Doctor of Clinical Medicine, Peking University; Member of the China Democratic National Construction Association; Member of the Young Scientists Alliance; Trained under Professor Liu Zhongjun, a renowned expert in spinal surgery.
Clinical Expertise:
Specializes in minimally invasive treatment of cervical spondylosis, lumbar spinal stenosis, lumbar disc herniation, thoracic spinal stenosis, and spinal tumors. Recipient of the "Peking University Innovation Award"; participated in the project "Clinical Application and Key Technology Research of 3D-Printed Titanium Alloy Orthopedic Implants," which received the First Prize of the 2019 Beijing Science and Technology Progress Award; published multiple SCI-indexed papers; invited as a peer reviewer for journals including BMC Musculoskeletal Disorders; holds multiple invention patents.
Education
2012-09 to 2015-07, Peking University, Clinical Medicine, Doctorate
2007-09 to 2012-07, Peking University, Clinical Medicine, Bachelor's Degree
Work Experience
2018-08 to Present, Peking University, Peking University Third Hospital, Attending Physician
2015-09 to 2018-07, Peking University, Peking University Third Hospital, Physician
Research Interests
Minimally invasive treatment of cervical spondylosis, lumbar spinal stenosis, lumbar disc herniation, thoracic spinal stenosis, spinal tumors, etc.
Academic Journal Reviewer
BMC Musculoskeletal Disorders; Journal of Chinese PLA Medical School (Academic Journal of PLA Medical School)
Awards and Honors
December 2024: Third Prize, First "Haichuang Cup" Health Technology Innovation Competition (Haidian District Health Commission), Beijing
November 2024: Third Prize, Fourth Capital Medical Innovation and Transformation Project Presentation and Technology Evaluation Activity (Beijing Medical Association), Beijing
July 2023: Second Prize, 12th Peking University Experimental Technology Achievement Award (Peking University), Beijing
September 2022: Excellence Award, First Peking University Health Science Center Innovation and Transformation Competition (Peking University), Beijing
June 2022: Best Reporter, 12th Annual Meeting of Cervical Spine Research Society Asia Pacific Section, Beijing
November 2021: Second Prize, Fourth Innovation and Transformation Competition of Peking University Third Hospital, Beijing
Major Academic Achievements
1. 3D-Printed Porous Metal for Bone Defect Treatment
· Addressing challenges of structural adaptation and biological integration in bone repair, conducted research on the design and manufacturing of customized porous metal implants, providing novel material solutions for personalized bone defect reconstruction.
2. Establishment of an Externally Controlled Chronic Cervical Spinal Cord Compression Animal Model
· Developed a controllable chronic spinal cord compression model that simulates clinical disease progression, providing a key experimental platform for studying spinal cord injury mechanisms and evaluating treatment strategies.
3. Development and Translation of Pressure-Sensing Drainage Tubes Based on Laser-Induced Graphene
· Innovatively applied laser-induced graphene technology to neurosurgical/orthopedic drainage systems, enabling real-time monitoring of intracranial or deep tissue pressure, and advancing its translation toward productization, demonstrating significant clinical practical value.
4. Concave-Side Distraction Technique for the Treatment of Congenital Cervical Scoliosis in Children
· Designed and validated a novel surgical technique for treating cervical spinal deformities in children, achieving more anatomically physiological correction through concave-side targeted distraction, with the potential to improve surgical safety and outcomes.
5. Exploratory Research on a Radiation-Free AI Navigation System Using Structured Light
· Led the development of a radiation-free surgical navigation system integrating structured light 3D imaging and artificial intelligence, aiming to reduce intraoperative radiation exposure and enhance surgical precision, representing a frontier direction for next-generation intelligent surgery.
Major Research Projects Undertaken
2021 Hospital Innovation and Transformation Fund, BYSYZHZB2021102, "Research on Early Diagnosis of Postoperative Spinal Epidural Hematoma Based on Laser-Induced Graphene Strain Sensors";
2022 Hospital Key Project, BYSYZD2022041, "Postoperative Spinal Epidural Hematoma Monitoring System," focusing on advanced materials and intelligent medical devices for the prevention of postoperative spinal complications.