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Difference Imaging of Inter- and Intra-Ictal SPECT Images for the Localization of Seizure Onset in Epilepsy

机译:癫痫癫痫发作癫痫发作局部化型和Intra-Itaral Spect图像的差异成像

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The comparison of inter- with intra-ictal SPECT images plays an important role during the diagnosis and treatment of epilepsy patients. Although there is already commercial software available to address this problem using complex clinical workflows, this article describes a different way of looking at this issue. During the examination various issues arise from differing tracer concentrations, patient movement between the acquisitions at different times and also the lack of morphological information. The goal of the presented work is therefore to present an approach that is on the one hand easy to use for the physician and on the other hand both reliable and robust enough to cope with the previously mentioned challenges. The proposed algorithm introduces methods that have already been applied successfully in digital subtraction angiography (DSA). The work comprises of several steps for the intensity normalization, image registration, difference imaging and the incorporation of an MR image for the spatial localization. As a result, information is provided about differences within the cerebral blood flow (CBF) and active brain areas between the intra- and inter-ictal states. Very new to the field of SPECT brain imaging is the application of non-rigid registration techniques. This helps to drastically reduce the artifacts within the difference images due to a bias of the standard rigid registration. Acquired results from a collective of 11 patients show that this additional feature helps to further improve the image quality.
机译:与INTRA-INTAL INTRAL INTEL-INTRAL IMITH的比较在癫痫患者的诊断和治疗期间起着重要作用。虽然已经使用复杂的临床工作流程已经有商业软件来解决此问题,但本文介绍了一种查看此问题的不同方式。在考试期间,各种问题出现来自不同的示踪浓度,不同时间的收购之间的患者运动以及缺乏形态学信息。因此,本工作的目标是提出一种易于用于医生的方法,另一方面,足以应对前面提到的挑战的可靠和强大。所提出的算法介绍了在数字减法血管造影(DSA)中已成功应用的方法。该工作包括对强度归一化,图像配准,差异成像以及用于空间定位的MR图像的若干步骤。结果,提供了关于脑内血流(CBF)和INTIOTAL间状态之间的活性大脑区域的差异的信息。 SPECT脑成像领域非常新的是应用非刚性登记技术。由于标准刚性登记的偏差,这有助于大大减少差异图像内的伪影。 11名患者的集体的获得结果表明,这一附加功能有助于进一步提高图像质量。

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