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Ken rinaldo conception sculpture meaning

          Rinaldo's understanding of the transversality of an artwork assumes systems of biologically diverse beings and interactive robots.

        1. Rinaldo's understanding of the transversality of an artwork assumes systems of biologically diverse beings and interactive robots.
        2. While autopoiesis can refer to biological systems that self-reproduce, autopoiesis also applies to non-biological systems that possess the characteristics.
        3. Ken Rinaldo is internationally recognized for interactive bio robotic art installations and moving image works.
        4. “SIGNS” is an experimental film and public artwork that challenges us to rethink the critical messages we often overlook in urban environments.
        5. Rinaldo's work develops hybrid ecologies with humans, machines, plants, and animals, by constructing idealized social, biological, and machine.
        6. Ken Rinaldo is internationally recognized for interactive bio robotic art installations and moving image works....

           

           

          Résumé

          Ken Rinaldo is an artist and theorist who creates interactive multimedia installations that blur the boundaries between the organic and inorganic.

          He has been working at the intersection of art and biology for over two decades working in the categories of interactive robotics, biological art, artificial life, interspecies communication, rapid prototyping and digital imaging.

          His works have been commissioned and displayed nationally and internationally at museums and galleries and he has been the recipient of several prestigious awards including an award of Distinction in Ars Electronica and first prize in Avida for Autopoiesis in Rinaldo teaches interactive robotic sculpture and multimedia in the Art and Technology program of The Ohio State University in Columbus Ohio.

           

          Artiificial Life, Intelligence and Symbiosis

          While biological systems have always served as worthy starting points from which to study, emulate and model ar