Witkowski F X, Corr P B
Am J Physiol. 1984 Oct;247(4 Pt 2):H661-8. doi: 10.1152/ajpheart.1984.247.4.H661.
The origin and propagation sequence of cardiac depolarization in situ requires accurate simultaneous three-dimensional information from multiple sites. Likewise, the mechanism underlying an arrhythmia can often be elucidated by determining the course of impulse propagation through the heart, particularly if information can be obtained from multiple sites simultaneously, allowing analysis of transient or rapidly occurring events. The most significant problem with obtaining such detailed continuous information is the large amount of data storage required as well as the need for rapid analysis. In the present system these problems are overcome by immediate conversion of all electrograms from analog to digital for all subsequent storage and processing. The bipolar electrogram information is acquired from 240 cardiac sites simultaneously at a sampling rate of 2 kHz with continuous and total data storage of up to 60 min. Rapid two-dimensional isochronic maps at multiple depths (effective 3-dimensional information) are presented via computer-generated interactive graphics. System design permits easy expansion to almost 2,000 simultaneous sites. Surgical electrophysiological intraoperative studies in humans are performed at an operating room located 2,000 ft from the computer facility with all communications carried by a fiber-optic link. The system allows both experimental and clinical cardiac mapping from multiple sites from a single cardiac depolarization, minimal redundancy of costly hardware, and direct rapid visualization of all original electrogram data.
心脏去极化在原位的起源和传播序列需要来自多个位点的精确同步三维信息。同样,心律失常的潜在机制通常可以通过确定冲动在心脏中的传播过程来阐明,特别是如果能够同时从多个位点获得信息,从而能够分析短暂或快速发生的事件。获取此类详细连续信息的最主要问题是所需的数据存储量巨大以及需要快速分析。在本系统中,这些问题通过将所有心电图立即从模拟转换为数字以便后续存储和处理来克服。双极心电图信息以2 kHz的采样率同时从240个心脏位点获取,连续存储所有数据,总存储时间长达60分钟。通过计算机生成的交互式图形呈现多个深度的快速二维等时图(有效三维信息)。系统设计允许轻松扩展到几乎2000个同步位点。对人类进行的手术电生理术中研究在距离计算机设施2000英尺的手术室进行,所有通信通过光纤链路传输。该系统允许从单次心脏去极化的多个位点进行实验性和临床心脏标测,减少昂贵硬件的冗余,并直接快速可视化所有原始心电图数据。