[1] Bar-Cohen Y. Biomimetics-using nature to inspire human innovation. Bioinspir Biomim, 2006, 1, 1–12.
[2] Bhushan B. Biomimetics: Lessons from nature-an overview. Philosophical Transactions of the Royal Society A, 2009, 367, 1445–1486.
[3] Vincent J F V. Applications-influence of biology on engi-neering. Journal of Bionic Engineering, 2006, 3, 161–177.
[4] Vincent J F V, Mann D L. Systematic technology transfer from biology to engineering. Philosophical Transactions of the Royal Society A, 2002, 360, 159–174.
[5] Bar-Cohen Y. Biomimetics: Nature-based innovation, CRC Press /Taylor & Francis Group, Boca Raton, London, New York, 2012.
[6] Bar-Cohen Y. Nature as a model for mimicking and inspira-tion of new technologies. International Journal of Aero-nautical and Space Sciences, 2012, 13, 1–13.
[7] Bonser R H C. Patented biologically-inspired technological innovations a twenty year view. Journal of Bionic Engi-neering, 2006, 3, 39–41.
[8] Lepora N F, Verschure P, Prescott T J. The state of the art in biomimetics. Bioinspir Biomim, 2013, 8, 1–11.
[9] Gossel P, Leuthauser G. Architecture in the Twentieth Cen-tury, Hohenzollernring: Benedikt Taschen Verlag, Germany, 1991.
[10] Bennett D F H. The Architecture of Bridge Design, Thomas Telford Ltd, London, 1997.
[11] Mattheck C. Design in Nature: Learning from Trees, Springer-Verlag Berlin, Germany, 1997.
[12] Aldersey-Williams H. Towards biomimetic architecture. Nature materials, 2004, 3, 277–279.
[13] John G, Clements-Croome D, Jeronimidis G. Sustainable building solutions: A review of lessons from the natural world. Building and Environment, 2005, 40, 319–328.
[14] Gruber P. The signs of life in architecture. Bioinspir Biomim, 2008, 3, 1–9.
[15] Knippers J, Speck T. Design and construction principles in nature and architecture. Bioinspir Biomim, 2012, 7, 1–10.
[16] Hu N, Dai G L. Four significant factors in evolution of bridge engineering. Proceeding of the International Con-ference on Structures & Architecture (ICSA) Guimarães Portugal, 2010, 329–336.
[17] Vincent J F V. Stealing ideas from nature, in Deployable Structure, ed. by Pellegrino S, Springer, Vienna, Austria, 2001.
[18] Vincent J F V, Bogatyreva O A, Bogatyrev N R, Bowyer A, Pahl A K. Biomimetics: Its practice and theory. Journal of the Royal Society Interface, 2006, 3, 471–482.
[19] Billington D P. The Tower and the Bridge: The New of Structural Engineering, Princeton University Press Prince-ton, New Jersey, USA, 1983.
[20] Tang M C. Evolution of Bridge Technology. IABSE Sym-posium Report, 2007, 38–48.
[21] Bell A D, Bryan A. Plant Form: An Illustrated Guide to Flowering Plant Morphology, Timber Press, Portland, USA, 2008.
[22] Vincent J F V. The Nature of materials. Journal of Bionic Engineering, 2005, 2, 93–114.
[23] Dooley S. The Development of Material-Adapted Structural Form, PhD thesis, École Polytechnique Fédérale De Lausanne (EPFL), Switzerland, 2004.
[24] Billington D P. The Art of Structural Design: A Swiss Legacy, 1st ed, Princeton University Art Museum Press, New Jersey, USA, 2003.
[25] Keller T. Use of Fiber Reinforced Polymers in Bridge Con-struction, International Association for Bridge and Struc-tural Engineering Press, Zurich, Switzerland, 2003.
[26] Hollaway L C. The evolution of and the way forward for advanced polymer composites in the civil infrastructure. Construction and Building Material, 2003, 17, 365–378.
[27] Feng P. Development and Study on an Innovative FRP Bridge Deck, PhD thesis, Tsinghua University, China, 2004, (in Chinese).
[28] Burgueño R, Wu J. Membrane-based forms for innovative FRP bridge systems through structural optimization. Journal of Composites for Construction, 2006, 10, 453–461.
[29] Ma J F, Chen W Y, Zhao L, Zhao D H. Elastic buckling of bionic cylindrical shells based on bamboo. Journal of Bionic Engineering, 2008, 5, 231–238.
[30] Zhao L, Chen W Y, Ma J F, Yang Y B. Structural bionic design and experimental verification of a machine tool column. Journal of Bionic Engineering, 2008, 5, 46–52.
[31] Dollens D. Digital-Botanic Architecture, SITES Books, Santa Fe, New Mexico, USA, 2005.
[32] Wallner M, Pircher M. Kinematics of movable bridge. Journal of Bionic Engineering, 2007, 12, 147–153.
[33] Chong K P. Nanotechnology and information technology in civil engineering. 4th Joint International Symposium on Information Technology in Civil Engineering, Nashville, Tennessee, USA, 2004, 1–9.
[34] Spencer B F, Newmark N M. State of the art of structural control. Journal of Structural Engineering, 2003, 129, 845–856.
[35] Ko J M, Ni Y Q. Technology developments in structural health monitoring of large-scale bridges. Engineering Structures, 2005, 27, 1715–1725.
[36] Schlaich M. Future engineering structures for the urban habitat and infrastructure. IABSE Symposium Report, Shanghai, China, 2004.
[37] Altshuller G. 40 Principles: TRIZ Keys to Innovation. In: Shulyak L, Rodman S (eds). Technical Innovation Center, Worcester, USA, 1997.
[38] Guan H, Chen Y J, Loo Y C, Xie Y M, Steven G P. Bridge topology optimization with stress, displacement and fre-quency constraints. Computers & Structures, 2003, 81, 131–145.
[39] Bellés P, Ortega N, Rosales M, Andrés O. Shell form-finding: Physical and numerical design tools. Engi-neering Structure, 2009, 31, 2656–2666.
[40] Chen R. Nonlinear FRP Bridge, Tsinghua University, Bei-jing, China, 2011. (in Chinese)
[41] Podborschi V, Vaculenco M. Natural Shapes-a Source of Inspiration for Eco-Design. In: Talab? D, Roche T (eds). Product Engineering: Eco-design, Technologies and Green Energy, Springer, Romania, 2004.
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