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Multiscale Electrophysiology Format: An Open Open-source Electrophysiology Format Using Data Compression Encryption and Cyclic Redundancy Check

机译:多尺度电生理学格式:使用数据压缩加密和循环冗余校验的开放源代码电生理学格式

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摘要

Continuous, long-term (up to 10 days) electrophysiological monitoring using hybrid intracranial electrodes is an emerging tool for presurgical epilepsy evaluation and fundamental investigations of seizure generation. Detection of high-frequency oscillations and microseizures could provide valuable insights into causes and therapies for the treatment of epilepsy, but requires high spatial and temporal resolution. Our group is currently using hybrid arrays composed of up to 320 micro- and clinical macroelectrode arrays sampled at 32 kHz per channel with 18-bits of A/D resolution. Such recordings produce approximately 3 terabytes of data per day. Existing file formats have limited data compression capabilities, and do not offer mechanisms for protecting patient identifying information or detecting data corruption during transmission or storage. We present a novel file format that employs range encoding to provide a high degree of data compression, a three-tiered 128-bit encryption system for patient information and data security, and a 32-bit cyclic redundancy check to verify the integrity of compressed data blocks. Open-source software to read, write, and process these files are provided.
机译:使用颅内混合电极进行连续,长期(最多10天)的电生理监测是一种新兴的工具,可用于术前癫痫评估和癫痫发作的基础研究。高频振荡和微发作的检测可以为癫痫的病因和治疗方法提供有价值的见解,但需要高的时空分辨率。我们的小组目前正在使用由多达320个微电极和临床大电极阵列组成的混合阵列,每个通道以32 kHz的采样率以及18位A / D分辨率进行采样。这样的记录每天产生大约3 TB的数据。现有的文件格式具有有限的数据压缩功能,并且不提供在传输或存储期间保护患者标识信息或检测数据损坏的机制。我们提出了一种新颖的文件格式,该文件格式采用范围编码来提供高度的数据压缩,用于患者信息和数据安全的三层128位加密系统以及用于验证压缩数据完整性的32位循环冗余校验块。提供了用于读取,写入和处理这些文件的开源软件。

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