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[1] Cem Ersoy,et al. Continuous Stress Detection Using Wearable Sensors in Real Life: Algorithmic Programming Contest Case Study , 2019, Sensors.
[2] Elena Smets,et al. Large-scale wearable data reveal digital phenotypes for daily-life stress detection , 2018, npj Digital Medicine.
[3] Yoav Freund,et al. A decision-theoretic generalization of on-line learning and an application to boosting , 1997, EuroCOLT.
[4] David Ellis,et al. Stress Detection Using Wearable Physiological and Sociometric Sensors , 2017, Int. J. Neural Syst..
[5] Kasper Hornbæk,et al. An affect detection technique using mobile commodity sensors in the wild , 2016, UbiComp.
[6] Sheldon Cohen,et al. Psychological stress and disease. , 2007, JAMA.
[7] Shrikanth Narayanan,et al. TILES-2018, a longitudinal physiologic and behavioral data set of hospital workers , 2020, Scientific data.
[8] Joel E Dimsdale,et al. Psychological stress and cardiovascular disease. , 2008, Journal of the American College of Cardiology.
[9] Yu Huang,et al. Discovery of Behavioral Markers of Social Anxiety from Smartphone Sensor Data , 2017, DigitalBioMarker@MobiSys.
[10] G. Zielhuis,et al. The effect of anxiety and depression on the outcome of in-vitro fertilization. , 2001, Human reproduction.
[11] Akane Sano,et al. Predicting Tomorrow's Mood, Health, and Stress Level using Personalized Multitask Learning and Domain Adaptation , 2017, AffComp@IJCAI.
[12] P. Burnard,et al. A longitudinal study of stress and self-esteem in student nurses. , 2010, Nurse education today.
[13] Pierre Geurts,et al. Extremely randomized trees , 2006, Machine Learning.
[14] O. Aasland,et al. Development of the Alcohol Use Disorders Identification Test (AUDIT): WHO Collaborative Project on Early Detection of Persons with Harmful Alcohol Consumption--II. , 1993, Addiction.
[15] Shrikanth Narayanan,et al. Estimating Individualized Daily Self-Reported Affect with Wearable Sensors , 2019, 2019 IEEE International Conference on Healthcare Informatics (ICHI).
[16] Akane Sano,et al. Recognizing academic performance, sleep quality, stress level, and mental health using personality traits, wearable sensors and mobile phones , 2015, 2015 IEEE 12th International Conference on Wearable and Implantable Body Sensor Networks (BSN).
[17] Michael I. Jordan,et al. JOINT MODELING OF MULTIPLE TIME SERIES VIA THE BETA PROCESS WITH APPLICATION TO MOTION CAPTURE SEGMENTATION , 2013, 1308.4747.
[18] Muhammad Ismail Ramay,et al. Impact of Stress on Employees Job Performance: A Study on Banking Sector of Pakistan , 2010 .
[19] Chak Fu Lam,et al. Too much of a good thing: Curvilinear effect of positive affect on proactive behaviors , 2014 .
[20] Jennifer Healey,et al. Detecting stress during real-world driving tasks using physiological sensors , 2005, IEEE Transactions on Intelligent Transportation Systems.
[21] Hal R Varian,et al. Causal inference in economics and marketing , 2016, Proceedings of the National Academy of Sciences.
[22] V. Nam. Global Adult Tobacco Survey (GATS) , 2010 .
[23] E. Guthrie,et al. Psychological stress and burnout in medical students: a five-year prospective longitudinal study , 1998, Journal of the Royal Society of Medicine.
[24] Begoña García Zapirain,et al. A Stress Sensor Based on Galvanic Skin Response (GSR) Controlled by ZigBee , 2012, Sensors.
[25] David Ellis,et al. Stress Detection Using Wearable Physiological Sensors , 2015, IWINAC.
[26] Ryan L. Boyd,et al. The Development and Psychometric Properties of LIWC2015 , 2015 .
[27] K. Vohs,et al. Case Western Reserve University , 1990 .
[28] Sinan Aral,et al. Exercise contagion in a global social network , 2017, Nature Communications.
[29] Mirco Musolesi,et al. Trajectories of depression: unobtrusive monitoring of depressive states by means of smartphone mobility traces analysis , 2015, UbiComp.
[30] Sebastian Ruder,et al. An Overview of Multi-Task Learning in Deep Neural Networks , 2017, ArXiv.
[31] O. V. Ramana Murthy,et al. Stress Detection in Working People , 2017 .
[32] H. Christensen,et al. A short form of the Positive and Negative Affect Schedule: evaluation of factorial validity and invariance across demographic variables in a community sample , 1999 .
[33] Amy Loutfi,et al. Data Mining for Wearable Sensors in Health Monitoring Systems: A Review of Recent Trends and Challenges , 2013, Sensors.
[34] Matjaz Gams,et al. Monitoring stress with a wrist device using context , 2017, J. Biomed. Informatics.
[35] P. Fernández-Berrocal,et al. Emotional intelligence and acute pain: the mediating effect of negative affect. , 2011, The journal of pain : official journal of the American Pain Society.
[36] Shrikanth Narayanan,et al. Learning Behavioral Representations from Wearable Sensors , 2020, SBP-BRiMS.
[37] Eric Gilbert,et al. VADER: A Parsimonious Rule-Based Model for Sentiment Analysis of Social Media Text , 2014, ICWSM.
[38] Daniel J Buysse,et al. The Pittsburgh sleep quality index: A new instrument for psychiatric practice and research , 1989, Psychiatry Research.
[39] Corinna Cortes,et al. Support-Vector Networks , 1995, Machine Learning.
[40] Alex Pentland,et al. Reality mining: sensing complex social systems , 2006, Personal and Ubiquitous Computing.
[41] A. Anderson,et al. Positive affect increases the breadth of attentional selection , 2007, Proceedings of the National Academy of Sciences.
[42] S. Parker,et al. A new model of work role performance: Positive behavior in uncertain and interdependent contexts , 2007 .
[43] J. Molson,et al. Job Stress, Job Performance and Organizational Commitment in a Multinational Company: An Empirical Study in two Countries , 2011 .
[44] Emre Ertin,et al. cStress: towards a gold standard for continuous stress assessment in the mobile environment , 2015, UbiComp.
[45] Antonio Torralba,et al. Depth Estimation from Image Structure , 2002, IEEE Trans. Pattern Anal. Mach. Intell..
[46] D. Cox. The Regression Analysis of Binary Sequences , 1958 .
[47] Javad Frounchi,et al. Machine learning-based signal processing using physiological signals for stress detection , 2015, 2015 22nd Iranian Conference on Biomedical Engineering (ICBME).
[48] John Ifcher,et al. Happiness and Time Preference: The Effect of Positive Affect in a Random-Assignment Experiment , 2011 .
[49] István Vassányi,et al. Stress Detection Using Low Cost Heart Rate Sensors , 2016, Journal of healthcare engineering.
[50] Geoffrey E. Hinton. Connectionist Learning Procedures , 1989, Artif. Intell..
[51] Alex Pentland,et al. Daily Stress Recognition from Mobile Phone Data, Weather Conditions and Individual Traits , 2014, ACM Multimedia.
[52] S. Gosling,et al. A very brief measure of the Big-Five personality domains , 2003 .
[53] Fanglin Chen,et al. StudentLife: assessing mental health, academic performance and behavioral trends of college students using smartphones , 2014, UbiComp.
[54] R. Goetzel,et al. Ten modifiable health risk factors are linked to more than one-fifth of employer-employee health care spending. , 2012, Health affairs.