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Mediaprocessors in Medical Imaging for High Performance and Flexibility

机译:用于高性能和灵活性的医学成像中的MediaProcessors

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New high performance programmable processors, called mediaprocessors, have been emerging since the early 1990s for various digital media applications, such as digital TV, set-top boxes, desktop video conferencing, and digital camcorders. Modern mediaprocessors, e.g., TI's TMS320C64x and Hitachi/Equator Technologies MAP-CA, can offer high performance utilizing both instruction-level and data-level parallelism. During this decade, with continued performance improvement and cost reduction, we believe that the mediaprocessors will become a preferred choice in designing imaging and video systems due to their flexibility in incorporating new algorithms and applications via programming and faster-time-to-market. In this paper, we will evaluate the suitability of these mediaprocessors in medical imaging. We will review the core routines of several medical imaging modalities, such as ultrasound and DR, and present how these routines can be mapped to mediaprocessors and their resultant performance. We will analyze the architecture of several leading mediaprocessors. By carefully mapping key imaging routines, such as 2D convolution, unsharp masking, and 2D FFT, to the mediaprocessor, we have been able to achieve comparable (if not better) performance to that of traditional hardwired approaches. Thus, we believe that future medical imaging systems will benefit greatly from these advanced mediaprocessors, offering significantly increased flexibility and adaptability, reducing the time-to-market, and improving the cost/performance ratio compared to the existing systems while meeting the high computing requirements.
机译:新的高性能可编程处理器,称为MediaProcessors,自20世纪90年代初为各种数字媒体应用,如数字电视,机顶盒,桌面视频会议和数码便携式摄像机。现代MediaProcessors,例如TI的TMS320C64X和HITACHI /赤道技术MAP-CA,可以利用指令级和数据级并行性提供高性能。在这十年期间,随着持续的性能提高和降低成本,我们认为,由于它们通过编程和更快的时间掺入了新的算法和应用程序,媒体程序将成为设计成像和视频系统的首选。在本文中,我们将评估这些MediaProcessors在医学成像中的适用性。我们将审查几种医学成像模式的核心例程,例如超声波和DR,并展示这些例程如何映射到MediaProcessors及其所产生的性能。我们将分析几个领先的MediaProcessors的架构。通过仔细映射关键的成像例程,例如2D卷积,取消扫描屏蔽和2D FFT,向MediaProcessor,我们已经能够实现与传统硬连线方法的可比性(如果没有更好)的性能。因此,我们认为未来的医学成像系统将从这些先进的媒体处理器中受益匪浅,提供显着提高的灵活性和适应性,减少了与现有系统相比的上市时间,提高了成本/绩效比率,同时满足高计算要求。 。

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