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Ventralight™ ST Mesh Image

Ventralight™ ST Mesh Image
Ventralight™ ST mesh

Uncoated medium weight monofilament polypropylene mesh on the anterior side with an absorbable hydrogel barrier based on Sepra® Technology on the posterior side for laparoscopic ventral hernia repair.

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Proven Sepra® Technology in a Low Profile, Medium Weight Mesh

Ventralight™ ST Mesh is an uncoated medium weight monofilament polypropylene mesh on the anterior side with an absorbable hydrogel barrier based on Sepra® Technology on the posterior side for laparoscopic ventral hernia repair.


Minimal contraction shown in preclinical testing compared to a leading macroporous absorbable barrier mesh

At 4 weeks, Ventralight™ ST Mesh demonstrated 42% less area mesh contracture than a competitive macroporous absorbable barrier mesh. Results were statistically significant.*


DAVOL_Ventralight™ ST Mesh_US_Images_Section_2_Image_1.jpg

DAVOL_Ventralight™ ST Mesh_US_Images_Section_2_Image_1.jpg


  • Low profile design facilitates trocar deployment and mechanical fixation.
  • Multiple shapes (circle, oval, ellipse, rectangle) and sizes ranging from a 4.5" (11.4 cm) circle to 12" x 14" (30.5 cm x 35.6 cm) rectangle.
  • Easily cut to customize shape and size. The unique hydrogel barrier covers the edge of the mesh even after trimming.

Strong tissue incorporation:

The open pore design of the uncoated monofilament polypropylene in Ventralight™ ST Mesh allows for:

  • Fast tissue ingrowth
  • Strong tissue incorporation into the abdominal wall
  • A strong, long-term repair

Uncoated polypropylene allows for the majority of tissue ingrowth and strength to occur in the first two weeks after placement of a composite hernia prosthesis.**




Ventralight™ Absorbable Barrier based on Sepra® Technology

  • Unique hydrogel barrier swells to minimize tissue attachment to the visceral side of the mesh*
  • The hydrogel barrier resorbs within 30 days providing visceral protection during the critical healing period*




BioSurgery Surgical Education

The following pages will introduce you to Bard’s BioSurgical Education modalities and faculty. We are committed to advanced professional education – helping you choose the right products and procedures to provide the right outcomes for your patients.

Soft Tissue Repair Education

Bard® Surgical Education Programs are designed to provide you with focused and flexible modalities providing in-depth education on products and techniques intended to help you optimize patient care.

Selecting a partner for surgical products can be a difficult decision. There is a lot at stake for many people in your organization, including Operating Room Managers, Surgeons, Materials Management and of course your patients. For this reason Bard Davol provides information on our products and product portfolios that help you simplify the selection process and puts pertinent, important information at your finger tips.

Our commitment to your success extends beyond the OR. We also offer access to our Customer Service, Medical Services and Support, Reimbursement Hotline and our world-class Surgeon Education groups. These are resources Bard Davol invests in for your success, staffed by experts who are passionate about offering you the best service and experience possible.

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Product Item IDProduct Item NamePackaging (SKU)Dimensions
5954450Ventralight™ ST Mesh1/cs4.5” (11.4cm) Circle
5954460Ventralight™ ST Mesh1/cs4” x 6” (10.2cm x 15.2cm) Ellipse
5954600Ventralight™ ST Mesh1/cs6” (15.2cm) Circle
5954680Ventralight™ ST Mesh1/cs6” x 8” (15.2cm x 20.3cm) Ellipse
5954610Ventralight™ ST Mesh1/cs6” x 10” (15.2cm x 25.4cm) Oval
5954790Ventralight™ ST Mesh1/cs7" x 9" (17.8cm x 22.9cm) Ellipse
5954800Ventralight™ ST Mesh1/cs8” (20.3cm) Circle
5954810Ventralight™ ST Mesh1/cs8” x 10” (20.3cm x 25.4cm) Ellipse
5954113Ventralight™ ST Mesh1/cs10” x 13” (25.4cm x 33cm) Ellipse
5954124Ventralight™ ST Mesh1/cs12” x 14” (30.5cm x 35.6cm) Rectangle

* Preclinical data on file at C. R. Bard. Results may not correlate to performance in humans.  
** Based on a preclinical study of a composite polypropylene/ePTFE hernia repair mesh.