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Created on:2025-01-11 | bomn
Article tag: Shoulder joint model skeletal joint model BIX-A1023
In general, as an important clinical training tool, the shoulder joint model can effectively simulate the actual operation, improve the accuracy of surgery and treatment, and support the preoperative planning of doctors and the rehabilitation training of pa...
The shoulder joint is one of the most flexible joints in the human body, so it faces many challenges in clinical treatment. In order to help doctors better understand the anatomical structure and movement principle of the shoulder joint, the shoulder joint model as an educational and training tool has been paid more and more attention by the medical industry. By simulating the actual operation, these models play an important role in surgical training, rehabilitation treatment and pathological research.
1. Accuracy of simulated surgical operation
The shoulder joint model provides a detailed reduction of bone, soft tissue and joint structure to help doctors simulate the operation before shoulder surgery. This model not only shows the position of the bones and joints, but also simulates the movement of the muscles and the different ranges of motion of the shoulder. Studies have shown that the use of shoulder joint model for surgical training can significantly improve surgical accuracy and reduce surgical errors. For example, in shoulder joint replacement surgery, doctors trained the model in advance, and the success rate increased by 18%.
2. Improve the accuracy of treatment planning
The shoulder joint model helps doctors plan ahead in clinical treatment, especially in shoulder surgery. Through practical operation of the model, doctors can simulate the patient's shoulder joint movement in advance, predicting the difficulty of postoperative recovery and possible complications. This not only reduces unforeseen risks during surgery, but also helps doctors and patients better communicate treatment options. The data showed that doctors who used the simulation model for planning before surgery saw significant improvements in both surgical success and patient recovery.
3. Support rehabilitation training
The shoulder joint model is not only vital for surgical operation, but also has a significant effect on rehabilitation. In the recovery phase after shoulder injury, the model can help patients understand the correct way to move the shoulder joint. By simulating different shoulder movements, patients can perform rehabilitation training in a safe environment, reducing the risk of injury. The study found that patients who used the shoulder joint model for rehabilitation training had about 15% shorter recovery time than traditional rehabilitation therapy.
4. Enhance clinical education and training
The shoulder joint model provides medical students and clinicians with an efficient learning platform to help them understand the complexities of the shoulder joint before the actual operation. Especially in anatomy and surgical skills training, these models enable students to better grasp the biomechanics and kinematics of joints. The survey showed that the students who underwent the simulation training improved their understanding and operating skills of shoulder joint surgery by about 22% compared with the students who did not use the model.
In general, as an important clinical training tool, the shoulder joint model can effectively simulate the actual operation, improve the accuracy of surgery and treatment, and support the preoperative planning of doctors and the rehabilitation training of patients. The use of these models not only improves the quality of medical education, but also leads to better treatment outcomes and recovery experiences for patients.