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Imaging Spectrum of Brain Microhemorrhages on SWI

机译:SWI脑微出血的成像光谱

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Microhemorrhages in cerebral and cerebellar parenchyma are due to various underlying causes. Conventional MR imaging sequences and CT are often not sufficient for their detection and determination of their distribution. SWI is a relatively new full-velocity‐compensated high-resolution 3-dimensional gradient echo sequence that accurately detects small hemorrhage (microhemorrhage) and calcification by exaggerating susceptibility signal intensity, which is more sensitive than T2 gradient echo. Increased availability of SWI has identified its utility in a wide range of other brain abnormalities. Here we presented and discussed various pathologies with brain microhemorrhages on SWI. We retrospectively reviewed cases with SWI. When available, we also compared the SWI with other MR imaging sequences and/or CT. SWI was particularly helpful for the detection and determination of distribution of microhemorrhages, which were more conspicuous than on CT or conventional MR imaging sequences. Some diseases had distinctive patterns of microhemorrhages as follows: in the deep subcortical white matter, posterior corpus callosum, and midbrain location for diffuse axonal injuries; cortical for amyloid angiopathy; peripheral in sickle cell disease; basal ganglia and cerebellar for hypertensive microhemorrhages; perivascular for invasive mucormycosis; and diffuse involvement in fat emboli. However, in some entities, the distribution of microhemorrhages was nonspecific, and, in these patients, clinical information and history were helpful in reaching a correct diagnosis. Learning Objective: To identify the distinctive imaging features on SWI of various pathologies, which may help in generating a differential diagnosis and in achieving a definite diagnosis.
机译:脑部和小脑实质中的微出血是由于各种潜在原因引起的。传统的MR成像序列和CT通常不足以检测和确定其分布。 SWI是一种相对较新的全速度补偿高分辨率3维梯度回波序列,它通过放大磁化率信号强度来准确检测小出血(微出血)和钙化,比T2梯度回波更灵敏。 SWI可用性的提高已证明其在许多其他脑部异常中的效用。在这里,我们介绍并讨论了SWI上脑微出血的各种病理。我们回顾了SWI的病例。如果可用,我们还将SWI与其他MR成像序列和/或CT进行了比较。 SWI对于检测和确定微出血的分布特别有帮助,这种微出血比在CT或常规MR成像序列上更为明显。一些疾病具有明显的微出血模式,表现为:在深层皮质下白质,后体call体和中脑部位弥漫性轴索损伤。皮质用于淀粉样血管病;镰状细胞病的外周;基底节和小脑高血压微出血;血管周围浸润性毛霉菌病并广泛参与脂肪栓塞。但是,在某些实体中,微出血的分布是非特异性的,并且在这些患者中,临床信息和病史有助于正确诊断。学习目标:识别各种病理学上SWI的显着影像学特征,这可能有助于产生鉴别诊断和确定诊断。

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