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Structural plasticity of the bilateral hippocampus in glioma patients

机译:胶质瘤患者双侧海马的结构可塑性

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摘要

This study investigates the structural plasticity and neuronal reaction of the hippocampus in glioma patient pre-surgery. Ninety-nine glioma patients without bilateral hippocampus involvement (low-grade, n=52; high-grade, n=47) and 80 healthy controls with 3D T1 images and resting-fMRI were included. Hippocampal volume and dynamic amplitude of low-frequency fluctuation (dALFF) were analyzed among groups. Relationships between hippocampal volume and clinical characteristics were assessed. We observed remote hippocampal volume increases in low- and high-grade glioma and a greater response of the ipsilateral hippocampus than the contralesional hippocampus. The bilateral hippocampal dALFF was significantly increased in high-grade glioma. Tumor-associated epilepsy and the IDH-1 mutation did not affect hippocampal volume in glioma patients. No significant relationship between hippocampal volume and age was observed in high-grade glioma. The Kaplan-Meier curve and log-rank test revealed that large hippocampal volume was associated with shorter overall survival (OS) compared with small hippocampal volume (p=0.007). Multivariate Cox regression analysis revealed that large hippocampal volume was an independent predictor of unfavorable OS (HR=3.597, 95% CI: 1.160-11.153, p=0.027) in high-grade glioma. Our findings suggest that the hippocampus has a remarkable degree of plasticity in response to pathological stimulation of glioma and that the hippocampal reaction to glioma may be related to tumor malignancy.
机译:这项研究调查神经胶质瘤患者术前海马的结构可塑性和神经元反应。包括没有双侧海马受累的99例神经胶质瘤患者(低度,n = 52;高度,n = 47)和80位具有3D T1图像和静息功能磁共振成像的健康对照。分析各组的海马体积和低频波动的动态幅度(dALFF)。评估海马体积与临床特征之间的关系。我们观察到低级和高级级神经胶质瘤的远端海马体积增加,同侧海马的反应比对侧海马更大。高级别胶质瘤中双侧海马的dALFF明显升高。胶质瘤患者的肿瘤相关性癫痫和IDH-1突变不会影响海马体积。在高级别神经胶质瘤中,未观察到海马体积与年龄之间的显着关系。 Kaplan-Meier曲线和对数秩检验表明,与小海马体积相比,大海马体积与较短的总生存期(OS)相关(p = 0.007)。多元Cox回归分析显示,高级别海马体积是高级别神经胶质瘤不良OS的独立预测因子(HR = 3.597,95%CI:1.160-11.153,p = 0.027)。我们的发现表明,对神经胶质瘤的病理刺激,海马具有显着的可塑性,并且对神经胶质瘤的海马反应可能与肿瘤恶性有关。

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