脉冲、梯度场和信号采集时间等相关各参数的设置及其在时序上的排列组合。2March17,2015Internaluseonly2.磁共振脉冲序列的构成是怎样的?射频脉冲、层面选择梯度场、相位编码梯度场、频率编码梯度场及MR信号。横向磁化矢量RFpulsesMRresponseGsliceselectionGfrequencyencodingGphaseencodingTETR3March17,2
2、015Internaluseonly3.TR、TE是怎样影响图像的对比的?纵向弛豫/T1弛豫(恢复)横向弛豫/T2弛豫(衰减)MzMxyT2对比T(Rms)T(Ems)长TR、长TE:T2加权成像4March17,2015Internaluseonly3.TR、TE是怎样影响图像的对比的?纵向弛豫/T1弛豫(恢复)横向弛豫/T2弛豫(衰减)MzMxyT1对比TR(ms)TE(ms)短TR、短TE:T1加权成像5March17,2015Internaluseonly3.TR、TE是怎样影响图像的对比的
3、?纵向弛豫/T1弛豫(恢复)横向弛豫/T2弛豫(衰减)MzMxyTR(ms)TE(ms)长TR、短TE:PD加权成像6March17,2015Internaluseonly4.TR和TE在脉冲序列中是怎么样控制的??RFpulsesMRresponseGsliceselectionGfrequencyencodingGphaseencodingTETR7March17,2015Internaluseonly一、自旋回波序列(SE)二、快速自旋回波序列(TSE)三、反转恢复及快速反转恢复序列(IR&I
4、R-TSE)四、场回波序列家族(FFE、TFE)五、平面回波序列(EPI)8March17,2015Internaluseonly一、自旋回波序列(SE)9March17,2015Internaluseonly1.SE序列结构180°90°90°RFpulsesSpinEchoMRresponseGsliceselectionGfrequencyencodingGphaseencodingTETR10March17,2015Internaluseonly聚相位90°射频脉冲180°射频脉冲失相位进动
5、11March17,2015Internaluseonly12March17,2015Internaluseonly90°180°RF2.SE的特点SpinEchoMRSlice优点:Meas序列结构比较简单,信号变化容易解释;Phase图像具有良好的信噪比;TETR图像的组织对比良好;对磁场的不均匀敏感性低,磁化率伪影很轻微。缺点:90°脉冲能量较大,纵向弛豫需要的时间较长,需采用较长的TR;一次激发仅采集一个回波,序列采集时间较长;体部MRI时容易产生伪影;难以进行动态增强扫描。13March1
6、7,2015Internaluseonly3.SE的临床应用临床应用:头颅、关节、脊柱,T1SE14March17,2015Internaluseonly二、快速自旋回波序列(TSE)15March17,2015Internaluseonly1.TSE的原理90°180°180°180°180°RFMRSliceMeasPhaseK-SPACE16March17,2015Internaluseonly2.TSE的特点90°180°180°180°180°RFMRSliceMeasPhaseK-SPA
7、CE1)快速成像4)脂肪组织信号强度增高2)回波链中每个回波信号的TE不同5)对磁场不均匀性不敏感3)模糊效应6)能量沉积增加17March17,2015InternaluseonlyMzMxy3.TSE的临床应用T1对比1)T1TSE→大关节、脊柱、盆腔TR(ms)TE(ms)短TR、短TE:T1加权成像18March17,2015InternaluseonlyMzMxy3.TSE的临床应用T2对比T(ms)T(ms)2)T2TSE(短TSEfactor)→颅脑、腹部压脂、盆腔、关节长TR、长TE
8、:T2加权成像19March17,2015InternaluseonlyMzMxy3.TSE的临床应用T2对比T(ms)T(ms)3)T2TSE(中等TSEfactor)→颅脑、腹盆腔、脊柱、骨关节软组织20March17,2015InternaluseonlyMzMxy3.TSE的临床应用T2对比T(ms)T(ms)4)T2TSE(长TSEfactor)→体部屏气扫描(BH)、水成像(MRCP、MRU)21March17,2015Internaluseonly4.T