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  1. Home
  2. ENSEAL® X1 Curved Jaw

ENSEAL® X1 Curved Jaw

ENSEAL® X1 Curved Jaw

ENSEAL® X1 Curved Jaw offers more efficiency and has demonstrated stronger sealing than LigaSure™ Maryland.1-3*

Instructions for Use

Please refer to the package insert and other labeling for a complete list of indications, contraindications, precautions and warnings.

Enseal Product Image

IMAGES

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Features & Benefits

Feature image 1

More Tissue per Bite

ENSEAL® X1 Curved Jaw can capture more tissue per bite with a 16% longer jaw and 9% wider jaw aperture compared to LigaSure™ Maryland.4

 Icon representing the feature

More Secure Grasping

ENSEAL® X1 Curved Jaw demonstrated 32% stronger grasping with the distal tip compared to LigaSure™ Maryland.5

Icon for ease of use

Ease of Use

ENSEAL® X1 Curved Jaw was designed with 360° continuous shaft rotation to enable easy access to targeted tissue.6 It has separate seal and cut capabilities.7 ENSEAL® X1 Curved Jaw has conveniently placed control buttons for less hand movement.8

Expect More.

Expect More.

See the ENSEAL® X1 Curved Jaw Tissue Sealer come to life  with augmented reality.
 
Scan the QR code above with your iPhone, iPad or Android camera to visit the website. Then tap the augmented reality (AR) icon to start the experience.

Learn More

Resources

Featured Products

Product Image of Enseal x1 large jaw

ENSEAL® X1 Large Jaw Tissue Sealer

Designed for use in vessel sealing during open surgical procedures, ENSEAL® X1 Large Jaw Tissue Sealer is an advanced bipolar device that provides better haemostasis,11 less thermal spread, and improved ergonomics compared to LigaSure Impact.™ *12

View Brochure
Image for Enseal® G2 ART

ENSEAL® G2 Articulating Tissue Sealer

Offers secure sealing13 of vessels up to and including 7mm diameter, as well as lymphatics, *while also providing versatility driven by its articulating shaft.14

View Brochure

Supporting Documentation

Product Support

ENSEAL® X1 Large Jaw Brochure

Download PDF

Guides

ENSEAL® X1 Large Jaw Device Performance Guide

Download PDF

ENSEAL® Value Analysis Summary

Download PDF

References

  1. Ethicon, Project Floyd: Claims Metrology Report, June 2018, PRC0795649 (145171-200630, 145041-200629). 

  2. Ethicon, Floyd Relaunch Claims Metrology, June 2020, PRC095763A (145171-200630, 145041-200629).

  3. Ethicon, Floyd Relaunch Claims Ex-Vivo Sealing, June 2020, PRC094697A (1451n-200630, 145069-200629). 

  4. Based on metrology data, ENSEAL® X1 Curved Jaw Tissue Sealer has a 16% (or 3.4mm) longer jaw than LigaSure™ Maryland (LF1937) (p < 0.001) and ENSEAL® X1 Curved Jaw Tissue Sealer has a 9% (or 1.15mm) wider jaw aperture than LigaSure™ Maryland (LF1937) (p < 0.001) (145041-200629). 

  5. Grasping force measured as the maximum amount of force required to pull porcine jejunum from the distal tip of device jaws. Comparison of ENSEAL® X1 Curved Jaw to LigaSure™ Maryland (LF1937) (p < 0.001). (149828-200813). 

  6. (093778-180619). 

  7. (093782-180619).  

  8. (095686-180724). 

  9. Comparison of ENSEAL® X1 Curved Jaw to LigaSure™ Maryland (LF1937). Benchtop testing on porcine arteries (1055mmHg vs. 862mmHg, p < 0.001) (145069-200629).  

  10. 112 of 112 vessels sealed successfully on first pass in an acute porcine model. All seals maintained haemostasis during blood pressure challenge. During blood pressure challenge, systolic blood pressure was increased to at least 200 mmHg for a minimum of 10 minutes to simulate a hypertensive crisis. (095317-200519). 

  11. Preclinical test of distal tip bleeding (ENSEAL® vs. lmpact-LF4318) in thick porcine mesentery base (p<0.001). (C2170). 

  12. Preclinical testing on porcine carotids (ENSEAL® vs. lmpact-LF4318) that measured mean max lateral thermal damage via histology showed ENSEAL® at 41% less thermal spread than Ligasure (p=0.005). (C2155). 

  13. Compared to a non-articulating device. 

  14. ENSEAL® devices tested in a benchtop study on 5 mm-7 mm porcine carotid arteries. With NSLG2C35A devices, median burst pressures were 51% higher for vessels sealed at a 90° angle compared to vessels sealed at a 45° angle (P=.007). With NSLG2535A devices, mean burst pressures were 29% higher for vessels sealed at a 90° angle compared to vessels sealed at a 45° angle (P=.001). 

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This website is not owned by Johnson & Johnson (New Zealand) Ltd, and we do not review or control the content of this website. Products discussed on this website may not be approved for use or may be approved for different indications in your country. Before using any medical device, review all relevant Instructions for Use, Package Inserts or Summary of Product Characteristics. We do not endorse the use or promotion of unapproved products or indications. Any demonstrations of approved medical devices should be considered as information only and are not a surgical training guide.

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