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首页> 外文期刊>Japanese journal of radiology >Clinical utility of optimized three-dimensional T1-, T2-, and T2*-weighted sequences in spinal magnetic resonance imaging
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Clinical utility of optimized three-dimensional T1-, T2-, and T2*-weighted sequences in spinal magnetic resonance imaging

机译:脊柱磁共振成像中优化的三维T1,T2和T2和T2-重量序列的临床效用

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This article reviews the clinical utility of 3D magnetic resonance imaging (MRI) sequences optimized for the evaluation of various intraspinal lesions. First, intraspinal tumors with hypervascular components and arteriovenous malformations (AVM) are clearly shown on contrast-enhanced (CE)-3D T1-weighted gradient-echo (GE) sequences with high spatial resolution. Second, dynamic CE-3D time-resolved magnetic resonance angiography (MRA) shows delineated feeding arteries of intraspinal AVM or arteriovenous fistula (AVF), greatly aiding subsequent digital subtraction angiography (DSA). Third, 3D multiecho T2*-weighted GE sequences are used to visualize intraspinal structures and spinal cord lesions and are sensitive to the magnetic susceptibility of intraspinal hemorrhages. Three-dimensional balanced steady-state free precession (SSFP) and multishot 3D balanced non-SSFP sequences produce contiguous thin images with high signal-to-noise ratio (SNR) in short scanning times. Intraspinal cystic lesions and small nerve-root tumors in subarachnoid space can be viewed using 3D balanced SSFP. Spinal cord myelomalacia and cord compression can be evaluated on fat-suppressed multishot 3D balanced non-SSFP. Finally, a 3D T2-weighted fast spin-echo (FSE) sequence with variable flip angle (FA) refocusing pulse improves through-plane spatial resolution over conventional 2D T2-weighted FSE sequences while matching image contrast.
机译:本文审查了3D磁共振成像(MRI)序列优化的临床效用,用于评估各种埋管病变。首先,具有高空间分辨率的对比增强(CE)-3D T1加权梯度回波(GE)序列,清楚地显示具有高血管外组分和动静脉畸形(AVM)的脊柱肿瘤。其次,动态CE-3D时间分辨磁共振血管造影(MRA)显示了脊柱锚杆或动静脉瘘(AVF)的描绘喂养动脉,大大辅助后续的数字减法血管造影(DSA)。第三,3D MultiCho T2 * -weighted GE序列用于可视化内腔结构和脊髓病变,对锚管出血的磁化率敏感。三维平衡稳态自由进(SSFP)和多仪3D平衡非SSFP序列在短扫描时间内产生具有高信噪比(SNR)的连续薄图像。可以使用3D平衡SSFP来观察蛛网膜下腔空间中的内侧囊性病变和小神经根肿瘤。脊髓骨髓癌和脐带压缩可以在脂肪抑制的多仪3D平衡非SSFP上进行评估。最后,具有可变翻转角度(FA)重击脉冲的3D T2加权快速旋转回波(FSE)序列在匹配图像对比度的同时通过传统的2D T2加权FSE序列提高通过平面空间分辨率。

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