一种新型甲状腺影像系统芯片设计

M. Ravi, Shashidhara Tg, S. S, S. S
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引用次数: 2

摘要

片上系统(SoC)的计算资源及其紧凑的设计适合当前医疗设备的需求,其中需要实时可视化和执行诊断。目前,我们正在开发一种小器官成像伽马相机(SOIGC),用于小器官成像,具有更高的空间和能量分辨率。我们提出了一种新的基于“SoC”的实时医学图像处理工具,用于评估和量化来自单光子发射计算机断层扫描(SPECT)的甲状腺摄取比。甲状腺摄取比是一种广泛用于评估甲状腺激素活性的诊断指标,通过量化分割SPECT图像的强度来获得,而分割SPECT图像通常是在昂贵的专用工具上完成的。相比之下,我们基于DSP架构的低成本SoC工具提供了具有相关性能的更高速度的图像分割过程。因此,它还通过使用优化的双核数字信号处理器的称为“流水线视觉处理器”的硬件加速器,消除了对主机更高计算资源的需求。该架构提供了高性能增强的基础设施,具有大型片上内存,并降低了整体带宽需求,从而加速了成像。我们通过评估27个具有甲状腺病史的医学案例研究,交叉验证了该工具的性能。与SIEMENS专有软件或基于MATLAB的分割工具进行诊断相比,我们的硬件加速方法显示计算时间大幅减少约250%,并且具有优越的相关性。该SoC工具可以扩展和实现各种其他医学成像程序,如肾脏肾小球滤过率和心脏心肌灌注研究。
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A novel System on Chip design for Thyroid imaging studies
The computational resources of a System on Chip (SoC) accompanied by their compact design tailors to the needs of current medical devices where there is a necessity for visualizing and performing diagnosis in real-time. Currently we are developing a Small Organ Imaging Gamma Camera (SOIGC) for imaging small organs with higher spatial and energy resolution. We present here a novel “SoC” based real-time medical image processing tool for evaluation and quantification of Thyroid Uptake Ratio derived from Single Photon Emission Computed Tomography (SPECT).The Thyroid Uptake Ratio is a diagnostic index used extensively to assess Thyroid's hormonal activity obtained by quantifying the intensity of the segmented SPECT images which are conventionally done on expensive propriety tools. In contrast to these, our lower cost SoC tool based on DSP architecture offers a higher speed image segmentation process with co-relating performance. Thus, it also eliminates the need for higher computing resources on the host machine by using a Hardware accelerator called “Pipeline Vision Processor” of an optimized Dual Core Digital Signal Processor. This architecture offers a high performance enhanced infrastructure with large on-chip memory and reduces the overall bandwidth requirement leading to accelerated imaging. We have cross-validated the performance of this tool by evaluating 27 medical case studies with thyroid medical history. As compared to diagnosis by propriety SIEMENS software or segmentation tools based on MATLAB, our hardware accelerated approach has shown a drastic reduction of computational time of about 250% with superior correlation. This SoC tool can be extended and realized for various other Medical Imaging procedures like Kidney's Glomerular Filtration Rate and Myocardial Perfusion studies of Heart.
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