Rochester-Carmalt Artery Forceps
$1.00
Xelpov’s Rochester-Carmalt Artery Forceps is a specialized device that surgeons in different areas can use to manipulate blood vessels, clamp their lumen and control the blood flow, in order to achieve adequate haemostasis.
- Grid Pattern Surfaces to Achieve an Excellent Grip.
- Tapered Jaws Ensuring Narrow Surgical Access.
- Ratchet System for Self-Retaining Clamping.
Rochester-Carmalt Artery Forceps
The Xelpov Surgical Rochester-Carmalt Artery Forceps serves as a highly effective instrument that provides a broad range of surgical advantages. Primarily, this forceps offers an atraumatic method for clamping blood vessels and also proves ideal for holding needles and grasping tissues, making it an essential tool in various surgical procedures. Its design enhances safety and efficiency, ensuring optimal performance in the operating room.
Tapered Jaws for Enhanced Access
The forceps feature a pair of tapered jaws that ensure easy access to a variety of surgical sites. This design allows surgeons to navigate through tight spaces while maintaining control and precision during delicate operations. Furthermore, the tapered shape proves particularly beneficial in complex surgeries, where visibility and access become paramount. Surgeons can easily manipulate the forceps to reach blood vessels or tissues that may be otherwise challenging to grasp, making it a valuable addition to any surgical toolkit.
Rochester-Carmalt Artery Forceps for a Secure Grip
To enhance functionality further, the inner surfaces of the jaws feature a grid-style pattern that promotes a steady grip on tissues and vessels. This feature minimizes the risk of slippage, ensuring that the surgeon maintains consistent pressure and control throughout the procedure. Moreover, the secure grip proves vital for preventing accidental tissue damage during clamping. Additionally, the grid pattern enhances the forceps’ ability to hold various types of materials securely, from soft tissues to more resilient structures.
Multiple Sizes for Diverse Applications
The Forceps comes in multiple sizes, allowing for versatility in various surgical applications. Surgeons can select the appropriate size based on the specific needs of the procedure, enhancing both effectiveness and efficiency. This adaptability makes the forceps suitable for a wide range of surgical environments, from minimally invasive techniques to more extensive open surgeries. Consequently, having options for size ensures that the instrument meets the demands of diverse procedures while maintaining a high level of precision.
Ergonomically Designed Finger Rings for Maximum Control
The forceps equip surgeons with a pair of ergonomically designed finger rings that provide maximum control during surgical procedures. These rings ensure that the operator maintains a firm grip, thereby preventing accidental slippage and enhancing overall precision. This ergonomic design proves crucial for reducing hand fatigue during extended use. Surgeons can maneuver the instrument confidently, allowing for more dexterous movements when working in delicate areas.
Rochester-Carmalt Artery Forceps for Reliable Performance
Manufactured by Xelpov Surgical, the Forceps features construction from premium-grade stainless steel. This choice ensures the highest quality and performance during surgical procedures, offering durability and resistance to corrosion. The forceps remain easy to sterilize, making them a reliable choice for repeated use in various surgical settings. The high-quality materials used in the construction of these forceps guarantee longevity, providing surgeons with a dependable tool that stands up to the rigors of daily surgical practice.
Explore Other Products
Author Name |
Rochester-Carmalt |
---|---|
Specialty | , , , , , , |
Main Category | |
Sub-Category | |
Working End Details |
Cross Serrated |
Handle Type |
Ring Handle |
Joint Type |
Box Joint |
Ratchet / Lock |
Yes |
Finish |
Satin |
Material |
Stainless Steel |
CE Marking |
Yes |
Reusable |
Yes |
Reviews
There are no reviews yet.