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Technological innovation breakthrough, domestic intelligent orthopedic forceps achieve force feedback function in clinical trials

Mar 30,2026

Summary: Recently, the "Intelligent Feedback Orthopedic Pliers" developed by Weigao Orthopedics has entered the clinical pilot stage. The product has been included in the NMPA Innovative Medical Device Special Review Procedure and is expected to be officially approved in the third quarter of 2026. This intelligent orthopedic forceps is embedded with a force feedback sensor, which can achieve real-time force feedback, spatial tracking, and adaptive adjustment during surgery, significantly reducing the risk of surgical complications and filling the technical gap of domestic intelligent orthopedic forceps.
Technological innovation breakthrough, domestic intelligent orthopedic forceps achieve force feedback function in clinical trials

Technological innovation breakthrough, domestic intelligent orthopedic forceps achieve force feedback function in clinical trials
Recently, the "Intelligent Feedback Orthopedic Pliers" developed by Weigao Orthopedics has entered the clinical pilot stage. The product has been included in the NMPA Innovative Medical Device Special Review Procedure and is expected to be officially approved in the third quarter of 2026. This intelligent orthopedic forceps is embedded with a force feedback sensor, which can achieve real-time force feedback, spatial tracking, and adaptive adjustment during surgery, significantly reducing the risk of surgical complications and filling the technical gap of domestic intelligent orthopedic forceps.

In addition to force feedback technology, domestic enterprises continue to make efforts in the innovation field of orthopedic forceps. Da Bo Medical has deployed Industry 4.0 flexible production lines, optimized the production process of double joint bone biting forceps, and increased the product yield rate to 98.7%; Kangtuo Medical, with its titanium alloy ultra-thin cutting edge technology patent, has formed a differentiated advantage in the specialized forceps segment for minimally invasive orthopedic surgery, with a growth rate of 28.5% in this segment by 2025.

In addition, clinical engineering collaborative innovation has become an important path for technological breakthroughs. A domestic enterprise has developed orthopedic forceps with biomimetic handles and dual axis fine-tuning mechanisms through cooperation with medical institutions, which has shortened surgical operation time by 11.8 minutes, reduced bleeding by 19.3%, and achieved user satisfaction of 91.4%.

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