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Medical Diagnosis Imaging Systems: Image and Signal Processing Applications Aided by Fuzzy Logic

机译:医学诊断成像系统:模糊逻辑辅助的图像和信号处理应用

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First, we describe an automated procedure for segmenting an MR image of a human brain based on fuzzy logic for diagnosing Alzheimer's disease. The intensity thresholds for segmenting the whole brain of a subject are automatically determined by finding the peaks of the intensity histogram. After these thresholds are evaluated in a region growing, the whole brain can be identified. Next, we describe a procedure for decomposing the obtained whole brain into the left and right cerebral hemispheres, the cerebellum and the brain stem. Our method then identified the whole brain, the left cerebral hemisphere, the right cerebral hemisphere, the cerebellum and the brain stem. Secondly, we describe a trans-skull sonography system that can visualize the shape of the skull and brain surface from any point to examine skull fracture and some brain diseases. We employ fuzzy signal processing to determine the skull and brain surface. The phantom model, the animal model with soft tissue, the animal model with brain tissue, and a human subjects' forehead is applied in our system. The all shapes of the skin surface, skull surface, skull bottom, and brain tissue surface are successfully determined.
机译:首先,我们描述了一种基于模糊逻辑的人脑MR图像分割自动程序,用于诊断阿尔茨海默氏病。通过找到强度直方图的峰值,可以自动确定用于分割对象整个大脑的强度阈值。在增长的区域中评估了这些阈值之后,便可以识别整个大脑。接下来,我们描述将获得的整个大脑分解为左右大脑半球,小脑和脑干的过程。然后,我们的方法确定了整个大脑,左脑半球,右脑半球,小脑和脑干。其次,我们描述了一种跨颅超声检查系统,该系统可以从任何角度可视化颅骨和大脑表面的形状,以检查颅骨骨折和某些脑部疾病。我们采用模糊信号处理来确定头骨和大脑表面。幻影模型,具有软组织的动物模型,具有脑组织的动物模型以及人类受试者的前额都应用在我们的系统中。成功确定了皮肤表面,颅骨表面,颅骨底部和脑组织表面的所有形状。

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