Published on in Vol 6, No 3 (2017): March

Biometrics and Policing: A Protocol for Multichannel Sensor Data Collection and Exploratory Analysis of Contextualized Psychophysiological Response During Law Enforcement Operations

Biometrics and Policing: A Protocol for Multichannel Sensor Data Collection and Exploratory Analysis of Contextualized Psychophysiological Response During Law Enforcement Operations

Biometrics and Policing: A Protocol for Multichannel Sensor Data Collection and Exploratory Analysis of Contextualized Psychophysiological Response During Law Enforcement Operations

Journals

  1. Leonard N, Casarjian B, Fletcher R, Prata C, Sherpa D, Kelemen A, Rajan S, Salaam R, Cleland C, Gwadz M. Theoretically-Based Emotion Regulation Strategies Using a Mobile App and Wearable Sensor Among Homeless Adolescent Mothers: Acceptability and Feasibility Study. JMIR Pediatrics and Parenting 2018;1(1):e1 View
  2. Wilbur R, Griffin J, Sorensen M, Furberg R. Establishing Digital Biomarkers for Occupational Health Assessment in Commercial Salmon Fishermen: Protocol for a Mixed-Methods Study. JMIR Research Protocols 2018;7(12):e10215 View
  3. Richardson N, Barrick K, Strom K. Is policing safer today?. Criminology & Public Policy 2019;18(1):37 View
  4. Aranda J, Dias L, Barbosa J, de Carvalho J, Tavares J, Tavares M. Collection and analysis of physiological data in smart environments: a systematic mapping. Journal of Ambient Intelligence and Humanized Computing 2020;11(7):2883 View
  5. Coffman D, Cai X, Li R, Leonard N. Challenges and Opportunities in Collecting and Modeling Ambulatory Electrodermal Activity Data. JMIR Biomedical Engineering 2020;5(1):e17106 View
  6. Aranda J, Bavaresco R, da Silva Machado R, de Carvalho J, Corrêa A, Barbosa J. A multi-agent system for optimizing physiological collection based on adaptive strategies. Smart Health 2021;19:100149 View
  7. Aranda J, Bavaresco R, de Carvalho J, Yamin A, Tavares M, Barbosa J. A computational model for adaptive recording of vital signs through context histories. Journal of Ambient Intelligence and Humanized Computing 2023;14(12):16047 View
  8. Winz M, Söderström O, Rizzotti-Kaddouri A, Visinand S, Ourednik A, Küster J, Bailey B. Stress and emotional arousal in urban environments: A biosocial study with persons having experienced a first-episode of psychosis and persons at risk. Health & Place 2022;75:102762 View
  9. Jiang F, Tao Z, Zhang Y, Xie X, Bao Y, Hu Y, Ding J, Wu C. Machine learning combined with single-cell analysis reveals predictive capacity and immunotherapy response of T cell exhaustion-associated lncRNAs in uterine corpus endometrial carcinoma. Cellular Signalling 2024;117:111077 View
  10. Luo W, Chen C, Li H, Hou Y. How do residential open spaces influence the older adults’ emotions: A field experiment using wearable sensors. Landscape and Urban Planning 2024;251:105152 View
  11. Labrecque R, Lindquist C, Tueller S, Tucker W, Allen A. Advancing Measurement of Correctional Officer Health and Wellness: A Pilot Study of Wearable Biometric Sensor Devices. Justice Quarterly 2024:1 View