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The Global Orthopedic Power Tools Market reached US$ 2 billion in 2022 and is projected to witness lucrative growth by reaching up to US$ 3 billion by 2030. The global orthopedic power tools market is expected to exhibit a CAGR of 5.3% during the forecast period 2023-2030. The increasing technological advancements and rising advantages for power tools drive demand for orthopedic power tools market trends.
A surgical power tool is used in bone or bone fragment surgery. It makes it possible to drill, cut, ream, and screw. It is mostly utilized in orthopedic surgery, neurology, traumatology, and ENT surgery in humans and animals. Every stage of orthopedic surgery today uses power instruments, from pulse lavage for wound care to drilling and reaming for inserting intramedullary nails or screws in long bone fractures. Further improvements have been made to these tools to make them lightweight for user convenience.
More frequently, metal alloys that are thinner, lighter, and produce less heat when used repeatedly are being used.
The orthopedic power tools market scope comprises technology such as pneumatic-powered systems, battery-operated systems, electric-powered systems and others, which has increased the orthopedic power tools market share. The Global Market for Orthopedic Power tools is expanding due to factors, including the increasing advances in surgical power tools and their upcoming medical approvals across countries, creating a positive outlook for the orthopedic power tools market growth.
Surgeons use the majority of surgical power tools. Their main objective is to complete numerous surgeries in a fair amount of time. To treat more patients, they must thus work effectively and affordably. With a device the surgeon can rely on, the patient can concentrate on a more precise placement of the implant that will be inserted without worrying about whether or not the system will malfunction. The simple-to-use surgical power instruments eliminate any delays prior to or during the procedure. The auxiliary users will feel relieved and more confident if the device is prepared quickly and can easily accomplish the task the surgeon wants the motor to carry out during the procedure.
When using high-quality surgical power instruments that can be cleaned automatically, the cleaning staff will have to interact with the equipment for a shorter period of time. Since each orthopedic procedure requires a unique set of surgical power instruments, hospitals with numerous operating rooms and a high volume of daily cases typically prefer more affordable devices. Avoiding high-end, high-investment-grade equipment is seen to be advantageous.
The variety of robotic systems used in surgery is expanding due to the many systems created in the past ten years to address the shortcomings of manually navigated orthopedic equipment. Two advantages of robotic systems are improved security and decreased iatrogenic injuries.
When used in conjunction with oscillating saws, robotic navigation can considerably reduce the risk of iatrogenic injury compared to freehand methods during total knee arthroplasty. In a different study, robotic-assisted cervical transpedicular screw placement was examined. It was discovered that, compared to non-robotic-guided placement, it had enhanced functional results and reached 98.8% accuracy in Kirschner wire placement.
Disadvantages of Orthopedic Power Tool which will hamper the growth of the market.
Utilizing power tools has drawbacks, including heat necrosis, drill bit breakage, injury to nearby tissue structures, and over drilling and overwatching. The surgeon using the gadget would benefit from knowing about these occurrences and technologists working to create better and safer medical equipment.
Tissue-selective piezoelectric drills for head and neck surgery and self-stopping drills for neurosurgery are only two examples of the kind of equipment that are in demand and being developed in other disciplines because they are more and more safety-focused.
Vascular, tendon and neurological injuries are examples of iatrogenic injuries in orthopedics that can have serious repercussions; a prior study revealed that 7.3% of vascular wounds in total hip arthroplasty result in mortality. Some strategies, including robotics, cutting-edge drill technology, and instantaneous feedback mechanisms, are being developed to lessen these injuries. Hence these above-mentioned factors are limiting the orthopedic power tools market's growth.
The COVID-19 Analysis includes the Pre-COVID Scenario, COVID Scenario, and Post-COVID Scenario in addition to Pricing Dynamics (Including pricing change during and after the pandemic evaluating it with pre-COVID scenarios), Demand-Supply Spectrum (Shift in demand and supply due to trading restrictions, lockdown, and afterward issues), Government Initiatives (Initiatives to reactivate a market, industry, or sector by Government Bodies), and Manufacturers Strategic Initiatives.
The Russia-Ukraine conflict is estimated to have a low impact on the global orthopedic power tools market, owing to the low number of key market players in this region. However, the effect of the import and export of raw materials is expected to have little influence over the global orthopedic power tools market growth over the forecast period.
Battery Operated Systems from the technology segment account for 45.9% of the market share owing to rising novel product launches.
Drills powered by batteries may be used for hardware engineering or orthopedics. Orthopedic battery drills (OBDs) sold commercially are highly expensive. However, hardware/engineering battery drills (HBD or EBD) can provide the same function while offering some extra practical benefits. The "hardware"/engineering battery drill (EBD) is frequently used in orthopedic surgery. Compared to commercial orthopedic battery drills (OBDs), EBDs have a significant advantage.
These EBDs are excellent alternatives to OBD in hospitals when surgical cost is a concern and resources are limited since they are affordable, user-friendly, have numerous capabilities in orthopedic procedures, are locally bought and easily serviced, have minimal maintenance costs, are tough, and are durable. Several advancements, such as a lightweight, comfortable system with the strength required for reconstructive surgeries and the adaptability required for ortho trauma treatments, are what the X Series Power System by Zimmer Biomet is designed to provide.
Manufacturers have chances to expand their operations in this region because of the rising demand for orthopedic power tools for advancements in North America. The area has many producers and suppliers, and its rapid economic development has raised the industrial production of orthopedic power tools, increasing demand. North America has a large number of producers and suppliers. As a result of the swift economic development of the area, industrial production has increased, fueling the demand of orthopedic power tools.
Rising new product types or applications will drive market growth. Growth is also fueled by rising technological advancements, regulatory approvals, and novel product launches. Researchers are becoming more aware of various treatment approaches for orthopedic disorders, leading to the expansion of the market in this region. These factors shows the dominance of North America.
The major global players in the orthopedic power tools market include: CONMED Corporation, Zimmer Biomet, Stryker Inc, Medtronic, DePuy Synthes (J&J), Integra LifeSciences, Aesculap, Inc (B. Braun), Portescap, Misonix Inc., Brasseler USA and Maxon among others.
The Global Orthopedic Power Tools Market Report Would Provide Approximately 53 Tables, 54 Figures And 195 Pages.
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