313
Krukenberg C (1885) Über die chemische beschaffenheit der sog. hornfäden von mustelus und
über die zusammensetzung der keratinösen hüllen um die eier von Scyllium stellate .
Mittheilungen Zool Stat Neapel 6:286–296
Ku CC, Lu CH, Wang CS (2010) Establishment and characterization of a fi broblast cell line
derived from the dorsal fi n of red sea bream, Pagrus major (Temminck & Schlegel). J Fish Dis
33(3):187–196
Lagler KF, Bardach JE, Miller RR et al (1977) Ichthyology, 2nd edn. Wiley, New York
Lai YS, John JA, Lin CH (2003) Establishment of cell lines from a tropical grouper, Epinephelus
awoara (Temminck & Schlegel), and their susceptibility to grouper irido- and nodaviruses. J
Fish Dis 26(1):31–42
Lakra WS, Swaminathan TR, Rathore G et al (2010) Development and characterization of three
new diploid cell lines from Labeo rohita (Ham.). Biotechnol Prog 26(4):1008–1013
Latimer-Needham CH (1951) Flying-fi sh aerodynamics. Flight 26:535–536
Lauder GV (1989) Caudal fi n locomotion in ray-fi nned fi shes: historical and functional analyses.
Am Zool 29(1):85–102, by permission of Oxford University Press
Lauder GV (2006) Locomotion. In: Evans DH, Claiborne JB (eds) The physiology of fi shes, 3rd
edn. CRC Press, Boca Raton, pp 3–46
Lauder GV, Drucker EG (2004) Morphology and experimental hydrodynamics of fi sh fi n control
surfaces. IEEE J Ocean Eng 29:556–571
Lauder GV, Madden PGA (2006) Learning from fi sh: kinematics and experimental hydrodynamics
for roboticists. Int J Autom Comput 4:325–335
Lauder GV et al (2007) Republished with permission of Company of Biologists Ltd., from Lauder
GV, Anderson EJ, Tangorra J, Madden PG (2007) Fish biorobotics: kinematics and hydrodynamics of self-propulsion. J Exp Biol 210(Pt 16):2767–2780. Copyright (2007) permission
conveyed through Copyright Clearance Center, Inc
Lauder GV, Madden PGA, Tangorra JL et al (2011) Bioinspiration from fi sh for smart material
design and function. Smart Mater Struct 20:094014. doi: 10.1088/0964-1726/20/9/094014 .
Copyright © 2011 IOP Publishing. Reprinted with permission. All rights reserved
Lauder GV, Flammang B, Alben S (2012) Passive robotic models of propulsion by the bodies and
caudal fi ns of fi sh. Integr Comp Biol 52(5):576–587. doi: 10.1093/icb/ics096 by permission of
Oxford University Press
Liang J, Zou D, Wang S, Wang Y (2005) Trial voyage of SPC-II fi sh robot. J Beijing Univ Aeronaut
Astronaut 31(7):709–713
Lingham-Soliar T (2005a) Dorsal fi n in the white shark, Carcharodon carcharias : a dynamic stabilizer for fast swimming. J Morphol 263(1):1–11. Copyright © 2004 Wiley-Liss, Inc. Reprinted
with permission
Lingham-Soliar T (2005b) Caudal fi n in the white shark, Carcharodon carcharias (Lamnidae): a
dynamic propeller for fast, effi cient swimming. J Morphol 264:233–252. Copyright © 2005
Wiley-Liss, Inc. Reprinted with permission
Lingham-Soliar T (2005c) With kind permission from Springer Science+Business Media:
Lingham-Soliar T (2005c) Caudal fi n allometry in the white shark Carcharodon carcharias :
implications for locomotory performance and ecology. Naturwissenschaften 92(5):231–236.
Copyright © 2005, Springer-Verlag
Liu J, Hu H (2006) Biologically inspired behaviour design for autonomous robotic fish. Int
J Autom Comput 3(4):336–347
Liu TM, Yu XM, Ye YZ et al (2002) Factors affecting the effi ciency of somatic cell nuclear
transplantation in the fi sh embryo. J Exp Zool 293:719–725
Low (2009) Reproduced from Low KH (2009) Modelling and parametric study of modular
undulating fi n rays for fi sh robots. Mech Mach Theory 44(3):615–632, Copyright © 2009, with
permission from Elsevier
Lucifora LO, Vassallo AI (2002) Walking in skates (Chondrichthyes. Rajidae): anatomy, behaviour
and analogies to tetrapod locomotion. Biol J Linn Soc 77:35–41
Macesic LJ, Kajiura SM (2010) Comparative punting kinematics and pelvic fi n musculature of
benthic batoids. J Morphol 271(10):1219–1228. Copyright © 2010 Wiley-Liss, Inc. Reproduced
with permission
References
Krukenberg C (1885) Über die chemische beschaffenheit der sog. hornfäden von mustelus und
über die zusammensetzung der keratinösen hüllen um die eier von Scyllium stellate .
Mittheilungen Zool Stat Neapel 6:286–296
Ku CC, Lu CH, Wang CS (2010) Establishment and characterization of a fi broblast cell line
derived from the dorsal fi n of red sea bream, Pagrus major (Temminck & Schlegel). J Fish Dis
33(3):187–196
Lagler KF, Bardach JE, Miller RR et al (1977) Ichthyology, 2nd edn. Wiley, New York
Lai YS, John JA, Lin CH (2003) Establishment of cell lines from a tropical grouper, Epinephelus
awoara (Temminck & Schlegel), and their susceptibility to grouper irido- and nodaviruses. J
Fish Dis 26(1):31–42
Lakra WS, Swaminathan TR, Rathore G et al (2010) Development and characterization of three
new diploid cell lines from Labeo rohita (Ham.). Biotechnol Prog 26(4):1008–1013
Latimer-Needham CH (1951) Flying-fi sh aerodynamics. Flight 26:535–536
Lauder GV (1989) Caudal fi n locomotion in ray-fi nned fi shes: historical and functional analyses.
Am Zool 29(1):85–102, by permission of Oxford University Press
Lauder GV (2006) Locomotion. In: Evans DH, Claiborne JB (eds) The physiology of fi shes, 3rd
edn. CRC Press, Boca Raton, pp 3–46
Lauder GV, Drucker EG (2004) Morphology and experimental hydrodynamics of fi sh fi n control
surfaces. IEEE J Ocean Eng 29:556–571
Lauder GV, Madden PGA (2006) Learning from fi sh: kinematics and experimental hydrodynamics
for roboticists. Int J Autom Comput 4:325–335
Lauder GV et al (2007) Republished with permission of Company of Biologists Ltd., from Lauder
GV, Anderson EJ, Tangorra J, Madden PG (2007) Fish biorobotics: kinematics and hydrodynamics of self-propulsion. J Exp Biol 210(Pt 16):2767–2780. Copyright (2007) permission
conveyed through Copyright Clearance Center, Inc
Lauder GV, Madden PGA, Tangorra JL et al (2011) Bioinspiration from fi sh for smart material
design and function. Smart Mater Struct 20:094014. doi: 10.1088/0964-1726/20/9/094014 .
Copyright © 2011 IOP Publishing. Reprinted with permission. All rights reserved
Lauder GV, Flammang B, Alben S (2012) Passive robotic models of propulsion by the bodies and
caudal fi ns of fi sh. Integr Comp Biol 52(5):576–587. doi: 10.1093/icb/ics096 by permission of
Oxford University Press
Liang J, Zou D, Wang S, Wang Y (2005) Trial voyage of SPC-II fi sh robot. J Beijing Univ Aeronaut
Astronaut 31(7):709–713
Lingham-Soliar T (2005a) Dorsal fi n in the white shark, Carcharodon carcharias : a dynamic stabilizer for fast swimming. J Morphol 263(1):1–11. Copyright © 2004 Wiley-Liss, Inc. Reprinted
with permission
Lingham-Soliar T (2005b) Caudal fi n in the white shark, Carcharodon carcharias (Lamnidae): a
dynamic propeller for fast, effi cient swimming. J Morphol 264:233–252. Copyright © 2005
Wiley-Liss, Inc. Reprinted with permission
Lingham-Soliar T (2005c) With kind permission from Springer Science+Business Media:
Lingham-Soliar T (2005c) Caudal fi n allometry in the white shark Carcharodon carcharias :
implications for locomotory performance and ecology. Naturwissenschaften 92(5):231–236.
Copyright © 2005, Springer-Verlag
Liu J, Hu H (2006) Biologically inspired behaviour design for autonomous robotic fish. Int
J Autom Comput 3(4):336–347
Liu TM, Yu XM, Ye YZ et al (2002) Factors affecting the effi ciency of somatic cell nuclear
transplantation in the fi sh embryo. J Exp Zool 293:719–725
Low (2009) Reproduced from Low KH (2009) Modelling and parametric study of modular
undulating fi n rays for fi sh robots. Mech Mach Theory 44(3):615–632, Copyright © 2009, with
permission from Elsevier
Lucifora LO, Vassallo AI (2002) Walking in skates (Chondrichthyes. Rajidae): anatomy, behaviour
and analogies to tetrapod locomotion. Biol J Linn Soc 77:35–41
Macesic LJ, Kajiura SM (2010) Comparative punting kinematics and pelvic fi n musculature of
benthic batoids. J Morphol 271(10):1219–1228. Copyright © 2010 Wiley-Liss, Inc. Reproduced
with permission
References
