Conquering the Challenge of Simulating Blood Flow Through Adaptive Physics Refinement
Simulating how cells move through the human bloodstream requires capturing events that span enormous biological scales—from millimeter-scale blood vessels down to…
Simulating how cells move through the human bloodstream requires capturing events that span enormous biological scales—from millimeter-scale blood vessels down to…
As an augmented reality (AR) and virtual reality (VR) specialist at Duke, David Zielinski often finds himself in the middle of…
Research in the Randles Lab has helped to develop individualized digital twins of patients’ unique blood flow, which enable clinicians to noninvasively evaluate the severity of coronary artery disease and guide treatment decisions.
To truly understand and treat progressive conditions like cardiovascular disease, we need more than a snapshot — we need the full picture. The pioneering Longitudinal Hemodynamic Mapping Framework (LHMF) — developed in my lab — gives us that longer, more detailed look.
Digital twin technology is transforming industries by creating precise virtual replicas of physical systems—and I’ve seen how its application in healthcare can revolutionize patient care.