Morphology of the scaphotrapeziotrapezoid joint: A multi-domain statistical shape modeling approach.

J Orthop Res

Assistive and Restorative Technology Laboratory, Rehabilitation Medicine Research Center, Department of Physical Medicine and Rehabilitation, Mayo Clinic, Rochester, Minnesota, USA.

Published: November 2024

AI Article Synopsis

  • The STT joint is crucial for transferring loads between the wrist and thumb, and understanding its normal anatomy can help in diagnosing osteoarthritis.
  • This study uses statistical shape modeling (SSM) to analyze the variations in the shape and position of the STT joint in 30 adult participants, revealing significant factors that influence bone morphology.
  • Findings show that the first five modes of variation account for the majority of shape variations, and detailed measurements of joint space can aid in interpreting imaging results for the STT joint.

Article Abstract

The scaphotrapeziotrapezoid (STT) joint is involved in load transmission between the wrist and thumb. A quantitative description of baseline STT joint morphometrics is needed to capture the variation of normal anatomy as well as to guide staging of osteoarthritis. Statistical shape modeling (SSM) techniques quantify variations in three-dimensional shapes and relative positions. The objectives of this study are to describe the morphology of the STT joint using a multi-domain SSM. We asked: (1) What are the dominant modes of variation that impact bone and articulation morphology at the STT joint, and (2) what are the morphometrics of SSM-generated STT joints? Thirty adult participants were recruited to a computed tomography study of normal wrist imaging and biomechanics. Segmentations of the carpus were converted to three-dimensional triangular surface meshes. A multi-domain, particle-based entropy system SSM was used to quantify variation in carpal bone shape and position as well as articulation morphology. Articular surface areas and interosseous proximity distributions were calculated between mesh vertex pairs on adjacent bones within distance (2.0 mm) and surface-normal angular (35°) thresholds. In the SSM, the first five modes of variation captured 76.2% of shape variation and contributed to factors such as bone scale, articular geometries, and carpal tilt. Median interosseous proximities-a proxy for joint space-were 1.39 mm (scaphotrapezium), 1.42 mm (scaphotrapezoid), and 0.61 mm (trapeziotrapezoid). This study quantifies morphological and articular variations at the STT joint, presenting a range of normative anatomy. The range of estimated interosseous proximities may guide interpretation of imaging-derived STT joint space.

Download full-text PDF

Source
http://dx.doi.org/10.1002/jor.25918DOI Listing

Publication Analysis

Top Keywords

stt joint
24
joint
8
joint multi-domain
8
statistical shape
8
shape modeling
8
joint morphometrics
8
morphology stt
8
modes variation
8
articulation morphology
8
stt
7

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!