Biologicalisation in manufacturing – Current state and future trends
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R. Wertheim | L. Monostori | R. Teti | G. Byrne | O. Damm | S. Ihlenfeldt | S. Harst | K. Wegener
[1] F. Bleicher,et al. Cloud-based thermal error compensation with a federated learning approach , 2022, Precision Engineering.
[2] C. Yuan,et al. Marine antifouling behavior of the surfaces modified by dopamine and antibacterial peptide , 2022, Journal of Oceanology and Limnology.
[3] P. Bártolo,et al. 3D bioprinting: Materials, processes, and applications , 2022, CIRP Annals.
[4] D. Mourtzis,et al. Process monitoring of machining , 2022, CIRP Annals.
[5] D. Müller,et al. Peptide-coating combating antimicrobial contaminations: a review of covalent immobilization strategies for industrial applications , 2022, Journal of Materials Science.
[6] K. Wegener,et al. Self-optimizing thermal error compensation models with adaptive inputs using Group-LASSO for ARX-models , 2022, Journal of Manufacturing Systems.
[7] L R Amruth Kumar,et al. 3D Printing: Applications in Tissue Engineering, Medical Devices, and Drug Delivery , 2022, AAPS PharmSciTech.
[8] N. Kumar,et al. SLAP: A Secure and Lightweight Authentication Protocol for machine-to-machine communication in industry 4.0 , 2022, Comput. Electr. Eng..
[9] K. Wegener,et al. Analysis of robustness and transferability in feature-based grinding burn detection , 2022, The International Journal of Advanced Manufacturing Technology.
[10] W. Moon,et al. A High‐Fidelity Skin‐Attachable Acoustic Sensor for Realizing Auditory Electronic Skin , 2022, Advanced materials.
[11] G. Kovačević,et al. High-throughput screening, next generation sequencing and machine learning: advanced methods in enzyme engineering , 2022, Chemical communications.
[12] Li Xu. Emerging Enabling Technologies for Industry 4.0 and Beyond , 2022, Information Systems Frontiers.
[13] Fulvio Mastrogiovanni,et al. Gesture-Based Human–Machine Interaction: Taxonomy, Problem Definition, and Analysis , 2021, IEEE Transactions on Cybernetics.
[14] K. Prashanth,et al. A Review on Development of Bio-Inspired Implants Using 3D Printing , 2021, Biomimetics.
[15] Matteo Cianchetti,et al. Embodied Intelligence in Soft Robotics Through Hardware Multifunctionality , 2021, Frontiers in Robotics and AI.
[16] K. Wegener,et al. Mutual comparison of acoustic, pyrometric and thermographic laser powder bed fusion monitoring , 2021 .
[17] T. Constandinou,et al. Implantable brain machine interfaces: first-in-human studies, technology challenges and trends. , 2021, Current opinion in biotechnology.
[18] Yaowen Li,et al. Large-area flexible organic solar cells , 2021, npj Flexible Electronics.
[19] G. Lanza,et al. Manufacturing Genome: A Foundation for Symbiotic, Highly Iterative Product and Production Adaptations , 2021, Towards Sustainable Customization: Bridging Smart Products and Manufacturing Systems.
[20] M. Schmid,et al. Crack-healing, a Novel Approach for a Laser-based Powder Bed Fusion of High-performance Ceramic Oxides , 2021, Additive Manufacturing Letters.
[21] F. Fang,et al. Study on Mechanisms of Photon-Induced Material Removal on Silicon at Atomic and Close-to-Atomic Scale , 2021, Nanomanufacturing and Metrology.
[22] M. Berggren,et al. Electrolyte-gated transistors for enhanced performance bioelectronics , 2021, Nature Reviews Methods Primers.
[23] Edward Guimont. Megalodon , 2021, M/C Journal.
[24] Konrad Wegener,et al. Noise and vibrations in machine tools , 2021, CIRP Annals.
[25] C. Eberl,et al. Designing Shape Morphing Behavior through Local Programming of Mechanical Metamaterials , 2021, Advanced materials.
[26] Yajie Wang,et al. Directed Evolution: Methodologies and Applications. , 2021, Chemical reviews.
[27] F. Santoro,et al. Conductive Polymer‐Based Bioelectronic Platforms toward Sustainable and Biointegrated Devices: A Journey from Skin to Brain across Human Body Interfaces , 2021, Advanced Materials Technologies.
[28] P. Fischer,et al. Self-Grown Bacterial Cellulose Capsules Made through Emulsion Templating. , 2021, ACS biomaterials science & engineering.
[29] Slobodan Dudić,et al. Augmented Reality Applications in Industry 4.0 Environment , 2021, Applied Sciences.
[30] B. Gordijn,et al. Ethical aspects of the biologicalisation of manufacturing , 2021 .
[31] N. König,et al. Automating Laboratory Processes by Connecting Biotech and Robotic Devices—An Overview of the Current Challenges, Existing Solutions and Ongoing Developments , 2021, Processes.
[32] R. Setchi,et al. Material-structure-performance integrated laser-metal additive manufacturing , 2021, Science.
[33] H. J. Wagner,et al. Synthetic biology as driver for the biologization of materials sciences , 2021, Materials today. Bio.
[34] W. Drossel,et al. Everting of tubular net structures based on Shape Memory Alloys , 2021, Engineering Research Express.
[35] Francis R. Willett,et al. High-performance brain-to-text communication via handwriting , 2021, Nature.
[36] Christian Brecher,et al. Automated stem cell production by bio-inspired control , 2021 .
[37] M. Boccellino,et al. Stem Cells: A Historical Review about Biological, Religious, and Ethical Issues , 2021, Stem cells international.
[38] Jihong Zhu,et al. Additive manufacturing of polymeric composites from material processing to structural design , 2021 .
[39] R. Roy,et al. An overview of self-engineering systems , 2021, Journal of Engineering Design.
[40] José Ramón Saura,et al. Evaluating security and privacy issues of social networks based information systems in Industry 4.0 , 2021, Enterp. Inf. Syst..
[41] P. Hazell,et al. Biomimetic armour design strategies for additive manufacturing: A review , 2021, Materials & Design.
[42] T. Hirose,et al. Label‐free quality control and identification of human keratinocyte stem cells by deep learning‐based automated cell tracking , 2021, Stem cells.
[43] N. König,et al. Fully Automated Cultivation of Adipose-Derived Stem Cells in the StemCellDiscovery—A Robotic Laboratory for Small-Scale, High-Throughput Cell Production Including Deep Learning-Based Confluence Estimation , 2021, Processes.
[44] S. Han,et al. Current Issues and Technical Advances in Cultured Meat Production: A Review , 2021, Food science of animal resources.
[45] R. Teti,et al. A conceptual vision for a bio-intelligent manufacturing cell for Selective Laser Melting , 2021 .
[46] Philipp Klimant,et al. Efficient integration process of production data into Augmented Reality based maintenance of machine tools , 2021, Production Engineering.
[47] M. Bezuidenhout,et al. Yeast-based metalworking fluid for milling of titanium alloy — An example of bio-integration , 2021 .
[48] Bastian Nießing,et al. Techno-Economic Analysis of Automated iPSC Production , 2021, Processes.
[49] M. Kino‐oka,et al. Current Developments in the Stable Production of Human Induced Pluripotent Stem Cells , 2021 .
[50] R. Wertheim,et al. Towards high performance living manufacturing systems - A new convergence between biology and engineering , 2021 .
[51] U. Andreaus,et al. In-depth gaze at the astonishing mechanical behavior of bone: A review for designing bio-inspired hierarchical metamaterials , 2020, Mathematics and Mechanics of Solids.
[52] A. Malshe,et al. Biological strategies from natural structures for resilience in manufacturing , 2020 .
[53] C. Herrmann,et al. Biological transformation of manufacturing as a pathway towards environmental sustainability: Calling for systemic thinking , 2020 .
[54] Oliver Rippel,et al. Deep-learning-based multi-class segmentation for automated, non-invasive routine assessment of human pluripotent stem cell culture status , 2020, Comput. Biol. Medicine.
[55] Thomas Bergs,et al. Application cases of biological transformation in manufacturing technology , 2020 .
[56] Juan M. Corchado,et al. Smart Helmet 5.0 for Industrial Internet of Things Using Artificial Intelligence , 2020, Sensors.
[57] Joost Duflou,et al. Where and how to find bio-inspiration? , 2020 .
[58] Terence J. O'Brien,et al. Motor neuroprosthesis implanted with neurointerventional surgery improves capacity for activities of daily living tasks in severe paralysis: first in-human experience , 2020, Journal of NeuroInterventional Surgery.
[59] A. Khademhosseini,et al. Strategies for antimicrobial peptide coatings on medical devices: a review and regulatory science perspective , 2020, Critical reviews in biotechnology.
[60] C. Aparicio,et al. Unraveling dominant surface physicochemistry to build antimicrobial peptide coatings with supramolecular amphiphiles. , 2020, Nanoscale.
[61] W. Drossel,et al. Development of Everting Tubular Net Structures Using Simulation for Growing Structures , 2020, Applied Sciences.
[62] M. Schnabelrauch,et al. Peptide‐mediated surface coatings for the release of wound‐healing cytokines , 2020, Journal of tissue engineering and regenerative medicine.
[63] Jingwei Zhao,et al. Recent Development in Micromanufacturing of Metallic Materials , 2020, Materials.
[64] Myung Chul Choi,et al. A bioinspired and hierarchically structured shape-memory material , 2020, Nature Materials.
[65] L. Basiricò,et al. Solution‐Grown Organic and Perovskite X‐Ray Detectors: A New Paradigm for the Direct Detection of Ionizing Radiation , 2020, Advanced Materials Technologies.
[66] F. Fang. Atomic and close-to-atomic scale manufacturing: perspectives and measures , 2020, International Journal of Extreme Manufacturing.
[67] Rajkumar Roy,et al. Self-engineering – Technological Challenges , 2020, New Technologies, Development and Application III.
[68] D. Knebel,et al. Collective motion as a distinct behavioral state of the individual , 2020, bioRxiv.
[69] M. Urban,et al. Self-healing polymers , 2020, Nature Reviews Materials.
[70] G. Qiao,et al. Spider-silk inspired polymeric networks by harnessing the mechanical potential of β-sheets through network guided assembly , 2020, Nature Communications.
[71] M. Petasecca,et al. Printable Organic Semiconductors for Radiation Detection: From Fundamentals to Fabrication and Functionality , 2020, Frontiers in Physics.
[72] Rajkumar Roy,et al. A Complexity Framework for Self-Engineering Systems , 2020 .
[73] Sawyer Buckminster Fuller,et al. A bio-hybrid odor-guided autonomous palm-sized air vehicle , 2020, Bioinspiration & biomimetics.
[74] Ulrich Schwaneberg,et al. Advances in ultrahigh-throughput screening for directed enzyme evolution. , 2019, Chemical Society reviews.
[75] Konrad Wegener,et al. SENSORS AS AN ENABLER FOR SELF-OPTIMIZING GRINDING MACHINES , 2019, MM Science Journal.
[76] Kensuke Harada,et al. Human-in-the-Loop Robotic Manipulation Planning for Collaborative Assembly , 2019, IEEE Transactions on Automation Science and Engineering.
[77] Zhenan Bao,et al. Electronic Skin: Recent Progress and Future Prospects for Skin‐Attachable Devices for Health Monitoring, Robotics, and Prosthetics , 2019, Advanced materials.
[78] Zhiwen Liu,et al. Smart manufacturing systems: state of the art and future trends , 2019, The International Journal of Advanced Manufacturing Technology.
[79] Ulrich Schwaneberg,et al. Biadhesive Peptides for Assembling Stainless Steel and Compound Loaded Micro-Containers. , 2019, Macromolecular bioscience.
[80] E. Musk. An Integrated Brain-Machine Interface Platform With Thousands of Channels , 2019, bioRxiv.
[81] R. G. Burela,et al. Multi-scale modeling and simulation of natural fiber reinforced composites (Bio-composites) , 2019, Journal of Physics: Conference Series.
[82] Arvid Hellmich,et al. A NEW GENERATION OF PRODUCTION WITH CYBER-PHYSICAL SYSTEMS – ENABLING THE BIOLOGICAL TRANSFORMATION IN MANUFACTURING , 2019, Journal of Machine Engineering.
[83] Tie Li,et al. Materials, Structures, and Functions for Flexible and Stretchable Biomimetic Sensors. , 2019, Accounts of chemical research.
[84] D Knebel,et al. Intra- versus intergroup variance in collective behavior , 2019, Science Advances.
[85] C. Herrmann,et al. The Positive Impact Factory: Transition from Eco-Efficiency to Eco-Effectiveness Strategies in Manufacturing , 2018, Un/Certain Futures - Rollen des Designs in gesellschaftlichen Transformationsprozessen.
[86] E. Kroll,et al. Weight reduction of 3D-printed cylindrical and toroidal pressure vessels through shape modification , 2018 .
[87] Marek W. Urban,et al. Key-and-lock commodity self-healing copolymers , 2018, Science.
[88] I. Fassi,et al. Flexible micro manufacturing platform for the fabrication of PMMA microfluidic devices , 2018, Journal of Manufacturing Processes.
[89] Marco Bortolini,et al. Reconfigurable manufacturing systems: Literature review and research trend , 2018, Journal of Manufacturing Systems.
[90] Liberato Ferrara,et al. A Review of Self‐Healing Concrete for Damage Management of Structures , 2018 .
[91] S. Zwaag,et al. Self‐Healing Phenomena in Metals , 2018 .
[92] M. Meyers,et al. Additive Manufacturing as a Method to Design and Optimize Bioinspired Structures , 2018, Advanced materials.
[93] A. Hewitt,et al. Automated Cell Culture Systems and Their Applications to Human Pluripotent Stem Cell Studies , 2018, SLAS technology.
[94] Ryan B. Wicker,et al. Fabricating patch antennas within complex dielectric structures through multi-process 3D printing , 2018 .
[95] H. Jenssen,et al. Antibiofilm Peptides and Peptidomimetics with Focus on Surface Immobilization , 2018, Biomolecules.
[96] László Monostori,et al. Biologicalisation: Biological transformation in manufacturing , 2018 .
[97] Michal Cifra,et al. Roadmap on semiconductor–cell biointerfaces , 2018, Physical biology.
[98] Ulrich Schwaneberg,et al. Directed evolution of polypropylene and polystyrene binding peptides , 2018, Biotechnology and bioengineering.
[99] Yuxin Sun,et al. Crashworthiness investigation of the bio-inspired bi-directionally corrugated core sandwich panel under quasi-static crushing load , 2017 .
[100] Sam S. Yoon,et al. Advances in self-healing materials based on vascular networks with mechanical self-repair characteristics. , 2017, Advances in colloid and interface science.
[101] Herwig G. Winkler,et al. Überlegungen zur Übertragung bionischer Systemdesignmuster auf die Fabriklayout-und Materialflussplanung , 2017 .
[102] S. Yoo,et al. Organic flash memory on various flexible substrates for foldable and disposable electronics , 2017, Nature Communications.
[103] Konrad Wegener,et al. Optimised approach for characterisation of cutting edge micro-geometry in drilling carbon fibre reinforced plastics(CFRP) , 2017 .
[104] Tomasz Wasilewski,et al. Bioelectronic nose: Current status and perspectives. , 2017, Biosensors & bioelectronics.
[105] Bin He,et al. Noninvasive Electroencephalogram Based Control of a Robotic Arm for Reach and Grasp Tasks , 2016, Scientific Reports.
[106] T. Park,et al. Bioelectronic nose and its application to smell visualization , 2016, Journal of biological engineering.
[107] Robert Schmitt,et al. Automation in the context of stem cell production - where are we heading with Industry 4.0? , 2016 .
[108] Ryan Wicker,et al. Multiprocess 3D printing for increasing component functionality , 2016, Science.
[109] Satish V. Kailas,et al. Eco-Friendly, Non-Toxic Cutting Fluid for Sustainable Manufacturing and Machining Processes , 2016 .
[110] O. Levy,et al. Antimicrobial Proteins and Peptides in Early Life: Ontogeny and Translational Opportunities , 2016, Front. Immunol..
[111] Guoqiang Li,et al. Advances in healing-on-demand polymers and polymer composites , 2016 .
[112] C. Hewitt,et al. Characterization of human mesenchymal stem cells from multiple donors and the implications for large scale bioprocess development , 2016 .
[113] R. Müller,et al. Structural integration of piezoceramic fibers in deep drawn sheet metal for material-integrated health monitoring , 2016 .
[114] Amir Ayali,et al. Locust Collective Motion and Its Modeling , 2015, PLoS Comput. Biol..
[115] Hiroo Iwata,et al. Long-term maintenance of human induced pluripotent stem cells by automated cell culture system , 2015, Scientific Reports.
[116] Abir Al-Tabbaa,et al. Glass encapsulated minerals for self-healing in cement based composites , 2015 .
[117] B Kollbe Ahn,et al. High-performance mussel-inspired adhesives of reduced complexity , 2015, Nature Communications.
[118] J. Hyllner,et al. Cell-based therapy technology classifications and translational challenges , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[119] B. S. Pabla,et al. Condition based maintenance of machine tools—A review , 2015 .
[120] N. Adams. Bloom's taxonomy of cognitive learning objectives. , 2015, Journal of the Medical Library Association : JMLA.
[121] Konrad Wegener,et al. Machining of carbon fiber reinforced plastics: Influence of tool geometry and fiber orientation on the machining forces , 2015 .
[122] Joost R. Duflou,et al. SEABIRD: Scalable search for systematic biologically inspired design , 2015, Artificial Intelligence for Engineering Design, Analysis and Manufacturing.
[123] Yoram Reich,et al. Sustainability Strategies In Nature , 2014 .
[124] Nele De Belie,et al. The efficiency of self-healing cementitious materials by means of encapsulated polyurethane in chloride containing environments , 2014 .
[125] Sung Youb Kim,et al. Tactile-direction-sensitive and stretchable electronic skins based on human-skin-inspired interlocked microstructures. , 2014, ACS nano.
[126] Kevin Warwick,et al. The Cyborg Revolution , 2014, NanoEthics.
[127] Paul Levi,et al. Reconfigurable swarm robots produce self-assembling and self-repairing organisms , 2014, Robotics Auton. Syst..
[128] Antoine Cully,et al. Robots that can adapt like animals , 2014, Nature.
[129] David J. Williams,et al. Investigating the feasibility of scale up and automation of human induced pluripotent stem cells cultured in aggregates in feeder free conditions☆ , 2014, Journal of biotechnology.
[130] Ryan B. Wicker,et al. 3D Printing multifunctionality: structures with electronics , 2014 .
[131] Fengzhou Fang,et al. Design of freeform optics , 2013 .
[132] Mayu Yamazaki-Inoue,et al. Large-scale cell production of stem cells for clinical application using the automated cell processing machine , 2013, BMC Biotechnology.
[133] Ashutosh Tiwari,et al. Concepts of Self-Repairing Systems , 2013 .
[134] Jaime A. Camelio,et al. A bio-inspired approach for self-correcting compliant assembly systems , 2013 .
[135] Regina Frei,et al. Self-healing and self-repairing technologies , 2013 .
[136] K. Lafleur,et al. Quadcopter control in three-dimensional space using a noninvasive motor imagery-based brain–computer interface , 2013, Journal of neural engineering.
[137] David Wheatcroft,et al. Learning and signal copying facilitate communication among bird species , 2013, Proceedings of the Royal Society B: Biological Sciences.
[138] Zhengkui Xu,et al. Bio‐Assembled Nanocomposites in Conch Shells Exhibit Giant Electret Hysteresis , 2013, Advanced materials.
[139] David J. Williams,et al. Precision manufacturing for clinical-quality regenerative medicines , 2012, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[140] Zoran Nenadic,et al. Brain-computer interface controlled robotic gait orthosis , 2012, Journal of NeuroEngineering and Rehabilitation.
[141] Philip Ball,et al. Nature's color tricks. , 2012, Scientific American.
[142] G. López,et al. Anisotropic Wetting Surfaces with One‐Dimesional and Directional Structures: Fabrication Approaches, Wetting Properties and Potential Applications , 2012, Advanced materials.
[143] Duncan J. Irschick,et al. Looking Beyond Fibrillar Features to Scale Gecko‐Like Adhesion , 2012, Advanced materials.
[144] G. Daley,et al. The promise of induced pluripotent stem cells in research and therapy , 2012, Nature.
[145] E. Knoll. Cyborgs , 2011, Lexikon der Globalisierung.
[146] Philseok Kim,et al. Control of bacterial biofilm growth on surfaces by nanostructural mechanics and geometry , 2011, Nanotechnology.
[147] A. Doud,et al. Continuous Three-Dimensional Control of a Virtual Helicopter Using a Motor Imagery Based Brain-Computer Interface , 2011, PloS one.
[148] Mark Fischetti,et al. Computers vs. brains. , 2011, Scientific American.
[149] Jay Lee,et al. Self-maintenance and engineering immune systems: Towards smarter machines and manufacturing systems , 2011, Annu. Rev. Control..
[150] Fen Jiao,et al. Bioleaching of a low grade nickel-copper-cobalt sulfide ore , 2011 .
[151] Velimir Išgum,et al. Robot Control Using Anticipatory Brain Potentials , 2011 .
[152] R. Rasch,et al. Hardness in arthropod exoskeletons in the absence of transition metals. , 2010, Acta biomaterialia.
[153] Jeffrey S. Moore,et al. Introduction: self-healing polymers and composites , 2007, Journal of The Royal Society Interface.
[154] Krzysztof Jemielniak,et al. Advanced monitoring of machining operations , 2010 .
[155] Bharat Bhushan,et al. Surface self-organization: From wear to self-healing in biological and technical surfaces , 2010 .
[156] Jin Zhai,et al. Directional water collection on wetted spider silk , 2010, Nature.
[157] Ashok K. Goel,et al. Biologically inspired design: process and products , 2009 .
[158] Di Zhang,et al. Biomorphic mineralization: From biology to materials , 2009 .
[159] L. Bozinovska,et al. Anticipatory brain potentials in a Brain-Robot Interface paradigm , 2009, 2009 4th International IEEE/EMBS Conference on Neural Engineering.
[160] R. Wool. Self-healing materials: a review. , 2008, Soft matter.
[161] Andreas Solga,et al. The dream of staying clean: Lotus and biomimetic surfaces , 2007, Bioinspiration & biomimetics.
[162] Randall T Moon,et al. Advances in signaling in vertebrate regeneration as a prelude to regenerative medicine. , 2007, Genes & development.
[163] Thomas Scheibel,et al. Spider silks: recombinant synthesis, assembly, spinning, and engineering of synthetic proteins , 2004, Microbial cell factories.
[164] G. Pfurtscheller,et al. ‘Thought’ – control of functional electrical stimulation to restore hand grasp in a patient with tetraplegia , 2003, Neuroscience Letters.
[165] N. Sottos,et al. Self-healing structural composite materials , 2003 .
[166] L. F. Haas. Hans Berger (1873–1941), Richard Caton (1842–1926), and electroencephalography , 2003, Journal of neurology, neurosurgery, and psychiatry.
[167] F. Chu,et al. Assessing potential health risks from microcystin toxins in blue-green algae dietary supplements. , 2000, Environmental health perspectives.
[168] Anas Ben Achour,et al. Laser structuring with DLIP technology of tungsten carbide with different binder content , 2022, Procedia CIRP.
[169] Anas Ben Achour,et al. Investigation of bio-based cooling lubricants for the machining of aircraft stainless steels , 2022, Procedia CIRP.
[170] C. Herrmann,et al. Function oriented biological transformation of a lubrication process system , 2022, Procedia CIRP.
[171] M. Binder,et al. Condition monitoring of multi-material lightweight components through a sensitive outer skin using Fiber-Bragg-Grating sensors , 2022, Procedia CIRP.
[172] R. Neugebauer,et al. Biological Transformation of Manufacturing – From a Vision to Industrial Transfer – Interim Evaluation from the Perspective of Applied Research , 2022, Procedia CIRP.
[173] M. Riesener,et al. Complexity-oriented design for cyber-physical systems , 2022, Procedia CIRP.
[174] T. Bergs,et al. Structure protects function - An enabler for the functionalization of component surfaces by biohybrid coatings , 2022, Procedia CIRP.
[175] C. Brecher,et al. Integration of Bio-based Insulation Materials as a Contribution to the Biological Transformation of Production Technology , 2022, Procedia CIRP.
[176] Md. Fashiar Rahman,et al. A Review of Augmented Reality Technology and its Applications in Digital Manufacturing , 2022, SSRN Electronic Journal.
[177] László Monostori,et al. Evolution and future of manufacturing systems , 2021 .
[178] Guy Theraulaz,et al. Swarm Robotics: Past, Present, and Future , 2021, Proc. IEEE.
[179] Welf-Guntram Drossel,et al. Expansion of the Fused Filament Fabrication (FFF) Process Through Wire Embedding, Automated Cutting, and Electrical Contacting , 2021, IEEE Access.
[180] R. Teti,et al. Microbial-based cutting fluids as bio-integration manufacturing solution for green and sustainable machining , 2021 .
[181] Joost Duflou,et al. Bio-based design methodologies for products, processes, machine tools and production systems , 2021 .
[182] B. Denkena,et al. Gentelligent processes in biologically inspired manufacturing , 2021 .
[183] Francis R. Willett,et al. A High-Performance Handwriting BCI , 2021, SpringerBriefs in Electrical and Computer Engineering.
[184] Thomas Bauernhansl,et al. Changeability of Matrix Assembly Systems , 2020 .
[185] U. Eduok,et al. Self-healing composite coatings with protective and anticorrosion potentials: classification by healing mechanism , 2020 .
[186] L. Monostori,et al. Towards living manufacturing systems , 2020 .
[187] Fiona Charnley,et al. A framework for assessing self-healing products , 2020, Procedia CIRP.
[188] Abdullah M. Asiri,et al. Mechanical behavior of self-healing polyethylenimine/polyacrylic acid multilevel polymer films , 2020 .
[189] Abdullah M. Asiri,et al. Effect of self-healing on zeolite-immobilized bacterial cementitious mortar composites , 2020 .
[190] A. Hellmich,et al. The biological transformation of industrial manufacturing – Technologies, status and scenarios for a sustainable future of the German manufacturing industry , 2020 .
[191] A. Marzocchella,et al. Feasibility study of using microorganisms as lubricant component in cutting fluids , 2020, Procedia CIRP.
[192] Robert Miehe,et al. The Biological Transformation of Energy Supply and Storage – Technologies and Scenarios for Biointelligent Value Creation , 2019, Procedia Manufacturing.
[193] R. Wertheim,et al. Biological transformation and technologies used for manufacturing of multifunctional metal-based parts , 2019, Procedia Manufacturing.
[194] Robert Miehe,et al. Enabling bidirectional real time interaction between biological and technical systems: Structural basics of a control oriented modeling of biology-technology-interfaces , 2019, Procedia CIRP.
[195] Christian Brecher,et al. Modelling of devices in an adaptive and dynamic environment , 2019, Procedia CIRP.
[196] Christian Brecher,et al. Simulation Framework for Virtual Robot Programming in Reconfigurable Production Systems , 2019, Procedia CIRP.
[197] Sandra Hirche,et al. Impedance-Based Gaussian Processes for Modeling Human Motor Behavior in Physical and Non-Physical Interaction , 2019, IEEE Transactions on Biomedical Engineering.
[198] Welf-Guntram Drossel,et al. Smart materials for smart production – a cross-disciplinary innovation network in the field of smart materials , 2018 .
[199] Valentin Zaitsev,et al. Jumping efficiency of small creatures and its applicability in robotics , 2018 .
[200] A. Sauer,et al. The biological transformation of the manufacturing industry – envisioning biointelligent value adding , 2018 .
[201] Konrad Wegener,et al. Dawn of new machining concepts , 2018 .
[202] E. Brinksmeier,et al. Microbial-based metalworking fluids in milling operations , 2017 .
[203] Gunther Reinhart,et al. Systematic Biomimetic Part Design for Additive Manufacturing , 2017 .
[204] Christoph Mertens,et al. Innovative Konzepte einer sich selbstorganisierenden Fahrzeugmontage am Beispiel des Forschungsprojekts SMART FACE , 2016 .
[205] Rajkumar Roy,et al. Continuous maintenance and the future – Foundations and technological challenges , 2016 .
[206] Rongshun Chen,et al. A Flexible Multifunctional Tactile Sensor Using Interlocked ZnO Nanorod Arrays for Artificial Electronic Skin , 2016 .
[207] Welf-Guntram Drossel,et al. New Concepts for Distributed Actuators and Their Control , 2015 .
[208] Ashok K. Goel,et al. Biologically Inspired Design , 2014 .
[209] Wenping Jiang,et al. Bio-inspired self-sharpening cutting tool surface for finish hard turning of steel , 2014 .
[210] Kamlakar P Rajurkar,et al. Bio-inspired functional surfaces for advanced applications , 2013 .
[211] Dimitrios Pantazis,et al. Using Brain Waves to Control Computers and Machines , 2013, Adv. Hum. Comput. Interact..
[212] Aitor Olarra,et al. Machine tools for large parts , 2013 .
[213] Ashutosh Tiwari,et al. Evolvable Embryonics: 2-in-1 Approach to Self-healing Systems , 2013 .
[214] A. Riazi,et al. Stem cell sources for regenerative medicine. , 2009, Methods in molecular biology.
[215] C. Mason,et al. A brief definition of regenerative medicine. , 2008, Regenerative medicine.
[216] ey,et al. Biosensors: Applications and overview in industrial automation , 2008 .
[217] Kazuhiro Ohkura,et al. Modelling of Biological Manufacturing Systems for Dynamic Reconfiguration , 1997 .
[218] R. Goodland. The Concept of Environmental Sustainability , 1995 .
[219] H. Stieve. Sensors of biological organisms — biological transducers☆ , 1983 .