Enhancing telesurgical safety with predictive digital twin synchronization: a framework for latency compensation in robotic surgery - Top-Institutions - MDSpire

Enhancing telesurgical safety with predictive digital twin synchronization: a framework for latency compensation in robotic surgery

  • By

  • Hang Yuan

  • Junjie Li

  • Bo Guan

  • Guangdi Chu

  • Wei Jiao

  • Hongzhi Zheng

  • Xingchi Liu

  • Jianchang Zhao

  • Jinhua Li

  • Jianmin Li

  • Xuecheng Yang

  • Haitao Niu

  • January 13, 2026

  • 0 min

Share

Top Institutions in Surgery

Brief introduction explaining scope and methodology.

  • #1

    Johns Hopkins University
    Johns Hopkins University

    Baltimore, MD

    Key Differentiators

    • Robotic Surgery
    • Biomedical Engineering
    • Telemedicine
  • #2

    Massachusetts Institute of Technology (MIT)
    Massachusetts Institute of Technology (MIT)

    Cambridge, MA

    Key Differentiators

    • Robotics
    • Computer Science
    • Biomedical Engineering
  • #3

    Stanford University
    Stanford University

    Stanford, CA

    Key Differentiators

    • Robotic Surgery
    • Telemedicine
    • Biomedical Engineering
  • #4

    Cleveland Clinic
    Cleveland Clinic

    Cleveland, OH

    Key Differentiators

    • Robotic Surgery
    • Telemedicine
  • #5

    University of California, San Diego (UCSD)
    University of California, San Diego (UCSD)

    San Diego, CA

    Key Differentiators

    • Robotic Surgery
    • Biomedical Engineering
    • Telemedicine

Original Source(s)

Related Content