A Novel Wearable Device for Food Intake and Physical Activity Recognition
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[1] O. Bar-or,et al. Relationship between juvenile obesity, dietary energy and fat intake and physical activity , 2002, International Journal of Obesity.
[2] Tom Chau,et al. An Online Swallow Detection Algorithm Based on the Quadratic Variation of Dual-Axis Accelerometry , 2010, IEEE Transactions on Signal Processing.
[3] Thad Starner,et al. Detecting Mastication: A Wearable Approach , 2015, ICMI.
[4] Oliver Amft,et al. A wearable earpad sensor for chewing monitoring , 2010, 2010 IEEE Sensors.
[5] Martin T. Pietrucha,et al. FIELD STUDIES OF PEDESTRIAN WALKING SPEED AND START-UP TIME , 1996 .
[6] Nigel H. Lovell,et al. Implementation of a real-time human movement classifier using a triaxial accelerometer for ambulatory monitoring , 2006, IEEE Transactions on Information Technology in Biomedicine.
[7] Yujie Dong,et al. Detecting Periods of Eating During Free-Living by Tracking Wrist Motion , 2014, IEEE Journal of Biomedical and Health Informatics.
[8] Wolf-Joachim Fischer,et al. Food Intake Monitoring: Automated Chew Event Detection in Chewing Sounds , 2014, IEEE Journal of Biomedical and Health Informatics.
[9] K. Kohyama,et al. Effect of sample thickness on bite force studied with a multiple-point sheet sensor. , 2004, Journal of oral rehabilitation.
[10] Majid Sarrafzadeh,et al. Monitoring eating habits using a piezoelectric sensor-based necklace , 2015, Comput. Biol. Medicine.
[11] Ivan Kraljevski,et al. Adaptation of Models for Food Intake Sound Recognition Using Maximum a Posteriori Estimation Algorithm , 2012, 2012 Ninth International Conference on Wearable and Implantable Body Sensor Networks.
[12] D. Carnall,et al. Eating disorders , 1999, International Journal of Obesity.
[13] Edward Sazonov,et al. Non-invasive monitoring of chewing and swallowing for objective quantification of ingestive behavior. , 2008, Physiological measurement.
[14] Edward Sazonov,et al. A Comparative Study of Food Intake Detection Using Artificial Neural Network and Support Vector Machine , 2013, 2013 12th International Conference on Machine Learning and Applications.
[15] Maysam Ghovanloo,et al. Tracheal activity recognition based on acoustic signals , 2014, 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[16] Fanyu Kong,et al. Automatic Food Intake Assessment Using Camera Phones , 2012 .
[17] Edward Sazonov,et al. Automatic Ingestion Monitor: A Novel Wearable Device for Monitoring of Ingestive Behavior , 2014, IEEE Transactions on Biomedical Engineering.
[18] Abdelsalam Helal,et al. Algorithms for the detection of chewing behavior in dietary monitoring applications , 2009, Optical Engineering + Applications.
[19] H. S. Wolff,et al. iRun: Horizontal and Vertical Shape of a Region-Based Graph Compression , 2022, Sensors.
[20] Abdelsalam Helal,et al. Exploiting visual quasi-periodicity for real-time chewing event detection using active appearance models and support vector machines , 2012, Personal and Ubiquitous Computing.
[21] Jindong Tan,et al. DietCam: Automatic dietary assessment with mobile camera phones , 2012, Pervasive Mob. Comput..
[22] Edward Sazonov,et al. Estimation of feature importance for food intake detection based on Random Forests classification , 2013, 2013 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC).
[23] A E Goodship,et al. A novel approach to bite force measurements in a porcine model in vivo. , 2006, International journal of oral and maxillofacial surgery.
[24] Majid Sarrafzadeh,et al. Audio-based detection and evaluation of eating behavior using the smartwatch platform , 2015, Comput. Biol. Medicine.
[25] C. Fairburn,et al. Using the eating disorder examination to identify the specific psychopathology of binge eating disorder. , 2000, The International journal of eating disorders.
[26] R S Paffenbarger,et al. Exercise intensity and longevity in men. The Harvard Alumni Health Study. , 1995, JAMA.
[27] Edward Sazonov,et al. Comparative testing of piezoelectric and printed strain sensors in characterization of chewing , 2015, 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC).
[28] Oleksandr Makeyev,et al. Automatic food intake detection based on swallowing sounds , 2012, Biomed. Signal Process. Control..
[29] S A Jebb,et al. Critical evaluation of energy intake data using fundamental principles of energy physiology: 2. Evaluating the results of published surveys. , 1991, European journal of clinical nutrition.
[30] Thomas Schauer,et al. Automated Detection and Evaluation of Swallowing Using a Combined EMG/Bioimpedance Measurement System , 2014, TheScientificWorldJournal.
[31] Gregory D. Abowd,et al. Inferring Meal Eating Activities in Real World Settings from Ambient Sounds: A Feasibility Study , 2015, IUI.
[32] D. Schoeller,et al. Inaccuracies in self-reported intake identified by comparison with the doubly labelled water method. , 1990, Canadian journal of physiology and pharmacology.
[33] Gregory D. Abowd,et al. A practical approach for recognizing eating moments with wrist-mounted inertial sensing , 2015, UbiComp.
[34] Shuangquan Wang,et al. CARE: chewing activity recognition using noninvasive single axis accelerometer , 2015, UbiComp/ISWC Adjunct.
[35] Masaki Shuzo,et al. Wearable Eating Habit Sensing System Using Internal Body Sound , 2010 .
[36] E. S. Sazonov,et al. A Sensor System for Automatic Detection of Food Intake Through Non-Invasive Monitoring of Chewing , 2012, IEEE Sensors Journal.
[37] L M Gallo,et al. Time-Frequency Analysis of Chewing Activity in the Natural Environment , 2011, Journal of dental research.
[38] Majid Sarrafzadeh,et al. Recognition of Nutrition Intake Using Time-Frequency Decomposition in a Wearable Necklace Using a Piezoelectric Sensor , 2015, IEEE Sensors Journal.
[39] M. Wong,et al. Epidemiological assessment of diet: a comparison of a 7-day diary with a food frequency questionnaire using urinary markers of nitrogen, potassium and sodium. , 2001, International journal of epidemiology.
[40] Michael R Neuman,et al. Toward Objective Monitoring of Ingestive Behavior in Free‐living Population , 2009, Obesity.
[41] W. Riley,et al. Evaluation of a PDA-based Dietary Assessment and Intervention Program: A Randomized Controlled Trial , 2006, Journal of the American College of Nutrition.
[42] M. Livingstone,et al. Markers of the validity of reported energy intake. , 2003, The Journal of nutrition.
[43] T. van Eijden,et al. Electromyographic Heterogeneity in the Human Temporalis and Masseter Muscles during Static Biting, Open\ Close Excursions, and Chewing , 1995, Journal of dental research.
[44] Edward Sazonov,et al. Using Sensors to Measure Activity in People with Stroke , 2011, Topics in stroke rehabilitation.
[45] Y Igarashi,et al. Association between food mixing ability and electromyographic activity of jaw-closing muscles during chewing of a wax cube. , 2008, Journal of oral rehabilitation.
[46] Edward Sazonov,et al. A novel approach for food intake detection using electroglottography , 2014, Physiological measurement.
[47] P. Kris-Etherton,et al. Accuracy of energy intake data estimated by a multiple-pass, 24-hour dietary recall technique. , 2000, Journal of the American Dietetic Association.
[48] Adam W. Hoover,et al. A New Method for Measuring Meal Intake in Humans via Automated Wrist Motion Tracking , 2012, Applied Psychophysiology and Biofeedback.
[49] W. dodds. The physiology of swallowing , 2006, Dysphagia.