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首页> 外文期刊>Surgical and radiologic anatomy : >The hippocampus: detailed assessment of normative two-dimensional measurements, signal intensity, and subfield conspicuity on routine 3T T2-weighted sequences
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The hippocampus: detailed assessment of normative two-dimensional measurements, signal intensity, and subfield conspicuity on routine 3T T2-weighted sequences

机译:海马:对规范性二维测量,信号强度和常规3T T2加权序列上的信号强度和子字段阴性的详细评估

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摘要

Abstract Purpose The hippocampus has a critical role in many common disease processes. Currently, routine 3 Tesla structural MRI is a mainstay of clinical diagnosis. The goal of our study is to evaluate the normal variability in size and/or conspicuity of the hippocampal subcomponents in routine clinical 3 Tesla high-resolution T2-weighted images to provide a basis for better defining pathological derangements. Additionally, we utilize diffusion data acquired from a 17.6 Tesla MRI of the hippocampus as a benchmark to better illustrate these subcomponents. Methods The hippocampus was retrospectively assessed on 104 clinically normal patients undergoing coronal T2-weighted imaging. The conspicuity of the majority of hippocampal subcomponents was assessed in each portion of the hippocampus. Additionally, easily applicable cross-sectional measurements and signal intensities were obtained to evaluate the range of normal, as well as inter- and intra-subject variability. Results The normal range of cross-sectional measurements of the hippocampal subcomponents was calculated. There was minimal side-to-side variability in cross-sectional measurements of hippocampal subcomponents ( L by 8.3%) and the CA4/DG (R>L by 5.8%). The internal architecture showed high variability in visibility of subcomponents between different segments of the hippocampus. Conclusions Confident clinical assessment of the hippocampus requires a thorough knowledge of hippocampal size and signal, but also the internal architecture expected to be seen. The data provided in this study will provide the reader with vital information necessary for distinguishing a normal from abnormal exam.
机译:摘要目的海马在许多常见疾病过程中具有关键作用。目前,常规3特斯拉结构MRI是临床诊断的主要原体。我们的研究目的是评估常规临床3特斯拉高分辨率T2加权图像中海马子组件的正常变异性,以提供更好地定义病理紊乱的基础。另外,我们利用从海马的17.6特斯拉MRI获取的扩散数据作为基准,以更好地说明这些子组件。方法回顾性临床正常正常患者的回顾性评估海马。大多数海马子组件的阴谋被评估在海马的每一部分中。另外,获得了易于适用的横截面测量和信号强度以评估正常的范围,以及对象间变异性。结果计算了海马子组件的正常横截面测量范围。海马子组件(L×8.3%)的横截面测量和CA4 / DG(R> L为5.8%)存在最小的侧面变异性。内部架构在海马不同段之间的子组件的可见度方面表现出高的可变性。结论对海马的自信临床评估需要彻底了解海马大小和信号,也需要预期的内部建筑。本研究中提供的数据将为读者提供有关区分正常检查的重要信息。

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