Traction Suture Technique

Traction suture technique is a surgical method in which strategically placed sutures provide controlled tension to grasp, position, or retract tissue during an operation. By anchoring the suture in tissue and applying measured force, the surgeon stabilizes a structure or creates exposure while limiting the need for direct instrument pressure; tension must remain gentle enough to avoid tearing, ischemia, or unintended distortion. In medicine, traction sutures support procedures that require precise visualization and manipulation, including tissue repair, reconstruction, and access to confined operative fields. Their use can improve handling and operative control, while careful placement and tension management help protect tissue integrity.

Traction Suture Technique - Related Videos

Research

JoVE EoE - Large Animal Models

Q Suture Technique: A Suturing Technique to Reduce Gap Formation and Increase Tensile Strength in Tendon Repair

0 Views •

2025

In this video, we demonstrate suturing techniques — core suture and Q suture — to repair the foot flexor tendon in an ex vivo porcine model. Q sutures enhance the strength of the core suture in tendon repair and decrease gapping at the tendon repair site.

Traction Cytometry Assay: A Method to Quantify Traction Force Exerted by Cancer Cells on ECM

0 Views •

2023

This video describes the traction force microscopy assay. The assay determines the cellular traction of human colon cancer cells on the extracellular matrix present on soft elastic hydrogel having embedded fluorescent beads. The resultant displacement of fluorescent beads is measured using an appropriate software.

A Novel Arthroscopic Medial Knot-Tying Suture-Bridge Repair with Rip-Stop Technique for Rotator Cuff Tears

0 Views •

2026

This protocol presents an optimized rotator cuff repair technique that combines the medial knot-tying suture-bridge repair with a rip-stop configuration, designed to enhance cuff healing and minimize the risk of retear.

Polyacrylamide Gels for Invadopodia and Traction Force Assays on Cancer Cells

0 Views •

Cited by 9 •

2015

Mechanical rigidity in the tumor microenvironment plays a crucial role in driving malignant behavior by increasing invadopodia activity and actomyosin contractility. Using polyacrylamide gels (PAAs), invadopodia and traction force assays can be utilized to study the invasive and contractile properties of cancer cells in response to matrix rigidity.

Novel Triple-Loop Technique for Suturing TFCC Injuries without Transosseous Tunnel

0 Views •

2025

The protocol presented here introduces a new surgical technique for the treatment of triangular fibrocartilage complex injuries.

View All Results

FAQs

Related Topics