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需要多长的记录时间才能提供具有生理学有效性和可靠性的动态脑自动调节传递功能分析估计值?

What recording duration is required to provide physiologically valid and reliable dynamic cerebral autoregulation transfer functional analysis estimates?

机构信息

Cerebrovascular Concussion Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.

Sport Injury Prevention Research Centre, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.

出版信息

Physiol Meas. 2021 May 11;42(4). doi: 10.1088/1361-6579/abf1af.

Abstract

. Currently, a recording of 300 s is recommended to obtain accurate dynamic cerebral autoregulation estimates using transfer function analysis (TFA). Therefore, this investigation sought to explore the concurrent validity and the within- and between-day reliability of TFA estimates derived from shorter recording durations from squat-stand maneuvers.. Retrospective analyses were performed on 70 young, recreationally active or endurance-trained participants (17 females; age: 26 ± 5 years, [range: 20-39 years]; body mass index: 24 ± 3 kg m). Participants performed 300 s of squat-stands at frequencies of 0.05 and 0.10 Hz, where shorter recordings of 60, 120, 180, and 240 s were extracted. Continuous transcranial Doppler ultrasound recordings were taken within the middle and posterior cerebral arteries. Coherence, phase, gain, and normalized gain metrics were derived. Bland-Altman plots with 95% limits of agreement (LOA), repeated measures ANOVA's, two-tailed paired t-tests, coefficient of variation, Cronbach's alpha, intraclass correlation coefficients, and linear regressions were conducted.. When examining the concurrent validity across different recording durations, group differences were noted within coherence ( > 11.6, < 0.001) but not phase ( < 0.27, > 0.611), gain ( < 0.61, > 0.440), or normalized gain ( < 0.85, > 0.359) parameters. The Bland-Altman 95% LOA measuring the concurrent validity, trended to narrow as recording duration increased (60 s: < ±0.4, 120 s: < ±0.3, 180 s  < ±0.3, 240 s: < ±0.1). The validity of the 180 and 240 s recordings further increased when physiological covariates were included within regression models.. Future studies examining autoregulation should seek to have participants perform 300 s of squat-stand maneuvers. However, valid and reliable TFA estimates can be drawn from 240 s or 180 s recordings if physiological covariates are controlled.

摘要

目前,使用传递函数分析(TFA)获得准确的动态脑自动调节估计值需要记录 300 秒。因此,本研究旨在探讨从蹲站动作中较短记录时间获得的 TFA 估计值的同时效度以及日内和日间可靠性。对 70 名年轻、有规律运动或耐力训练的参与者(17 名女性;年龄:26±5 岁,[范围:20-39 岁];体重指数:24±3kg/m)进行了回顾性分析。参与者以 0.05 和 0.10 Hz 的频率进行 300 秒的蹲站,其中提取了 60、120、180 和 240 秒的较短记录。连续经颅多普勒超声记录在大脑中动脉和大脑后动脉内进行。导出了相干性、相位、增益和归一化增益指标。进行了 Bland-Altman 图(95% 一致性区间(LOA))、重复测量方差分析、双侧配对 t 检验、变异系数、Cronbach's alpha、组内相关系数和线性回归。当检查不同记录时间的同时效度时,在相干性(>11.6,<0.001)但不是相位(<0.27,>0.611)、增益(<0.61,>0.440)或归一化增益(<0.85,>0.359)参数方面观察到组间差异。Bland-Altman 95% LOA 测量同时效度,随着记录时间的增加呈变窄趋势(60 s:<±0.4,120 s:<±0.3,180 s:<±0.3,240 s:<±0.1)。当生理协变量包含在回归模型中时,180 和 240 s 记录的有效性进一步提高。未来研究检查自动调节时,应让参与者进行 300 秒的蹲站运动。但是,如果控制生理协变量,可以从 240 秒或 180 秒的记录中得出有效且可靠的 TFA 估计值。

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