Scott M. Pappada, Ph.D.
Associate Professor and Director of Research
Department of Anesthesiology
University of Toledo ÃÛÌÒ´«Ã½ of Medicine and Life Sciences
Associate Professor
Department of Bioengineering
Prestige Faculty, Department of Electrical Engineering and Computer Science
Degree:
B.S. in Biomedical Engineering
Marquette University, Milwaukee, Wisconsin
Minor: Biomedical Sciences
Ph.D. in Engineering (Bioengineering)
University of Toledo, Toledo, Ohio
Dissertation Title: Prediction of Glucose for Enhancement of Treatment and Outcome
a Neural Network Model Approach
Ph.D. Advisor: Brent D. Cameron, Ph.D.
Awards and Honors:
- 2019 Kosaka Best of Meeting Finalist - Basic Science Research,ÌýInternational Anesthesia Research Society Annual Meeting in Montreal, Canada, May 2019
- 2015ÌýOutstanding Initiative Aptima, Inc. Corporate Annual Achievement Award
- 2015ÌýSecond Place Award, Scientific ExhibitÌý“Use of NASA Task Load Index Scale in the Evaluation of Neurocognitive Workload During Cardiac Anesthesia-based Simulation Scenariosâ€�,Ìý2015 ANETHESIOLOGY Annual Meeting, San Diego, CA
- 2015ÌýThird Place Award for Best Research Poster (Faculty Advisor of Presenter)ÌýMidwest Anesthesia Residents’ Conference, Cleveland, Ohio
Professional Experience:
July 2019-PresentÌýDirector of Research,ÌýDepartment of Anesthesiology, ÃÛÌÒ´«Ã½ of Medicine and Life Sciences, University of Toledo, Toledo, Ohio
- Lead and coordinate Department of Anesthesiology research efforts and provide oversight to Federal, State, and Private Industry-funded R&D.Ìý
- Engage faculty, residents, and medical students in various research activities originating from the Department of Anesthesiology.Ìý
- Support continued growth of research collaboration between ÃÛÌÒ´«Ã½â€™s Main Campus and ÃÛÌÒ´«Ã½â€™s Health Science Campus.Ìý
March 2017-PresentÌýPrestige Faculty Appointment,ÌýDepartment of Electrical Engineering and Computer Science, University of Toledo, Toledo, Ohio
- Serve as graduate advisor and support educational and research objectives of the Department of Electrical Engineering and Computer Science.
August 2016-PresentÌýSimulation Fellow in Residence,ÌýUniversity of Toledo Lloyd A. Jacobs
Interdisciplinary Immersive Simulation Center (IISC), Toledo, Ohio
- Work with IISC staff and ÃÛÌÒ´«Ã½ of Medicine and Life Sciences Faculty to growÌýinnovative programs of research through pursuit of research funding from government and private foundations.
- Work with IISC staff and ÃÛÌÒ´«Ã½ of Medicine and Life Science Faculty to integrate simulation and utilization of IISC into curriculum for advancement of education andÌýlearning.
- Collaborate with other academic institutions and industry on independent researchÌýprograms based out of the University ofÌýToledo.
- Lead efforts to develop and establish a novel learning management system (PREPARE) to predict knowledge/skill acquisition and recommend future training for learners at IISC.Ìý
- Improve and advance assessment of learners and healthcare professionals participating in simulation-based medical education and educational activities at IISC.Ìý
August 2016-PresentÌýAssistant Professor,ÌýDepartments of Anesthesiology and Bioengineering, The University of Toledo ÃÛÌÒ´«Ã½ of Medicine and Life Sciences, University of Toledo ÃÛÌÒ´«Ã½ of Engineering, Toledo, Ohio
- JointÌýfacultyÌýappointmentsÌýinÌýtheÌýDepartmentÌýofÌýAnesthesiologyÌýwithinÌýUniversityÌýofÌýToledo’s ÃÛÌÒ´«Ã½ of Medicine and Life Sciences and within the Department of Bioengineering with the University of Toledo's ÃÛÌÒ´«Ã½ ofÌýEngineering.
- Lead independent research programs surrounding the development of intelligent clinical decision support systems, mathematical models, and algorithms for use in augmenting performance of healthcare providers in the hospital\critical care setting, and within outpatient\ambulatoryÌýsettings.
- Lead and grow research programs within medical simulation, and medical training/education atÌýUT'sInterprofessionalÌýImmersiveÌýSimulationÌýCenter.ÌýTheÌýgoalÌýofÌýthisÌýresearchÌýwillÌýsurround optimization of healthcare provider performance via simulation-based training and development of new simulation technologies andÌýinterventions.
- Stimulate and grow collaborative multidisciplinary research amongst The University of Toledo’s ÃÛÌÒ´«Ã½ of Medicine and Life Sciences and Engineering.
- Advise and work closely with Anesthesiology faculty and residents to support publicationÌýand disseminationÌýofresearchÌýwithinÌýpeerÌýreviewedÌýjournalsÌýandÌýnational/internationalÌýconferences.
- Teach courses and support education of Anesthesiology residents on research methodologies, statistics, and ethics.
- Teach undergraduate courses in Bioengineering Department with Biosignal Processing (BIOE4120) being primary course responsibleÌýfor.Ìý
- Advise and support Bioengineering students (undergraduate and graduate) in Senior Design and Thesis\Doctoral ResearchÌýprograms.
October 2013-PresentÌýAdjunct Assistant Professor, Department of Anesthesiology, The Ohio State University ÃÛÌÒ´«Ã½ of Medicine and The Ohio State University Wexner Medical Center, Columbus, Ohio
- SupportÌýandÌýpursueÌýfundingÌýforÌýmultipleÌýclinicalÌýresearchÌýprojectsÌýsurroundingÌýdecisionÌýsupport system development and optimization of healthcare staff training, quality of care, and patient safety.
- °Â´Ç°ù°ìÌý³Ù´ÇÌý²µ°ù´Ç·ÉÌý³¦´Ç±ô±ô²¹²ú´Ç°ù²¹³Ù¾±±¹±ðÌý°ù±ð²õ±ð²¹°ù³¦³óÌý±è°ù´Ç²µ°ù²¹³¾²õÌý·É¾±³Ù³óÌý¾±²Ô»å³Ü²õ³Ù°ù²âÌý²¹²Ô»åÌý¾±²Ô³Ù±ð°ù²Ô²¹³Ù¾±´Ç²Ô²¹±ôÌý³ó±ð²¹±ô³Ù³ó³¦²¹°ù±ðÌý¾±²Ô²õ³Ù¾±³Ù³Ü³Ù¾±´Ç²Ô²õ.
- Support publication and dissemination of research within peer reviewed journals and conferences.
2012-±Ê°ù±ð²õ±ð²Ô³ÙÌýCo-Founder and Director, Analytic Diabetic Systems, Inc., Dayton, Ohio
- One of three members of Analytic Diabetic Systems, Inc. Board ofÌýDirectors
- Lead research and development of company technologies, some of which stem from doctoral
research completed at The University of Toledo with collaboration between the ÃÛÌÒ´«Ã½
of Engineering’s Department of Bioengineering and The University of Toledo Medical
Center’s Departments of Anesthesiology and Surgery.
- InitialÌýproductÌý(GlyCU)ÌýwillÌýserveÌýas aÌýcomprehensiveÌýclinicalÌýdecisionÌýsupportÌýsystem for inpatient critical care settings to support optimization of glucose control through real-time prediction of glucose, performance assessment of staff in meeting glycemic control goals, and “what ifâ€� simulation capabilities to allow staff to evaluate impact of therapeutic interventions before committing toÌýthem.
- SupportÌýgenerationÌýofÌýbusinessÌýplan,ÌýpursueÌýadditionalÌýfundingÌýopportunitiesÌýincludingÌýventure capitalÌýinvestment.
- Coordinate regularly with the software engineering team—at Aptima, Analytic Diabetic Systems (ADS), and elsewhere—responsible for the development, quality control, and maintenance of the current and future ADSproduct(s);
- Collaborate actively with third party advisors, to find a successful path through regulatory requirements and identify specific market needs for ADSÌýproduct(s).
December 2011-July 2016ÌýSenior Biomedical Engineer, Aptima Inc., Dayton, Ohio
- Principal Investigator, Program Manager, and Task Lead for a number of federally funded research and development programs for the United States Air Force, United States Navy, United States Army Institute of Surgical Research, and Telemedicine Advanced Technology and ResearchÌýCenter.
- Lead Aptima, Inc. business development and research and development for the healthcare domain with focus on development of intelligent clinical decision support systems,Ìýand technologies to improve healthcare training andÌýeducation.
- Cognitive and affective state modeling and assessment on a rapid timescale through
signal processing/modeling of multimodal data such as neural, physiological, and behavioralÌýdata.
- Lead efforts under U.S. Air Force and Navy Programs to develop comprehensive physiological signal processing software suite, and machine learning-based functional state modeling engine of Aptima’s Functional State EstimationÌýEngine.
- Pursuit of research funding through submission of proposals and grant applications
to DOD, NIH, and other governmentÌýagencies.
- Contributed to acquisition of over $8M in research and development funding of government research and developmentÌýprograms.
- Top Secret securityÌýclearance.
2010-2011ÌýSenior Biomedical Researcher, NeuroWave Systems Inc., Cleveland Heights, Ohio
- Coordinated R&D programs to accomplish established statements of work, schedules, and budgets.
- Conceived, developed and pursued new research concepts and brain monitoring technologies, novel algorithms and techniques with applications in seizure detection, critical care patient monitoring, depth of anesthesia monitoring, psychiatry, and sleepÌýmedicine.
- Analyzed data acquired from human subjects to establish the clinical utility of novelÌýmethods. Coordinated clinicalÌýstudies.
- Pursued research funding through submission of grant applications to NIH, DOD, and other government agencies.
Peer Reviewed Journal Publications (h-Index =10)
- Pappada, SM,ÌýOwais, M. H., Cameron, B. D., Jaume, J. C., Mavarez-Martinez, A., Tripathi, R. S., & Papadimos, T. J. (2020). An Artificial Neural Network-based Predictive Model to Support Optimization of Inpatient Glycemic Control.ÌýDiabetes Technology & Therapeutics,Ìý22(5), 383-394.
- Dolin HH, Dziuba M,ÌýPappada SM, Papadimos TJ.ÌýPresumed antiphospholipidÌýsyndrome and thrombotic thrombocytopenic purpura: An infrequent association. Clinical Case Reports.Ìý2019.
- Regmi HK, Nesamony J,ÌýPappada SM, Papadimos TJ, Devabhaktuni V. A system forÌýreal- time syringe classification and volume measurement using a combination of image processing and artificial neural networks.ÌýJournal of Pharmaceutical InnovationÌýhttps://doi.org/10.1007/s12247-018-9358-5.
- Pappada SM, Woodling K, Owais MH, Zink EM, Dahbour L, Tripathi RS, Khuder SA, Papadimos TJ,ÌýContinuous glucose monitoring identifies relationship between optimized glycemic control and post-discharge acute care facility needs,ÌýBMC Res Notes, 2018, 11:533
- Rudoni MA, Yost CN, Winegardner JE, Brown AR,ÌýPappada SM,ÌýPapadimosÌýTJ.ÌýUtilization of Vancomycin Loading Doses in Patients with Renal Impairment. The Internet Journal of Infectious Diseases. 2018 Volume 16 Number 1.
- Chen Y,ÌýPappada SM, Papadimos TJ. Simulation-based medical education andÌýeffective staffing ratios.ÌýInternational Journal of Academic MedicineÌý2018;4:303-305
- VanderbiltÌýA.ÌýA.,Ìý±Ê²¹±è±è²¹»å²¹Ìý³§²Ñ,ÌýStein,ÌýH.,ÌýHarper,ÌýD.,Ìý&ÌýPapadimos,ÌýT.ÌýJ.Ìý(2017).ÌýIncreasing patient safety with neonates via handoff communication during delivery: a call for interprofessional health care team training across GME and CME.ÌýAdvances in medical education and practice, 8,Ìý365.
- Pappada SM, Papadimos TJ. Clinical decision support systems: From medical simulation to clinical practice.ÌýInt J Acad MedÌý2017;3:78-83
- Papadimos TJ, Sipes AC, Lyaker MR, Murphy CV, Tsavoussis A,ÌýPappada SM. The importance of emotional intelligence to leadership in an Academic Health Center. International Journal of Academic Medicine. 2016;Ìý2(1):57.
- Pappada SM, Papadimos TJ, Lipps, JA, Feeney JJ, Durkee KT, GalsterÌýSM,Ìýet. al.Ìý(2016). Establishing an instrumented training environment for simulation-based training of health care providers: An initial proof of concept.ÌýInternational Journal of Academic Medicine,Ìý2(1), 32.
- Stawicki SP, Kalra S, Jones C, Justiniano CF, Papadimos TJ, Galwankar SC,ÌýPappada SM, Feeney J, Evans DC,ÌýComorbidity Polypharmacy Score and Its Clinical Utility: A Pragmatic Practitioner's Perspective. Review Article, Journal of Emergencies, Trauma, and Shock, 2015.
Book Chapters
- PapadimosÌýTJ,Ìý±Ê²¹±è±è²¹»å²¹Ìý³§²Ñ,ÌýLyakerÌýMR,ÌýPapadimosÌýJS,ÌýCasabiancaÌýAB.ÌýHealthÌýSecurityÌýand theÌýrefugeeÌýcrisisÌýinGreece:ÌýtheÌýrefugeeÌýperspective.ÌýIn:ÌýInternationalÌýHealthÌýSecurity.ÌýLondon: InTech Publishing;Ìý2020
- Durkee, K., Hiriyanna, A.,ÌýPappada, SM., Feeney, J. and Galster, S., Multi-model Approach to Human Functional State Estimation. InÌýInternational Conference on Augmented CognitionÌý(pp. 188-197). Springer International Publishing, JulyÌý2016
- DurkeeÌýK,Ìý±Ê²¹±è±è²¹»å²¹Ìý³§²Ñ,ÌýOrtizÌýA,ÌýFeeneyÌýJ,ÌýGalsterÌýS,ÌýUsingÌýContextÌýtoÌýOptimizeÌýaÌýFunctional State Estimation Engine in Unmanned Aircraft System Operations.Ìýin FoundationsÌýofÌýAugmented Cognition, D.D. Schmorrow and C.M. Fidopiastis (Eds.): Proceedings of HCI International 2015, Springer-Verlag Berlin Heidelberg, pp. 24-35
Manuscripts submitted for publication or completed
Pappada SM, Sathelly B, Javaid AY, Owais MH, Kostopanagiotou G, Papadimos TJ. An artificial neural network approach to predict the likelihood of liver failure.Ìý
Pappada SM, Papadimos TJ, Mack S, Beachy P, Khuder S, Casabianca A. Operating room (OR) delays: Identifying Contributing Factors Within the Electronic Health Record and Future Implications Towards Optimization OR Efficiency.Ìý
Solorio FA, Yermal S, Gower J,ÌýPappada SM, Papadimos TJ. The role of situational awareness in the management of erroneous epinephrine administration in a patient with hypertrophicÌýobstructive cardiomyopathy. In process of submission:ÌýJournal of Cardiothoracic and Vascular Anesthesia
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- Pappada SM,ÌýCameron BD, Owais MH, Aladawi M,ÌýA Fused ArtificialÌýIntelligence-Based Platform to Optimize Skill Training and Performance Via Multimodal Physiological, Lifestyle, and Behavioral Assessments,ÌýProvisional Patent Application, January 2020,Ìý62/961,891
- Durkee K,ÌýPappada SM, et al.ÌýSystems and methods to determine user state,ÌýU.S. Patent Application, Ser. NoÌý14/772827, issued in AprilÌý2019.
- Pappada SM, Feeney J, DePriest N,ÌýSystem and Methods to Support Medical Therapy Decisions,ÌýPatent Application Submitted, JulyÌý2015.
- Cameron BD andÌýPappada SMÌýMultifunctional neural network system and use thereof for glycemic forecastingÌýU.S. Patent No. 8,762,306ÌýB2
- Cameron BD andÌýPappada SMÌýNeural Network System and Uses ThereofÌýU.S. Patent No. 9,076,107 B2
- ±Ê²¹±è±è²¹»å²¹Ìý³§²ÑÌýSystemsÌýandÌýmethodsÌýforÌýclinicalÌýdecisionÌýmonitoringÌýandÌýmodeling,ÌýU.S.ÌýPatent Application, Ser. NoÌý61/709,499ÌýOctoberÌý2012
Conference Proceedings and Presentations
- Pappada SM,ÌýOwais MH, Alvarado C, Schneiderman J, Brunner D, Casabianca A, Hofmann J, Papadimos TJ.ÌýNovel Learning Management System to Revolutionize Generation, Administration,ÌýandÌýAssessmentÌýofSimulation-BasedÌýMedicalÌýEducation,ÌýInternationalÌý(IARS) Anesthesia Research Society Annual Meeting in Montreal, Canada, May 2019,Ìý2019 Kosaka Best of Meeting Finalist - Basic ScienceÌýResearch
- Pappada SM,ÌýNam C, Merchant S, Rygielski S, Casabianca A, Khuder S, PapadimosÌýTJ.ÌýReducing Operating Room Delays: One Institution’s Search for the Holy Grail, International Anesthesia Research Society (IARS) Annual Meeting in Montreal, Canada, MayÌý2019
- Solorio F,ÌýPappada SM, Papadimos TJ, Yermal S,ÌýManagement of Erroneous Epinephrine Administration in a Patient with Hypertrophic Obstructive Cardiomyopathy,ÌýInternational Anesthesia Research Society Annual Meeting in Montreal, Canada, MayÌý2019
- Pappada SM,ÌýOwais MH, Alvarado C, Schneiderman J, Brunner D, Casabianca A, Hofmann J, Papadimos TJ.ÌýNovel Learning Management System to Revolutionize Generation, Administration, and Assessment of Simulation-Based Medical Education, Society of Critical Care Anesthesiologists (SOCCA) Annual Meeting in Montreal, Canada, MayÌý2019
- Pappada SM,ÌýNam C, Merchant S, Rygielski S, Casabianca A, Khuder S, PapadimosÌýTJ.ÌýReducing Operating Room Delays: One Institution’s Search for the Holy Grail, Society of Critical Care Anesthesiologists (SOCCA) Annual Meeting in Montreal, Canada, MayÌý2019
- Pappada SM,ÌýOwais MH, Alvarado C, Schneiderman J, Brunner D, Casabianca A, Hofmann J, Papadimos TJ.ÌýNovel Learning Management System to Revolutionize Generation, Administration, and Assessment of Simulation-Based Medical Education, Association of University Anesthesiologists (AUA) Annual Meeting in Montreal, Canada, MayÌý2019
- Pappada SM,ÌýNam C, Merchant S, Rygielski S, Casabianca A, Khuder S, PapadimosÌýTJ.ÌýReducingÌýOperatingRoomÌýDelays:ÌýOneÌýInstitution’sÌýSearchÌýforÌýtheÌýHolyÌýGrail,ÌýAssociationÌýof University Anesthesiologists (AUA) Annual Meeting in Montreal, Canada, MayÌý2019
- Pappada SM,ÌýOwais MH, Alvarado C, Schneiderman J, Brunner D, Casabianca A, Hofmann J, Papadimos TJÌýA Novel Learning Management System for Simulation-Based Medical Education,Ìý2019 American ÃÛÌÒ´«Ã½ of Surgeons Surgical Simulation Summit, Chicago, IL, MarchÌý2019.
- Pappada SM, et. al,ÌýDevelopment of a Novel Machine Learning-based Sepsis Risk Index for useÌýinÌýanÌýIntelligentAntibioticÌýDecisionÌýSupportÌýSystemÌýforÌýtheÌýHospital/CriticalÌýCareÌýSetting, Panel Presentation for Breakout Session in Clinical Decision Support, Robotics, and AutonomousÌýSystems,Ìý2018ÌýMilitaryÌýHealthcareÌýSystemResearchÌýSymposiumÌý(AugustÌý2018), Orlando,ÌýFL.
- Dahbour L, Zink E, Khuder S, Trapathi R, Papadimos TJ,ÌýPappada SM,ÌýDegree of glycemic control as a predictor of post cardiac ICU discharge facility needs, ResearchÌýSnapshotÌýPresentation, Society of Critical Care Medicine 47thÌýCritical Care Congress, San Antonio, TX (February 2018).
- Zink E, Dahbour L, Papadimos TJ, Woodling K, Tripathi R, Owais MH, Khuder S,ÌýPappada SMÌýA continuous glucose monitoring study to identify a relationship between optimization of glycemic control in a cardiovascular ICU on post-discharge long-term acute care facility needs,ÌýPoster presented at Ohio Society of Anesthesiologists Annual Conference, September 2017
- Pappada SM, Feeney J, Salinas J, Papadimos, TJ,ÌýA Novel Measurement Technology to Improve Critical Care Provider Performance and Skill Acquisition,ÌýInternational Anesthesia Research Society Annual Meeting and International Science Symposium, Washington, DC (May 2017)
- Pappada SM, Feeney J, Moffatt-Bruce S, Winfield S, Papadimos, TJ,ÌýA Novel Measurement Technology to Improve Critical Care Provider Performance and Skill Acquisition,ÌýSociety of Critical Care Medicine 46th Critical Care Congress Honolulu, HI (JanuaryÌý2017)
- Pappada SM, Feeney J, Papadimos, TJ, Salinas J, Mann-Salinas EA,ÌýInvestigating a novel sepsisÌýriskÌýindexÌýforuseÌýinÌýanÌýintelligentÌýantibioticÌýdecisionÌýsupportÌýsystem,ÌýSocietyÌýofÌýCritical Care Medicine 45th Critical Care Congress Orlando, FL (FebruaryÌý2016)
- Castellon-Larios K,ÌýPappada SM, Papadimos TJ.ÌýA novel decision support system for optimization of glycemic control in the critical care setting,ÌýSociety of Critical Care Medicine 45th Critical Care Congress Orlando, FL (FebruaryÌý2016)
- Nasser S,ÌýPappada SM, Lipps J,ÌýFeeney J, WinfieldÌýS,ÌýPfeilÌýS,ÌýCastellon-LariosÌýKC,ÌýMoffatt-BruceÌýS,ÌýPapadimos TJ,ÌýOptimizing Healthcare Staff Training and Performance Using a Novel Measurement System (ACLAMATE) to Support Automated Cognitive Load Assessment,ÌýMidwest Anesthesia Residents Conference, Cleveland, Ohio, (MayÌý2015).
- DurkeeÌýK,Ìý±Ê²¹±è±è²¹»å²¹Ìý³§²Ñ,ÌýOrtizÌýA,ÌýFeeneyÌýJ,ÌýGalsterÌýS,ÌýUsingÌýContextÌýtoÌýOptimizeÌýaÌýFunctional State Estimation Engine in Unmanned Aircraft System Operations. Panel Presenter in Augmented Cognition Section of HCI International, Los Angeles, CA (AugustÌý2015).
- Durkee K,ÌýPappada SM, Ortiz A, Feeney J, Galster S,ÌýSystem Decision Framework for Augmenting Human Performance Using Real-Time Workload Classifiers. IEEE International Multi-Disciplinary Conference on Cognitive Methods in Situation Awareness and Decision Support (CogSIMA), Orlando, FL (MarchÌý2015).
Invited Presentations and Lectures
- Pappada SM,ÌýAdvancing Healthcare Education and Training with a Novel Learning Management System equipped driven by artificial intelligence and analytics, Invited Lecture for Owens Community ÃÛÌÒ´«Ã½ STEM Friday, ÃÛÌÒ´«Ã½-wide event.ÌýPostponed due to COVID-19
- Pappada SM, Panelist, Healthcare R&D in Ohio, The One Ohio Series: Defense Summit "Ohio's DriveÌýfor Defense" Development-Research-Innovation-Vision-Entrepreneurship, May 30-31 2018, Huron, Ohio.
- Pappada SM,ÌýInvited Presentation,ÌýThe Future of Medicine in the era of Big Data: The role of engineers and data scientists in supporting the optimization of healthcare delivery and operations, Ohio Society of Anesthesiologists Annual Meeting, SeptemberÌý2017
- Pappada SM,ÌýPanelist in Simulation and Technology in International Medicine Section,ÌýThe role of current and future technologies in improving the evaluation and assessment of learner skill acquisition and expertise during simulation-based medical education,ÌýConference of the American ÃÛÌÒ´«Ã½ of Academic International Medicine, JulyÌý2017.
- Pappada SM, Panelist, Biomedical Engineering Careers III, Biomedical Engineering Society Midwest Regional Conference, November 2015, University of Akron, Akron,ÌýOhio
- Pappada SM,ÌýDevelopment of a system supporting Automated Cognitive Load Assessment for Medical Staff Training and Evaluation (ACLAMATE), Systems of Care for Complex Patients Research Task Area Seminar at US Army Institute of Surgical Research, SeptemberÌý2015
- ±Ê²¹±è±è²¹»å²¹Ìý³§²Ñ,ÌýDevelopmentÌýofÌýanÌýIntelligentÌýandÌýDirectedÌýAntibioticÌýDecisionÌýSupportÌýSystem with Sepsis Risk Predictive Algorithm,ÌýPanel Presenter, Medical Decision Support,ÌýSmart Monitoring Military Health 2015, , Fort Lauderdale, FL (AugustÌý2015).
- Papadimos TJ,ÌýPappada SM,ÌýImproving healthcare delivery via intelligent decision support systems and healthcare training technologies, Lecture given to faculty and staff at Attikon Hospital (University of Athens affiliate) in Athens, Greece, DecemberÌý2014.
Professional Memberships Review and Advisory Panels
- 2019-presentÌýProfessional Member, Society for Simulation in Healthcare
- 2016-2018ÌýProfessional Member, Society of Critical Care Medicine
- 2011ÌýVoting Member, Institutional Review Board for NeuroWave Systems, Inc., Cleveland Medical Devices, Inc., and Orbital Research, Cleveland, Ohio
Educational Activities
Courses/Lecture Modules
Research Study Design and a Brief Introduction to Statistical Methods and Approaches,ÌýCourse/Lecture Module provided to Anesthesiology Residents.
Academic Research, Scientific Writing, and Grantsmanship,ÌýCourse/Lecture Module provided to Anesthesiology Residents.
Biomedical Electronics (BIOE3300), Undergraduate course teaching concepts of measurement circuits, signal analysis, and computer design in biological systems and medicine. Electronic devices, digital devices, amplifier design, and instrumentation safety.
Biosignal Processing (BIOE4120), Undergraduate course teaching concepts of digital signal processingÌýtechniquesÌýandmodelingÌýinvolvingÌýbiomedicalÌýsignalsÌýsuchÌýasÌýECG,ÌýEEG,ÌýEMG,ÌýandÌýother healthcareÌýdatasets/dataÌýsources.ÌýThisÌýcourseinvolvesÌýsignificantÌýuseÌýofÌýMATLABÌýtoÌýapplyÌýknowledge learned inÌýclass.
Various Graduate Level Independent Study Sections,ÌýI have taught various independent study level courses for graduate students in the ÃÛÌÒ´«Ã½ of Engineering. During these courses I have engaged them in real-world research activities to align them with their thesis or doctoral dissertation research. These courses include hands on experience with advanced applications including machine learning, software development, data analysis and processing, medical simulation, etc. Ìý
Introduction to Engineering Lecture,ÌýProvide a lecture module as part of an Introduction to EngineeringÌýcourseÌýofferedbyÌýtheÌýUniversityÌýofÌýToledo’sÌýÃÛÌÒ´«Ã½ÌýofÌýEngineeringÌýforÌýlocalÌýhighÌýschool students enrolled at St. Francis/St Ursula. I provided a lecture on behalf of the Bioengineering DepartmentÌýonÌýtheÌýtopicÌýofÌýArtificialÌýIntelligenceÌýand/orÌýBiosignalprocessing/modelingÌýinÌýBiomedical Engineering andÌýMedicine.
Other Educational Activities
- Supporting development of curriculum and assessment/evaluation of learners for multiple academic departments on ÃÛÌÒ´«Ã½ ÃÛÌÒ´«Ã½ of Medicine and Life Sciences Campus. This includes Department of Anesthesiology, Department of Emergency Medicine, and various clerkship programs.
- Work with faculty and staff at Interprofessional Immersive Simulation Center to continue to advance curriculum and assessment/evaluation activities that are parallel with development and advancement of a technology developed at ÃÛÌÒ´«Ã½: PREPARE Learning Management System.
Chair of Thesis/Doctoral Research Committees
- Masters Student:ÌýMohammad Hamza Owais,ÌýDevelopment of Intelligent Systems to Optimize Training and Real-world Performance Amongst Health Care Professionals
- Masters Student in Electrical Engineering and Computer Science:ÌýBalaji Sathelly,ÌýAn Artificial Neural Network Approach to Predict Liver Failure Likelihood,ÌýCo-Chairs:ÌýAhmad Javaid, Ph.D. andÌýScott M. Pappada, PhD.
Thesis/Doctoral Research Committee Participation
- Masters Student in Electrical Engineering and Computer Science:ÌýYuning Zhang, Machine learning algorithms to detect artifacts withinÌýelectrodermal activity (EDA) data collected from wearable sensors, Advisor: Kevin Xu, Ph.D.
- Doctoral Student in Biomedical Engineering:ÌýNiraj Gupta, Development of a Wearable Noninvasive Biomarker Sensing Platform, Advisor: Brent Cameron, Ph.D.Doctoral Student in Electrical Engineering and Computer Science: Zhipeng Hunag,Probabilistic Generative Models for Dynamic Social Networks
- Doctoral Student in Electrical Engineering and Computer Science:ÌýPraveen Demarchala, Simulation Studies and Benchmarking of Voice Synthetic Assistant based Human-Machine Teams (HMT), Advisor: Vijaya Devabhaktuni, Ph.D.
- Doctoral Student in Electrical Engineering and Computer Science:ÌýRuthwik Junuthula,Continuous time analysis of social networks, Advisor: Kevin Xu, Ph.D.
- Doctoral Student in Bioengineering:ÌýYagya Ojha, Development of biosensors for applications in saliva – A noninvasive monitoring tool for point-of-care diagnostics, Advisor: Brent Cameron, Ph.D.Ìý
Student Advisement
Current (Primary Advisor)
PhD Student, Biomedical Engineering:ÌýSolomon Teye-Lartey: Dissertation: TBD
Past (Completed as Primary Advisor)
Masters Student, Electrical Engineering and Computer Science:ÌýMohammad Hamza Owais,ÌýThesis:ÌýDevelopment of Intelligent Systems to Optimize Training and Real-world Performance
Amongst Health Care Professionals
Masters Student, Electrical Engineering and Computer Science:ÌýBalaji Sathelly,ÌýThesis:ÌýAn Artificial Neural Network Approach to Predict Liver Failure Likelihood
Co-Advisor with Ahamad Javaid, PhD for MS student Electrical Engineering and Computer Science: Venkatamayukha Cheekati
2017—presentÌýAdvising and providing mentorship to multiple medical students (Aaran Varatharajan, Christopher Nam, Layth Dahbour, Evan Zink, Sean Mack, Peyton Beachy, Talha Saif) from UT’s ÃÛÌÒ´«Ã½ of Medicine and Life Sciences to involve them on active/ongoing research projects.
Service
University of Toledo
- Ongoing—ÌýMember Graduate Admission Committee, Department of Bioengineering, ÃÛÌÒ´«Ã½ of Engineering
- 2020 — Member, Faculty Search Committee,ÌýAssociate Dean and Medical Director of IISC Search Committee
- 2019 — Member, Faculty Search Committee,ÌýDepartment of Bioengineering University of Toledo ÃÛÌÒ´«Ã½ of Engineering
- 2019 — Member, Faculty Search Committee,ÌýDepartment of Bioengineering University of Toledo ÃÛÌÒ´«Ã½ of Engineering
- 2017-2018— Member University of Toledo,ÌýConflict of Interest Committee
- ÌýÌý2017-2018 —Member,ÌýUniversity of Toledo Faculty Senate Academic Regulations Committee
Community
- Mentor and Advisor for Internship for Toledo Technology Academy/Toledo Public Schools (Spring 2017):ÌýProvide advisement and mentorship to two students: Sam Lehman and Tyler Wright, from the Toledo Technology Academy (Toledo Public Schools). I involved them on work and activities at the University of Toledo's Lloyd A. Jacob's Interprofessional Immersive Simulation Center.
- Local High School ÃÛÌÒ´«Ã½ Experience (2018):ÌýÌýProvide introduction to engineeringÌýlectures on behalf of the Bioengineering Department on the topic of Artificial Intelligence and/or Biosignal processing/modeling in Biomedical Engineering and Medicine.
- Simulation and Education Outreach:ÌýWork with faculty and staff at University of Toledo Interprofessional Immersive Simulation Center to provide simulation and education outreachÌýÌýactivities to the Toledo, Ohio area and across NorthwestÌýÌýÌýOhio. This includes use of the mobile simulation platform (ambulance converted for simulation and education).ÌýÌýPlanned activities include community health clinics/centers, and exposing high schools/middle school students to simulation and healthcare careers.
Journal Peer Review and Appointments
2020.ÌýÌýÌýDiabetes Care
2019.ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýComputational and Mathematical Methods in Medicine
2018ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýComputational Biology andÌýChemistry
2017ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýDiabetes Spectrum
2016ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýMethods of Information inÌýMedicine
2016ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýPLOSÌýOne
2016ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýArtificial Intelligence in Medicine
2015-PresentÌýÌýÌýÌýÌýSection Editor, Theoretical Biology and Modeling, International Journal of AcademicMedicine
2014ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýJournal of CriticalÌýCare
2012ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýNeuralÌýNetworks
2010-2012ÌýÌýÌýÌýÌýÌýÌýÌýÌýDiabetes Technology andÌýTherapeutics
2010ÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýÌýArchives of PublicÌýHealth
Research Activities
Ongoing Research Support
Medicaid Equity Simulation Project MEDTAPP Providers As Allies In Equity And Care (PAEC),ÌýFunding Agency:ÌýOhio Department of Medicaid,ÌýRole:ÌýCo-Investigator,ÌýPerformance Period:ÌýÌýÌý7/1/2020 – 06/30/2021,ÌýTotal Funding:Ìý$244,886
Next Generation Virtual Health Capabilities,ÌýFunding Agency:ÌýUS Army Medical Research and Development Command (USMRDC),ÌýRole:ÌýPrincipal Investigator (ÃÛÌÒ´«Ã½ team via subaward),ÌýPerformance Period:ÌýÌý10/1/2020-9/30/2022,ÌýTotal Funding (via subaward): $30,034 (Award pending)
nxComms: Intelligent Patient Simulation, Funding Agency: US Army Medical Research AcquisitionÌýÌýActivity (USAMRAA),ÌýRole:ÌýPrincipal Investigator (ÃÛÌÒ´«Ã½ team via subaward),ÌýPerformance Period:10/1/2020-9/30/2022,ÌýTotal Funding (via subaward):Ìý$120,778 (Award pending)Ìý
Prior Research Support
Medicaid Equity Simulation Project MEDTAPP Providers As Allies In Equity And Care (PAEC),ÌýFunding Agency:ÌýOhio Department of Medicaid,ÌýRole:ÌýCo-Investigator,ÌýPerformance Period:Ìý11/01/2018 – 06/30/2020,ÌýTotal Funding:Ìý$2.23M
Ohio Opioid Analytics Project– Ohio ÃÛÌÒ´«Ã½s of Medicine Government Resource Center/Ohio DepartmentÌýofHealth,ÌýRole:ÌýCo-Investigator,ÌýProjectÌýLeadÌýDataÌýAnalyst,ÌýPerformance Period: 6/01/2018Ìý–Ìý6/2019,ÌýTotal Funding:$110,000
Intelligent and Direct Antibiotic Decision Support SystemÌý–Defense Health Agency Phase IIÌýSBIRÌý(United States Army Institute of Surgical Research\Defense Health Program Contract W81XWH-15- C-0017).ÌýRole:ÌýPrincipal Investigator,ÌýPerformance Period:Ìý2\2017-9\2019,ÌýTotal Funding (via subaward):Ìý$249,673
TRACR-T Confined Spaces: Tool for Rapid Assessment of Cognitive Readiness in Teams– US Air Force Phase II SBIRÌý(Contract # FA8501-16-C-0020)ÌýRole:ÌýPrincipal Investigator, 2\2017- 9\2019,ÌýTotal Funding (via subaward):Ìý$149,000
Principled Design of an Augmented Reality Trainer for Medics,ÌýPhase I Small Business Technology Transfer (STTR), Defense Health Agency, subaward provided by Aptima, Inc.ÌýRole:ÌýPrincipal InvestigatorÌýPerformance Period: 10/2017-4/2017,ÌýTotal Funding (via subaward):Ìý$44,749
ACLAMATE: Automated Cognitive Load Assessment for Medical Staff Training and Evaluation,ÌýPhase II Small Business Innovation Research (SBIR) via Defense Health Agency via Aptima, Inc.Ìý(Contract, W81XWH-14-C-0021),ÌýRole:ÌýPrincipal InvestigatorÌýPerformance Period:Ìý10/2017-3/2018ÌýÌýÌýÌýTotal Funding (via subaward):Ìý$35,005Ìý
IntelligentÌýandÌýDirectÌýAntibioticÌýDecisionÌýSupportÌýSystemÌý–USÌýArmy/DefenseÌýHealthÌýAgencyÌýSBIR PhaseÌýI/PhaseÌýII(UnitedÌýStatesÌýArmyÌýInstituteÌýofÌýSurgicalÌýResearch\DefenseÌýHealthÌýProgram).ÌýRole: Principal Investigator;ÌýPerformance Period (Phase I):Ìý11/2014-6/2016.ÌýPerformance Period (Phase II):Ìý4\2016-4\2018,ÌýTotal Funding:$1.15M
Warfighter Interface Technologies Advanced Research Programs (WITARP), United States Air Force\Air Force Research Laboratory Broad Agency Announcement,Ìý3/2014-3/2018, Role: Co- Investigator and Technical Development Lead,ÌýTotal Funding: $4.8M
ACLAMATE: Automated Cognitive Load Assessment for Medical Staff Training and EvaluationÌý– SBIR Phase I/Phase IIÌý(Contract, W81XWH-14-C-0021, United States Army Medical ResearchÌýand Material Command/Telemedicine and Advanced Technology Research Center) Role: Program Manager;ÌýPerformance Periods:(Phase I) 12/2013-7/2014, (Phase II) 3/2015-6/2016,ÌýTotal Funding:Ìý$1.15M
Beta Prototype Development of a Comprehensive Web-based Clinical Decision Support System (GlyCU) Supporting Optimization of Glycemic Control in the Hospital/Critical Care SettingÌý–State of Ohio Third Frontier Program Technology Validation and Start Up Fund Award.ÌýRole:ÌýPrincipalÌýInvestigator;ÌýPerformance Period:Ìý11/2013-12/2014.ÌýTotal Funding: $98,366
Human Universal Measurement and Assessment Network (HUMAN) Technology, Demonstration, and ValidationÌý– SBIR Phase IIIÌý(Contract FA8650-11-C-6236, Air Force Research Laboratory) Role: Co-Investigator and Technical Development Lead;ÌýPerformance Period:ÌýÌý12/2011-12\2015.ÌýTotal Funding: $6M
Accelerated Learning in Simulation-based Training (A-LIST)Ìý– SBIR Phase IIÌý(Contract N00014- 11-C-0455, Office of Naval Research) Role: Co-Investigator and Technical Development Lead.ÌýPerformance Period:ÌýÌý12/2011-12/2012.ÌýTotal Funding: $744,618
Field Deployable, Automatic, EEG Seizure Detector and Brain Dysfunction MonitorÌýNational Institutes of Health – U44 NS057969-05, PI (Bibian),ÌýRole:ÌýCo-Investigator,ÌýPerformance Period:Ìý2010-2011.ÌýTotal Funding: $748,584Ìý
Novel Algorithms and Device for Quantification of Wake-Sleep StatesÌýNational Institutes of HealthÌý– R44 HL078442-03, PI (Bibian), Role: Co-Investigator,ÌýPerformance Period:Ìý2010-2011.ÌýTotal Funding: $642,779
NeurobehavioralÌýToolÌýforÌýAssessmentÌýofÌýSleepÌýStructureÌýinÌýPsychiatricÌýDisordersÌýNationalÌýInstitutes of Health – R43 MH086985-02,ÌýRole:ÌýCo-Investigator,ÌýPerformance Period:Ìý2010-2011.ÌýTotal Funding:Ìý$499,770
Translational Research Award, The University of Toledo/University of Toledo Medical Center, Co- PI (Cameron), Co-PI (Papadimos)ÌýRole:ÌýCo-Investigator,ÌýPerformance Period:Ìý2008-2010.ÌýTotal Funding: $100,000
- Doctoral research project, led multiple aspects of the effort