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MedTech Outlook | Monday, October 30, 2023
Surgical robots automate all or part of the surgical procedure. Surgical robots are intended to overcome current constraints in minimally invasive surgery (MIS) and to improve results in open surgical procedures.
FREMONT, CA: The demand for home care, preventative care, early diagnosis, speeding up patient recovery, improving outcomes, and the importance of technologies like machine learning, augmented reality, 5G, and digitalisation are all driving the medical devices industry's innovation. Over 450,000 patents have been applied for and awarded in the medical devices sector alone in the last three years. However, not all innovations are created equally, nor do they always advance.
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Understanding an innovation's present level of acceptance and the expected future trajectory and influence it will have requires knowing where it is on this journey, especially for those that are in the emerging and accelerating stages. HUDs for surgical navigation, robotic biopsy endoscopes, and camera-guided surgical robots are disruptive technologies in the emerging innovation stage that should be constantly monitored as they enter the early application. Some of the rapid innovation fields, whose usage has been continuously rising, include robotic exoskeletons, surgical robots, and robotic catheters. Robotic lower limb rehabilitation and microfluidic lab-on-a-chip, which are now well-established in the business, are examples of developing innovation domains.
All or part of the surgical procedure is automated using surgical robots. Surgical robots are intended to improve results in open surgical operations as well as address current issues with minimally invasive surgery (MIS). These systems are used in a range of surgical procedures, such as cardiothoracic, general, orthopaedic, neurosurgery, and obstetric and gynaecological surgeries. Few companies lead each innovative sector and evaluate the potential impacts and reach of their patenting activities across various applications and regions. More than 70 firms, including major medical equipment corporations, technology vendors, and burgeoning start-ups, are involved in the creation and use of surgical robots.
Application diversity, which categorises businesses as either "diversified" or "niche" innovators, counts the number of distinct applications linked to each relevant patent. Geographic reach, which ranges from "global" to "local," refers to the number of nations each pertinent patent is registered in and expresses the scope of the intended geographic application.
Given that they enable minimally invasive operations with quicker recovery times and fewer complications, surgical robots are predicted to have significant effects on the surgical sector. The acceptance of surgical robots by the medical community and patients in general, as well as the rising demand for automation to meet the needs of treating an ever-increasing population suffering from urological, neurological, gynaecological, and other diseases, are expected to drive the surgical robot market to expand at a profitable rate.
Robotic Positioning of Surgical Tools
Image-guided surgery increasingly uses surgical robots to simplify and improve tool and instrument positioning. Any surgery requiring extreme precision benefits from robotic surgical tool placement devices. By ensuring that surgical instruments are introduced at the proper angle and depth, these technologies streamline operating room procedures. Involuntary tremors frequently prevent individuals from achieving the level of precision needed during surgical procedures. Robotic positioning of surgical instruments is beneficial in orthopaedic and neurosurgical procedures, and it is currently being investigated as a way to enhance the results of laser therapy, cancer excision, and biopsy procedures.
Robotic Systems for Intra-operative Camera manipulation
Due to their minimally invasive nature and ability to speed up patient recovery, laparoscopy and endoscopy have completely changed how surgical procedures are performed. They are challenging to carry out as surgeons can only watch their movements within the patient on a monitor. The footage is frequently grainy since a human assistant is holding the camera that shows the surgery site. In surgical and endoscopic procedures, robotic systems for intra-operative camera manipulation are essential because they offer a stable view of the operating area and may be operated by the surgeons themselves with little disruption to their workflow. By eliminating the need for aid, these methods lower the cost of surgery.
Robotic Catheter Navigation
Catheters are medical devices that are frequently utilised to perform surgical operations inside the heart or blood arteries. During catheter ablation operations, a wire must be physically pushed, exposing the surgeon to dangerous X-ray radiation. Robotic catheter navigation systems have been created to solve this problem by removing the requirement for manual wire manipulation. Instead, surgeons can operate the catheter remotely, which will expose them to less radiation. Robotic catheter navigation systems have been shown to improve clinical results, in contrast to many surgical robots that have yet to demonstrate their therapeutic utility.
Robotic catheter navigation technologies can decrease the need for additional operations by accelerating and optimising the intervention. They also lessen the workload of overworked clinical staff, which helps to solve one of the biggest problems in modern healthcare. Robotic surgery systems' high costs are frequently a problem. However, robotic navigation platforms are more cost-effective than the majority of surgical robots since they are far less expensive than most surgical robots.
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