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Miscellaneous

Comparison of optical coherence tomography and histopathology in quantitative assessment of goat talus articular cartilage

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Pages 257-263 | Received 16 Jan 2014, Accepted 05 Aug 2014, Published online: 28 Oct 2014

  • Adams S B, Herz P R, Stamper D L, Roberts M J, Bourquin S, Patel N A, et al. High-resolution imaging of progressive articular cartilage degeneration. J Orthop Res 2006; 24(4): 708–15.
  • Bear D M, Szczodry M, Kramer S, Coyle C H, Smolinski P, Chu C R. Optical coherence tomography detection of subclinical traumatic cartilage injury. J Orthop Trauma 2010; 24(9): 577–82.
  • Bus M T J, Muller B G, de Bruin D M, Faber D J, Kamphuis G M, van Leeuwen T G, et al. Volumetric in vivo visualization of upper urinary tract tumors using optical coherence tomography: a pilot study. J Urol 2013; 190(6): 2236–42.
  • Cernohorsky P, de Bruin D M, van Herk M, Bras J, Faber D J, Strackee S D, et al. In-situ imaging of articular cartilage of the first carpometacarpal joint using co-registered optical coherence tomography and computed tomography. J Biomed Opt 2012; 17(6): 060501.
  • Changoor A, Nelea M, Méthot S, Tran-Khanh N, Chevrier A, Restrepo A, et al. Structural characteristics of the collagen network in human normal, degraded and repair articular cartilages observed in polarized light and scanning electron microscopies. Osteoarthritis Cartilage 2011; 19(12): 1458–68.
  • Chu C R, Lin D, Geisler J L, Chu C T, Fu F H, Pan Y. Arthroscopic microscopy of articular cartilage using optical coherence tomography. Am J Sports Med 2004; 32(3): 699–709.
  • Chu C R, Izzo N J, Irrgang J J, Ferretti M, Studer R K. Clinical diagnosis of potentially treatable early articular cartilage degeneration using optical coherence tomography. J Biomed Opt 2007; 12(5): 051703.
  • Chu C R, Williams A, Tolliver D, Kwoh C K, Bruno S, Irrgang J J. Clinical optical coherence tomography of early articular cartilage degeneration in patients with degenerative meniscal tears. Arthritis Rheum 2010; 62(5): 1412–20.
  • de Bruin D M, Bremmer R H, Kodach V M, de Kinkelder R, van Marle J, van Leeuwen T G, et al. Optical phantoms of varying geometry based on thin building blocks with controlled optical properties. J Biomed Opt 2010; 15(2): 025001.
  • Drexler W, Stamper D, Jesser C, Li X, Pitris C, Saunders K, et al. Correlation of collagen organization with polarization sensitive imaging of in vitro cartilage: implications for osteoarthritis. J Rheumatol 2001; 28(6): 1311–8.
  • Faber D, van der Meer F, Aalders M, van Leeuwen T. Quantitative measurement of attenuation coefficients of weakly scattering media using optical coherence tomography. Opt Express 2004; 12(19): 4353–65.
  • Han C W, Chu C R, Adachi N, Usas A, Fu F H, Huard J, et al. Analysis of rabbit articular cartilage repair after chondrocyte implantation using optical coherence tomography. Osteoarthritis Cartilage 2003; 11(2): 111–21.
  • Liu B, Vercollone C, Brezinski M E. Towards improved collagen assessment: polarization-sensitive optical coherence tomography with tailored reference arm polarization. Int J Biomed Imaging 2012; 2012: 892680.
  • Niemelä T, Virén T, Liukkonen J, Argüelles D, Moller te N C R, Puhakka P H, et al. Application of optical coherence tomography enhances reproducibility of arthroscopic evaluation of equine joints. Acta Vet Scand 2014; 56(1): 3.
  • Pan Y, Li Z, Xie T, Chu C R. Hand-held arthroscopic optical coherence tomography for in vivo high-resolution imaging of articular cartilage. J Biomed Opt 2003; 8(4): 648–54.
  • Pastoureau P C, Hunziker E B, Pelletier J-P. Cartilage, bone and synovial histomorphometry in animal models of osteoarthritis. Osteoarthritis Cartilage 2010; 18 Suppl 3: S106–12.
  • Saarakkala S, Wang S-Z, Huang Y-P, Zheng Y-P. Quantification of the optical surface reflection and surface roughness of articular cartilage using optical coherence tomography. Phys Med Biol 2009; 54(22): 6837–52.
  • Tearney G J, Brezinski M E, Southern J F, Bouma B E, Hee M R, Fujimoto J G. Determination of the refractive index of highly scattering human tissue by optical coherence tomography. Opt Lett 1995; 20(21): 2258.
  • van Bergen C J A, Kerkhoffs G M M J, Marsidi N, Korstjens C M, Everts V, van Ruijven L J, et al. Osteochondral defects of the talus: a novel animal model in the goat. Tissue Eng Part C Methods 2013; 19(6): 449–57.
  • van Leeuwen T G, Faber D J, Aalders M C. Measurement of the axial point spread function in scattering media using single-mode fiber-based optical coherence tomography. IEEE J Select Topics Quantum Electron 2003; 9(2): 2 27–33.
  • Virén T, Huang Y P, Saarakkala S, Pulkkinen H, Tiitu V, Linjama A, et al. Comparison of ultrasound and optical coherence tomography techniques for evaluation of integrity of spontaneously repaired horse cartilage. J Med Eng Technol 2012; 36(3): 185–92.
  • Wessels R R, de Bruin D M D, Faber D J D, van Boven H H H, Vincent A D A, van Leeuwen T G T, et al. Optical coherence tomography in vulvar intraepithelial neoplasia. J Biomed Opt 2012; 17(11): 116022–2.
  • Xie T, Xia Y, Guo S, Hoover P, Chen Z, Peavy G M. Topographical variations in the polarization sensitivity of articular cartilage as determined by polarization-sensitive optical coherence tomography and polarized light microscopy. J Biomed Opt 2008; 13(5): 054034.
  • Zheng K, Martin S D, Rashidifard C H, Liu B, Brezinski M E. In vivo micron-scale arthroscopic imaging of human knee osteoarthritis with optical coherence tomography: comparison with magnetic resonance imaging and arthroscopy. Am J Orthop 2010; 39(3): 122–5.