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Published on 20.09.16 in Vol 18, No 9 (2016): September

This paper is in the following e-collection/theme issue:

Works citing "Accuracy of a Wrist-Worn Wearable Device for Monitoring Heart Rates in Hospital Inpatients: A Prospective Observational Study"

According to Crossref, the following articles are citing this article (DOI 10.2196/jmir.6025):

(note that this is only a small subset of citations)

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  28. . ‘My watch kept on alarming all night about my heart rate’: diagnosis of asymptomatic atrial fibrillation with fast ventricular response in a patient with a recent TIA as the result of a smartwatch alarm. Oxford Medical Case Reports 2019;2019(3)
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  29. Vandenberk T, Stans J, Mortelmans C, Van Haelst R, Van Schelvergem G, Pelckmans C, Smeets CJ, Lanssens D, De Cannière H, Storms V, Thijs IM, Vaes B, Vandervoort PM. Clinical Validation of Heart Rate Apps: Mixed-Methods Evaluation Study. JMIR mHealth and uHealth 2017;5(8):e129
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  30. Haghi M, Danyali S, Thurow K, Warnecke JM, Wang J, Deserno TM. Hardware Prototype for Wrist-Worn Simultaneous Monitoring of Environmental, Behavioral, and Physiological Parameters. Applied Sciences 2020;10(16):5470
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  32. Gorny AW, Liew SJ, Tan CS, Müller-Riemenschneider F. Fitbit Charge HR Wireless Heart Rate Monitor: Validation Study Conducted Under Free-Living Conditions. JMIR mHealth and uHealth 2017;5(10):e157
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  33. Thomson EA, Nuss K, Comstock A, Reinwald S, Blake S, Pimentel RE, Tracy BL, Li K. Heart rate measures from the Apple Watch, Fitbit Charge HR 2, and electrocardiogram across different exercise intensities. Journal of Sports Sciences 2019;37(12):1411
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  35. Ruderman MN, Clerkin C. Is the future of leadership development wearable? Exploring self-tracking in leadership programs. Industrial and Organizational Psychology 2020;13(1):103
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  36. Pelizzo G, Guddo A, Puglisi A, De Silvestri A, Comparato C, Valenza M, Bordonaro E, Calcaterra V. Accuracy of a Wrist-Worn Heart Rate Sensing Device during Elective Pediatric Surgical Procedures. Children 2018;5(3):38
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  37. Harju J, Tarniceriu A, Parak J, Vehkaoja A, Yli-Hankala A, Korhonen I. Monitoring of heart rate and inter-beat intervals with wrist plethysmography in patients with atrial fibrillation. Physiological Measurement 2018;39(6):065007
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  38. Garbern SC, Mbanjumucyo G, Umuhoza C, Sharma VK, Mackey J, Tang O, Martin KD, Twagirumukiza FR, Rosman SL, McCall N, Wegerich SW, Levine AC. Validation of a wearable biosensor device for vital sign monitoring in septic emergency department patients in Rwanda. DIGITAL HEALTH 2019;5:205520761987934
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  39. Sartor F, Papini G, Cox LGE, Cleland J. Methodological Shortcomings of Wrist-Worn Heart Rate Monitors Validations. Journal of Medical Internet Research 2018;20(7):e10108
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  42. Kang , Kim , Byun , Suk , Lee . Comparison of a Wearable Tracker with Actigraph for Classifying Physical Activity Intensity and Heart Rate in Children. International Journal of Environmental Research and Public Health 2019;16(15):2663
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  43. Thomas S, Pulman A, Thomas P, Collard S, Jiang N, Dogan H, Davies Smith A, Hourihan S, Roberts F, Kersten P, Pretty K, Miller JK, Stanley K, Gay M. Digitizing a Face-to-Face Group Fatigue Management Program: Exploring the Views of People With Multiple Sclerosis and Health Care Professionals Via Consultation Groups and Interviews. JMIR Formative Research 2019;3(2):e10951
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  44. Kim B, McKay SM, Lee J. Consumer-Grade Wearable Device for Predicting Frailty in Canadian Home Care Service Clients: Prospective Observational Proof-of-Concept Study. Journal of Medical Internet Research 2020;22(9):e19732
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  45. Collier E, Varon C, Van Huffel S, Bogaert G. Enuretic children have a higher variability in REM sleep when comparing their sleep parameters with nonenuretic control children using a wearable sleep tracker at home. Neurourology and Urodynamics 2020;39(1):367
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  46. Krittanawong C, Rogers AJ, Johnson KW, Wang Z, Turakhia MP, Halperin JL, Narayan SM. Integration of novel monitoring devices with machine learning technology for scalable cardiovascular management. Nature Reviews Cardiology 2021;18(2):75
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  47. Mühlen JM, Stang J, Lykke Skovgaard E, Judice PB, Molina-Garcia P, Johnston W, Sardinha LB, Ortega FB, Caulfield B, Bloch W, Cheng S, Ekelund U, Brønd JC, Grøntved A, Schumann M. Recommendations for determining the validity of consumer wearable heart rate devices: expert statement and checklist of the INTERLIVE Network. British Journal of Sports Medicine 2021;55(14):767
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  48. Jacobs F, Scheerhoorn J, Mestrom E, van der Stam J, Bouwman RA, Nienhuijs S, Najafi B. Reliability of heart rate and respiration rate measurements with a wireless accelerometer in postbariatric recovery. PLOS ONE 2021;16(4):e0247903
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  51. Mestrom E, Deneer R, Bonomi AG, Margarito J, Gelissen J, Haakma R, Korsten HHM, Scharnhorst V, Bouwman RA. Validation of Heart Rate Extracted From Wrist-Based Photoplethysmography in the Perioperative Setting: Prospective Observational Study. JMIR Cardio 2021;5(2):e27765
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  52. Cao J, Yang X, Rao J, Mitriashkin A, Fan X, Chen R, Cheng H, Wang X, Goh J, Leo HL, Ouyang J. Stretchable and Self-Adhesive PEDOT:PSS Blend with High Sweat Tolerance as Conformal Biopotential Dry Electrodes. ACS Applied Materials & Interfaces 2022;14(34):39159
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According to Crossref, the following books are citing this article (DOI 10.2196/jmir.6025):

  1. Xing F, Peng G, Liang T, Jiang J. Distributed, Ambient and Pervasive Interactions: Understanding Humans. 2018. Chapter 25:286
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  2. Santhanagopalan M, Chetty M, Foale C, Aryal S, Klein B. Neural Information Processing. 2018. Chapter 54:598
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  3. Gobinath A, Rajeswari P, Suresh Kumar , Anandan M. Technological Tools for Predicting Pregnancy Complications. 2023. chapter 12:205
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