Constructing living buildings: a review of relevant technologies for a novel application of biohybrid robotics
暂无分享,去创建一个
Thomas Schmickl | Kasper Stoy | Mary Katherine Heinrich | Heiko Hamann | Payam Zahadat | Mostafa Wahby | Daniel Nicolas Hofstadler | Phil Ayres | Mohammad Divband Soorati | Tomasz Skrzypczak | Wojciech Kwiatkowski | Sebastian von Mammen | Rafał Krela | K. Støy | T. Skrzypczak | R. Krela | W. Kwiatkowski | T. Schmickl | Mostafa Wahby | D. Hofstadler | Heiko Hamann | P. Ayres | S. von Mammen | Payam Zahadat | M. K. Heinrich
[1] G. Pérez,et al. Nature Based Strategies for Urban and Building Sustainability , 2018 .
[2] T. Skrzypczak,et al. Plant Science View on Biohybrid Development , 2017, Front. Bioeng. Biotechnol..
[3] Phil Ayres,et al. Self-Organised Embellishment of 3D Printed Scaffolds for the Production of Co-occupied Architectural Boundaries , 2016, 2016 IEEE 1st International Workshops on Foundations and Applications of Self* Systems (FAS*W).
[4] R. Pfeifer,et al. Self-Organization, Embodiment, and Biologically Inspired Robotics , 2007, Science.
[5] J. Bontsema,et al. An Autonomous Robot for Harvesting Cucumbers in Greenhouses , 2002, Auton. Robots.
[6] Luca Maria Gambardella,et al. Collaboration Through the Exploitation of Local Interactions in Autonomous Collective Robotics: The Stick Pulling Experiment , 2001, Auton. Robots.
[7] Masahiro Shimizu,et al. Swimming frog cyborg which generates efficient hydrodynamic propulsion with webbed foot , 2017, 2017 IEEE International Conference on Cyborg and Bionic Systems (CBS).
[8] Sebastian Risi,et al. A robot to shape your natural plant: the machine learning approach to model and control bio-hybrid systems , 2018, GECCO.
[9] S. Graham,et al. Honey Bee Nest Thermoregulation: Diversity Promotes Stability , 2004, Science.
[10] Bruno Moulia,et al. Mechanosensitive control of plant growth: bearing the load, sensing, transducing, and responding , 2015, Front. Plant Sci..
[11] Matthew Gandy,et al. The Ecological Facades of Patrick Blanc , 2010 .
[12] Roland Siegwart,et al. Towards Adaptive Robotic Green Plants , 2011, TAROS.
[13] Roberta Croce,et al. Photosynthetic Quantum Yield Dynamics: From Photosystems to Leaves[W][OA] , 2012, Plant Cell.
[14] Francesco Mondada,et al. Design of collision avoidance system for a chicken robot based on fuzzy relation equations , 2009, 2009 IEEE International Conference on Fuzzy Systems.
[15] A. Trewavas. The foundations of plant intelligence , 2017, Interface Focus.
[16] Reema Aswani,et al. Plant Watering Autonomous Mobile Robot , 2012, ICRA 2012.
[17] Michael R. Clement,et al. Multi-UAV software systems and simulation architecture , 2015, 2015 International Conference on Unmanned Aircraft Systems (ICUAS).
[18] Istvan Karsai,et al. Optimality of cell arrangement and rules of thumb of cell initiation in Polistes dominulus: a modeling approach , 2000 .
[19] Gérald Thouand,et al. Bioluminescence : fundamentals and applications in biotechnology , 2014 .
[20] A. Adamatzky,et al. Living Architecture (LIAR): Metabolically engineered building units , 2017 .
[21] Kjeld Jensen,et al. Hortibot: Feasibility study of a plant nursing robot performing weeding operations - part IV , 2007 .
[22] M. Toyota,et al. Gravitropism and mechanical signaling in plants. , 2013, American journal of botany.
[23] D. Van Der Straeten,et al. Engineering complex metabolic pathways in plants. , 2014, Annual review of plant biology.
[24] Tim Landgraf,et al. Blending in with the Shoal: Robotic Fish Swarms for Investigating Strategies of Group Formation in Guppies , 2014, Living Machines.
[25] Magnus Berggren,et al. Electronic plants , 2015, Science Advances.
[26] Francesco Mondada,et al. Autonomous Construction of Separated Artifacts by Mobile Robots Using SLAM and Stigmergy , 2015 .
[27] W. Briggs,et al. Phototropism: Some History, Some Puzzles, and a Look Ahead1 , 2014, Plant Physiology.
[28] Clément Sanchez,et al. Biomimetism and bioinspiration as tools for the design of innovative materials and systems , 2005, Nature materials.
[29] Istvá n Karsai,et al. Nest shapes in paper wasps: can the variability of forms be deduced from the same construction algorithm? , 1998, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[30] Thomas Schmickl,et al. Vascular morphogenesis controller: a generative model for developing morphology of artificial structures , 2017, GECCO.
[31] P. Prusinkiewicz. Modeling plant growth and development. , 2004, Current opinion in plant biology.
[32] M. Roderick. On the measurement of growth with applications to the modelling and analysis of plant growth , 2000 .
[33] E. Goldschmidt. Plant grafting: new mechanisms, evolutionary implications , 2014, Front. Plant Sci..
[34] Sebastian Risi,et al. Flora Robotica - Mixed Societies of Symbiotic Robot-Plant Bio-Hybrids , 2015, 2015 IEEE Symposium Series on Computational Intelligence.
[35] Frank Schweitzer,et al. Brownian Agents and Active Particles: Collective Dynamics in the Natural and Social Sciences , 2003 .
[36] M. Morita,et al. Mechanism of higher plant gravity sensing. , 2013, American journal of botany.
[37] Vijay Kumar,et al. Design, modeling, estimation and control for aerial grasping and manipulation , 2011, 2011 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[38] John A. Kembel,et al. Infotropism: living and robotic plants as interactive displays , 2004, DIS '04.
[39] Benjamin P. Oldroyd,et al. Nest thermoregulation in social insects , 2006 .
[40] Towards Genetic Posthuman Frontiers in Architecture & Design , 2016 .
[41] Frank Ching,et al. Building Codes Illustrated: A Guide to Understanding the 2009 International Building Code , 2003 .
[42] James R. Ehleringer,et al. Non‐random leaf orientation in Lactuca serriola L. , 1984 .
[43] Eva Rosenqvist,et al. Spectral Effects of Artificial Light on Plant Physiology and Secondary Metabolism: A Review , 2015 .
[44] Marco Hutter,et al. Robotic Fabrication in Architecture, Art and Design 2018 , 2018 .
[45] Eliseo Ferrante,et al. Hybrid Societies: Challenges and Perspectives in the Design of Collective Behavior in Self-organizing Systems , 2016, Front. Robot. AI.
[46] Joseph Dahmen. Soft matter: Responsive architectural operations , 2016 .
[47] Radhika Nagpal,et al. Collective construction of environmentally-adaptive structures , 2007, 2007 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[48] P. Prusinkiewicz,et al. Computational models of plant development and form. , 2012, The New phytologist.
[49] Mark A. Goddard,et al. Scaling up from gardens: biodiversity conservation in urban environments. , 2010, Trends in ecology & evolution.
[50] Filip Vandenbussche,et al. Shaping the shoot: a circuitry that integrates multiple signals. , 2004, Trends in plant science.
[51] K. Niklas. The Bio-Logic and machinery of plant morphogenesis. , 2003, American journal of botany.
[52] P. Freemont,et al. How synthetic biology will reconsider natural bioluminescence and its applications. , 2014, Advances in biochemical engineering/biotechnology.
[53] Christian Fankhauser,et al. Sensing the light environment in plants: photoreceptors and early signaling steps , 2015, Current Opinion in Neurobiology.
[54] Andrea Vitaletti,et al. Plants as sensing devices: the PLEASED experience , 2013, SenSys '13.
[55] B Mazzolai,et al. A plant-inspired robot with soft differential bending capabilities , 2016, Bioinspiration & biomimetics.
[56] Shin-Ichiro Inoue,et al. Possible Involvement of Phototropins in Leaf Movement of Kidney Bean in Response to Blue Light1 , 2005, Plant Physiology.
[57] Huan Liu,et al. Indoor robot gardening: design and implementation , 2010, Intell. Serv. Robotics.
[58] Andrew M. Day,et al. Modelling trees and their interaction with the environment: A survey , 2005, Comput. Graph..
[59] Radhika Nagpal,et al. Extended stigmergy in collective construction , 2006, IEEE Intelligent Systems.
[60] Janet Braam,et al. In touch: plant responses to mechanical stimuli. , 2004, The New phytologist.
[61] R. Cord-Ruwisch,et al. In situ soil cementation with ureolytic bacteria by surface percolation , 2012 .
[62] Guy Theraulaz,et al. Modelling the Collective Building of Complex Architectures in Social Insects with Lattice Swarms , 1995 .
[63] P.-P. Grasse. La reconstruction du nid et les coordinations interindividuelles chezBellicositermes natalensis etCubitermes sp. la théorie de la stigmergie: Essai d'interprétation du comportement des termites constructeurs , 1959, Insectes Sociaux.
[64] Swapnil Kulkarni,et al. Automation for Agriculture , 2015 .
[65] Alper Bozkurt,et al. Acoustic sensors for biobotic search and rescue , 2014, IEEE SENSORS 2014 Proceedings.
[66] Asma Sulaiman Hasan Mandilawi. Effect of Daylight Application on the Thermal Performa Iraqi Traditional Vernacula Residential Buildings , 2012 .
[67] J. Fromm,et al. Electrical signals and their physiological significance in plants. , 2007, Plant, cell & environment.
[68] D. Sumpter,et al. From nonlinearity to optimality: pheromone trail foraging by ants , 2003, Animal Behaviour.
[69] Ulrich Kutschera,et al. Phototropic solar tracking in sunflower plants: an integrative perspective. , 2016, Annals of botany.
[70] Terrance L. Huntsberger,et al. Behavior-based multi-robot collaboration for autonomous construction tasks , 2005, 2005 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[71] Yoseph Bar-Cohen,et al. Biomimetics—using nature to inspire human innovation , 2006, Bioinspiration & biomimetics.
[72] Matthew Bamsey,et al. Deployment of a Prototype Plant GFP Imager at the Arthur Clarke Mars Greenhouse of the Haughton Mars Project , 2008, Sensors.
[73] Agata Burian,et al. Mechanical control of morphogenesis at the shoot apex. , 2013, Journal of experimental botany.
[74] Steven R. Raine,et al. Applied machine vision of plants – a review with implications for field deployment in automated farming operations 1 , 2010 .
[75] Roeland M. H. Merks,et al. Breakthrough Technologies VirtualLeaf : An Open-Source Framework for Cell-Based Modeling of Plant Tissue Growth and Development 1 , 2010 .
[76] Guy Theraulaz,et al. Stigmergic construction and topochemical information shape ant nest architecture , 2016, Proceedings of the National Academy of Sciences.
[77] Hartmut Schmeck,et al. Organic Computing - A Paradigm Shift for Complex Systems , 2011, Organic Computing.
[78] Janez Brest,et al. Vectorized procedural models for animated trees reconstruction using differential evolution , 2014, Inf. Sci..
[79] F. Telewski. Is windswept tree growth negative thigmotropism? , 2012, Plant science : an international journal of experimental plant biology.
[80] Jon Hughes,et al. Phytochrome cytoplasmic signaling. , 2013, Annual review of plant biology.
[81] Roque Saltaren,et al. PARALLEL CLIMBING ROBOTS FOR CONSTRUCTION, INSPECTION AND MAINTENANCE , 1999 .
[82] Caterina Rizzi,et al. Robotic handling for flat non-rigid materials , 1994, Proceedings of IEEE International Conference on Systems, Man and Cybernetics.
[83] Sergio Mugnai,et al. Nutation in Plants , 2015 .
[84] Q. Guo,et al. Fast nastic motion of plants and bioinspired structures , 2015, Journal of The Royal Society Interface.
[85] Meng Zhang,et al. Thinking Soils: a synthetic biology approach to material-based design computation , 2016 .
[86] Hod Lipson,et al. Structure-Reconfiguring Robots: Autonomous Truss Reconfiguration and Manipulation , 2013, IEEE Robotics & Automation Magazine.
[87] Steffen Straßburger,et al. Scalability in distributed simulations of agent-based models , 2009, Proceedings of the 2009 Winter Simulation Conference (WSC).
[88] de Wit,et al. Shade avoidance : phytochrome signalling and other aboveground neighbour detection cues , 2014 .
[89] Marco Dorigo,et al. Autonomous Construction with Compliant Building Material , 2014, IAS.
[90] Iain D. Couzin,et al. A novel method for investigating the collective behaviour of fish: introducing ‘Robofish’ , 2010, Behavioral Ecology and Sociobiology.
[91] Francesco Mondada,et al. Autonomous construction using scarce resources in unknown environments , 2012, Auton. Robots.
[92] Guy Theraulaz,et al. Nest excavation in ants: group size effects on the size and structure of tunneling networks , 2004, Naturwissenschaften.
[93] A. Peterson,et al. Phylogenetic relationships of weaverbirds (Aves: Ploceidae): A first robust phylogeny based on mitochondrial and nuclear markers. , 2017, Molecular phylogenetics and evolution.
[94] Radhika Nagpal,et al. Materials and mechanisms for amorphous robotic construction , 2012, 2012 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[95] W. Simonton. Robotic end effector for handling greenhouse plant material. , 1990 .
[96] Fabian Kellermeier,et al. Analysis of the Root System Architecture of Arabidopsis Provides a Quantitative Readout of Crosstalk between Nutritional Signals[W][OPEN] , 2014, Plant Cell.
[97] Mohammad Divband Soorati,et al. Evolution of Controllers for Robot-Plant Bio-Hybdrids: A Simple Case Study Using a Model of Plant Growth and Motion , 2015 .
[98] Mary Katherine Heinrich,et al. Using interactive evolution to design behaviors for non-deterministic self-organized construction , 2018 .
[99] Kung Yao,et al. Distributed sensor swarms for monitoring bird behavior: an integrated system using wildlife acoustics recorders , 2016, Artificial Life and Robotics.
[100] U. Rascher,et al. Functional dynamics of plant growth and photosynthesis--from steady-state to dynamics--from homogeneity to heterogeneity. , 2006, Plant, cell & environment.
[101] Jeong-Woo Choi,et al. Phototactic guidance of a tissue-engineered soft-robotic ray , 2016, Science.
[102] Edgar J. Lobaton,et al. Topological mapping of unknown environments using an unlocalized robotic swarm , 2013, 2013 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[103] P. Masson,et al. Gravity sensing and signal transduction in vascular plant primary roots. , 2013, American journal of botany.
[104] Hojjat Adeli,et al. Neural Network, Machine Learning, and Evolutionary Approaches for Concrete Material Characterization , 2016 .
[105] NIGEL R FRANKS,et al. Self-organizing nest construction in ants: individual worker behaviour and the nest's dynamics , 1997, Animal Behaviour.
[106] A. Nazari. Compressive strength of geopolymers produced by ordinary Portland cement: Application of genetic programming for design , 2013 .
[107] Zaoui Mohamed,et al. Mobile robotics for restoring degraded ecosystems , 2015, 2015 IEEE Global Humanitarian Technology Conference (GHTC).
[108] Eliseo Ferrante,et al. ARGoS: a modular, parallel, multi-engine simulator for multi-robot systems , 2012, Swarm Intelligence.
[109] Jacob Beaudoin,et al. Simulation levels of detail for plant motion , 2004, SCA '04.
[110] Michael Allwright,et al. SRoCS: Leveraging Stigmergy on a Multi-robot Construction Platform for Unknown Environments , 2014, ANTS Conference.
[111] Mirko Kovac,et al. A review of collective robotic construction , 2019, Science Robotics.
[112] Livia Camilla Trevisan Scorza,et al. Plants on the move: Towards common mechanisms governing mechanically-induced plant movements , 2011, Plant signaling & behavior.
[113] Zack J. Butler,et al. Self-reconfiguring robots , 2002, CACM.
[114] W. Brill. Symbiotic Associations , 1976, Science.
[115] Long Quan,et al. Data-Driven Synthetic Modeling of Trees , 2014, IEEE Transactions on Visualization and Computer Graphics.
[116] Sanjeev Shankar. Living Root Bridges: State of knowledge, fundamental research and future application , 2015 .
[117] Francesco Mondada,et al. Towards mixed societies of chickens and robots , 2010, 2010 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[118] Nathalie Leblanc-Fournier,et al. To respond or not to respond, the recurring question in plant mechanosensitivity , 2014, Front. Plant Sci..
[119] Mary Katherine Heinrich,et al. Photomorphogenesis for robot self-assembly: adaptivity, collective decision-making, and self-repair , 2019, Bioinspiration & biomimetics.
[120] Emmanuel Liscum,et al. Phototropism: Growing towards an Understanding of Plant Movement[OPEN] , 2014, Plant Cell.
[121] R. Pierik,et al. Shade tolerance: when growing tall is not an option. , 2013, Trends in plant science.
[122] Guy Theraulaz,et al. The origin of nest complexity in social insects , 1998, Complex..
[123] Serge Kernbach,et al. ASSISI: Charged Hot Bees Shakin' in the Spotlight , 2013, 2013 IEEE 7th International Conference on Self-Adaptive and Self-Organizing Systems.
[124] É. Malézieux,et al. Mixing plant species in cropping systems: concepts, tools and models. A review , 2011, Agronomy for Sustainable Development.
[125] David C. Slaughter,et al. Autonomous robotic weed control systems: A review , 2008 .
[126] Sebastian von Mammen,et al. Robotics for Self-Organised Construction , 2016, 2016 IEEE 1st International Workshops on Foundations and Applications of Self* Systems (FAS*W).
[127] Radhika Nagpal,et al. Distributed construction by mobile robots with enhanced building blocks , 2006, Proceedings 2006 IEEE International Conference on Robotics and Automation, 2006. ICRA 2006..
[128] B. Usadel,et al. Tailored natural components – functional geometry and topology optimization of technical grown plants , 2015 .
[129] J. Santamarina,et al. Ant tunneling—a granular media perspective , 2010 .
[130] Toru Torii. Research in autonomous agriculture vehicles in Japan. , 2000 .
[131] P. Prusinkiewicz,et al. Quantitative Modeling of Arabidopsis Development1[w] , 2005, Plant Physiology.
[132] Grzegorz Rozenberg,et al. L Systems , 1974, Handbook of Formal Languages.
[133] Bonnie Gale,et al. The potential of living willow structures in the landscape , 2011 .
[134] Jörg Hähner,et al. OCbotics: An organic computing approach to collaborative robotic swarms , 2014, 2014 IEEE Symposium on Swarm Intelligence.
[135] Radomír Mech,et al. Self-organizing tree models for image synthesis , 2009, ACM Trans. Graph..
[136] Catalin Buiu,et al. Integrating human swarm interaction in a distributed robotic control system , 2011, 2011 IEEE International Conference on Automation Science and Engineering.
[137] Thomas Schmickl,et al. Coordination of collective behaviours in spatially separated agents , 2015, ECAL.
[138] Seth Bullock,et al. Wasps, Termites, and Waspmites: Distinguishing Competence from Performance in Collective Construction , 2012, Artificial Life.
[139] Mohammed El-Abd,et al. iPlant: The greenhouse robot , 2015, 2015 IEEE 28th Canadian Conference on Electrical and Computer Engineering (CCECE).
[140] Spring Berman,et al. Multi-robot replication of ant collective towing behaviours , 2018, Royal Society Open Science.
[141] J. Watling,et al. The engineering in beaver dams , 2016 .
[142] M. Winkler. The real goods solar living center , 1996 .
[143] Rob Saunders,et al. Robotic Fabrication in Architecture, Art and Design 2016 , 2016 .
[144] James McLurkin,et al. Speaking Swarmish: Human-Robot Interface Design for Large Swarms of Autonomous Mobile Robots , 2006, AAAI Spring Symposium: To Boldly Go Where No Human-Robot Team Has Gone Before.
[145] Martina Decker,et al. Bio-Enabled Façade Systems Managing Complexity of Life through Emergent Technologies , 2016 .
[146] Marco Dorigo,et al. Ant algorithms and stigmergy , 2000, Future Gener. Comput. Syst..
[147] Feng Lin,et al. A preliminary study of motion control patterns for biorobotic spiders , 2014, 11th IEEE International Conference on Control & Automation (ICCA).
[148] U. Schurr,et al. Environmental effects on spatial and temporal patterns of leaf and root growth. , 2009, Annual review of plant biology.
[149] Michael Heider,et al. Robot gardens: an augmented reality prototype for plant-robot biohybrid systems , 2016, VRST.
[150] Francesco Mondada,et al. Infiltrating the zebrafish swarm: design, implementation and experimental tests of a miniature robotic fish lure for fish–robot interaction studies , 2016, Artificial Life and Robotics.
[151] E. Davies,et al. Electrical Signals in Plants: Facts and Hypotheses , 2006 .
[152] Cairo L. Nascimento,et al. Planning and learning for cooperative construction task with quadrotors , 2014, 2014 IEEE International Systems Conference Proceedings.
[153] P. Prusinkiewicz,et al. Virtual plants: new perspectives for ecologists, pathologists and agricultural scientists , 1996 .
[154] Kamel S. Saidi,et al. Robotics in Construction , 2016, Springer Handbook of Robotics, 2nd Ed..
[155] Zhaohui Wu,et al. Cyborg Intelligence: Recent Progress and Future Directions , 2016, IEEE Intelligent Systems.
[156] Chung-Liang Chang,et al. Design and implementation of a gardening mobile robot with embedded face-tracking system , 2012, 2012 International Symposium on Intelligent Signal Processing and Communications Systems.
[157] Barbara Messing,et al. An Introduction to MultiAgent Systems , 2002, Künstliche Intell..
[158] J. Jarvis,et al. The burrow systems and burrowing dynamics of the mole‐rats Bathyergus suillus and Cryptomys hottentotus in the fynbos of the south‐western Cape, South Africa , 1986 .
[159] Michael A. Goodrich,et al. Human-Robot Interaction: A Survey , 2008, Found. Trends Hum. Comput. Interact..
[160] Alper Bozkurt,et al. Towards fenceless boundaries for solar powered insect biobots , 2014, 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[161] E. Bonabeau,et al. Self-organization in social insects. , 1997, Trends in ecology & evolution.
[162] Mary Katherine and Ayres Phil Heinrich,et al. Using the Phase Space to Design Complexity - Design Methodology for Distributed Control of Architectural Robotic Elements , 2016, Proceedings of the 34th International Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe) [Volume 1].
[163] J. C. Erickson,et al. Effective Stimulus Parameters for Directed Locomotion in Madagascar Hissing Cockroach Biobot , 2015, PloS one.
[164] J. Christie,et al. Shoot phototropism in higher plants: new light through old concepts. , 2013, American journal of botany.
[165] Yaneer Bar-Yam,et al. Dynamics Of Complex Systems , 2019 .
[166] Zhaohui Wu,et al. Visual Cue-Guided Rat Cyborg for Automatic Navigation [Research Frontier] , 2015, IEEE Computational Intelligence Magazine.
[167] M. Maffei,et al. Robotic mechanical wounding (MecWorm) versus herbivore-induced responses: early signaling and volatile emission in Lima bean (Phaseolus lunatus L.) , 2010, Planta.
[168] Stéphane Douady,et al. A Unified Model of Shoot Tropism in Plants: Photo-, Gravi- and Propio-ception , 2015, PLoS Comput. Biol..
[169] Spring Berman,et al. Experimental Study and Modeling of Group Retrieval in Ants as an Approach to Collective Transport in Swarm Robotic Systems , 2011, Proceedings of the IEEE.
[170] Pinto Vieira Artur,et al. State of implementation of the Eurocodes in the European Union. Support to the implementation, harmonization and further development of the Eurocodes , 2015 .
[171] Przemyslaw Prusinkiewicz,et al. L-Py: An L-System Simulation Framework for Modeling Plant Architecture Development Based on a Dynamic Language , 2012, Front. Plant Sci..
[172] Timothy J. Roper,et al. Badger Meles meles setts–architecture, internal environment and function , 1992 .
[173] G. Broadbent. The Ecology Of The Mudhif , 2008 .
[174] K. Folta,et al. Contributions of green light to plant growth and development. , 2013, American journal of botany.
[175] L SipesJ. 遊び場の安全性 危険性,責任,興味に関する議論 , 2000 .
[176] Katia P. Sycara,et al. Human Interaction With Robot Swarms: A Survey , 2016, IEEE Transactions on Human-Machine Systems.
[177] Enrico Feoli,et al. Modelling Environmental Responses of Plant Associations: A Review of Some Critical Concepts in Vegetation Study , 2004 .
[178] Barbara Webb,et al. Swarm Intelligence: From Natural to Artificial Systems , 2002, Connect. Sci..
[179] Przemyslaw Prusinkiewicz,et al. Sketch-based parameterization of L-systems using illustration-inspired construction lines and depth modulation , 2009, Comput. Graph..
[180] Thomas Schmickl,et al. Robotic Sensing and Stimuli Provision for Guided Plant Growth. , 2019, Journal of visualized experiments : JoVE.
[181] Khrystyna Katola,et al. The "Green Architecture" Definition Development in Modern Projecting and Building , 2015 .
[182] Bibhuti Bhusan Biswal,et al. A general regression neural network approach for the evaluation of compressive strength of FDM prototypes , 2014, Neural Computing and Applications.
[183] F. Schinner,et al. Monitoring of bioremediation by soil biological activities. , 2000, Chemosphere.
[184] Damiano Pasini,et al. Hydro-Responsive Curling of the Resurrection Plant Selaginella lepidophylla , 2015, Scientific Reports.
[185] L. Ferrara,et al. The Application of Lysinibacillus sphaericus for Surface Treatment and Crack Healing in Mortar , 2019, Front. Built Environ..
[186] Markus Kayser,et al. SILK PAVILION:: A CASE STUDY IN FIBRE-BASED DIGITAL FABRICATION , 2017 .
[187] S. Gilroy. Plant tropisms , 2008, Current Biology.
[188] M. Crespi,et al. Plant root growth, architecture and function , 2009, Plant and Soil.
[189] Kristina Lerman,et al. Mathematical Model of Foraging in a Group of Robots: Effect of Interference , 2002, Auton. Robots.
[190] Huan Liu,et al. Building a distributed robot garden , 2009, 2009 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[191] Marco Dorigo,et al. Division of Labour in Self-organised Groups , 2008, SAB.
[192] Harpreet Sareen,et al. Cyborg Botany: Augmented Plants as Sensors, Displays and Actuators , 2019, CHI Extended Abstracts.
[193] E. Bonabeau,et al. The Emergence of Pillars, Walls, and Royal Chambers in Termite Nests , 1997 .
[194] Christian Jacob,et al. The evolution of swarm grammars- growing trees, crafting art, and bottom-up design , 2009, IEEE Computational Intelligence Magazine.
[195] A. Lindenmayer. Mathematical models for cellular interactions in development. I. Filaments with one-sided inputs. , 1968, Journal of theoretical biology.
[196] Daniela Mitterberger,et al. Growth Based Fabrication Techniques for Bacterial Cellulose: Three-Dimensional Grown Membranes and Scaffolding Design for Biological Polymers , 2016, ACADIA proceedings.
[197] Gundula Proksch,et al. Growing Sustainability-Integrating Algae Cultivation into the Built Environment , 2014 .
[198] Jodi Forlizzi,et al. The design of interfaces for multi-robot path planning and control , 2014, 2014 IEEE International Workshop on Advanced Robotics and its Social Impacts.
[199] Philip Ross. Your Rotten Future Will Be Great , 2016 .
[200] F Mondada,et al. Social Integration of Robots into Groups of Cockroaches to Control Self-Organized Choices , 2007, Science.
[201] Simon Gilroy,et al. Touch modulates gravity sensing to regulate the growth of primary roots of Arabidopsis thaliana. , 2003, The Plant journal : for cell and molecular biology.
[202] Claus G. Sørensen,et al. HortiBot: A System Design of a Robotic Tool Carrier for High-tech Plant Nursing , 2007 .
[203] Lale Özbakir,et al. Prediction of compressive and tensile strength of limestone via genetic programming , 2008, Expert Syst. Appl..
[204] Steven Longay,et al. TreeSketch: interactive procedural modeling of trees on a tablet , 2012, SBIM '12.
[205] Raphael Winick. Copyright Protection for Architecture After the Architectural Works Copyright Protection Act of 1990 , 1992 .
[206] Heiko Hamann. Towards swarm calculus: urn models of collective decisions and universal properties of swarm performance , 2013, Swarm Intelligence.
[207] C. Himes,et al. Ultralow Voltage Nanoelectronics Powered Directly, and Solely, From a Tree , 2010, IEEE Transactions on Nanotechnology.
[208] E. Król,et al. Electrical Signals in Long-Distance Communication in Plants , 2006 .
[209] H. W. Kassier. Forest Dynamics, Growth and Yield: From Measurement to Model , 2011 .
[210] Markus Kayser,et al. Biological Computation for Digital Design and Fabrication: A biologically-informed finite element approach to structural performance and material optimization of robotically deposited fibre structures , 2013 .
[211] Ferdinand Ludwig. Baubotanik: designing with living material , 2016 .
[212] Radhika Nagpal,et al. Distributed amorphous ramp construction in unstructured environments , 2014, Robotica.
[213] Mark Matthews,et al. Biogotchi!: An Exploration of Plant-Based Information Displays , 2015, CHI Extended Abstracts.
[214] Oliver Storz,et al. Living Systems: Designing Growth in Baubotanik , 2012 .
[215] Rodney A. Brooks,et al. A Robust Layered Control Syste For A Mobile Robot , 2022 .
[216] Jingtai Liu,et al. 3D printing robot: model optimization and image compensation , 2012 .
[217] Heinz Wörn,et al. A framework of space–time continuous models for algorithm design in swarm robotics , 2008, Swarm Intelligence.
[218] Martin Kerner,et al. Algal cultivation and hydrothermal gasification: Biomass and energy production , 2014 .
[219] Janez Brest,et al. Environmental framework to visualize emergent artificial forest ecosystems , 2013, Inf. Sci..
[220] Yuichiro Takeuchi. Printable Hydroponic Gardens: Initial Explorations and Considerations , 2016, CHI Extended Abstracts.
[221] Sebastian Risi,et al. Flora robotica - An Architectural System Combining Living Natural Plants and Distributed Robots , 2017, ArXiv.
[222] Raffaello D'Andrea,et al. Knot-tying with flying machines for aerial construction , 2015, 2015 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[223] AnastacioFabricio,et al. Sketch-Based Interfaces and Modeling (SBIM) , 2009 .
[224] Thomas Schmickl,et al. Autonomously shaping natural climbing plants: a bio-hybrid approach , 2018, Royal Society Open Science.
[225] Mary Katherine Heinrich,et al. An Evolutionary Robotics Approach to the Control of Plant Growth and Motion: Modeling Plants and Crossing the Reality Gap , 2016, 2016 IEEE 10th International Conference on Self-Adaptive and Self-Organizing Systems (SASO).
[226] M. Mescher,et al. Volatile Chemical Cues Guide Host Location and Host Selection by Parasitic Plants , 2006, Science.
[227] Thomas Schmickl,et al. Evolved Control of Natural Plants , 2017, ACM Trans. Auton. Adapt. Syst..
[228] Meg Calkins. A living structure: the Willow Dome at the Real Goods Solar Living Center [Hopland, California] , 2000 .
[229] Radhika Nagpal,et al. Robotic construction of arbitrary shapes with amorphous materials , 2014, 2014 IEEE International Conference on Robotics and Automation (ICRA).
[230] P. Prusinkiewicz,et al. ART AND SCIENCE OF LIFE: DESIGNING AND GROWING VIRTUAL PLANTS WITH L-SYSTEMS , 2004 .
[231] J. Rochaix. Regulation and dynamics of the light-harvesting system. , 2014, Annual review of plant biology.
[232] Thomas Rath,et al. Robotic harvesting of Gerbera Jamesonii based on detection and three-dimensional modeling of cut flower pedicels , 2009 .
[233] I. Grosse,et al. Requirements for comparing the performance of finite element models of biological structures. , 2009, Journal of theoretical biology.
[234] Matias del Campo,et al. ACADIA 2016 POSTHUMAN FRONTIERS: Data, Designers, and Cognitive Machines: Projects Catalog of the 36th Annual Conference of the Association for Computer Aided Design in Architecture , 2016 .
[235] Alexander G. Volkov,et al. Plants as Environmental Biosensors , 2006, Plant signaling & behavior.
[236] Zhaohui Wu,et al. Intelligence-Augmented Rat Cyborgs in Maze Solving , 2016, PloS one.
[237] Jarrod C Hodgson,et al. Precision wildlife monitoring using unmanned aerial vehicles , 2016, Scientific Reports.
[238] R. Bashir,et al. Development of Miniaturized Walking Biological Machines , 2012, Scientific Reports.
[239] Hanno Scharr,et al. A cognitive architecture for automatic gardening , 2017, Comput. Electron. Agric..
[240] Manfred Köhler,et al. Green facades—a view back and some visions , 2008, Urban Ecosystems.
[241] Robert J Ferl,et al. Fundamental plant biology enabled by the space shuttle. , 2013, American journal of botany.
[242] Shigeo Nakamura,et al. Mechanism of Fiber Formation of Silkworm , 1993 .
[243] Volkan Isler,et al. Aerial Radio-Based Telemetry for Tracking Wildlife , 2018, 2018 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[244] Mirko Kovac,et al. 3D printing with flying robots , 2014, 2014 IEEE International Conference on Robotics and Automation (ICRA).
[245] A. Ruban. Evolution under the sun: optimizing light harvesting in photosynthesis. , 2015, Journal of experimental botany.
[246] Abhijit Mukherjee,et al. Microbial Concrete: Way to Enhance the Durability of Building Structures , 2011 .
[247] Peter Norvig,et al. Artificial Intelligence: A Modern Approach , 1995 .
[248] Jan Knippers,et al. Design and construction principles in nature and architecture. , 2012, Bioinspiration & biomimetics.
[249] Sergei Lupashin,et al. The Flight Assembled Architecture installation: Cooperative construction with flying machines , 2014, IEEE Control Systems.
[250] Francesco Mondada,et al. Building a safe robot for behavioral biology experiments , 2012, 2012 IEEE International Conference on Robotics and Biomimetics (ROBIO).
[251] H. Pretzsch. Forest Dynamics, Growth, and Yield , 2010 .
[252] Wes McGee,et al. Robotic Fabrication in Architecture, Art and Design 2014 , 2014 .
[253] Fabio Gramazio,et al. Building tensile structures with flying machines , 2013, 2013 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[254] Eliseo Ferrante,et al. Swarm robotics: a review from the swarm engineering perspective , 2013, Swarm Intelligence.
[255] Alcherio Martinoli,et al. Modeling Swarm Robotic Systems: a Case Study in Collaborative Distributed Manipulation , 2004, Int. J. Robotics Res..
[256] Olivier Hamant,et al. Widespread mechanosensing controls the structure behind the architecture in plants. , 2013, Current opinion in plant biology.
[257] S. Gaffin,et al. Positive effects of vegetation: urban heat island and green roofs. , 2011, Environmental pollution.
[258] Alper Bozkurt,et al. Line following terrestrial insect biobots , 2012, 2012 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[259] Vijay Kumar,et al. Cooperative Grasping and Transport Using Multiple Quadrotors , 2010, DARS.
[260] J. Crutchfield. The calculi of emergence: computation, dynamics and induction , 1994 .
[261] M. Sticklen,et al. Plant genetic engineering to improve biomass characteristics for biofuels. , 2006, Current opinion in biotechnology.
[262] Pawel Romanczuk,et al. RoboFish: increased acceptance of interactive robotic fish with realistic eyes and natural motion patterns by live Trinidadian guppies , 2016, Bioinspiration & biomimetics.
[263] Pawel Romanczuk,et al. Using a robotic fish to investigate individual differences in social responsiveness in the guppy , 2018, bioRxiv.
[264] A. Bell. The simulation of branching patterns in modular organisms , 1986 .
[265] F Vollrath,et al. Comparing the rheology of native spider and silkworm spinning dope , 2006, Nature materials.
[266] Minoru Asada,et al. Semi-automatic behavior analysis using robot/insect mixed society and video tracking , 2010, Journal of Neuroscience Methods.
[267] Tanja Coray,et al. Robots on construction sites: The potential and challenges of on-site digital fabrication , 2017, Science Robotics.
[268] Daniel Wagner,et al. Interactive Simulations of Biohybrid Systems , 2017, Front. Robot. AI.
[269] Zoe Doulgeri,et al. A gripper for handling flat non-rigid materials , 1994 .
[270] Mary Katherine Heinrich,et al. Self-Organized Construction with Continuous Building Material: Higher Flexibility Based on Braided Structures , 2016, 2016 IEEE 1st International Workshops on Foundations and Applications of Self* Systems (FAS*W).
[271] R.,et al. Autonomous Robot in Agriculture Tasks , 2001 .
[272] Reza Ehsani,et al. Review: A review of advanced techniques for detecting plant diseases , 2010 .
[273] Keara A Franklin,et al. Photoreceptor crosstalk in shade avoidance. , 2016, Current opinion in plant biology.
[274] Frances Yang,et al. Design and Delivery of Structural Material Innovations , 2015 .
[275] Andrew Owens,et al. Modeling dense inflorescences , 2016, ACM Trans. Graph..
[276] Mauro Birattari,et al. Swarm Intelligence , 2012, Lecture Notes in Computer Science.
[277] Yasmine Meroz,et al. The Kinematics of Plant Nutation Reveals a Simple Relation between Curvature and the Orientation of Differential Growth , 2016, PLoS Comput. Biol..
[278] Przemyslaw Prusinkiewicz,et al. Modeling of spatial structure and development of plants: a review , 1998 .
[279] A. Lindenmayer,et al. Developmental algorithms for multicellular organisms: a survey of L-systems. , 1975, Journal of theoretical biology.
[280] Luca Maria Gambardella,et al. Incremental learning using partial feedback for gesture-based human-swarm interaction , 2012, 2012 IEEE RO-MAN: The 21st IEEE International Symposium on Robot and Human Interactive Communication.
[281] V. Stovin. The potential of green roofs to manage Urban Stormwater , 2010 .
[282] Ferdinand Ludwig. Botanische Grundlagen der Baubotanik und deren Anwendung im Entwurf , 2012 .
[283] Fernando Migliaccio,et al. Circumnutation as an autonomous root movement in plants. , 2013, American journal of botany.
[284] Stefano Mancuso,et al. The ‘root-brain’ hypothesis of Charles and Francis Darwin , 2009, Plant signaling & behavior.
[285] A. Stierle,et al. Designing Collective Behavior in a Termite-Inspired Robot Construction Team , 2014, Science.
[286] Rongling Wu,et al. A logistic mixture model for characterizing genetic determinants causing differentiation in growth trajectories. , 2002, Genetical research.
[287] Guy Theraulaz,et al. A Brief History of Stigmergy , 1999, Artificial Life.
[288] Adam Runions,et al. Modeling and visualization of leaf venation patterns , 2005, SIGGRAPH '05.
[289] Thomas Schmickl,et al. Social Inhibition Manages Division of Labour in Artificial Swarm Systems , 2013, ECAL.
[290] G. Muyzer,et al. Application of bacteria as self-healing agent for the development of sustainable concrete , 2010 .
[291] Mark Richardson,et al. Socialised transport: increasing travel mode diversity through open-source vehicle design, upcycling, natural production and distributed production methods , 2010 .
[292] Fernando Pacheco Torgal,et al. Biotechnologies and Biomimetics for Civil Engineering , 2015 .
[293] Barry Gardiner,et al. Review: Wind impacts on plant growth, mechanics and damage. , 2016, Plant science : an international journal of experimental plant biology.
[294] S. Pratt. Collective control of the timing and type of comb construction by honey bees (Apis mellifera) , 2004 .
[295] Bruno Moulia,et al. Plant biomechanics and mechanobiology are convergent paths to flourishing interdisciplinary research. , 2013, Journal of experimental botany.
[296] Fabio Gramazio,et al. The robotic touch : how robots change architecture : Gramazio & Kohler, research ETH Zurich 2005-2013 , 2014 .
[297] E. Gianoli,et al. The behavioural ecology of climbing plants , 2015, AoB PLANTS.
[298] Xuejin Chen,et al. Sketch-based tree modeling using Markov random field , 2008, ACM Trans. Graph..
[299] John Locke,et al. Computational Brick Stacking for Constructing Free-Form Structures , 2015 .
[300] M. Nørremark,et al. Conceptual and user-centric design guidelines for a plant nursing robot , 2009 .
[301] Guang-Zhong Yang. Digital architecture and robotic construction , 2017, Science Robotics.
[302] Achim Menges,et al. Living Architecture: Micro Performances of Bio Fabrication , 2012 .
[303] Flavio Roces,et al. Vibrational communication in the spatial organization of collective digging in the leaf-cutting ant Atta vollenweideri , 2012, Animal Behaviour.