The Recent “Medical Robotics and Computer” added by Big Market Research is an in-depth analysis of the industry size, share, and structure. It presents quantitative and qualitative market intelligence on the current revenue figures and volumes in distribution.
The medical robotics and computer-assisted surgery is a combination of equipment, accessories, software, and services that aid in performing different functions, such as robotic minimally invasive and non-invasive radiosurgeries, rehabilitation therapies, and hospital & pharmacy automation. Surgical robotics includes several minimally invasive surgeries such as gynecological, cardiac, neurological, orthopedic, and other general surgeries. These robotic systems allow surgeons to automate the surgical procedure, thereby improving the efficacy and precision of the procedure and minimizing post-surgical complications.
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These advanced robotic solutions are accepted worldwide as an effective alternative to the traditional/conventional technical and surgical procedures. Likewise, the robotic radiosurgery system allows surgeon to treat cancerous and non-cancerous tumors located throughout the body. In addition, rehabilitation robots are used as an effective therapeutic tool for the treatment of physically disabled and amputee. In case of hospital & pharmacy automation, IV robots and robotic-dispensing machines are the most advanced and widely used systems, which help to avoid human errors during medication dispensing. Furthermore, it reduces the annual hospital cost and medication-associated infections.
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The increasing need for automation in the healthcare sector and growing demand for minimally invasive or non-invasive surgeries are the major factors that drive the market. In addition, a rise in incidence of cancer and paralysis, and rise in amputee population are likely to boost the adoption of medical robotics and computer-assisted surgical systems. Currently, many large-scale hospitals in developed and developing economies favor advanced robotic surgical and medication-dispensing systems, owing to the reduction of labor cost and less post-surgical complications, which ultimately drive the market growth. On the other hand, high cost associated with surgical and rehabilitation robots, and accidental death/injuries because of broken instruments and system errors are likely to hinder the growth
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