Large channel nucleus pulposus forceps Manufacturers

Large channel nucleus pulposus forceps

Large channel nucleus pulposus forceps

1. High -intensitive raw materials /S46500 USA
2. Seiko quality 
3. Excellent RD 
4. OEM service /  variety of forceps tips
Diameter:2.5/3.0/3.5/4.0mm 
Wprking length :260/330mm 
Angle:0/15/45 degree
  • Large channel nucleus pulposus forceps
  • Large channel nucleus pulposus forceps
  • Large channel nucleus pulposus forceps
  • Large channel nucleus pulposus forceps
  • Large channel nucleus pulposus forceps
  • Description
  • Parameters
Nucleus pulposus forceps are surgical instruments specifically designed for procedures involving the nucleus pulposus in the intervertebral discs of the spine. The nucleus pulposus is the inner, gel-like core of the intervertebral disc, and surgical interventions are often necessary to address conditions such as disc herniation or degeneration. 
Nucleus pulposus forceps are used in spinal surgery to access and manipulate the nucleus pulposus. Common procedures include discectomy (removal of part or all of a disc) or decompression to alleviate pressure on spinal nerves.
The forceps have specific specifications, including:
Diameter: Available in multiple diameters, including 2.5mm, 3.0mm, 3.5mm, and 4.0mm. This allows surgeons to choose the appropriate size based on the surgical requirements.
Working Length: Available in two working lengths, 260mm and 330mm. The choice of working length provides flexibility in accessing different areas of the spine.
Angle: The forceps are available in different angles, including 0 degrees, 15 degrees, and 45 degrees. The varied angles cater to the diverse anatomical considerations in spinal surgery.
These specifications collectively highlight the adaptability and precision of the large channel nucleus pulposus forceps. Surgeons can choose from a range of options based on the specific needs of the surgical procedure.

We are a high-tech enterprise integrating R&Dproduction, sales, maintenance and service. Custom Endoscopic Large channel nucleus pulposus forceps Factory in China

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Hangzhou Sconor Medical Technology Co., Ltd.

A high -tech enterprise which engages in R&D ,manufacturing and sales of medical endoscopic products . Located in Tonglu -Hangzhou , founded in 2016 .Sconor always adhere to the business philosophy of “normative ,focus ,pioneering and innovative. Wholesale Transforaminal Endoscopic Large channel nucleus pulposus forceps Manufacturers and OEM Custom Transforaminal Endoscopic Large channel nucleus pulposus forceps Suppliers.

  • 30 +

    Exported to more than 30 countries.

  • 20 +

    We have more than 20 R&D personnel.

  • 7 +

    Since 2016, more than 7 years of experience.

Hangzhou Sconor Medical Technology Co., Ltd.

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Product Knowledge

How do large channel forceps improve the efficiency of nucleus pulposus removal during spinal procedures?
Large channel nucleus pulposus forceps are designed to improve the efficiency of nucleus pulposus removal during spinal procedures, particularly in the context of spinal surgeries. The following factors contribute to their enhanced efficiency:
Increased Channel Size:
Large channel forceps feature a significantly larger channel compared to standard forceps. This increased size allows for the efficient removal of a greater volume of nucleus pulposus material during each maneuver.
Faster Material Aspiration:
The larger channel facilitates faster aspiration of nucleus pulposus material. Surgeons can extract a substantial amount of tissue with fewer passes, streamlining the procedure and reducing the overall surgical time.
Reduced Procedure Duration:
The efficiency gained from the larger channel results in reduced procedure duration. Quicker removal of nucleus pulposus material contributes to shorter surgery times, minimizing patient exposure to anesthesia and reducing the risk of complications.
Enhanced Visualization:
Large channel forceps often integrate with advanced imaging technologies, such as endoscopy or fluoroscopy. This integration provides enhanced visualization of the surgical site, allowing surgeons to precisely target and remove nucleus pulposus material.
Improved Access to Targeted Areas:
The design of large channel forceps allows for improved access to targeted areas within the intervertebral disc. Surgeons can navigate through the disc space more effectively, reaching specific regions that may be challenging with smaller instruments.
Precision in Tissue Removal:
The larger channel does not compromise precision. Surgeons can maintain precise control over the forceps, ensuring targeted removal of nucleus pulposus material without causing unnecessary trauma to surrounding structures.
Minimized Tissue Trauma:
Large channel forceps are designed to minimize tissue trauma during nucleus pulposus removal. The efficiency of the instruments reduces the number of passes required, decreasing the overall impact on surrounding tissues and structures.
Customized for Various Patient Anatomies:
The availability of different sizes and configurations in large channel forceps allows surgeons to select instruments that are well-suited for various patient anatomies. Customization enhances the adaptability of the instruments to individual cases.
Reduced Strain on Surgeons:
The efficiency of large channel forceps can reduce the physical strain on surgeons. With fewer repetitive movements required for material removal, surgeons can perform the procedure more comfortably and with reduced fatigue.
Optimized for Minimally Invasive Approaches:
Large channel forceps are often compatible with minimally invasive surgical techniques. The instruments can be used through smaller incisions, contributing to faster recovery times, reduced scarring, and improved patient outcomes.
The efficiency of large channel nucleus pulposus forceps is influenced not only by the size of the channel but also by factors such as the design, materials, and integration with imaging technologies. Additionally, the surgeon's skill and experience play a crucial role in optimizing the use of these forceps for nucleus pulposus removal during spinal procedures.
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