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Human Centered Innovation"For innovation to be successful, the perspective of every human directly and indirectly impacted by the innovation needs to be considered, user experience, business needs as a whole, and the role of technology, etc., with the need to understand starting as early as the ideation phase and move all the way through to full-scale operation and business outcomes. "Human Centered Research & Design"There is no Human Error, just bad Design"; "Making Medical Devices Invisible"-seamless integration into daily life using user research and conceptual/contextual design through the fusion of Human Factors, Usability, Interaction, Aesthetics & Industrial Design; The Future of Medical Devices is Body-worn - My areas of interest include Smart Clothing/Textile as a platform for wearable medical devices, Product/User Interface/Experience Design; Connected and Mobile Medical Instrumentation/Devices; Surgical/Telerobotic control interfaces; Smart & Connected Healthcare; Medical Design and Manufacturing (FDA 510(k), PMA); Internet of Things Technology (Blockchain for Healthcare, remote sensing), Ergonomics; Human Factors Engineering, Laboratory Automation, Assistive Robotics;Human Centered (not Technology centered) SolutionsWith strong background and experience in Hardware and Software development, apply properly scaled implementation driven by the user research data defined design requirements to streamline and reduced churn in development decision-making and timeline. As the Technical Director of the University of Wisconsin Internet of Things (IoT) Lab, I evangelizes and teach the benefits of IoT implementation in all the domains.My Human Factor and Ergonomics background allows me to understand the importance of a properly designed instrumentation/device interface as a requirement to improving efficient usage and reducing errors during user interaction. I am skilled in designing, adapting, and modifying medical and research instrumentation to increase efficiency and to better meet the needs and functions of the experimental protocol. I am currently involved in research studying patients interaction with medical website, and the development of methodologies for objective quantification of surgical procedure.My background in Human centered processes allows me to integrate the concepts of design, research, manufacturing (incorporating quality and risk control techniques), and product lifecycle management to drive high confidence in a sustainable and profitable product/service.
Lytech Consulting
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ConsultantLytech ConsultingLaurel, Md, Us
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Sr. R&D Manager, User Experience DesignBd Mar 2020 - Apr 2024Franklin Lakes, New Jersey, Us"Advancing the World of Health". Driving User Experience Design (UXD) for BD Integrated Diagnostic Solutions (IDS), responsible for planning and managing the Human Factors, User Interaction Design, Visual Brand Language, and Industrial Design development and deployment across new product development and product improvement projects. Lead the UXD team in defining the hardware and software interface for the lab automation and diagnostic instrument systems to provide intuitive and error free interaction to point-of-care, hospital and lab clinicians and administrators. Also collaborate with Marketing and Engineering leaders to drive user-centric design strategies and practices across projects and platforms through user research and empathy for the customer.Total UXD through fusion of User Research, Human Factors, Usability, Interaction, Aesthetics (Visual, Acoustic, Haptic) & Industrial Design -
Manager, Human Factors And Usability EngineeringZoll Medical - Lifevest Feb 2017 - Mar 2020Ma, 01824, UsImplementing human centered agile innovation design and dynamic processes to produce world-class life-saving products/systems with high patient and clinician experience satisfaction for ZOLL-LifeVest. Coordinate Usability Testing (HFE reports) with Regulatory and Quality Assurance for successful FDA submissions. Collaborate with New Product Planning (Marketing) to conduct VOC and User needs assessment. Establish long-term user needs research to develop deep insightful understanding of our product user requirements to ensure exceptional intuitive, error-free user experience by defining design requirement for product development. Develop understanding of the patient-based requirements for long-term continuous body-worn medical devices and its impact on the activities of daily living. "Making the medical device invisible."-seamless integration into daily life using user research and conceptual/contextual design. Creating a team of innovation driven Human Centered Designers and Engineers that will drive the desirable engagement with medical and healthcare products. -
Director, Innovation LabHyper Innovation Apr 2016 - Jan 2017Madison, Wi, UsInnovation-as-a-Service and Emerging Technologies, (http://hyperinnovation.com)Cigna Health Insurance Tailored Accelerator Program: Custom designed agile (3-week) user experience assessment protocol for evaluating Start-up companies’ fit into to Cigna’s ecosystem by leveraging the “Fail Fast” approach.Accelerating Innovation Through Experiential Learning and Collective Wisdom (https://hyperinnovationproject.com)Guides the direction of the hands-on activities and student projects, and establishes the charter for visioning for how the lab can become a world-class center of excellence in innovation. Manages all lab activities including student-related activities and events and flow of corporate Lab projects involving students. Generates new ideas and works closely with the Executive Director and director of entrepreneurial programs to advance innovation programming for HIP. Defines projects and vets team members. Defines scope of projects and defines success metrics. Manages and checks in on team progress and flow of projects from initiation to presentation. Takes part in Lab events and facilitates interchange between corporate interests and student skills and interests. Advises on HIP activities including Challenges and programming for entrepreneurial teams -
Associate DirectorUniversity Of Wisconsin-Madison Occupational Ergonomics And Biomechanics Laboratory Jan 2016 - Jan 2017Madison, Wi, UsThe Occupational Ergonomics and Biomechanics Laboratory at the University of Wisconsin-Madison researches innovative ways for measuring, quantifying and understanding human physiological and biomechanical capacities to do productive, quality, and healthful work. http://ergo.engr.wisc.eduCurrent Research Topics: Biomechanics of muscle and tendon disorders; Primary and secondary prevention of repetitive motion injuries; Ergonomic design of manually operated products, hand tools and equipment; Evaluation of risk for work related musculoskeletal disorders in manual work; Medical surveillance for carpal tunnel syndrome and upper limb disorders; Rehabilitation engineering; Quantification of psychomotor and manual skills; Ergonomics of medical instruments, procedures and simulationsManage the day-to-day operation of the Ergonomic Analysis and Design Consortium and the Occupational Ergonomics and Biomechanics Laboratory. Assist lab faculty and graduate students in developing, assembling, designing, and construction of research methodologies and measurement instrumentation for research. -
Instrumentation Innovator-InstructorUniversity Of Wisconsin-Madison Occupational Ergonomics And Biomechanics Laboratory Jan 2009 - Jan 2017Madison, Wi, UsInstructor for the Undergraduate Design Course. Manage the Bioinstrumentation and Flexible Manufacturing Teaching Labs. Assist faculty and students in developing, assembling, designing, and construction of research methodologies and measurement and research instrumentation. Manages and supervises the RFID, Internet of Things (IoT) and the Occupational Ergonomics and Biomechanics Research Laboratories. Assist Faculty, Teaching Assistant, Graduate student in the use of the labs.Dr. Yen's expertise is in the design of measurement instrumentation and methodologies that are used to test the changes in interface design to provide objective quantifiable data to document interface improvements and the support of marketing claims. Another of his expertise is in the application of HF and design principles to medical devices in combination with IoT (Internet of Things) technologies which integrates sensors and mobile technologies, pervasive connectivity, data analytics and process optimization, and virtual interfaces to allow product development to have faster time to market, connect operational (real-time device) data to transactional (financial, patient, etc.) data, brand protection/security (traceable product), product optimization (real-time prognostics, diagnostics to reduce downtime), which can lead to smaller inventory, shorter lead time, higher product quality and lower production cost in addition to products with excellent user experience.He teaches a course in ‘Medical Design and Manufacturing’ the concepts and techniques necessary to transition a prototype to production as part of the commercialization and regulatory compliance and certification process following standards and guidelines, defined by US FDA and other international organizations such ISO 13485 for quality management, ISO 14971 for Risk management, and AAMI HE75, ISO 62366, IEC 60601 for Human Factors and Medical Devices, and 510(k), PMA for Medical Device Marketing. -
Technical DirectorUniversity Of Wisconsin Internet Of Things Lab Mar 2015 - Jan 2017Madison , Wi, UsTechnical Liaison to industry members. Develop and enhance IoT competencies of its members through collaboration between members and university faculty/researchers and student, engaging in common research interests, proof of concepts development, best practices education, and cutting-edge exploration. Manage Lab facilities and coordinate student engagement and talent development.Instructor for course "Introduction to Internet of Things: Technologies and Applications".Students will engage in hands-on learning to gain a fundamental understanding of IoT, and work in multidisciplinary teams on a project to design innovative uses of IoT. Students will have the opportunity to explore a variety of IoT devices and technologies including Arduino, Raspberry Pi, Oculus Rift, wearables, smart home devices, gesture/voice activated control and IoT platforms. Students will learn basic knowledge for building an IoT system to collect data from sensors, store the data in cloud storage, process and display the data on a dashboard interface, and provide control signal back to activate a device. Using the skills learned, students will work on a team-project of their choice to develop and demonstrate an IoT-enabled application. The course aims to engage a diverse multidisciplinary group of students, non-engineering students. -
ConsultantLytech Consulting Jan 1998 - Jan 2017• Surgical Robotics Interface Design and Testing• Medical Instrumentation/Device Interface Design and Testing• Human Factors/Ergonomics Report for FDA 510(k) and PMA• User interface/Experience design using Virtual and Augmented Reality Technology• Provided expert testimony in product liability litigation.• Tested and evaluated pneumatic power tools.• Numerous ergonomic job analysis of construction drywalling, corded power tool usage, assembly lines, time studies of donning and doffing PPE in meat-processing and semiconductor industries.• Organized and supervised field data collection teams for assembly, meat-processing and semiconductor plants.• Organized and supervised teams of analysts for large scaled ergonomics studies.• Tested large off-road construction vehicle steering system for reducing operator stress and fatigue.• Tested and evaluated portable electronics equipment for possible injury causation.• Tested and evaluated portable electronics equipment for universal assessibility (Disabled and Aging Population).• Developed and programmed commercially available analysis software, MVTA (Multimedia Video Task Analysis) which has been purchased and used on several projects by Exponent, NCR, NIOSH and others.• Taught proper methods and techniques for measurement of power hand tool vibration characteristics as defined by ANSI S3.34-1986.• Developed and programmed commercially available software for combustion engine sound level analysis utilizing spectral analysis.• Designed and constructed a force measuring bicycle pedal for used in foot force analysis and rehabilitation of Stroke patients.
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Assistant ScientistBiomedical Engineeering Department, Univ. Of Wisconsin-Madison Jan 1999 - Dec 2008Manage the day-to-day operation of the Ergonomic Analysis and Design Consortium and the Occupational Ergonomics and Biomechanics Laboratory. Continue the development and improvement to MVTA (Multimedia Video Task Analysis) the video-based data acquisition and analysis system for the collection/analysis of biomechanical data for repetitive motion injury studies. Design and assisted in human factors and ergonomics field/laboratory research projects for jobs in industry.
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Assistant ScientistTrace Research And Development Center, Univ. Of Wisconsin-Madison Jan 2002 - Oct 2008Lead on several projects at the Center, including the Telecommunications Access Rehabiliation Engineering Research Center (RERC), the Technology and Aging RERC, and the Universal Design / Disability Access Program for the National Computational Science Alliance for developing multiple modality interfaces in devices and web. Design and supervised Usability Testing Lab for many devices to improve interaction with people with disabilities and the aging population.
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Instrumentation Innovator-ResearcherIndustrial Engineering Department, University Of Wisconsin-Madison Mar 1999 - Dec 2002Madison, Wi, UsAssist faculty and graduate students in developing, assembling, designing, and construction of research methodologies and measurement instrumentation for research. Manage, maintain, and update the department computer/network infrastructure. Supervise subordinates. -
Research AssociateErgonomic Analysis And Design Consortium, University Of Wisconsin-Madison May 1997 - Dec 1998Madison, Wi, UsDevelop, and commercialize a video-based data acquisition and analysis system for the collection/analysis of biomechanical data for repetitive motion injury studies. Programmed software for commercial release. Design and assisted in human factors and ergonomics field research for consortium members. Installed a Linux-based World Wide Web server and, design and developed the web site for the consortium. Managed the day-to-day operation and personnel for the consortium. Assisted graduate students with their research project and equipment development. -
LecturerErgonomic Analysis And Design Consortium, University Of Wisconsin-Madison Jun 1997 - Aug 1997Madison, Wi, UsDeveloped and taught a course on Ergonomic Methods for properly conducting human factors experiments and application of the results to industrial settings. -
Research AssistantErgonomic Analysis And Design Consortium, University Of Wisconsin-Madison Jan 1992 - May 1997Madison, Wi, UsDesigned, developed, and field-tested a video-based data acquisition system for the collection of biomechanical data for repetitive motion injury studies. -
Research AssistantWisconsin Center For Space Automation And Robotics, University Of Wisconsin-Madison Jan 1986 - Dec 1988Madison, Wi, UsDesigned and tested human operator control/display interfaces for telerobotic master/slave control systems. -
Engineering Intern (Summers)Power And Energy International Jan 1986 - Dec 1988Assisted in the design, development and testing of a PC-based high-speed data acquisition system for engine research. Designed and Programmed commercially released software for engine sound level analysis.
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Computer Aid IiComputer Science Research Lab, Northwestern University Jan 1986 - Jun 1987Evanston, Il, UsResponsible for maintenance, modification, and upgrade of UNIX based VAX mainframe user account program.
Thomas Y. Yen Skills
Thomas Y. Yen Education Details
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University Of Wisconsin-MadisonIndustrial Engineering - Human Factors/Ergonomics -
Northwestern UniversityBiomedical/Medical Engineering
Frequently Asked Questions about Thomas Y. Yen
What company does Thomas Y. Yen work for?
Thomas Y. Yen works for Lytech Consulting
What is Thomas Y. Yen's role at the current company?
Thomas Y. Yen's current role is Consultant.
What is Thomas Y. Yen's email address?
Thomas Y. Yen's email address is th****@****isc.edu
What is Thomas Y. Yen's direct phone number?
Thomas Y. Yen's direct phone number is +160826*****
What schools did Thomas Y. Yen attend?
Thomas Y. Yen attended University Of Wisconsin-Madison, Northwestern University.
What skills is Thomas Y. Yen known for?
Thomas Y. Yen has skills like Biomedical Engineering, Medical Devices, R&d, Biomechanics, Human Factors Engineering, Ergonomics, Matlab, Minitab, Cell Culture, Manufacturing, Research, Product Development.
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