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Five Future Directions For The Vascular Interventional Robot Track
1970-01-01

Vascular interventional surgery robots are the product of multidisciplinary combination, and the integration of technical modules and the coordination of the system as a whole should be considered. The existing vascular interventional surgery robot products are still in continuous iteration, and there is no standardized sample yet. According to industry trends, the five major directions for the future development of vascular interventional surgery robots

1, covering the whole process of vascular interventional surgery, breaking through the dilemma of homogenization of surgical robot products. Some companies focus on intravascular operations, product homogenization is serious. Intravascular operation is the core part of PCI surgery, and the existing surgical robot products may only function for a few minutes in the surgery, and the preliminary work of puncture, imaging and diagnosis still depends on the personal experience and technology of doctors. In interventional surgery, the angiographic and diagnostic process takes up 70-80% of the entire surgery time. These tasks are trivial and more difficult to standardize, but they will affect the subsequent diagnosis and treatment of the disease.

2、Applicable to coronary interventions, peripheral interventions, neurointerventions in a variety of procedures, the pan-vascular surgery robot saves hospital procurement costs. Due to the high cost and expensive start-up fee of the vascular interventional surgery robot, the ideal product should adopt modular design and can carry out coronary interventional surgery, neurointerventional surgery and peripheral interventional surgery at the same time. The pan-vascular interventional surgery robot is equipped with a multifunctional platform inside, and the operator can choose the corresponding technical module by himself. In this way, the hospital can save a purchase cost. The surgical robot is used together with most commercially available guidewires, stents, and balloons, and is compatible with existing catheterization laboratories, eliminating the need to customize special medical devices, facilitating in-hospital use and strengthening hospitals' willingness to purchase.

3. Semi-automated or even fully automated vascular interventional surgery robots are the final form, further improving surgical efficiency and relieving physician fatigue. The main information source of automated surgery is medical images and case data, and the core technology is deep learning and feedback, which is indispensable for image processing, high precision and high response speed. At present, the image segmentation and fusion technology and feedback mechanism are not yet mature, so companies can start with the automation module.

4, 5G remote accelerates the popularity of robotic surgery, which is a unique advantage of domestic enterprises. "In addition to relying on 5G technology with large bandwidth and low latency, hospitals need to build a high-quality 5G intelligent ecology. 5G remote surgery safety and stability are crucial, and in addition to network transmission problems such as latency and lag, it is also necessary to pay attention to Online system operation failure, third-party online attacks and other extraordinary circumstances.

5. Lightweight and miniaturization are conducive to reducing robot costs and improving accessibility. In addition to the original robot products through changes in design, materials to achieve lightweight, miniaturization, disposable vascular interventional surgery robot is another idea. Surgical robots sell at high prices and high maintenance costs, and the emergence of disposable robots may also change their high-end positioning.

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