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Development of a VLSI Based Real-Time System for Carcinoma Detection and Identification

机译:基于VLSI的癌症实时检测与识别系统的开发

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Breast cancer is most common life threatening non skin malignant state in women. Accurate and early detection of breast cancer provides various chances for the survival of the diseased person. The proposed system also helps the clinical practitioner to diagnose the disease correctly. In this paper, an efficient VLSI architecture for carcinoma detection and identification is implemented. The implementation consists of three phases: pre-processing, feature extraction and disease detection and identification. Pre-processing removes the noise by arithmetic mean filters from the breast MRI image. Then the enhanced image is applied to an efficient dual scan parallel flipping architecture to extract the features using pipeline operation. The disease detection and identification can be performed better by using content aware classifier, which is based on Euclidean distance and positive estimation method. The proposed work aims at developing a VLSI system to diagnose on a particular breast cancer disease and is implemented on VERTEX-4 FPGA as it is a real time solution for disease detection and identification.
机译:乳腺癌是最常见的危及妇女的非皮肤恶性状态。准确和早期检测乳腺癌为患病者的生存提供了各种机动。拟议的系统还有助于临床从业者正确诊断疾病。本文实施了用于癌检测和识别的有效的VLSI架构。该实施包括三个阶段:预处理,特征提取和疾病检测和鉴定。预处理通过来自乳房MRI图像的算术平均滤波器去除噪声。然后将增强的图像应用于有效的双扫描并行翻转架构,以利用管道操作提取特征。通过使用基于欧几里德距离和正估计方法的内容感知分类,可以更好地执行疾病检测和识别。拟议的工作旨在开发VLSI系统以诊断特定的乳腺癌疾病,并在Vertex-4 FPGA上实施,因为它是疾病检测和鉴定的实时解决方案。

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