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Multisensor and multidimensional biomedical imaging (including volumetric electro-magnetic tomography) for the visualization and assessment of neurological (dys)-function

机译:多传感器和多维生物医学成像(包括体积电磁层析成像),用于可视化和评估神经功能(功能障碍)

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We have implemented a global system consisting of techniques and protocols for the combination (registration, visualization, navigation and processing) of various multidimensional biomedical imaging sensors, including all current modalities and also electro-magnetic tomography (EMT), to study, assess, and localize neurological (dys-)function for both clinical and research applications. The already well described interest for this combination stems from the broad variety of complementary information brought out by modern biomedical imaging modalities. In this context, the input of volumetric EMT permits direct sighting, in near real-time, of any EM (dys-)functional behavior. Besides allowing morphology, metabolism and function to be studied simultaneously and from different points of view, the global combination permitted by our approach is expected to show its best value when studying pathologies reflected by metabolic or electromagnetic dysfunctions such as drug-resistant epilepsy.
机译:我们已经实施了一个由各种技术和协议组成的全球系统,用于各种多维生物医学成像传感器的组合(注册,可视化,导航和处理),包括所有当前模式以及电磁层析成像(EMT),以进行研究,评估和为临床和研究应用定位神经功能(功能障碍)。对于这种组合的充分描述的兴趣源于现代生物医学成像方法带来的各种各样的补充信息。在这种情况下,体积EMT的输入可以几乎实时地直接观察到任何EM(功能障碍)功能行为。除了可以从不同的角度同时研究形态,代谢和功能外,我们的方法允许的整体组合有望在研究由代谢或电磁功能障碍(例如耐药性癫痫)反映的病理时显示出最佳价值。

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