6533b862fe1ef96bd12c6d7c
RESEARCH PRODUCT
Training-induced changes in daily energy expenditure: Methodological evaluation using wrist-worn accelerometer, heart rate monitor, and doubly labeled water technique
Klaas R. WesterterpMoritz SchumannLaura KaravirtaKeijo HäkkinenHeikki KyröläinenHannu Kinnunensubject
MalesykeFITNESSPhysiologyACCURACYphysical activityliikuntabioenergeticsAccelerometerBiochemistryFatsDAILY PHYSICAL-ACTIVITY0302 clinical medicineHeart Rateenergy metabolismAccelerometryheart ratestrength trainingMedicine and Health SciencesPublic and Occupational Health030212 general & internal medicineaineenvaihduntarasvatMultidisciplinaryexerciseQRWristLipidsSports ScienceTIMEINSIGHTSPhysiological ParametersStrength TrainingMedicinesykemittaritvoimaharjoittelufyysinen aktiivisuusResearch ArticlePhysical Conditioning HumanAdultmedicine.medical_specialtyfatsBODY-COMPOSITIONStrength trainingScienceCardiologyDrinkingDoubly labeled waterBioenergeticsbody weightWearable Electronic DevicesYoung Adult03 medical and health sciencesPhysical medicine and rehabilitationHeart ratemedicineHumansAerobic exerciseResting energy expenditureVALIDITYSports and Exercise MedicineDeuterium OxideExerciseLife StylebioenergetiikkaMonitoring PhysiologicINTENSITYbusiness.industryBody WeightHeart rate monitorBiology and Life SciencesWaterPhysical Activity030229 sport sciencesIntensity (physics)MetabolismPhysical FitnessPhysical EnduranceEnergy MetabolismPhysiological Processesbusinessdescription
IntroductionWrist-mounted motion sensors can quantify the volume and intensity of physical activities, but little is known about their long-term validity. Our aim was to validate a wrist motion sensor in estimating daily energy expenditure, including any change induced by long-term participation in endurance and strength training. Supplemental heart rate monitoring during weekly exercise was also investigated.MethodsA 13-day doubly labeled water (DLW) measurement of total energy expenditure (TEE) was performed twice in healthy male subjects: during two last weeks of a 12-week Control period (n = 15) and during two last weeks of a 12-week combined strength and aerobic Training period (n = 13). Resting energy expenditure was estimated using two equations: one with body weight and age, and another one with fat-free mass. TEE and activity induced energy expenditure (AEE) were determined from motion sensor alone, and from motions sensor combined with heart rate monitor, the latter being worn during exercise only.ResultsWhen body weight and age were used in the calculation of resting energy expenditure, the motion sensor data alone explained 78% and 62% of the variation in TEE assessed by DLW at the end of Control and Training periods, respectively, with a bias of +1.75 (p ConclusionsWrist motion sensor combined with a heart rate monitor during exercise sessions, showed high agreement with the golden standard measurement of daily TEE and its change induced by participation in a long-term training protocol. The positive findings concerning the validity, especially the ability to follow-up the change associated with a lifestyle modification, can be considered significant because they partially determine the feasibility of wearable devices as quantifiers of health-related behavior.
year | journal | country | edition | language |
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2019-07-10 | PLOS ONE |