Imaging of subchondral bone by optical coherence tomography upon optical clearing of articular cartilage

Author:

Bykov Alexander123,Hautala Tapio1,Kinnunen Matti1,Popov Alexey123,Karhula Sakari45,Saarakkala Simo456,Nieminen Miika T.567,Tuchin Valery189,Meglinski Igor123

Affiliation:

1. Optoelectronics and Measurement Techniques Laboratory; University of Oulu; P.O. Box 4500 90014 Oulu Finland

2. ITMO University; 49 Kronverksky pr. Saint-Petersburg 197101 Russia

3. Interdisciplinary Laboratory of Biophotonics; Tomsk State University; Tomsk 634050 Russia

4. Department of Medical Technology, Institute of Biomedicine; University of Oulu; P.O. Box 5000 90014 Oulu Finland

5. Medical Research Center; University of Oulu and Oulu University Hospital; P.O. Box 50 90029 Oulu Finland

6. Department of Diagnostic Radiology; Oulu University Hospital; P.O. Box 50 90029 Oulu Finland

7. Department of Radiology; University of Oulu; P.O. Box 5000 90014 Oulu Finland

8. Research-Educational Institute of Optics and Biophotonics; Saratov State University; 410012 Saratov Russia

9. Institute of Precise Mechanics and Control of Russian Academy of Sciences; Russian Academy of Sciences; 410028 Saratov Russia

Funder

FiDiPro project

TEKES (Finnish Funding Agency for Technology and Innovation)

Academy of Finland

Russian Presidential

Government of the Russian Federation

The Tomsk State University Academic D.I. Mendeleev Fund Program, Academy of Finland

European Research Council under the European Union™ Seventh Framework Programme

ERC Grant Agreement

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,General Biochemistry, Genetics and Molecular Biology,General Materials Science,General Chemistry

Reference39 articles.

1. Subchondral bone in osteoarthritis: insight into risk factors and microstructural changes

2. V. V. Tuchin Coherent-Domain Optical Methods: Biomedical Diagnostics, Environmental Monitoring and Material Science, V. 2 (Second edition. Berlin, Heidelberg, N.Y.; Springer-Verlag, 2013)

3. Imaging of subcutaneous microcirculation vascular network by double correlation Optical Coherence Tomography

4. Assessment of transcutaneous vaccine delivery by optical coherence tomography

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