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March 12, 2026MedComm5 citationsOpen Access

AI‐Driven Revolution of Medical Robotics Across Surgical Innovation, Rehabilitation Intelligence, and Multimodal Healthcare Delivery

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FCFanxuan ChenHCHaoman ChenTYTing Yu

Key Points

  • This review aims to explore how AI is changing medical robotics across various clinical applications.
  • Systematic analysis of AI advancements in surgical and rehabilitation robotics
  • Evaluation of core technologies like computer vision and digital twins
  • Discussion of ethical and regulatory challenges in clinical adoption
  • Synthesis of current trends and future directions for AI in healthcare
  • Identified key AI technologies transforming surgical and rehabilitation practices
  • Outlined significant challenges hindering the adoption of intelligent robotics
  • Proposed future frontiers such as embodied AI and nanorobotics for enhanced medical care

Abstract

ABSTRACT Artificial intelligence (AI) is catalyzing a paradigm shift in medical robotics, transforming medical robots from teleoperated tools into intelligent partners across clinical domains. This evolution is pivotal in addressing global challenges like aging populations, driven by core AI pillars—including computer vision (CV), deep reinforcement learning, and large language models (LLMs)—that support perception, decision‐making, and naturalistic communication, enabling varying degrees of autonomy and adaptive care. However, the literature still lacks a holistic analysis that integrates these advances and tackles the translational challenges hindering clinical adoption. This review bridges this gap by systematically charting the evolution of AI‐driven robotics across intelligent surgery, adaptive rehabilitation, and multimodal healthcare delivery. We dissect the core technologies powering this revolution, from digital twins for surgical simulation to LLMs for enhanced human–robot interaction, and critically analyze the associated technical, ethical, and regulatory hurdles. By synthesizing current progress and outlining future frontiers, including embodied AI, nanorobotics, and the concept of the AI‐augmented surgeon, this review provides a comprehensive roadmap for accelerating the translation of intelligent medical robotics into routine clinical practice.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69b2577096eeacc4fcec6089https://doi.org/10.1002/mco2.70597
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Emerging Utility of Artificial Intelligence Driven Medical Robots in Health Care: A Review2026
  2. 2Artificial Intelligence in Robotic Surgery: A Global Review2026
  3. 3Ai-driven evolution in surgical robotics: A comprehensive review of assisted and autonomous surgery2026
  4. 4AI-Driven Robotics has Optimized Motion Control, Decision-Making, and Real-Time Adaptability in Minimally Invasive Surgeries: A Systematic Review2026
  5. 5Influence of AI: Robotics in Healthcare2024 · 23 citations