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首页> 外文期刊>PLoS Computational Biology >A New Integrated Variable Based on Thermometry, Actimetry and Body Position (TAP) to Evaluate Circadian System Status in Humans
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A New Integrated Variable Based on Thermometry, Actimetry and Body Position (TAP) to Evaluate Circadian System Status in Humans

机译:一种基于测温,活度和身体位置(TAP)的新的集成变量,用于评估人体的昼夜节律系统状态

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The disruption of the circadian system in humans has been associated with the development of chronic illnesses and the worsening of pre-existing pathologies. Therefore, the assessment of human circadian system function under free living conditions using non-invasive techniques needs further research. Traditionally, overt rhythms such as activity and body temperature have been analyzed separately; however, a comprehensive index could reduce individual recording artifacts. Thus, a new variable (TAP), based on the integrated analysis of three simultaneous recordings: skin wrist temperature (T), motor activity (A) and body position (P) has been developed. Furthermore, we also tested the reliability of a single numerical index, the Circadian Function Index (CFI), to determine the circadian robustness. An actimeter and a temperature sensor were placed on the arm and wrist of the non-dominant hand, respectively, of 49 healthy young volunteers for a period of one week. T, A and P values were normalized for each subject. A non-parametric analysis was applied to both TAP and the separate variables to calculate their interdaily stability, intradaily variability and relative amplitude, and these values were then used for the CFI calculation. Modeling analyses were performed in order to determine TAP and CFI reliability. Each variable (T, A, P or TAP) was independently correlated with rest-activity logs kept by the volunteers. The highest correlation (r?=??0.993, p<0.0001), along with highest specificity (0.870), sensitivity (0.740) and accuracy (0.904), were obtained when rest-activity records were compared to TAP. Furthermore, the CFI proved to be very sensitive to changes in circadian robustness. Our results demonstrate that the integrated TAP variable and the CFI calculation are powerful methods to assess circadian system status, improving sensitivity, specificity and accuracy in differentiating activity from rest over the analysis of wrist temperature, body position or activity alone.
机译:人类昼夜节律系统的破坏与慢性疾病的发展和先前存在的病状的恶化有关。因此,使用无创技术评估自由生活条件下人体昼夜节律系统的功能尚需进一步研究。传统上,诸如活动和体温之类的明显节律是分开分析的。但是,全面的索引可以减少单个记录伪像。因此,基于对三个同时记录的综合分析:皮肤手腕温度(T),运动活动(A)和身体位置(P),开发了一个新变量(TAP)。此外,我们还测试了单个数字索引(昼夜节律功能指数(CFI))的可靠性,以确定昼夜节律的鲁棒性。在49名健康的年轻志愿者的非显性手的手臂和手腕上分别放置了一个测力计和一个温度传感器,为期一周。将每个受试者的T,A和P值标准化。将非参数分析应用于TAP和单独的变量,以计算其日间稳定性,日内变异性和相对幅度,然后将这些值用于CFI计算。为了确定TAP和CFI的可靠性,进行了建模分析。每个变量(T,A,P或TAP)都与志愿者保存的休息活动记录独立相关。当将静息活动记录与TAP进行比较时,可获得最高的相关性(r?=?0.993,p <0.0001),以及最高的特异性(0.870),灵敏度(0.740)和准确性(0.904)。此外,CFI被证明对昼夜节律鲁棒性的变化非常敏感。我们的结果表明,集成的TAP变量和CFI计算是评估昼夜节律系统状态的有效方法,可通过对腕部温度,身体位置或活动的单独分析来提高区分静息活动的敏感性,特异性和准确性。

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