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Biomechanical Comparison of 1- and 2-Tunnel Suture Suspensionplasty Constructs for Basilar Thumb Arthritis.

Journal articles  - Journal Article
Lorenzana, DJ; Abar, B; DiPrinzio, EV; Vail, E; Welch, JM; Klifto, CS; Ruch, DS; Richard, MJ; Gall, K; Pidgeon, TS
Published in: Hand (N Y)
August 2026

BACKGROUND: Trapeziectomy with suture button suspensionplasty (SBS) is a common treatment for thumb carpometacarpal (CMC) osteoarthritis. This study aimed to evaluate the effect of bone tunnel configuration and suture count on the construct stability. METHODS: Twelve matched specimens underwent trapeziectomy and randomization to either a 2-strand 1-tunnel (single SBS) or divergent 4-strand 2-tunnel suture button (crossed dual SBS) construct. Mechanical stiffness was measured using material testing machine with a semiconstrained axial load over 5-mm displacement. Trapezial space was measured under no load and in a light and heavy physiologic pinch grip models. Subsequently, specimens were randomized to undergo single SBS or divergent 2-strand 2-tunnel suture (crossed suture) constructs, and loaded pinch testing was performed. Primary outcomes were analyzed using matched-pair t-tests. RESULTS: The crossed dual SBS construct showed significantly higher stiffness compared to the single SBS construct in elastic deformation (19.9 vs 15.5 N/mm, P = .010) and maintained trapezial height better in both light (82% vs 71%, P = .021) and heavy (73% vs 46%, p = .004) pinch grips. The crossed suture technique also preserved trapezial height better than the single SBS construct in light (79% vs 64%, P = 0.021) and heavy (60% vs 44%, P = 0.039) pinch grips. CONCLUSIONS: In the immediate postoperative period, a crossed dual SBS construct was stiffer to axial load and more stable in pinch grip compared to a single SBS construct. The novel crossed suture construct better preserved trapezial height then the singe SBS, suggesting that the crossed configuration may be more relevant than suture count in postoperative stability.

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Published In

Hand (N Y)

DOI

EISSN

1558-9455

Publication Date

August 2026

Volume

21

Issue

7

Start / End Page

1110 / 1119

Location

United States

Related Subject Headings

  • Trapezium Bone
  • Thumb
  • Sutures
  • Suture Techniques
  • Osteoarthritis
  • Orthopedics
  • Humans
  • Carpometacarpal Joints
  • Biomechanical Phenomena
  • 3202 Clinical sciences
 

Citation

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Lorenzana, D. J., Abar, B., DiPrinzio, E. V., Vail, E., Welch, J. M., Klifto, C. S., … Pidgeon, T. S. (2026). Biomechanical Comparison of 1- and 2-Tunnel Suture Suspensionplasty Constructs for Basilar Thumb Arthritis. Hand (N Y), 21(7), 1110–1119. https://doi.org/10.1177/15589447251350175
Lorenzana, Daniel J., Bijan Abar, Eliseo V. DiPrinzio, Elijah Vail, Jessica M. Welch, Christopher S. Klifto, David S. Ruch, Marc J. Richard, Ken Gall, and Tyler S. Pidgeon. “Biomechanical Comparison of 1- and 2-Tunnel Suture Suspensionplasty Constructs for Basilar Thumb Arthritis.Hand (N Y) 21, no. 7 (August 2026): 1110–19. https://doi.org/10.1177/15589447251350175.
Lorenzana DJ, Abar B, DiPrinzio EV, Vail E, Welch JM, Klifto CS, et al. Biomechanical Comparison of 1- and 2-Tunnel Suture Suspensionplasty Constructs for Basilar Thumb Arthritis. Hand (N Y). 2026 Aug;21(7):1110–9.
Lorenzana, Daniel J., et al. “Biomechanical Comparison of 1- and 2-Tunnel Suture Suspensionplasty Constructs for Basilar Thumb Arthritis.Hand (N Y), vol. 21, no. 7, Aug. 2026, pp. 1110–19. Pubmed, doi:10.1177/15589447251350175.
Lorenzana DJ, Abar B, DiPrinzio EV, Vail E, Welch JM, Klifto CS, Ruch DS, Richard MJ, Gall K, Pidgeon TS. Biomechanical Comparison of 1- and 2-Tunnel Suture Suspensionplasty Constructs for Basilar Thumb Arthritis. Hand (N Y). 2026 Aug;21(7):1110–1119.
Journal cover image

Published In

Hand (N Y)

DOI

EISSN

1558-9455

Publication Date

August 2026

Volume

21

Issue

7

Start / End Page

1110 / 1119

Location

United States

Related Subject Headings

  • Trapezium Bone
  • Thumb
  • Sutures
  • Suture Techniques
  • Osteoarthritis
  • Orthopedics
  • Humans
  • Carpometacarpal Joints
  • Biomechanical Phenomena
  • 3202 Clinical sciences