Directed Energy-Based Surgical Systems Market Size, Analysis, and Forecast Report: 2015 - 2025
With the advent of minimally invasive surgery, the conventional methods of surgery is becoming outdated. New technologies are revolutionizing the future of surgery. The progress from open to minimally invasive surgery has dramatically improved patient recovery and outcomes, greatly due to the reduction of incisions from very large to extremely tiny. Introduction of energy-based surgical instrument is one such dramatic change in this path. Energy-based surgical instruments are finding increasingly widespread applications in surgical procedures by virtue of the unique performance characteristics of such instruments. Depending upon specific instrument configurations and operational parameters, energy-based surgical instruments can provide substantially simultaneous cutting of tissue and hemostasis by coagulation, desirably minimizing patient trauma. The energy-based surgical instrument is assembled to permit coagulation, selective cutting and fine dissection as desired in minuscule surgical procedures. Instruments of this nature can be configured for open surgical use, laparoscopic or endoscopic surgical procedures including robotic-assisted procedures.
Directed energy-based surgical therapy employs the controlled deposition of energy into targeted tissues to achieve an alteration in the desired tissue. Its relatively new surgical area, which includes cryotherapy, microwave energy, laser energy, photodynamic therapy, ultrasound and radiofrequency. In US, directed energy-based surgical systems market is growing at a fast pace.
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Directed Energy-Based Surgical Systems Market: Drivers & Restraints
Aging population, increasing health expenditures, developments in radiofrequency devices are some of the key factors driving the growth of the global directed energy-based surgical systems market.
High cost, complex system setup and maintenance requirements are some of the probable factors restraining the growth of the global directed energy-based surgical systems market.
Directed Energy-Based Surgical Systems Market: Segmentation
The global directed energy-based surgical systems market is broadly classified on the basis of technology, applications and geographies.
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Based on applications, the global directed energy-based surgical systems market is segmented into:
Aesthetic Applications
Dental Applications
Gynecologic Applications
Ophthalmic Applications
Orthopedic Applications
Urologic Applications
Cardiovascular Applications
Based on technology, the global directed energy-based surgical systems market is segmented into:
Laser based
Microwave based
Radiofrequency-Based
Cryogenic-Based
Ultrasound-Based
Directed Energy-Based Surgical Systems Market: Overview
Directed energy-based surgical systems market is projected to climb at a decent CAGR during the forecast period. With increasing health expenditures and rapid technological advancements the acceptance of directed energy-based surgical systems is gaining popularity. The global directed energy-based surgical systems market is expected to expand at a promising CAGR during the forecast period (2015-2025).
Directed Energy-Based Surgical Systems Market: Region-wise Outlook
With further developments in the surgical sector, the directed energy-based surgical systems market will continue to expand across varied applications. The global directed energy-based surgical systems market is expected to register an optimistic CAGR for the forecast period. Depending on geographic regions, global directed energy-based surgical systems market is segmented into seven key regions: North America, South America, Eastern Europe, Western Europe, Asia Pacific, Japan, and Middle East & Africa.
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Directed Energy-Based Surgical Systems Market: Key Players
Some of the key market participants in global directed energy-based surgical systems market are Bausch & Lomb Incorporated, Abbott Laboratories Inc., Medtronic Inc., American Medical Systems, LLC, Johnson & Johnson Services Inc., Spectranetics, Hologic, Inc. , Biolase, Inc. , Cynosure, Inc.