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PACS image archive server implementation in the developing countries such as China

机译:PACS在中国的发展中国家实施档案服务器实施

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While Picture Archiving and Communicating System project is underway through out the western countries, China is making a revolutionary advance in digital medical record. Hospitals in China have made their first steps toward implementation of PACS. Due to the ever-increasing amount of medical image data, a completed archive server is of great need as the base of filmless radiology, a cost effective, high performance digital archive system will remain as the most essential and challenging part of PACS. However there is an inevitable and inherent dilemma in those hospitals in the developing countries like China - limited amount of development funds. So we are urged to design a low cost but efficient image archive system to cater to the expectation of the hospital. This paper describes a high capacity PACS image archive system model that is developed with rather low cost. To build a reliable and flexible image archive system involves a number of factors such as system capacity requirement, storage and retrieval performance and cost saving etc. We have undertaken the hierarchy image storage mechanism. Judicious image dispatch is employed to meet the goal of timely image retrieval. The whole design can be divided into two parts, one is Scheduled Image Flow Service (SIFS) whose purpose is to periodically backup, archive and pre-fetch image, the other one is Online Image Retrieval Service (OIRS) to provide quick access to the online and nearline images through the network interface. Automatic image transfer is realized between different storage tiers with high level of control. All the procedure is highly automatic except the manually depositing and undepositing off-line optical disks. System evaluations on random retrieval time are presented to show the effect of image location. The concept of image tiered storage will largely reduce the cost of storage. Real-time response to the retrieval demand can send wanted images to a radiologist in a reasonable time. We have done some beneficial trials on how to implement large scale and high performance PACS image archive system under the condition of short of fund. At the same time, according to the characteristic of those storage media whose price will drop down around the clock. The archive system should be capable of being scaled to higher level smoothly. When the purchase of new storage device can be guaranteed, new component will be integrated flexibly and easily. With the advent of digital era, digital medical record will become a big trend of information management in those developing countries. Our work will be a great impetus to the substitute of optical jukebox for the conventional storage medium - film.
机译:虽然在西方国家来说,播放档案和沟通系统项目正在进行中,但中国正在进行数字医疗记录革命性。中国的医院已经使他们对实施PACS的第一步。由于越来越多的医学图像数据,完成的存档服务器很有需要作为无隐性的放射学基础,成本效益,高性能数字档案系统将作为PACS的最重要和具有挑战性的部分。然而,在中国的发展中国家的那些医院存在不可避免和固有的困境 - 有限的发展基金。因此,我们被敦促设计一个低成本但有效的图像档案系统,以满足医院的期望。本文介绍了一种高容量PACS图像归档系统模型,其成本相当低。为构建可靠且灵活的图像存档系统涉及许多因素,例如系统容量要求,存储和检索性能和成本节省等。我们已经进行了层次结构存储机制。采用明智的形象调度来满足及时图像检索的目标。整个设计可以分为两个部分,一个是调度图像流服务(SIFS),其目的是定期备份,存档和预取图像,另一个是在线图像检索服务(OIR)以提供快速访问通过网络接口在线和接近线图像。自动图像传输是在具有高电平控制水平的不同存储层之间实现。除手动存放和未分开的离线光盘外,所有程序都是高度自动的。提出了对随机检索时间的系统评估以显示图像位置的效果。图像分层存储的概念在很大程度上降低了存储成本。对检索需求的实时响应可以在合理的时间内将希望的图像发送到放射科学家。我们对如何在基金短缺的条件下实施大规模和高性能PACS图像归档系统进行了一些有益的试验。同时,根据那些价格将在时钟下降的那些存储媒体的特征。存档系统应该能够平滑地缩放到更高级别。可以保证购买新存储设备时,新组件将灵活且轻松地集成。随着数字时代的出现,数字病历将成为这些发展中国家信息管理的重要趋势。我们的作品将成为传统储存中膜的光学自动困难替代的重要推动力。

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