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使用高密度脑电图进行呼吸相关诱发电位测量。

Respiratory-related evoked potential measurements using high-density electroencephalography.

机构信息

Department of Physiological Sciences, University of Florida, Gainesville, USA.

出版信息

Clin Neurophysiol. 2011 Apr;122(4):815-8. doi: 10.1016/j.clinph.2010.10.031. Epub 2010 Nov 9.

Abstract

OBJECTIVE

The respiratory-related evoked potential (RREP) has become an established technique for studying the neural processing of respiratory signals. However, the increasing availability of high-density EEG systems necessitates new criteria for obtaining acceptable RREPs with these systems.

METHODS

The present study examined the minimum criteria for the number of inspiratory occlusions that need to be averaged in order to obtain a signal-to-noise ratio of 2:1 (3 dB) for the RREP components Nf, P1, N1, P2 and P3 with a 129 sensor high-density EEG system in 12 healthy volunteers. RREPs resulting from averaging 8, 16, 32 and 64 inspiratory occlusions were compared.

RESULTS

Analyses of signal-to-noise ratios demonstrated that a minimum of 32 and 16 inspiratory occlusions should be averaged for Nf and P1, respectively. For N1, P2, and P3, an average of at least 8 inspiratory occlusions is required. However, to account for inter-individual variability, 64 averaged occlusions for Nf, 32 averaged occlusions for P1, and 16 averaged occlusions for N1, P2, and P3 are recommended which more reliably exceed the signal-to-noise threshold.

CONCLUSIONS

These numbers provide the minimum and the recommended criteria for reliable measurements of the RREP for an adequate number of repeated occlusion epochs to be averaged in order to yield a reliable signal-to-noise ratio using a 129 sensor EEG system.

SIGNIFICANCE

The present study provides minimum and recommended criteria for obtaining acceptable RREPs with high-density EEG systems.

摘要

目的

呼吸相关诱发电位(RREP)已成为研究呼吸信号神经处理的一种既定技术。然而,随着高密度 EEG 系统的不断普及,需要为这些系统获得可接受的 RREP 制定新的标准。

方法

本研究在 12 名健康志愿者中使用 129 传感器高密度 EEG 系统,检查了为获得 RREP 成分 Nf、P1、N1、P2 和 P3 的信噪比为 2:1(3dB),需要平均多少个吸气阻断的最小标准。比较了平均 8、16、32 和 64 个吸气阻断所产生的 RREP。

结果

信号-噪声比分析表明,Nf 和 P1 分别需要平均至少 32 和 16 个吸气阻断。对于 N1、P2 和 P3,至少需要平均 8 个吸气阻断。然而,为了考虑个体间的变异性,建议对 Nf 进行 64 次平均阻断,对 P1 进行 32 次平均阻断,对 N1、P2 和 P3 进行 16 次平均阻断,以更可靠地超过信号-噪声阈值。

结论

这些数字为使用 129 传感器 EEG 系统可靠测量 RREP 提供了最小和推荐的标准,需要平均足够数量的重复阻断周期以产生可靠的信噪比。

意义

本研究为使用高密度 EEG 系统获得可接受的 RREP 提供了最小和推荐的标准。

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