Department of Nuclear Medicine, PET/CT-MRI Center, Center of Cyclotron and PET Radiopharmaceuticals, The First Affiliated Hospital of Jinan University, Guangzhou, China.
Department of Radiology, Central People's Hospital of Zhanjiang, Zhanjiang, China.
Epilepsia Open. 2024 Aug;9(4):1515-1525. doi: 10.1002/epi4.12990. Epub 2024 Jun 29.
Subcortical nuclei such as the thalamus and striatum have been shown to be related to seizure modulation and termination, especially in drug-resistant epilepsy. Enhance diffusion-weighted imaging (eDWI) technique and tri-component model have been used in previous studies to calculate apparent diffusion coefficient from ultra high b-values (ADCuh). This study aimed to explore the alterations of ADCuh in the bilateral thalamus and striatum in MRI-negative drug-resistant epilepsy.
Twenty-nine patients with MRI-negative drug-resistant epilepsy and 18 healthy controls underwent eDWI scan with 15 b-values (0-5000 s/mm). The eDWI parameters including standard ADC (ADCst), pure water diffusion (D), and ADCuh were calculated from the 15 b-values. Regions-of-interest (ROIs) analyses were conducted in the bilateral thalamus, caudate nucleus, putamen, and globus pallidus. ADCst, D, and ADCuh values were compared between the MRI-negative drug-resistant epilepsy patients and controls using multivariate generalized linear models. Inter-rater reliability was assessed using the intra-class correlation coefficient (ICC) and Bland-Altman (BA) analysis. False discovery rate (FDR) method was applied for multiple comparisons correction.
ADCuh values in the bilateral thalamus, caudate nucleus, putamen, and globus pallidus in MRI-negative drug-resistant epilepsy were significantly higher than those in the healthy control subjects (all p < 0.05, FDR corrected).
The alterations of the ADCuh values in the bilateral thalamus and striatum in MRI-negative drug-resistant epilepsy might reflect abnormal membrane water permeability in MRI-negative drug-resistant epilepsy. ADCuh might be a sensitive measurement for evaluating subcortical nuclei-related brain damage in epilepsy patients.
This study aimed to explore the alterations of apparent diffusion coefficient calculated from ultra high b-values (ADCuh) in the subcortical nuclei such as the bilateral thalamus and striatum in MRI-negative drug-resistant epilepsy. The bilateral thalamus and striatum showed higher ADCuh in epilepsy patients than healthy controls. These findings may add new evidences of subcortical nuclei abnormalities related to water and ion hemostasis in epilepsy patients, which might help to elucidate the underlying epileptic neuropathophysiological mechanisms and facilitate the exploration of therapeutic targets.
丘脑和纹状体等皮质下核已被证明与癫痫发作的调节和终止有关,尤其是在耐药性癫痫中。增强弥散加权成像(eDWI)技术和三成分模型已在前瞻性研究中用于计算超高 b 值(ADCuh)的表观弥散系数。本研究旨在探讨 MRI 阴性耐药性癫痫患者双侧丘脑和纹状体 ADCuh 的变化。
29 例 MRI 阴性耐药性癫痫患者和 18 例健康对照者接受 eDWI 扫描,b 值为 0-5000 s/mm2,共 15 个 b 值。从 15 个 b 值计算 eDWI 参数,包括标准 ADC(ADCst)、纯水弥散(D)和 ADCuh。在双侧丘脑、尾状核、壳核和苍白球进行感兴趣区(ROI)分析。采用多元广义线性模型比较 MRI 阴性耐药性癫痫患者和对照组的 ADCst、D 和 ADCuh 值。采用组内相关系数(ICC)和 Bland-Altman(BA)分析评估观察者间的可靠性。采用假发现率(FDR)法进行多重比较校正。
MRI 阴性耐药性癫痫患者双侧丘脑、尾状核、壳核和苍白球的 ADCuh 值均高于健康对照组(均 p<0.05,经 FDR 校正)。
MRI 阴性耐药性癫痫患者双侧丘脑和纹状体 ADCuh 值的改变可能反映了 MRI 阴性耐药性癫痫患者细胞膜水通透性的异常。ADCuh 可能是评估癫痫患者皮质下核相关脑损伤的敏感指标。