Related Experiment Video
Updated: Sep 16, 2026

Using Q Suture to Enhance Resistance to Gap Formation and Tensile Strength of Repaired Flexor Tendons
Published on: June 3, 2020
Poor knot security when closing running sutures with three threads
Armondo Romeo1, Maurizio Giarola2, William Kondo3
1Department of Obstetrics and Gynaecology, University of Turin, Research Educational Centre, Torino, Italy.
Background:
Knot security varies with half-knot and half-hitch sequences, rotation sense, and the type and diameter of sutures.
Objectives:
To evaluate the security of knots with three threads, as used for tying off running sutures.
Methods:
Three-way randomised experiments, with a factorial design and 10 knots/cell. The first experiment evaluated the knot security of a surgical knot (H2H1sH1s) for single stitches (2 threads) or running sutures (3 threads), using polyglactin 910 or polydioxanone, of 2-0 or 1 diameter. The second experiment evaluated the knot security of a running suture with 4 or 5 half-hitch sequences and 2 or 3 blocking knots, using polyglactin 910 or polydioxanone, and with diameters of 2-0 or 1.
Main Outcome Measures:
Knot security in Newton, measured with a digital dynamometer. With increasing forces, the knot either slipped open or blocked, causing the suture to break.
Results:
In the first experiment, the knot security of surgical knots was less with monofilament (P=0.0004) and running sutures (P<0.0001), but not with suture diameter (three-way analysis of variance). Variability in outcome was greater with running sutures, especially with monofilament sutures of larger diameter. The second experiment demonstrated that half-hitch sequences occasionally opened with low forces, especially with larger monofilament sutures.
Conclusions:
Compared to knots tied with two threads, knots with three threads have a lower and more variable knot security, especially with larger monofilament sutures.
What Is New?:
Knots with 3 threads should be avoided, as they may occasionally open with forces below 30 or 10 Newton.