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Biomimetic architecture is a branch of the new science of biomimicry defined and popularized by Janine Benyus in her 1997 book (Biomimicry: Innovation Inspired by Nature). ). Biomimicry (bios - life and mimesis - imitate) refers to innovations inspired by nature as one which studies nature and then imitates or takes inspiration from its designs and processes to solve human problem
In her book, Biomimicry: Innovation Inspired by Nature (1997), Janine Benyus formulated a set of questions that can be used to establish the level of bio mimicry within an architectural design. In order to ensure that an architectural design follows the principles of bionics, the answer must be ‘yes’ to the following questions: [ citation ...
His presentation, in which he describes how biomimicry could help transform architecture and society, has been viewed over 2.1 million times. Exploration Architecture's work was exhibited in a solo exhibition, at The Architecture Foundation in 2014; [9] featured in the Future Knowledge [10] exhibition at Modern Art Oxford in 2018; and Learning ...
The C2C concept foresees its own certification of its analysis [33] and therefore is in contradiction to international publishing standards (ISO 14040 [34] and ISO 14044 [35]) for life-cycle assessment whereas an independent external review is needed in order to obtain comparative and resilient results.
Organic architecture is a philosophy of architecture which promotes harmony between human habitation and the natural world. This is achieved through design approaches that aim to be sympathetic and well-integrated with a site, so buildings, furnishings, and surroundings become part of a unified, interrelated composition.
However, terms like biomimicry or biomimetics are preferred in order to avoid confusion with the medical term "bionics." Coincidentally, Martin Caidin used the word for his 1972 novel Cyborg , which was adapted into the television film and subsequent series The Six Million Dollar Man .
Her book Biomimicry (1997) attracted widespread attention from businesspeople in design, architecture, and engineering as well as from scientists. Benyus argues that by following biomimetic approaches, designers can develop products that will perform better, be less expansive, use less energy, and leave companies less open to legal risk. [1] [2]
Biomimetic materials in tissue engineering are materials that have been designed such that they elicit specified cellular responses mediated by interactions with scaffold-tethered peptides from extracellular matrix (ECM) proteins; essentially, the incorporation of cell-binding peptides into biomaterials via chemical or physical modification. [3]