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首页> 外文期刊>Epilepsy research >Hippocampal activations in mesial temporal lobe epilepsy due to hippocampal sclerosis- an observational study on intramural encoding-delayed recall paradigms using task-based memory fMRI
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Hippocampal activations in mesial temporal lobe epilepsy due to hippocampal sclerosis- an observational study on intramural encoding-delayed recall paradigms using task-based memory fMRI

机译:由于海马硬化导致的患有型颞叶癫痫的海马激活 - 使用任务的内存FMRI对intramural延迟召回召回范例的观察研究

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ObjectivesTo validate concurrent utility of within-scanner encoding and delayed recognition-memory paradigms to ascertain hippocampal activations during task-based memory fMRI. MethodsMemory paradigms were designed for faces, word-pairs and abstract designs. A deep-encoding task was designed comprising of a total of 9 cycles run within a 1.5T MRI scanner. A recall session was performed after 1?h within the scanner using an event-related design. Group analysis was done with ‘correct-incorrect' responses applied as parametric modulators in Statistical Parametric Mapping version 8 using boot-strap method to enable estimation of laterality indices (LI) using custom anatomical masks involving the medio-basal temporal structures. ResultsTwenty seven subjects with drug-resistant mesial temporal lobe epilepsy due to hippocampal sclerosis (MTLE-HS) [17 patients of left-MTLE and 10 patients of right-MTLE] and 21 right handed age-matched healthy controls (HC) were recruited. For the encoding paradigm blood oxygen level dependent (BOLD) responses in HC demonstrated right laterality for faces, left laterality for word pairs, and bilaterality for design encoding over the regions of interest. Both right and left MTLE-HS groups revealed left lateralisation for word-pair encoding, bilateral activation for face encoding, with design encoding in right MTLE-HS demonstrating a left shift. As opposed to lateralization shown in controls, group analysis of cued-recall BOLD signals acquired within scanner in left MTLE-HS demonstrated right lateralization for word-pairs with bilaterality for faces and designs. The right MTLE-HS group demonstrated bilateral activations for faces, word-pairs and designs. ConclusionRecall-based fMRI paradigms indicate hippocampal plasticity in MTLE-HS, maximal for word-pair associate recall tasks.
机译:ObjectiveSto验证扫描程序内部内部的并发实用程序和延迟识别内存范例,以在基于任务的存储器FMRI期间确定海马激活。方法为面部,字对和抽象设计设计了MEMORY范式。设计了一个深编码的任务,其中包括在1.5T MRI扫描仪内运行的总共9个循环。使用与事件相关的设计在扫描仪中1次召回会话。使用引导带方法在统计参数映射版本8中应用作为参数调制器的“正确 - 不正确”的响应进行了组分析,以使用涉及Medio-Basal时间结构的自定义解剖掩模来实现横向指数(Li)的估计。由于海马硬化症(MTE-HS)[17例左侧粪便患者,左右尿布患者]和21例右手年龄匹配的健康对照(HC),患有耐药性患者颞叶癫痫患者。对于编码范例血氧水平依赖性(粗体)HC中的反应证明了面孔的右侧,左侧的字对的左侧,以及用于在感兴趣区域的设计编码的双侧。右侧和左侧型号-HS组均显示出左侧侧向,用于脸部编码的双侧激活,设计编码在右侧型号-Hs展示左移。与对照中所示的横向化相反,左咒语-HS中获取的扫描仪中获取的Cure-Recall大胆信号的组分析显示出具有面部和设计的双侧的字对对的右侧化。正确的咒语-HS集团展示了面部,词对和设计的双边激活。结论基于型壁的FMRI范式表示咒语-HS中的海马可塑性,最大用于字对助理召回任务。

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