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Applications of neural network analyses to in vivo 1H magnetic resonance spectroscopy of epilepsy patients.

机译:神经网络分析在癫痫患者体内1H磁共振波谱中的应用。

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A total of 67 in vivo water-suppressed proton magnetic resonance spectra of the temporal lobes were recorded from 15 patients with long standing temporal lobe epilepsy and 13 healthy volunteers. Conventional data analysis indicated slightly lower N-acetyl aspartate levels in epileptic patients compared with controls. For further analysis of data, a spectral region (4.0-1.5 ppm) was used as input for artificial neural network analysis. Correct classification of spectra was obtained in 66 out of 67 cases, disregarding from which side of the brain the spectra were recorded. The ability of the trained network to recognize spectra recorded both contalaterally and ipsilaterally to the epileptic focus strongly indicates bilateral metabolic changes. Artificial neural networks could also be trained to recognize whether the spectra were recorded from the ipsilateral or contralateral side of the epileptic focus, indicating that neural network analysis of in vivo proton MR spectra can be used as an additional tool for pre-surgical lateralization of seizure foci.
机译:从15例长期站立的颞叶癫痫患者和13名健康志愿者中记录了67个体内颞叶的体内水抑制质子磁共振波谱。常规数据分析表明,与对照组相比,癫痫患者的N-乙酰天门冬氨酸含量略低。为了进一步分析数据,将光谱区域(4.0-1.5 ppm)用作人工神经网络分析的输入。在67例病例中,有66例获得了正确的光谱分类,而忽略了从大脑的哪一侧记录了光谱。受过训练的网络识别在癫痫病灶的同侧和同侧记录的光谱的能力强烈表明了双边代谢变化。还可以训练人工神经网络来识别是从癫痫病灶的同侧还是对侧记录光谱,这表明体内质子MR光谱的神经网络分析可以用作癫痫发作术前侧化的附加工具焦点。

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