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Automated volumetry for unilateral hippocampal sclerosis detection in patients with temporal lobe epilepsy

机译:颞叶癫痫患者单侧海马硬化检测的自动体积

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Hippocampal sclerosis (HS) is the most common cause of temporal lobe epilepsy (TLE) and can be identified in magnetic resonance imaging as hippocampal atrophy and subsequent volume loss. Detecting this kind of abnormalities through simple radiological assessment could be difficult, even for experienced radiologists. For that reason, hippocampal volumetry is generally used to support this kind of diagnosis. Manual volumetry is the traditional approach but it is time consuming and requires the physician to be familiar with neuroimaging software tools. In this paper, we propose an automated method, written as a script that uses FSL-FIRST, to perform hippocampal segmentation and compute an index to quantify hippocampi asymmetry (HAI). We compared the automated detection of HS (left or right) based on the HAI with the agreement of two experts in a group of 19 patients and 15 controls, achieving 84.2% sensitivity, 86.7% specificity and a Cohen's kappa coefficient of 0.704. The proposed method is integrated in the “Advanced Brain Imaging Lab” (ABrIL) cloud neurocomputing platform. The automated procedure is 77% (on average) faster to compute vs. the manual volumetry segmentation performed by an experienced physician.
机译:海马硬化症(HS)是颞叶癫痫(TLE)最常见的原因,可以在磁共振成像中鉴定为海马萎缩和随后的体积损失。即使对于经验丰富的放射科医师,甚至可能难以通过简单的放射性评估检测这种异常。因此,海马体积通常用于支持这种诊断。手动体积是传统的方法,但它是耗时的,并要求医生熟悉神经影像软件工具。在本文中,我们提出了一种自动方法,作为使用FSL-First的脚本写入的自动方法,执行海马分段并计算索引来量化海马不对称(HAI)。我们将基于HAI的HS(左或右)的自动检测与19名患者组和15名患者组的两名专家的协议进行了比较,实现了84.2%的灵敏度,特异性86.7%和0.704的Cohen的Kappa系数。所提出的方法集成在“高级脑成像实验室”(ABRIR)云神经处理平台中。自动化过程为77%(平均)更快地计算与经验丰富的医生执行的手动体积分段。

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