Surgical robots consists of a camera arm and mechanical arms with surgical instruments, which are controlled by surgeons on computer console that offers high definition and magnified 3-D view of the surgical site. Surgical robots aids in performing various complex surgical procedures with more flexibility, precision, and control than conventional surgical procedures.
Surgical robots are primarily preferred in minimally invasive surgery procedures, which are performed through tiny or small incisions. Moreover, the use of surgical robots enables surgeons to perform delicate and complex procedures, which could be difficult or impossible through other methods.
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Robotic surgery, also known as computer assisted surgery requires partial or complete dependence on exclusively devised equipment that are programmed specifically for certain surgical methodologies. Surgical robotic systems are a fusion of mechanical equipment, accessories, computer aided software, and services as well that support diverse micro and macro, invasive surgeries such as cardiac, neurological, gynecological, and orthopedic. Robotic systems permit surgeons to automatize the surgical act, thereby enhancing the efficacy and accuracy during the procedure, and curtail down post-surgical intricacy. Also, they assist surgeons to work on inaccessible intricate body part. Consecutively, robotic surgery minimize the possibility of blood loss and infection, results in faster recovery period, and leave minimal scar as compared to the conventional open surgery.
The increasing demand for automatized healthcare sector and least-invasive surgical procedures or pint-sized robotics are key driving sources behind the computer-aided surgery and robotics market. In case of disease conditions such as colorectal cancer, cardiac arrest, gastrointestinal, transplants, neurological disorders, and gynecological diseases, it is expected to encourage the adoption of robotic surgical systems. However, these computer-aided robotic systems tend to offer least post-surgical complexity and involve minimal labor cost as well.
According to a data published in 2015, Rosa Robots has mastered and performed several brain encephalopathy surgeries in the U.S. and with the implication of Rosa spine robot, the surgical complexities level is anticipated to decrease over the period of time. Increasing adoption of the robotic technology to treat cancer is highly predicted over the next few years. For instance, ‘Nanobots’ have been prototyped recently by a group of scientist from Bar-Ilan University, Israel, 2016. They are programmed to diagnose 12 contrasting forms of cancer cells and can invade them with remarkable accuracy and precision. On the other hand, scientists from Jewish General Hospital, Montreal, 2017, created ‘Bacteria-based’ nanorobots that can deliver chemotherapy drugs to the tumor site with the guidance of magnets.
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Some of the key players in the global surgical robots market are:
Intuitive Surgical, Inc.
MAKO Surgical Corp.
Blue Belt Technologies Ltd.
Think Surgical Inc.
Instruments & Accessories
Surgical Robot System
Acrobot Precision Surgical System
The Rio Robotic System (Mako)
The Da Vinci Surgical System
Zeus Surgical System
By End Users
Table of Contents
Research Objective and assumption
Market Dynamics, Regulations, and Trends Analysis
Global Surgical Robots Market, By Product Type, 2017–2025 (US$ Million)
Global Surgical Robots Market, By Surgery, 2017–2025 (US$ Million)
Global Surgical Robots Market, By Region, 2017–2025 (US$ Million )
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