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Digital data acquisition and analysis of striated muscle diffraction patterns with a direct memory access microprocessor system

机译:使用直接存储器访问微处理器系统进行横纹肌衍射图样的数字数据采集和分析

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A microprocessor based data acquisition computing system has been developed to examine dynamic changes in light diffraction patterns from single skeletal muscle fibers. A significant improvement in digital data acquisition rate compared to previous designs has been achieved by utilizing a fast dedicated analog to digital converter and direct memory access data storage. Diffraction patterns from muscle fibers are imaged onto a 256 element charge‐coupled device. The analog output of a full 256 point frame of data may be digitized and stored in 2.2 ms (128 point half frame in 1.1 ms) with a spatial resolution of up to 5.0 nm/sarcomere. This computing system can transfer up to 28 full frames of data as one continuous block directly between the CCD and memory leaving the CPU free for experimental control and closed‐loop processing. The computing system calibrates and analyzes diffraction data under sofware control for sarcomere length, dispersion, and peak intensity. The operation of this data acquisition computing system is superior to previous digital designs with its increased data acquisition rate and to analog designs with its data manipulation, analysis, experimental control, and processing capabilities.
机译:已经开发了一种基于微处理器的数据采集计算系统,以检查来自单个骨骼肌纤维的光衍射图的动态变化。通过利用快速专用的模数转换器和直接存储器访问数据存储,与以前的设计相比,数字数据获取率有了显着提高。肌肉纤维的衍射图样成像到一个256元素的电荷耦合器件上。完整的256点数据帧的模拟输出可以数字化并以2.2 ms(1.1 ms中的128点半帧)存储,空间分辨率最高为5.0 nm /肌节。该计算系统可以直接在CCD和内存之间作为一个连续块传输多达28个完整帧的数据,从而使CPU可以自由进行实验控制和闭环处理。该计算系统在软件控制下对肌节长度,色散和峰强度进行校准和分析。该数据采集计算系统的操作具有更高的数据采集速率,优于先前的数字设计,其数据处理,分析,实验控制和处理能力优于模拟设计。

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