
معرفی
David W Manning, MD serves as Professor and Vice Chair of Orthopaedic Surgery at Northwestern University Feinberg School of Medicine, where his clinical research focuses on optimizing total joint replacement outcomes through risk mitigation strategies, advanced imaging, and surgical protocol innovations. His work directly impacts patient safety and recovery pathways in arthroplasty.
His academic training includes:
- MD from Georgetown University (1997)
- General Surgery Internship at Northwestern University, McGaw Medical Center (1998)
- Orthopaedic Surgery Residency at University of Chicago Hospitals (2002)
- Orthopaedic Fellowship at Massachusetts General Hospital (2003)
Dr. Manning's research program investigates critical intersections of patient frailty, pain prognostics, and thromboembolic risk in joint replacement. His methodology combines clinical outcomes analysis with advanced imaging to develop evidence-based surgical protocols that reduce complications and improve recovery trajectories, particularly for high-risk populations.
Recent publications (2024-2025) reveal a strategic focus on predictive modeling for discharge planning, neuropathic pain assessment, and blood conservation techniques. These studies demonstrate consistent emphasis on personalized care pathways and complication prevention across the total joint replacement continuum.
His extensive recognition includes leadership awards and clinical research honors from major orthopaedic organizations:
- AAHKS Training Grant and Smith & Nephew Fellowship (2023)
- Teacher of the Year, Northwestern University (2021)
- Multiple Omega Awards for Education (2013-2016)
- AAOS/AAHKS Best Paper and Poster Awards (2014-2016)
- Repeated Laros Teaching Awards from University of Chicago (2004, 2008)
As an educator, Dr. Manning has received 11 teaching awards including Northwestern's highest education honors. His industry collaborations include consulting for Medacta USA and MicroPort Orthopedics, plus royalty agreements with Biomet and Medacta for orthopaedic device innovations, reflecting translational impact of his research.


