Literature DB >> 24164100

Circadian phase assessment by ambulatory monitoring in humans: correlation with dim light melatonin onset.

M A Bonmati-Carrion1, B Middleton, V Revell, D J Skene, M A Rol, J A Madrid.   

Abstract

The increased prevalence of circadian disruptions due to abnormal coupling between internal and external time makes the detection of circadian phase in humans by ambulatory recordings a compelling need. Here, we propose an accurate practical procedure to estimate circadian phase with the least possible burden for the subject, that is, without the restraints of a constant routine protocol or laboratory techniques such as melatonin quantification, both of which are standard procedures. In this validation study, subjects (N = 13) wore ambulatory monitoring devices, kept daily sleep diaries and went about their daily routine for 10 days. The devices measured skin temperature at wrist level (WT), motor activity and body position on the arm, and light exposure by means of a sensor placed on the chest. Dim light melatonin onset (DLMO) was used to compare and evaluate the accuracy of the ambulatory variables in assessing circadian phase. An evening increase in WT: WTOnset (WTOn) and "WT increase onset" (WTiO) was found to anticipate the evening increase in melatonin, while decreases in motor activity (Activity Offset or AcOff), body position (Position Offset (POff)), integrative TAP (a combination of WT, activity and body position) (TAPOffset or TAPOff) and an increase in declared sleep propensity were phase delayed with respect to DLMO. The phase markers obtained from subjective sleep (R = 0.811), WT (R = 0.756) and the composite variable TAP (R = 0.720) were highly and significantly correlated with DLMO. The findings strongly support a new method to calculate circadian phase based on WT (WTiO) that accurately predicts and shows a temporal association with DLMO. WTiO is especially recommended due to its simplicity and applicability to clinical use under conditions where knowing endogenous circadian phase is important, such as in cancer chronotherapy and light therapy.

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Year:  2013        PMID: 24164100     DOI: 10.3109/07420528.2013.820740

Source DB:  PubMed          Journal:  Chronobiol Int        ISSN: 0742-0528            Impact factor:   2.877


  31 in total

1.  Ontogeny and aging of the distal skin temperature rhythm in humans.

Authors:  H Batinga; A Martinez-Nicolas; M Zornoza-Moreno; M Sánchez-Solis; E Larqué; M T Mondéjar; M Moreno-Casbas; F J García; M Campos; M A Rol; J A Madrid
Journal:  Age (Dordr)       Date:  2015-03-27

2.  Developing Biomarker Arrays Predicting Sleep and Circadian-Coupled Risks to Health.

Authors:  Janet M Mullington; Sabra M Abbott; Judith E Carroll; Christopher J Davis; Derk-Jan Dijk; David F Dinges; Philip R Gehrman; Geoffrey S Ginsburg; David Gozal; Monika Haack; Diane C Lim; Madalina Macrea; Allan I Pack; David T Plante; Jennifer A Teske; Phyllis C Zee
Journal:  Sleep       Date:  2016-04-01       Impact factor: 5.849

3.  Physical activity, and not fat mass is a primary predictor of circadian parameters in young men.

Authors:  Hannah R Tranel; Elizabeth A Schroder; Jonathan England; W Scott Black; Heather Bush; Michael E Hughes; Karyn A Esser; Jody L Clasey
Journal:  Chronobiol Int       Date:  2015-06-23       Impact factor: 2.877

4.  Compensating for Sensor Error in the Model Predictive Control of Circadian Clock Phase.

Authors:  Lindsey S Brown; Elizabeth B Klerman; Francis J Doyle
Journal:  IEEE Control Syst Lett       Date:  2019-05-28

Review 5.  Delayed sleep-wake phase disorder.

Authors:  Alexander D Nesbitt
Journal:  J Thorac Dis       Date:  2018-01       Impact factor: 2.895

Review 6.  Circadian disruption and human health: A bidirectional relationship.

Authors:  Sabra M Abbott; Roneil G Malkani; Phyllis C Zee
Journal:  Eur J Neurosci       Date:  2019-01-03       Impact factor: 3.386

7.  Evening physical activity alters wrist temperature circadian rhythmicity.

Authors:  Patricia Rubio-Sastre; Purificación Gómez-Abellán; Antonio Martinez-Nicolas; José María Ordovás; Juan Antonio Madrid; Marta Garaulet
Journal:  Chronobiol Int       Date:  2013-10-30       Impact factor: 2.877

8.  Disrupted diurnal oscillation of gut-derived Short chain fatty acids in shift workers drinking alcohol: Possible mechanism for loss of resiliency of intestinal barrier in disrupted circadian host.

Authors:  Garth R Swanson; Joel Siskin; Annika Gorenz; Maliha Shaikh; Shohreh Raeisi; Louis Fogg; Christopher Forsyth; Ali Keshavarzian
Journal:  Transl Res       Date:  2020-05-05       Impact factor: 7.012

9.  A classification approach to estimating human circadian phase under circadian alignment from actigraphy and photometry data.

Authors:  Lindsey S Brown; Melissa A St Hilaire; Andrew W McHill; Andrew J K Phillips; Laura K Barger; Akane Sano; Charles A Czeisler; Francis J Doyle; Elizabeth B Klerman
Journal:  J Pineal Res       Date:  2021-06-20       Impact factor: 12.081

10.  The effect of blue-blocking intraocular lenses on circadian biological rhythm: protocol for a randomised controlled trial (CLOCK-IOL colour study).

Authors:  Tomo Nishi; Keigo Saeki; Kenji Obayashi; Kimie Miyata; Nobuhiro Tone; Hiroki Tsujinaka; Mariko Yamashita; Naonori Masuda; Yutarou Mizusawa; Masahiro Okamoto; Taiji Hasegawa; Shinji Maruoka; Tetsuo Ueda; Masashi Kojima; Toyoaki Matsuura; Norio Kurumatani; Nahoko Ogata
Journal:  BMJ Open       Date:  2015-05-12       Impact factor: 2.692

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