Literature DB >> 22938360

The acute effect of bipolar radiofrequency energy thermal chondroplasty on intrinsic biomechanical properties and thickness of chondromalacic human articular cartilage.

Nicholas Dutcheshen1, Tristan Maerz, Patrick Rabban, Roger C Haut, Keith D Button, Kevin C Baker, Joseph Guettler.   

Abstract

Radio frequency energy (RFE) thermal chondroplasty has been a widely-utilized method of cartilage debridement in the past. Little is known regarding its effect on tissue mechanics. This study investigated the acute biomechanical effects of bipolar RFE treatment on human chondromalacic cartilage. Articular cartilage specimens were extracted (n = 50) from femoral condyle samples of patients undergoing total knee arthroplasty. Chondromalacia was graded with the Outerbridge classification system. Tissue thicknesses were measured using a needle punch test. Specimens underwent pretreatment load-relaxation testing using a spherical indenter. Bipolar RFE treatment was applied for 45 s and the indentation protocol was repeated. Structural properties were derived from the force-time data. Mechanical properties were derived using a fibril-reinforced biphasic cartilage model. Statistics were performed using repeated measures ANOVA. Cartilage thickness decreased after RFE treatment from a mean of 2.61 mm to 2.20 mm in Grade II, II-III, and III specimens (P < 0.001 each). Peak force increased after RFE treatment from a mean of 3.91 N to 4.91 N in Grade II and III specimens (P = 0.002 and P = 0.003, respectively). Equilibrium force increased after RFE treatment from a mean of 0.236 N to 0.457 N (P < 0.001 each grade). Time constant decreased after RFE treatment from a mean of 0.392 to 0.234 (P < 0.001 for each grade). Matrix modulus increased in all specimens following RFE treatment from a mean 259.12 kPa to 523.36 kPa (P < 0.001 each grade). Collagen fibril modulus decreased in Grade II and II-III specimens from 60.50 MPa to 42.04 MPa (P < 0.001 and P = 0.005, respectively). Tissue permeability decreased in Grade II and III specimens from 2.04 ∗10(-15) m(4)/Ns to 0.91 ∗10(-15) m(4)/Ns (P < 0.001 and P = 0.009, respectively). RFE treatment decreased thickness, time constant, fibril modulus, permeability, but increased peak force, equilibrium force, and matrix modulus. While resistance to shear and tension could be compromised due to removal of the superficial layer and decreased fibril modulus, RFE treatment increases matrix modulus and decreases tissue permeability which may restore the load- bearing capacity of the cartilage.

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Year:  2012        PMID: 22938360     DOI: 10.1115/1.4007105

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  2 in total

1.  RFE based chondroplasty in wrist arthroscopy indicates high risk for chrondocytes especially for the bipolar application.

Authors:  Michaela Huber; Christoph Eder; Markus Loibl; Arne Berner; Johannes Zellner; Richard Kujat; Michael Nerlich; Sebastian Gehmert
Journal:  BMC Musculoskelet Disord       Date:  2015-01-31       Impact factor: 2.362

Review 2.  The Arthroscopic Application of Radiofrequency in Treatment of Articular Cartilage Lesions.

Authors:  Chaosheng Lin; Zhenhan Deng; Jianyi Xiong; Wei Lu; Kang Chen; Yizi Zheng; Weimin Zhu
Journal:  Front Bioeng Biotechnol       Date:  2022-01-20
  2 in total

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