Computer vision in autism spectrum disorder research: a systematic review of published studies from 2009 to 2019
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Arcot Sowmya | Tomasz Bednarz | Dennis Del Favero | Ryan Anthony J. de Belen | T. Bednarz | A. Sowmya | Dennis Del Favero | Ryan Anthony J. de Belen
[1] Guillermo Sapiro,et al. A Scalable Off-the-Shelf Framework for Measuring Patterns of Attention in Young Children and Its Application in Autism Spectrum Disorder , 2021, IEEE Transactions on Affective Computing.
[2] Stefan Lee,et al. Lending A Hand: Detecting Hands and Recognizing Activities in Complex Egocentric Interactions , 2015, 2015 IEEE International Conference on Computer Vision (ICCV).
[3] P. Dowrick,et al. Symptoms of pervasive developmental disorders as observed in prediagnostic home videos of infants and toddlers. , 1998, The Journal of pediatrics.
[4] Jon Baio,et al. Examination of the Time Between First Evaluation and First Autism Spectrum Diagnosis in a Population-based Sample , 2006, Journal of developmental and behavioral pediatrics : JDBP.
[5] K. Pierce,et al. Eye Tracking Reveals Abnormal Visual Preference for Geometric Images as an Early Biomarker of an Autism Spectrum Disorder Subtype Associated With Increased Symptom Severity , 2016, Biological Psychiatry.
[6] Ovidio Salvetti,et al. An Auditory Feedback Based System for Treating Autism Spectrum Disorder , 2015, REHAB.
[7] Enzo Pasquale Scilingo,et al. Robotic Social Therapy on Children with Autism: Preliminary Evaluation through Multi-parametric Analysis , 2012, SocialCom/PASSAT.
[8] Swann Pichon,et al. Classification of autistic individuals and controls using cross-task characterization of fMRI activity , 2015, NeuroImage: Clinical.
[9] Jason Weston,et al. Gene Selection for Cancer Classification using Support Vector Machines , 2002, Machine Learning.
[10] N. Sarkar,et al. A Step Towards Developing Adaptive Robot-Mediated Intervention Architecture (ARIA) for Children With Autism , 2013, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[11] Ronen Basri,et al. Actions as space-time shapes , 2005, Tenth IEEE International Conference on Computer Vision (ICCV'05) Volume 1.
[12] Maja J. Matarić,et al. Using proxemics to evaluate human-robot interaction , 2010, HRI 2010.
[13] Pierluigi Carcagnì,et al. Automatic Emotion Recognition in Robot-Children Interaction for ASD Treatment , 2015, 2015 IEEE International Conference on Computer Vision Workshop (ICCVW).
[14] Agata Rozga,et al. A prospective study of response to name in infants at risk for autism. , 2007, Archives of pediatrics & adolescent medicine.
[15] Franca Garzotto,et al. Exploring motion-based touchless games for autistic children's learning , 2013, IDC.
[16] P. Quinn,et al. Abnormality in face scanning by children with autism spectrum disorder is limited to the eye region: evidence from multi-method analyses of eye tracking data. , 2013, Journal of vision.
[17] Nitesh V. Chawla,et al. SMOTE: Synthetic Minority Over-sampling Technique , 2002, J. Artif. Intell. Res..
[18] Takeo Kanade,et al. The Extended Cohn-Kanade Dataset (CK+): A complete dataset for action unit and emotion-specified expression , 2010, 2010 IEEE Computer Society Conference on Computer Vision and Pattern Recognition - Workshops.
[19] Vassilios Morellas,et al. A computer vision approach for the assessment of autism-related behavioral markers , 2012, 2012 IEEE International Conference on Development and Learning and Epigenetic Robotics (ICDL).
[20] Björn W. Schuller,et al. Personalized machine learning for robot perception of affect and engagement in autism therapy , 2018, Science Robotics.
[21] B. Garreau,et al. Autism and family home movies: Preliminary findings , 1991, Journal of autism and developmental disorders.
[22] Ming Li,et al. Response to name: A dataset and a multimodal machine learning framework towards autism study , 2017, 2017 Seventh International Conference on Affective Computing and Intelligent Interaction (ACII).
[23] Cristian Sminchisescu,et al. 3D Human Sensing, Action and Emotion Recognition in Robot Assisted Therapy of Children with Autism , 2018, 2018 IEEE/CVF Conference on Computer Vision and Pattern Recognition.
[24] S. White,et al. Feasibility of Automated Training for Facial Emotion Expression and Recognition in Autism. , 2017, Behavior therapy.
[25] Tanaya Guha,et al. A Computational Study of Expressive Facial Dynamics in Children with Autism , 2018, IEEE Transactions on Affective Computing.
[26] Aleix M. Martínez,et al. EmotioNet: An Accurate, Real-Time Algorithm for the Automatic Annotation of a Million Facial Expressions in the Wild , 2016, 2016 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[27] Khan M. Iftekharuddin,et al. Analysis of facial muscle activation in children with autism using 3D imaging , 2015, 2015 IEEE International Conference on Bioinformatics and Biomedicine (BIBM).
[28] Peter Washington,et al. Feasibility Testing of a Wearable Behavioral Aid for Social Learning in Children with Autism , 2018, Applied Clinical Informatics.
[29] Maja Pantic,et al. Web-based database for facial expression analysis , 2005, 2005 IEEE International Conference on Multimedia and Expo.
[30] Antonio Camurri,et al. Effects of Computerized Emotional Training on Children with High Functioning Autism , 2021, IEEE Transactions on Affective Computing.
[31] Tuck Wah Leong,et al. CopyMe: a portable real-time feedback expression recognition game for children , 2014, CHI Extended Abstracts.
[32] Yao-Jen Chang,et al. Eye detection in CSBS-DP evaluation video , 2016, 2016 IEEE International Conference on Consumer Electronics-Taiwan (ICCE-TW).
[33] Wenyao Xu,et al. Effective and efficient visual stimuli design for quantitative autism screening: An exploratory study , 2017, 2017 IEEE EMBS International Conference on Biomedical & Health Informatics (BHI).
[34] Guillermo Sapiro,et al. Computer Vision Analysis for Quantification of Autism Risk Behaviors , 2018, IEEE Transactions on Affective Computing.
[35] Aly A. Farag,et al. New Approach for Classification of Autistic vs. Typically Developing Brain Using White Matter Volumes , 2012, 2012 Ninth Conference on Computer and Robot Vision.
[36] Shyam Sundar Rajagopalan. Computational behaviour modelling for autism diagnosis , 2013, ICMI '13.
[37] Shi Chen,et al. Attention-Based Autism Spectrum Disorder Screening With Privileged Modality , 2019, 2019 IEEE/CVF International Conference on Computer Vision (ICCV).
[38] Matthew Toews,et al. Multi-scale radiomic analysis of sub-cortical regions in MRI related to autism, gender and age , 2017, Scientific Reports.
[39] Harry Wechsler,et al. The FERET database and evaluation procedure for face-recognition algorithms , 1998, Image Vis. Comput..
[40] Terence Sim,et al. The CMU Pose, Illumination, and Expression (PIE) database , 2002, Proceedings of Fifth IEEE International Conference on Automatic Face Gesture Recognition.
[41] B. Scassellati,et al. Limited activity monitoring in toddlers with autism spectrum disorder , 2011, Brain Research.
[42] G. Taga,et al. Early motor signs of autism spectrum disorder in spontaneous position and movement of the head , 2018, Experimental Brain Research.
[43] James M. Rehg. Behavior Imaging: Using Computer Vision to Study Autism , 2011, MVA.
[45] Pierluigi Carcagnì,et al. Improved Performance in Facial Expression Recognition Using 32 Geometric Features , 2015, ICIAP.
[46] Petros Daras,et al. AFFECTIVE STATE RECOGNITION BASED ON EYE GAZE ANALYSIS USING TWO–STREAM CONVOLUTIONAL NETWORKS , 2018, 2018 IEEE 28th International Workshop on Machine Learning for Signal Processing (MLSP).
[47] Alice Ravarelli,et al. Analyzing text comprehension deficits in autism with eye tracking: A case study , 2010, 3rd International Conference on Human System Interaction.
[48] D. Moher,et al. Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement. , 2009, Journal of clinical epidemiology.
[49] Quan Wang,et al. Modified DBSCAN algorithm on oculomotor fixation identification , 2016, ETRA.
[50] Arshya Vahabzadeh,et al. Improvement of Attention-Deficit/Hyperactivity Disorder Symptoms in School-Aged Children, Adolescents, and Young Adults With Autism via a Digital Smartglasses-Based Socioemotional Coaching Aid: Short-Term, Uncontrolled Pilot Study , 2017, bioRxiv.
[51] Lizbeth Escobedo,et al. SensoryPaint: a natural user interface supporting sensory integration in children with neurodevelopmental disorders , 2014, CHI Extended Abstracts.
[52] Gregory S. Fischer,et al. Interactive Tracking for Robot-Assisted Autism Therapy , 2017, HRI.
[53] Pierluigi Carcagnì,et al. Study of Mechanisms of Social Interaction Stimulation in Autism Spectrum Disorder by Assisted Humanoid Robot , 2018, IEEE Transactions on Cognitive and Developmental Systems.
[54] Mohamed Chetouani,et al. A multimodal and multilevel system for robotics treatment of autism in children , 2016, DAA '16.
[55] J. Brian,et al. Behavioral manifestations of autism in the first year of life , 2005, International Journal of Developmental Neuroscience.
[56] Michael J. Lyons,et al. Coding facial expressions with Gabor wavelets , 1998, Proceedings Third IEEE International Conference on Automatic Face and Gesture Recognition.
[57] Rui Ma,et al. Recognition Of Atypical Behavior In Autism Diagnosis From Video Using Pose Estimation Over Time , 2019, 2019 IEEE 29th International Workshop on Machine Learning for Signal Processing (MLSP).
[58] Gregory S. Fischer,et al. Combining psychological and engineering approaches to utilizing social robots with children with Autism , 2014, 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[59] Pamela Ventola,et al. A Facial Affect Analysis System for Autism Spectrum Disorder , 2019, 2019 IEEE International Conference on Image Processing (ICIP).
[60] Lili He,et al. A Novel Transfer Learning Approach to Enhance Deep Neural Network Classification of Brain Functional Connectomes , 2018, Front. Neurosci..
[61] Mubarak Shah,et al. UCF101: A Dataset of 101 Human Actions Classes From Videos in The Wild , 2012, ArXiv.
[62] Pierluigi Carcagnì,et al. Computational Assessment of Facial Expression Production in ASD Children , 2018, Sensors.
[63] Jesse Hoey,et al. Automatic Task Assistance for People with Cognitive Disabilities in Brushing Teeth - A User Study with the TEBRA System , 2014, TACC.
[64] Kenji Suzuki,et al. Measuring K-degree facial interaction between robot and children with autism spectrum disorders , 2015, 2015 24th IEEE International Symposium on Robot and Human Interactive Communication (RO-MAN).
[65] Daniel P. Kennedy,et al. Atypical Visual Saliency in Autism Spectrum Disorder Quantified through Model-Based Eye Tracking , 2015, Neuron.
[66] Cong Feng,et al. Do Individuals with and without Autism Spectrum Disorder Scan Faces Differently? A New Multi‐Method Look at an Existing Controversy , 2014, Autism research : official journal of the International Society for Autism Research.
[67] Qi Zhao,et al. Learning Visual Attention to Identify People with Autism Spectrum Disorder , 2017, 2017 IEEE International Conference on Computer Vision (ICCV).
[68] Camel Tanougast,et al. Hippocampus and amygdala radiomic biomarkers for the study of autism spectrum disorder , 2017, BMC Neuroscience.
[69] Frédérick Shic,et al. Saliency-based Bayesian modeling of dynamic viewing of static scenes , 2014, ETRA.
[70] Keita Higuchi,et al. Visualizing Gaze Direction to Support Video Coding of Social Attention for Children with Autism Spectrum Disorder , 2018, IUI.
[71] Björn W. Schuller,et al. Measuring Engagement in Robot-Assisted Autism Therapy: A Cross-Cultural Study , 2017, Front. Robot. AI.
[72] Agata Rozga,et al. Measuring Child Visual Attention using Markerless Head Tracking from Color and Depth Sensing Cameras , 2014, ICMI.
[73] Thomas S. Huang,et al. Interactive Facial Feature Localization , 2012, ECCV.
[74] Gianluca Esposito,et al. Analysis of unsupported gait in toddlers with autism , 2011, Brain and Development.
[75] Roland Göcke,et al. Self-Stimulatory Behaviours in the Wild for Autism Diagnosis , 2013, 2013 IEEE International Conference on Computer Vision Workshops.
[76] Björn W. Schuller,et al. Automatic Classification of Autistic Child Vocalisations: A Novel Database and Results , 2017, INTERSPEECH.
[77] P. Warreyn,et al. Motor anticipation failure in infants with autism: a retrospective analysis of feeding situations , 2012, Autism : the international journal of research and practice.
[78] D. Moher,et al. Preferred reporting items for systematic reviews and meta-analyses: the PRISMA Statement , 2009, BMJ : British Medical Journal.
[79] Fahad Saeed,et al. Auto-ASD-Network: A Technique Based on Deep Learning and Support Vector Machines for Diagnosing Autism Spectrum Disorder using fMRI Data , 2019, BCB.
[80] James M. Rehg,et al. Decoding Children's Social Behavior , 2013, 2013 IEEE Conference on Computer Vision and Pattern Recognition.
[81] Md. Atiqur Rahman Ahad,et al. Visual face scanning and emotion perception analysis between autistic and typically developing children , 2017, UbiComp/ISWC Adjunct.
[82] Peter Washington,et al. SuperpowerGlass , 2017, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[83] Daniel P. Kennedy,et al. The Autism Brain Imaging Data Exchange: Towards Large-Scale Evaluation of the Intrinsic Brain Architecture in Autism , 2013, Molecular Psychiatry.
[84] Mohammad H. Mahoor,et al. AffectNet: A Database for Facial Expression, Valence, and Arousal Computing in the Wild , 2017, IEEE Transactions on Affective Computing.
[85] Peter Washington,et al. Labeling images with facial emotion and the potential for pediatric healthcare , 2019, Artif. Intell. Medicine.
[86] J. Piven,et al. Magnetic resonance imaging and head circumference study of brain size in autism: birth through age 2 years. , 2005, Archives of general psychiatry.
[87] Vittorio Murino,et al. Video Gesture Analysis for Autism Spectrum Disorder Detection , 2018, 2018 24th International Conference on Pattern Recognition (ICPR).
[88] Zhiyong Wang,et al. Screening Early Children with Autism Spectrum Disorder via Expressing Needs with Index Finger Pointing , 2019, ICDSC.
[89] H. Moradi,et al. Analyzing Human-Robot Interaction Using Machine Vision for Autism screening , 2018, 2018 6th RSI International Conference on Robotics and Mechatronics (IcRoM).
[90] Victor M. Ruiz Penichet,et al. EmoTEA: Teaching Children with Autism Spectrum Disorder to Identify and Express Emotions , 2019, Interacción.
[91] F. Thabtah. Machine learning in autistic spectrum disorder behavioral research: A review and ways forward , 2019, Informatics for health & social care.
[92] Arman Savran,et al. Bosphorus Database for 3D Face Analysis , 2008, BIOID.
[93] Vittorio Murino,et al. Case-control discrimination through effective brain connectivity , 2017, 2017 IEEE 14th International Symposium on Biomedical Imaging (ISBI 2017).
[94] Lijun Yin,et al. A high-resolution 3D dynamic facial expression database , 2008, 2008 8th IEEE International Conference on Automatic Face & Gesture Recognition.
[95] Xue Li,et al. Affective Computing of Childern with Authism Based on Feature Transfer , 2018, 2018 5th IEEE International Conference on Cloud Computing and Intelligence Systems (CCIS).
[96] M. Maybery,et al. Brief Report: An Exploratory Study of the Diagnostic Reliability for Autism Spectrum Disorder , 2017, Journal of autism and developmental disorders.
[97] Markel Vigo,et al. Combining Trending Scan Paths with Arousal to Model Visual Behaviour on the Web: A Case Study of Neurotypical People vs People with Autism , 2019, UMAP.
[98] Ovidio Salvetti,et al. An Auditory Feedback based system for treating Autism Spectrum Disorder , 2015, REHAB.
[99] Vassilios Morellas,et al. Computer Vision Tools for Low-Cost and Noninvasive Measurement of Autism-Related Behaviors in Infants , 2014, Autism research and treatment.
[100] Li Yi,et al. Identifying children with autism spectrum disorder based on their face processing abnormality: A machine learning framework , 2016, Autism research : official journal of the International Society for Autism Research.
[101] Guillermo Sapiro,et al. Computer vision analysis captures atypical attention in toddlers with autism , 2019, Autism : the international journal of research and practice.
[102] R. Landa,et al. Head lag in infants at risk for autism: a preliminary study. , 2012, The American journal of occupational therapy : official publication of the American Occupational Therapy Association.
[103] Anibal Gutierrez,et al. Objective measurement of head movement differences in children with and without autism spectrum disorder , 2018, Molecular Autism.
[104] Laurent Mottron,et al. Atypical processing of auditory temporal complexity in autistics , 2011, Neuropsychologia.
[105] Abdenour Hadid,et al. A Survey on Computer Vision for Assistive Medical Diagnosis From Faces , 2018, IEEE Journal of Biomedical and Health Informatics.
[106] James M. Rehg,et al. Detecting Gaze Towards Eyes in Natural Social Interactions and Its Use in Child Assessment , 2017, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[107] Andrew Zisserman,et al. Hand detection using multiple proposals , 2011, BMVC.
[108] Fadi Thabtah,et al. A new machine learning model based on induction of rules for autism detection , 2020, Health Informatics J..
[109] Guillermo Sapiro,et al. Automatic emotion and attention analysis of young children at home: a ResearchKit autism feasibility study , 2018, npj Digital Medicine.
[110] Guillermo Sapiro,et al. Atypical postural control can be detected via computer vision analysis in toddlers with autism spectrum disorder , 2018, Scientific Reports.
[111] Arsalane Zarghili,et al. A $P recognizer for automatic facial emotion recognition using Kinect sensor , 2017, 2017 Intelligent Systems and Computer Vision (ISCV).
[112] Matthew S. Goodwin,et al. Automated Detection of Facial Expressions during Computer-Assisted Instruction in Individuals on the Autism Spectrum , 2017, CHI.
[113] Guido Gerig,et al. Toward a Comprehensive Framework for the Spatiotemporal Statistical Analysis of Longitudinal Shape Data , 2012, International Journal of Computer Vision.
[114] G. Dawson,et al. Validation of the phenomenon of autistic regression using home videotapes. , 2005, Archives of general psychiatry.
[115] Cordelia Schmid,et al. Actions in context , 2009, CVPR.
[116] Takeo Kanade,et al. Comprehensive database for facial expression analysis , 2000, Proceedings Fourth IEEE International Conference on Automatic Face and Gesture Recognition (Cat. No. PR00580).
[117] Yasar Ayaz,et al. Dominance in Visual Space of ASD Children Using Multi-Robot Joint Attention Integrated Distributed Imitation System , 2019, IEEE Access.
[118] Guillermo Sapiro,et al. Computer vision and behavioral phenotyping: an autism case study , 2019, Current Opinion in Biomedical Engineering.
[119] Mark H. Johnson,et al. Disengagement of Visual Attention in Infancy is Associated with Emerging Autism in Toddlerhood , 2013, Biological Psychiatry.
[120] D. Schwarzkopf,et al. Larger Extrastriate Population Receptive Fields in Autism Spectrum Disorders , 2014, The Journal of Neuroscience.
[121] Jake K. Aggarwal,et al. An interactive game for teaching facial expressions to children with Autism Spectrum Disorders , 2012, 2012 5th International Symposium on Communications, Control and Signal Processing.
[122] Daniel P. Kennedy,et al. Enhancing studies of the connectome in autism using the autism brain imaging data exchange II , 2017, Scientific Data.
[123] A. Rozga,et al. A prospective study of the emergence of early behavioral signs of autism. , 2010, Journal of the American Academy of Child and Adolescent Psychiatry.
[124] Tuck Wah Leong,et al. CopyMe: an emotional development game for children , 2014, CHI Extended Abstracts.
[125] F. Shic,et al. Decreased Spontaneous Attention to Social Scenes in 6-Month-Old Infants Later Diagnosed with Autism Spectrum Disorders , 2013, Biological Psychiatry.
[126] Jingping Zhao,et al. Different Visual Preference Patterns in Response to Simple and Complex Dynamic Social Stimuli in Preschool-Aged Children with Autism Spectrum Disorders , 2015, PloS one.
[127] Guangtao Zhai,et al. A dataset of eye movements for the children with autism spectrum disorder , 2019, MMSys.
[128] Jun Wang,et al. A 3D facial expression database for facial behavior research , 2006, 7th International Conference on Automatic Face and Gesture Recognition (FGR06).
[129] Roland Göcke,et al. Detecting self-stimulatory behaviours for autism diagnosis , 2014, 2014 IEEE International Conference on Image Processing (ICIP).
[130] G. Dawson,et al. Early recognition of children with autism: A study of first birthday home videotapes , 1994, Journal of autism and developmental disorders.
[131] Jessica Brian,et al. The Autism Observation Scale for Infants: Scale Development and Reliability Data , 2008, Journal of autism and developmental disorders.
[132] Simeng Yan,et al. Automatic Smile Detection of Infants in Mother-Infant Interaction via CNN-based Feature Learning , 2018, Proceedings of the Joint Workshop of the 4th Workshop on Affective Social Multimedia Computing and first Multi-Modal Affective Computing of Large-Scale Multimedia Data.
[133] Hamid Soltanian-Zadeh,et al. Connectivity abnormalities in autism spectrum disorder patients: A resting state fMRI study , 2014, 2014 22nd Iranian Conference on Electrical Engineering (ICEE).
[134] Xiaogang Wang,et al. Deep Learning Face Attributes in the Wild , 2014, 2015 IEEE International Conference on Computer Vision (ICCV).
[135] Pierluigi Carcagnì,et al. A Computer Vision Based Approach for Understanding Emotional Involvements in Children with Autism Spectrum Disorders , 2017, 2017 IEEE International Conference on Computer Vision Workshops (ICCVW).
[136] Pierluigi Carcagnì,et al. Computational Analysis of Deep Visual Data for Quantifying Facial Expression Production , 2019, Applied Sciences.
[137] Peter Robinson,et al. Constrained Local Neural Fields for Robust Facial Landmark Detection in the Wild , 2013, 2013 IEEE International Conference on Computer Vision Workshops.
[138] Balasubramanian Raman,et al. A Deep Learning Frame-Work for Recognizing Developmental Disorders , 2017, 2017 IEEE Winter Conference on Applications of Computer Vision (WACV).
[139] Prasenjit Dey,et al. VibRein: An Engaging and Assistive Mobile Learning Companion for Students with Intellectual Disabilities , 2015, OZCHI.
[140] M. Dimitrova,et al. Designing a system of interactive robots for training collaborative skills to autistic children , 2012, 2012 15th International Conference on Interactive Collaborative Learning (ICL).
[141] Li Yi,et al. Efficient autism spectrum disorder prediction with eye movement: A machine learning framework , 2015, 2015 International Conference on Affective Computing and Intelligent Interaction (ACII).
[142] Chris R Chatwin,et al. In search of biologic correlates for liver texture on portal-phase CT. , 2007, Academic Radiology.
[143] Honghai Liu,et al. Screening Early Children With Autism Spectrum Disorder via Response-to-Name Protocol , 2021, IEEE Transactions on Industrial Informatics.
[144] Michael Murias,et al. Validation of eye‐tracking measures of social attention as a potential biomarker for autism clinical trials , 2018, Autism research : official journal of the International Society for Autism Research.
[145] Jonathan Green,et al. Parent-mediated social communication therapy for young children with autism (PACT): long-term follow-up of a randomised controlled trial , 2016, The Lancet.
[146] Weihao Zheng,et al. Multi-Feature Based Network Revealing the Structural Abnormalities in Autism Spectrum Disorder , 2021, IEEE Transactions on Affective Computing.
[147] A. Robert Calderbank,et al. A scalable app for measuring autism risk behaviors in young children: A technical validity and feasibility study , 2015, EAI Endorsed Trans. Scalable Inf. Syst..
[148] Peter Washington,et al. A Gamified Mobile System for Crowdsourcing Video for Autism Research , 2018, 2018 IEEE International Conference on Healthcare Informatics (ICHI).
[149] Peter Washington,et al. Superpower glass: delivering unobtrusive real-time social cues in wearable systems , 2016, UbiComp Adjunct.