Published November 20, 2019
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Morphological features of mucous secretory organ and mucous secretion of loach Misgurnus anguillicaudatus skin for friction drag reduction
Authors/Creators
- 1. Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, South Korea
- 2. Industrial Technology Convergence Center, Pohang Accerlerator Laboratory (PAL), Pohang, South Korea
- 3. Division of Integrative Biosciences and Biotechnology (IBB), Pohang University of Science and Technology (POSTECH), Pohang, South Korea
Description
Seo, Eunseok, Yoon, Gun-Young, Kim, Hae-Nyeok, Lim, Jae H., Kim, Seonghan, Kim, Bumju, Kim, Ki H., Lee, Sang J. (2020): Morphological features of mucous secretory organ and mucous secretion of loach Misgurnus anguillicaudatus skin for friction drag reduction. Journal of Fish Biology 96 (1): 83-91, DOI: 10.1111/jfb.14186, URL: http://dx.doi.org/10.1111/jfb.14186
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- urn:lsid:plazi.org:pub:FFCCCD349723FFAEFFE41D2FFFF1554C
References
- Anderson, E. J., McGillis, W. R., & Grosenbaugh, M. A. (2001). The boundary layer of swimming fish. The Journal of Experimental Biology, 204, 81-102.
- Argenziano, G., & Soyer, H. P. (2001). Dermoscopy of pigmented skin lesions-a valuable tool for early. The Lancet Oncology, 2, 443-449.
- Bafounta, M.-L., Beauchet, A., Aegerter, P., & Saiag, P. (2001). Is dermoscopy (epiluminescence microscopy) useful for the diagnosis of melanoma?: Results of a meta-analysis using techniques adapted to the evaluation of diagnostic tests. Archives of Dermatology, 137, 1343-1350.
- Bixler, G. D., & Bhushan, B. (2012a). Bioinspired rice leaf and butterfly wing surface structures combining shark skin and lotus effects. Soft Matter, 8, 11271-11284.
- Bixler, G. D., & Bhushan, B. (2012b). Biofouling: Lessons from nature. Philosophical Transactions of the Royal Society A, 370, 2381-2417.
- Bragadeeswaran, S., Priyadharshini, S., Prabhu, K., & Rani, S. R. (2011). Antimicrobial and hemolytic activity of fish epidermal mucus Cynoglossus arel and Arius caelatus. Asian Pacific Journal of Tropical Medicine, 4, 305-309.
- Braun, R. P., Rabinovitz, H. S., Oliviero, M., Kopf, A. W., & Saurat, J.-H. (2005). Dermoscopy of pigmented skin lesions. Journal of the American Academy of Dermatology, 52, 109-121.
- Browning, A., Ortiz, C., & Boyce, M. C. (2013). Mechanics of composite elasmoid fish scale assemblies and their bioinspired analogues. Journal of the Mechanical Behavior of Biomedical Materials, 19, 75-86.
- Burdak, V. D., Meunier, F. J., & Sire, J.-Y. (1986). Morphologie fonctionnelle du tegument ecailleux des poissons. Cybium, 10, 139-145.
- Cheng, K. C., Xin, X., Clark, D. P., & La Riviere, P. (2011). Whole-animal imaging, gene function and the Zebrafish Phenome Project. Current Opinion in Genetics & Development, 21, 620-629.
- Chintapalli, R. K., Mirkhalaf, M., Dastjerdi, A. K., & Barthelat, F. (2014). Fabrication, testing and modeling of a new flexible armor inspired from natural fish scales and osteoderms. Bioinspiration & Biomimetics, 9, 036005.
- Duro-Royo, J., Zolotovsky, K., Mogas-Soldevila, L., Varshney, S., Oxman, N., Boyce, M. C., & Ortiz, C. (2015). MetaMesh: A hierarchical computational model for design and fabrication of biomimetic armored surfaces. Computer-Aided Design, 60, 14-27.
- Ghosh, R., Ebrahimi, H., & Vaziri, A. (2014). Contact kinematics of biomimetic scales. Applied Physics Letters, 105, 233701.
- Huang, D., Swanson, E. A., Lin, C. P., Schuman, J. S., Stinson, W. G., Chang, W., … Fujimoto, J. G. (1991). Optical Coherence Tomography. Science, 254, 1178-1181.
- Kimura, M., Hama, Y., Sumi, T., Asakawa, M., Rao, B., Horne, A., … Nakagawa, H. (1994). Characterization of a deaminated neuraminic acid-containing glycoprotein from the skin mucus of the loach, Misgurnus anguillicaudatus. The Journal of Biological Chemistry, 269, 32138-32143.
- Kwon, S., Yoon, Y., Kim, B., Jang, W. H., Oh, B., Chung, K. Y., & Kim, K. H. (2017). Dermoscopy guided dark-field multi-functional optical coherence tomography. Biomedical Optics Express, 8, 1372-1381.
- Liu, D., Tao, X., Wang, Y., Cai, B., Du, M., & Zheng, Q. (2010). Rheological behavior of loach skin mucus. Acta Polymerica Sinica, 4, 468-473.
- Long, J., Hale, M., Mchenry, M., & Westneat, M. (1996). Functions of fish skin: Flexural stiffness and steady swimming of longnose gar, Lepisosteus osseus. The Journal of Experimental Biology, 199, 2139-2151.
- Metscher, B. D. (2009). MicroCT for comparative morphology: Simple staining methods allow high-contrast 3D imaging of diverse nonmineralized animal tissues. BMC Physiology, 9, 11.
- Meunier, F. J., & Brito, P. M. (2004). Histology and morphology of the scales in some extinct and extant teleosts. Cybium, 28, 225-235.
- Seo, E., Lim, J. H., Seo, S. J., & Lee, S. J. (2015). Whole-Body Imaging of a Hypercholesterolemic Female Zebrafish by Using Synchrotron X-Ray Micro-CT. Zebrafish, 12, 11-20.
- Shephard, K. L. (1994). Functions for fish mucus. Reviews in Fish Biology and Fisheries, 4, 401-429.
- Sire, J. Y., & Arnulf, I. (2000). Structure and development of the ctenial spines on the scales of a teleost fish, the cichlid Cichlasoma nigrofasciatum. Acta Zoologica, 81, 139-158.
- Sire, J.-Y., & Huysseune, A. (2003). Formation of dermal skeletal and dental tissues in fish: A comparative and evolutionary approach. Biological Reviews, 78, 219-249.
- Song, J., Ortiz, C., & Boyce, M. C. (2011). Threat-protection mechanics of an armored fish. Journal of the Mechanical Behavior of Biomedical Materials, 4, 699-712.
- Sudo, S., Tsuyuki, K., Ito, Y., & Ikohagi, T. (2002). A study on the surface shape of fish scales. JSME International Journal Series C Mechanical Systems, Machine Elements and Manufacturing, 45, 1100-1105.
- Szewciw, L., Zhu, D., & Barthelat, F. (2017). The nonlinear flexural response of a whole teleost fish: Contribution of scales and skin. Journal of the Mechanical Behavior of Biomedical Materials, 76, 97-103.
- Vernerey, F. J., & Barthelat, F. (2010). On the mechanics of fishscale structures. International Journal of Solids and Structures, 47, 2268-2275.
- Vernerey, F. J., & Barthelat, F. (2014). Skin and scales of teleost fish: Simple structure but high performance and multiple functions. Journal of the Mechanics and Physics of Solids, 68, 66-76.
- Vestergaard, M., Macaskill, P., Holt, P., & Menzies, S. (2008). Dermoscopy compared with naked eye examination for the diagnosis of primary melanoma: A meta-analysis of studies performed in a clinical setting. The British Journal of Dermatology, 159, 669-676.
- Wainwright, D. K., & Lauder, G. V. (2017). Mucus matters: The slippery and complex surfaces of fish. In Functional surfaces in biology III (pp. 223-246). Cham, Switzerland: Springer.
- Wainwright, S., Vosburgh, F., & Hebrank, J. (1978). Shark skin: Function in locomotion. Science, 202, 747-749.
- Walters, V. (1963). The trachipterid integument and an hypothesis on its hydrodynamic function. Copeia, 1963, 260-270.
- Wang, X., Su, H., Lv, W., Du, M., Song, Y., & Zheng, Q. (2015). Complex rheological behaviors of loach (Misgurnus anguillicaudatus) skin mucus. Journal of Rheology, 59, 51-62.
- Wu, L., Jiao, Z., Song, Y., Ren, W., Niu, S., & Han, Z. (2017). Water-trapping and drag-reduction effects of fish Ctenopharyngodon idellus scales and their simulations. Science China-Technological Sciences, 60, 1111-1117.
- Yanase, K., & Saarenrinne, P. (2015). Unsteady turbulent boundary layers in swimming rainbow trout. The Journal of Experimental Biology, 218, 1373-1385.
- Yoon, Y., Li, Q., Le, V. H., Jang, W. H., Wang, T., Kim, B., … Kim, K. H. (2015). Dark-field polarization-sensitive optical coherence tomography. Optics Express, 23, 12874-12886.