Haddas
Advisory Board @Esurgi, Inc
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WORK HISTORY
Advisory Board @Esurgi, Inc
Provide strategic clinical and scientific leadership in the development of data-driven, biomechanical solutions targeting musculoskeletal conditions, with a focus on low back pain, fall prevention, and mobility optimization.Advise on the design, validation, and clinical integration of wearable sensors and advanced diagnostics to enable early detection of functional deficits, ergonomic risks, and spinal instability. Support the translation of sensor-based technologies into care pathways that enhance rehabilitation, improve outcomes, and inform personalized treatment strategies.Contribute to clinical strategy, regulatory planning, and research partnerships, while engaging in investor relations and organizational scaling to align innovation with measurable clinical impact.
EDUCATION
Indiana University Bloomington
Master of Science (M.Sc.), Biomechanics
Texas Tech University
Master of Engineering (M.Eng.), Healthcare Engineering
Texas Tech University Health Sciences Center
Doctor of Philosophy (Ph.D.), Rehabilitation Science
The University of Texas at Arlington - College of Business
Master of Business Administration - MBA, Operations Management and Supervision
ABOUT HADDAS
I am a Professor of Orthopedics and clinically focused Ph.D. in Biomechanics with over 15 years of experience advancing care at the intersection of research, patient care, and healthcare innovation. My work centers on injury biomechanics, functional diagnostics, and movement science, leveraging advanced biomechanical and neuromuscular models to evaluate injury mechanisms, inform surgical decision-making, and guide individualized rehabilitation strategies that enable efficient, safe return-to-function. I have authored 100+ peer-reviewed publications and developed an award-winning methodology for classifying postural control systems, improving precision in the assessment of balance and functional performance. As an injury biomechanics expert and consultant, I collaborate with orthopedic and neurosurgical teams, industry partners, and legal professionals to translate complex biomechanical data into clinically actionable insights, device innovation, and defensible causation analyses. I currently lead a multidisciplinary motion analysis program that integrates clinical care and translational research across pediatric neurologic populations (e.g, cerebral palsy), degenerative musculoskeletal conditions (spine, shoulder, hip, knee), fall risk, and sports medicine. Through advanced technologies, including 3D motion capture, wearable sensors, and neuromuscular modeling, we deliver objective Disability and Functional Outcome Measurements (DFOMs) that enhance diagnostic precision, optimize surgical planning, and support longitudinal outcome tracking. With a strong background in clinical program development, technology integration, and healthcare entrepreneurship, I focus on scaling evidence-based solutions that improve patient outcomes and operational efficiency. My work bridges academia, clinical practice, and industry, with an emphasis on translating innovation into measurable impact across healthcare systems. Passionate about interdisciplinary collaboration and real-world implementation, I aim to redefine how movement data informs clinical care, injury evaluation, and performance optimization.#URochesterResearch
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