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A novel mapping storage architecture enabling tens of thousands of channels on a personal computer platform

机译:一种新颖的映射存储体系结构,可在个人计算机平台上支持数以万计的通道

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The electrophysiological mechanisms underlying cardiac arrhythmias are studied by determining the spatiotemporal progression of cardiac depolarization and repolarization, termed cardiac mapping. Analysis of transient events requires information to be obtained from multiple sites simultaneously. The most significant problem with the design of such systems has been the large amount of data storage required and the rapidity of the composite data stream. Mapping systems with 500 simultaneous channels are common, and 4,000 channel systems have been envisioned. The authors report a relatively simple approach to this data storage problem that uses commercially available frame grabber technology coupled to a personal computer. With this approach they have developed a storage system capable of 24,000 channels sampled at 1 kHz with 12 bit resolution. Hybrid mapping systems incorporating optical recording systems utilizing voltage sensitive dyes from devices such as CCD cameras as well as conventional extracellular electrograms can simultaneously utilize this approach.
机译:通过确定心脏去极化和复极化的时空进展来研究心律失常的电生理机制,称为心脏作图。分析瞬态事件需要同时从多个站点获取信息。这种系统的设计中最重要的问题是所需的大量数据存储和复合数据流的快速性。具有500个同时通道的制图系统是常见的,并且已经设想了4,000个通道系统。作者报告了一种相对简单的方法来解决此数据存储问题,该方法使用与个人计算机耦合的商用帧捕获器技术。通过这种方法,他们开发了一种存储系统,能够以1 kHz的频率以12位分辨率对24,000个通道进行采样。混合映射系统结合了光学记录系统,该系统使用了来自CCD相机等设备的电压敏感染料以及常规的细胞外电描记图,可以同时利用这种方法。

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