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首页> 外文期刊>European radiology >Performance of Web-based image distribution: client-oriented measurements.
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Performance of Web-based image distribution: client-oriented measurements.

机译:基于Web的图像分发的性能:面向客户端的度量。

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The aim of this study was to define a clinically suitable personal computer (PC) configuration for Web-based image distribution and to assess the influence of different hard- and software configurations on the performance. Through specially developed software the time-to-display (TTD) for various PC configurations was measured. Different processor speeds, random access memory (RAM), screen resolutions, graphic adapters, network speeds, operating systems and examination types (computed radiography, CT, MRI) were evaluated, providing more than half a million measurements. Processor speed was the most relevant factor for the TTD; doubling the speed halved the TTD. Under processor speeds of 350 MHz, TTD mostly remained above 5 s for 1 CR or 16 CT images. Here Windows NT with lossy compression were superior. Processor speeds of 350 MHz and over delivered TTD <5 s. In this case Windows 2000 and lossless compression were preferable. Screen resolutions above 1280 x 1024 pixels increased the TTD mainly for CR images. The RAM amount, network speed and graphic adapter did not have a significant influence. The minimum threshold for clinical routine is any standard off-the-shelf PC better than Pentium II 350 MHz, 128 MB RAM; hence, high-end PC hardware is not required.
机译:这项研究的目的是为基于Web的图像分发定义临床上合适的个人计算机(PC)配置,并评估不同的硬件和软件配置对性能的影响。通过专门开发的软件,可以测量各种PC配置的显示时间(TTD)。评估了不同的处理器速度,随机存取存储器(RAM),屏幕分辨率,图形适配器,网络速度,操作系统和检查类型(计算机射线照相,CT,MRI),提供了超过百万的测量结果。处理器速度是与TTD最为相关的因素。速度加倍将TTD减半。在350 MHz的处理器速度下,对于1 CR或16 CT图像,TTD大多保持在5 s以上。在这种情况下,具有有损压缩的Windows NT更为出色。处理器速度为350 MHz,超过交付的TTD <5 s。在这种情况下,最好使用Windows 2000和无损压缩。 1280 x 1024像素以上的屏幕分辨率增加了TTD,主要用于CR图像。 RAM数量,网络速度和图形适配器影响不大。临床程序的最低阈值是任何优于Pentium II 350 MHz,128 MB RAM的标准现成PC。因此,不需要高端PC硬件。

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