首页> 外文期刊>Computer Methods and Programs in Biomedicine: An International Journal Devoted to the Development, Implementation and Exchange of Computing Methodology and Software Systems in Biomedical Research and Medical Practice >Using 'off-the-shelf' tools for terabyte-scale waveform recording in intensive care: computer system design, database description and lessons learned.
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Using 'off-the-shelf' tools for terabyte-scale waveform recording in intensive care: computer system design, database description and lessons learned.

机译:在重症监护中使用“现成的”工具进行TB级波形记录:计算机系统设计,数据库描述和经验教训。

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摘要

Until now, the creation of massive (long-term and multichannel) waveform databases in intensive care required an interdisciplinary team of clinicians, engineers and informaticians and, in most cases, also design-specific software and hardware development. Recently, several commercial software tools for waveform acquisition became available. Although commercial products and even turnkey systems are now being marketed as simple and effective, the performance of those solutions is not known. The additional expense upfront may be worthwhile if commercial software can eliminate the need for custom software and hardware systems and the associated investment in teams and development. We report the development of a computer system for long-term large-scale recording and storage of multichannel physiologic signals that was built using commercial solutions (software and hardware) and existing hospital IT infrastructure. Both numeric (1 Hz) and waveform (62.5-500 Hz) data were captured from 24 SICU bedside monitors simultaneously and stored in a file-based vital sign data bank (VSDB) during one-year period (total DB size is 4.21TB). In total, vital signs were recorded from 1,175 critically ill patients. Up to six ECG leads, all other monitored waveforms, and all monitored numeric data were recorded in most of the cases. We describe the details of building blocks of our system, provide description of three datasets exported from our VSDB and compare the contents of our VSDB with other available waveform databases. Finally, we summarize lessons learned during recording, storage, and pre-processing of physiologic signals.
机译:到目前为止,在重症监护中创建大规模(长期和多通道)波形数据库需要临床医生,工程师和情报人员的跨学科团队,并且在大多数情况下还需要特定于设计的软件和硬件开发。最近,有几种用于波形采集的商业软件工具可用。尽管现在以简单有效的方式销售商业产品甚至交钥匙系统,但这些解决方案的性能尚不清楚。如果商业软件可以消除对定制软件和硬件系统的需求以及对团队和开发的相关投资,那么额外的前期支出可能是值得的。我们报告了使用商用解决方案(软件和硬件)和现有医院IT基础结构构建的,用于长期大规模记录和存储多通道生理信号的计算机系统的开发情况。从24个SICU床边监护仪同时捕获数字(1 Hz)和波形(62.5-500 Hz)数据,并在一年期间将其存储在基于文件的生命体征数据库(VSDB)中(总DB大小为4.21TB) 。总共记录了1175名重症患者的生命体征。在大多数情况下,最多可以记录6条ECG导线,所有其他监视的波形以及所有监视的数字数据。我们描述了系统构建模块的详细信息,提供了从VSDB导出的三个数据集的描述,并将VSDB的内容与其他可用的波形数据库进行了比较。最后,我们总结了在生理信号记录,存储和预处理过程中获得的经验教训。

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