Quantitative Evaluation of Equine Articular Cartilage Using Cationic Contrast-Enhanced Computed Tomography

Author:

Nelson Brad B.1ORCID,Stewart Rachel C.2,Kawcak Chris E.1,Freedman Jonathan D.3,Patwa Amit N.4,Snyder Brian D.5,Goodrich Laurie R.1,Grinstaff Mark W.6

Affiliation:

1. Colorado State University, Fort Collins, CO, USA

2. Imaging Scientist, inviCRO, LLC, Boston, MA, USA

3. Plastic and Reconstructive Surgery, School of Surgery, University of Colorado, Aurora, CO, USA

4. Navrachana University, Vadodra, Gujarat, India

5. Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA

6. Boston University, Boston, MA, USA

Abstract

Objective To investigate the diffusion trajectory of a cationic contrast medium (CA4+) into equine articular cartilage, and to assess normal and degenerative equine articular cartilage using cationic contrast-enhanced computed tomography (CECT). Design In the first experiment (Exp1), equine osteochondral specimens were serially imaged with cationic CECT to establish the diffusion time constant and time to reach equilibrium in healthy articular cartilage. In a separate experiment (Exp2), articular cartilage defects were created on the femoral trochlea (defect joint) in a juvenile horse, while the opposite joint was a sham-operated control. After 7 weeks, osteochondral biopsies were collected throughout the articular surfaces of both joints. Biopsies were analyzed for cationic CECT attenuation, glycosaminoglycan (GAG) content, mechanical stiffness (Eeq), and histology. Imaging, biochemical and mechanical data were compared between defect and control joints. Results Exp1: The mean diffusion time constant was longer for medial condyle cartilage (3.05 ± 0.1 hours) than lateral condyle cartilage (1.54 ± 0.3 hours, P = 0.04). Exp2: Cationic CECT attenuation was lower in the defect joint than the control joint ( P = 0.005) and also varied by anatomic location ( P = 0.045). Mean cationic CECT attenuation from the lateral trochlear ridge was lower in the defect joint than in the control joint (2223 ± 329 HU and 2667 ± 540 HU, respectively; P = 0.02). Cationic CECT attenuation was strongly correlated with both GAG (ρ = 0.79, P < 0.0001) and Eeq (ρ = 0.61, P < 0.0001). Conclusions The equilibration time of CA4+ into equine articular cartilage is affected by tissue volume. Quantitative cationic CECT imaging reflects the biochemical, biomechanical and histological state of normal and degenerative equine articular cartilage.

Funder

Cooperative Veterinary Scientist Research Training Fellowship

NIH

NIH T32 Pharmacology Training Grant

Gail Holmes Equine Orthopedic Research Center

Grayson-Jockey Club Research Foundation

Boston University

Publisher

SAGE Publications

Subject

Physical Therapy, Sports Therapy and Rehabilitation,Biomedical Engineering,Immunology and Allergy

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