261
Kesel AB, Liedert R (2007b) Learning from nature: non–toxic biofouling control by shark skin
effect. In: SEB 2007 Abstracts. CBP Part A 146(4):130
Landreneau EB (2011) Scales and scale–like structures. Dissertation, Texas A&M University,
College Station
Lang AW, Motta P, Hidalgo P, Westcott M (2008) Bristled shark skin: a microgeometry for boundary layer control? Bioinsp Biomim 3:046005 (9pp). doi: 10.1088/1748-3182/3/4/046005 .
Copyright © 2008 IOP Publishing Ltd. Reprinted with permission
Lauder GV (2011) Swimming hydrodynamics: ten questions and the technical approaches needed
to resolve them. Exp Fluids 51:23–35
Laufer B (1914) Chinese clay fi gures, vol 13. Field Museum of Natural History, Chicago
Lee S–J, Lee S–H (2001) Flow fi eld analysis of a turbulent boundary layer over a riblet surface.
Exp Fluids 30:153–166
Lin et al (2011) Reprinted from Lin YS, Wei CT, Olevsky EA, Meyers MA (2011) Mechanical
properties and the laminate structure of Arapaima gigas scales. J Mech Behav Biomed Mater
4(7):1145–1156. Copyright (2011), with permission from Elsevier
Liu K, Jiang L (2011) Bio–inspired design of multiscale structures for function integration. Nano
Today 6:155–175
Liu K, Jiang L (2012) Bio–Inspired self–cleaning surfaces. Annu Rev Mater Res 42:231–263
Liu MJ, Wang ST, Wei ZX et al (2009) Bioinspired design of a superoleophobic and low adhesive
water/solid interface. Adv Mater 21:665–669
Liu X, Gao J, Xue Z et al (2012) Bioinspired oil strider fl oating at the oil/water interface supported
by huge superoleophobic force. ACS Nano 6(6):5614–5620
Mann S (2001) Biomineralization. Principles and concepts in bioinorganic materials chemistry.
Oxford University Press, New York
Meunier F, Brito P (2004) Histology and morphology of the scales in some extinct and extant
teleosts. Cybium 28:225–235
Mollendorf J, Termin A, Openheim E et al (2004) Effect of swim suit design on passive drag. Med
Sci Sports Exerc 36:1029–1035
Motta P (1977) Anatomy and functional morphology of dermal collagen fi bers in sharks. Copeia
1977:454–464
Oeffner and Lauder (2012) Republished with permission of The Company of Biologists Ltd, from
Oeffner J, Lauder GV (2012) The hydrodynamic function of shark skin and two biomimetic
applications. J Exp Biol 215:785–795. Copyright (2012); permission conveyed through
Copyright Clearance Center, Inc
Ortiz C, Boyce MC (2008) Materials science–bioinspired structural materials. Science
319:1053–1054
Price P (1983) An interesting fi nd of Lorica Plumata from the Roman Fortress at UK. In: Bishop
MC (ed) Roman military equipment: proceedings of a seminar held in the department of
ancient history and classical archaeology at the University of Sheffi eld, Sheffi eld
Robinson HR (1975) The armour of imperial Rome. Lionel Leventhal Limited, London
Salta M, Wharton JA, Stoodley P et al (2010) Designing biomimetic antifouling surfaces. Philos
Trans A Math Phys Eng Sci 368(1929):4729–4754
Schumacher JF, Carman ML, Estes TG et al (2007) Engineered antifouling microtopographies–
effect of feature size, geometry, and roughness on settlement of zoospores of the green alga
Ulva. Biofouling 23(1–2):55–62
Shadwick RE, Lauder GV (2006) Fish biomechanics. Elsevier Academic Press, San Diego
Shephard KL (1994) Functions for fi sh mucus. Rev Fish Biol Fish 4:401–429
Sire JY, Donoghue PCJ, Vickaryous M (2009) Origin and evolution of the integumentary skeleton
in non–tetrapod vertebrates. J Anat 214:409–440
Song J (2011) Multiscale materials design of natural exoskeletons: fi sh armor. PhD dissertation,
Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, 282 p
References
Kesel AB, Liedert R (2007b) Learning from nature: non–toxic biofouling control by shark skin
effect. In: SEB 2007 Abstracts. CBP Part A 146(4):130
Landreneau EB (2011) Scales and scale–like structures. Dissertation, Texas A&M University,
College Station
Lang AW, Motta P, Hidalgo P, Westcott M (2008) Bristled shark skin: a microgeometry for boundary layer control? Bioinsp Biomim 3:046005 (9pp). doi: 10.1088/1748-3182/3/4/046005 .
Copyright © 2008 IOP Publishing Ltd. Reprinted with permission
Lauder GV (2011) Swimming hydrodynamics: ten questions and the technical approaches needed
to resolve them. Exp Fluids 51:23–35
Laufer B (1914) Chinese clay fi gures, vol 13. Field Museum of Natural History, Chicago
Lee S–J, Lee S–H (2001) Flow fi eld analysis of a turbulent boundary layer over a riblet surface.
Exp Fluids 30:153–166
Lin et al (2011) Reprinted from Lin YS, Wei CT, Olevsky EA, Meyers MA (2011) Mechanical
properties and the laminate structure of Arapaima gigas scales. J Mech Behav Biomed Mater
4(7):1145–1156. Copyright (2011), with permission from Elsevier
Liu K, Jiang L (2011) Bio–inspired design of multiscale structures for function integration. Nano
Today 6:155–175
Liu K, Jiang L (2012) Bio–Inspired self–cleaning surfaces. Annu Rev Mater Res 42:231–263
Liu MJ, Wang ST, Wei ZX et al (2009) Bioinspired design of a superoleophobic and low adhesive
water/solid interface. Adv Mater 21:665–669
Liu X, Gao J, Xue Z et al (2012) Bioinspired oil strider fl oating at the oil/water interface supported
by huge superoleophobic force. ACS Nano 6(6):5614–5620
Mann S (2001) Biomineralization. Principles and concepts in bioinorganic materials chemistry.
Oxford University Press, New York
Meunier F, Brito P (2004) Histology and morphology of the scales in some extinct and extant
teleosts. Cybium 28:225–235
Mollendorf J, Termin A, Openheim E et al (2004) Effect of swim suit design on passive drag. Med
Sci Sports Exerc 36:1029–1035
Motta P (1977) Anatomy and functional morphology of dermal collagen fi bers in sharks. Copeia
1977:454–464
Oeffner and Lauder (2012) Republished with permission of The Company of Biologists Ltd, from
Oeffner J, Lauder GV (2012) The hydrodynamic function of shark skin and two biomimetic
applications. J Exp Biol 215:785–795. Copyright (2012); permission conveyed through
Copyright Clearance Center, Inc
Ortiz C, Boyce MC (2008) Materials science–bioinspired structural materials. Science
319:1053–1054
Price P (1983) An interesting fi nd of Lorica Plumata from the Roman Fortress at UK. In: Bishop
MC (ed) Roman military equipment: proceedings of a seminar held in the department of
ancient history and classical archaeology at the University of Sheffi eld, Sheffi eld
Robinson HR (1975) The armour of imperial Rome. Lionel Leventhal Limited, London
Salta M, Wharton JA, Stoodley P et al (2010) Designing biomimetic antifouling surfaces. Philos
Trans A Math Phys Eng Sci 368(1929):4729–4754
Schumacher JF, Carman ML, Estes TG et al (2007) Engineered antifouling microtopographies–
effect of feature size, geometry, and roughness on settlement of zoospores of the green alga
Ulva. Biofouling 23(1–2):55–62
Shadwick RE, Lauder GV (2006) Fish biomechanics. Elsevier Academic Press, San Diego
Shephard KL (1994) Functions for fi sh mucus. Rev Fish Biol Fish 4:401–429
Sire JY, Donoghue PCJ, Vickaryous M (2009) Origin and evolution of the integumentary skeleton
in non–tetrapod vertebrates. J Anat 214:409–440
Song J (2011) Multiscale materials design of natural exoskeletons: fi sh armor. PhD dissertation,
Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, 282 p
References
