Results for 'bionics'

61 found
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  1.  16
    Bionic Bodies, Posthuman Violence and the Disembodied Criminal Subject.Sabrina Gilani - 2021 - Law and Critique 32 (2):171-193.
    This article examines how the so-called disembodied criminal subject is given structure and form through the law of homicide and assault. By analysing how the body is materialised through the criminal law’s enactment of death and injury, this article suggests that the biological positioning of these harms of violence as uncontroversial, natural, and universal conditions of being ‘human’ cannot fully appreciate what makes violence wrongful for us, as embodied entities. Absent a theory of the body, and a consideration of corporeality, (...)
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  2.  64
    Vertical Bionic City, New Futuristic Footprint.Klodjan Xhexhi - 2020 - International Journal of Innovative Research in Science, Engineering and Technology (Ijirset) 9 (10):9418-9427.
    Solutions to the urban problems of the future must assume the new reality of megacities. The inevitable technological progress must find a balance with the ‘bio-ecological' recovery of the natural environment. In the vertical bionic city, all these occur; bio intelligence and giant structures of the city are merged into a single. These structures try to survive by relying on working together as a single organism alive, as ants work in their nest. What makes them so efficient? What makes them (...)
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  3.  33
    Bionics, biological systems and the principle of optimal design.Aurel I. Popescu - 1998 - Acta Biotheoretica 46 (4):299-310.
    The living world is an exciting and inexhaustible source of high performance solutions to the multitude of biological problems, which were attained as a result of a natural selection, during the millions and millions years evolution of life on Earth. This work presents and comments some examples of high performances of living beings, in the light of the universal principle governing the realm of living matter: Optimal Design Principle. At the same time, the transfer of these optimal solutions, from living (...)
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  4. Children, Bionic Athletes, and Genetic Engineering.MichaelJ Sandel - 2009 - In Julian Savulescu & Nick Bostrom (eds.), Human Enhancement. Oxford University Press. pp. 71.
     
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  5.  38
    Simulation experiments in bionics: A regulative methodological perspective.Edoardo Datteri - 2009 - Biology and Philosophy 24 (3):301-324.
    Bionic technologies connecting biological nervous systems to computer or robotic devices for therapeutic purposes have been recently claimed to provide novel experimental tools for the investigation of biological mechanisms. This claim is examined here by means of a methodological analysis of bionics-supported experimental inquiries on adaptive sensory-motor behaviours. Two broad classes of bionic systems (regarded here as hybrid simulations of the target biological system) are identified, which differ from each other according to whether a component of the biological target (...)
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  6.  44
    Malchronia: Cryonics and Bionics as Primitive Weapons in the War on Time.Christopher C. Yorke & Lois Rowe - 2006 - Journal of Evolution and Technology 15 (1):73-85.
    The feeling that one was ‘born in the wrong time’ we call malchronia. This is distinct from mere nostalgia, in that it may generate the longing to transcend the temporal present in favor of a time of which one has had no experience, or even a timeless state of being. Implicit in malchronetic longing is the rejection of one’s experience of one’s own time, making it a revolutionary and utopian inclination. In this article we examine two dominant strategies—primitive weapons in (...)
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  7. The Legal Ambiguity of Advanced Assistive Bionic Prosthetics: Where to Define the Limits of ‘Enhanced Persons’ in Medical Treatment.Tyler L. Jaynes - 2021 - Clinical Ethics 16 (3):171-182.
    The rapid advancement of artificial intelligence systems has generated a means whereby assistive bionic prosthetics can become both more effective and practical for the patients who rely upon the use of such machines in their daily lives. However, de lege lata remains relatively unspoken as to the legal status of patients whose devices contain self-learning CIS that can interface directly with the peripheral nervous system. As a means to reconcile for this lack of legal foresight, this article approaches the topic (...)
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  8. Medicalization: Current concept and future directions in a Bionic Society.Antonio Maturo - 2012 - Mens Sana Monographs 10 (1):122.
    The article illustrates the main features of the concept of medicalization, starting from its theoretical roots. Although it is the process of extending the medical gaze on human conditions, it appears that medicalization cannot be strictly connected to medical imperialism anymore. Other "engines" of medicalization are influential: consumers, biotechnology and managed care. The growth of research and theoretical reflections on medicalization has led to the proposal of other parallel concepts like pharmaceuticalization, genetization and biomedicalization. These new theoretical tools could be (...)
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  9.  13
    Application of the Bionic Concept in Reducing the Complexity Noise and Drag of the Mega High-Speed Train Based on Computer Simulation Technologies.He-Xuan Hu, Bo Tang & Ye Zhang - 2018 - Complexity 2018:1-14.
    Regarding the continuous development of high-speed trains and the increase of running speeds, the aerodynamic design of high-speed trains has become significantly important, while reduction of drag and noise comprises a significant challenge in order to optimize aerodynamic design of high-speed trains. The design form factor of a high-speed train is highly influenced by aerodynamic aspects including aerodynamic drag, lift force, and noise. With the high-speed train as the object, the paper aims to take bionic concept as the entry point, (...)
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  10. Analyzing the Explanatory Power of Bionic Systems With the Minimal Cognitive Grid.Antonio Lieto - 2022 - Frontiers in Robotics and AI 9.
    In this article, I argue that the artificial components of hybrid bionic systems do not play a direct explanatory role, i.e., in simulative terms, in the overall context of the systems in which they are embedded in. More precisely, I claim that the internal procedures determining the output of such artificial devices, replacing biological tissues and connected to other biological tissues, cannot be used to directly explain the corresponding mechanisms of the biological component(s) they substitute (and therefore cannot be used (...)
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  11. Is a Bionic Goalkeeper Possible? Anticipation and Intuition.Mihai Nadin - unknown
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  12.  14
    Disabled or Cyborg? How Bionics Affect Stereotypes Toward People With Physical Disabilities.Bertolt Meyer & Frank Asbrock - 2018 - Frontiers in Psychology 9.
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  13. The infrasonics and electronics of bionics.Varanasi Ramabrahmam - 2009 - In Proceedings of Presentations at International Conference on Photonics, Nano-Technology and Computer Applications (ICOPNAC- 2009), 25-28 February 2009 Held at Center for Research and Development, PRIST UNIVERSITY,. pp. 20-39.
    The concepts developed using Upanishadic insight regarding human consciousness, mind and mental processes and their applications in information acquisition and transmission by, through and in human body will be used to model human cognitive processes. A sequential reversible process by the stepwise transformation of (i) infrasonic form of energy and transformation of information already stored in (ii) biochemical form within as memory, and retrieved as inner mental world into (iii) electrochemical and then into (iv) mechanical form while communicating and the (...)
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  14.  44
    Scientific models and ethical issues in hybrid bionic systems research.Pericle Salvini, Edoardo Datteri, Cecilia Laschi & Paolo Dario - 2008 - AI and Society 22 (3):431-448.
    Research on hybrid bionic systems (HBSs) is still in its infancy but promising results have already been achieved in laboratories. Experiments on humans and animals show that artificial devices can be controlled by neural signals. These results suggest that HBS technologies can be employed to restore sensorimotor functionalities in disabled and elderly people. At the same time, HBS research raises ethical concerns related to possible exogenous and endogenous limitations to human autonomy and freedom. The analysis of these concerns requires reflecting (...)
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  15.  30
    Efficacy Testing as a Primary Purpose of Phase 1 Clinical Trials: Is it Applicable to First-in-Human Bionics and Optogenetics Trials?Frederic Gilbert, Alexander R. Harris & Robert M. I. Kapsa - 2012 - American Journal of Bioethics Neuroscience 3 (2):20-22.
    In her article, Pascale Hess raises the issue of whether her proposed model may be extrapolated and applied to clinical research fields other than stem cell-based interventions in the brain (SCBI-B) (Hess 2012). Broadly summarized, Hess’s model suggests prioritizing efficacy over safety in phase 1 trials involving irreversible interventions in the brain, when clinical criteria meet the appropriate population suffering from “degenerative brain diseases” (Hess 2012). Although there is a need to reconsider the traditional phase 1 model, especially with respect (...)
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  16. The case against perfection: what's wrong with designer children, bionic athletes, and genetic engineering.Michael J. Sandel - 2012 - In Stephen Holland (ed.), Arguing About Bioethics. Routledge. pp. 93.
  17.  5
    The Rhetoric and Counter-Rhetoric of a "Bionic" Technology.Stuart S. Blume - 1997 - Science, Technology and Human Values 22 (1):31-56.
    Development of the cochlear implant, discussed in this article, depended vitally on deaf people being persuaded to undergo implantation. Media "reconstruction" of the device as the "bionic ear" was typically encouraged by implant pioneers. Unexpectedly, however, a "counter-rhetoric" based on a very different understanding of deafness emerged. With it, deaf people are slowly succeeding in gaining influence over the further deployment of the technology. The analysis suggests modifications to existing theoretical models of technological change in medicine.
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  18.  10
    Economic Structure Analysis Based on Neural Network and Bionic Algorithm.Yanjun Dai & Lin Su - 2021 - Complexity 2021:1-11.
    In this article, an in-depth study and analysis of economic structure are carried out using a neural network fusion release algorithm. The method system defines the weight space and structure space of neural networks from the perspective of optimization theory, proposes a bionic optimization algorithm under the weight space and structure space, and establishes a neuroevolutionary method with shallow neural network and deep neural network as the research objects. In the shallow neuroevolutionary, the improved genetic algorithm based on elite heuristic (...)
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  19.  13
    Design, Modeling, and Experiments of the Vortex-Induced Vibration Piezoelectric Energy Harvester with Bionic Attachments.Zunlong Jin, Guoping Li, Junlei Wang & Zhien Zhang - 2019 - Complexity 2019:1-13.
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  20.  16
    Complexity Simulation on Application of Asymmetric Bionic Cross-Section Rod in Pantographs of High-Speed Trains.Yan Cao, Yu Bai & Qiangfeng Wang - 2018 - Complexity 2018:1-12.
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  21.  8
    Transhumanism: a realistic future?Jean-Pierre Fillard - 2020 - Hackensack, New Jersey: World Scientific.
    Transhuman, or trans-human, is the concept of an intermediary form between human and posthuman. In other words, a transhuman is a being that resembles a human in most respects but who has powers and abilities beyond those of standard humans. These abilities might include improved intelligence, awareness, strength, or durability. Transhumans sometimes appear in science-fiction as cyborgs or genetically-enhanced humans. This book will look into the question "Can machines think?" followed by "Can humans extend their lifespan and keep up with (...)
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  22.  20
    Bio-Informed Emerging Technologies and Their Relation to the Sustainability Aims of Biomimicry.Bernadette Bensaude-Vincent - 2019 - Environmental Values 28 (5):551-571.
    Synthetic biology, materials chemistry and soft robotics are fast becoming leading disciplines within the field of practices which look to nature for inspiration and opportunities. In this article I discuss how these molecular-scale practices fit within the existing trends of bio-informed design defined at the macro level, that is, bionics, biomimetics and more specifically biomimicry. Based on the metaphysical views underlying bio-informed design practices, I argue that none of them currently fit the biomimicry model, as they are not consistently (...)
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  23.  42
    The Epistemic Value of Brain–Machine Systems for the Study of the Brain.Edoardo Datteri - 2017 - Minds and Machines 27 (2):287-313.
    Bionic systems, connecting biological tissues with computer or robotic devices through brain–machine interfaces, can be used in various ways to discover biological mechanisms. In this article I outline and discuss a “stimulation-connection” bionics-supported methodology for the study of the brain, and compare it with other epistemic uses of bionic systems described in the literature. This methododology differs from the “synthetic”, simulative method often followed in theoretically driven Artificial Intelligence and cognitive science, even though it involves machine models of biological (...)
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  24.  24
    Вплив інноваційних технологій на дизайн просторово-предметного середовища як чинник сталого розвитку.Iryna Rizhova & Alina Shmarina - 2019 - Гуманітарний Вісник Запорізької Державної Інженерної Академії 76:90-102.
    Actuality of the study is that the rapid development, in particular, of innovative technologies, enables to bring the educational process to a new high level, which will provide a better training of specialists in the field of design, which are necessary for the prosperity of our country. The article explores design artifacts that are differentiated in the cultures of information society. The concept of how the innovative technologies influence on the design of the spatial-object environment is considered. Problems of studying (...)
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  25.  22
    The Biomimicry Revolution: Learning from Nature how to Inhabit the Earth.Henry Dicks - 2023 - New York: Columbia University Press.
    Modernity is founded on the belief that the world we build is a human invention, not a part of nature. The ecological consequences of this idea have been catastrophic. We have laid waste to natural ecosystems, replacing them with fundamentally unsustainable human designs. With time running out to address the environmental crises we have caused, our best path forward is to turn to nature for guidance. In this book, Henry Dicks explores the philosophical significance of a revolutionary approach to sustainable (...)
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  26.  3
    Le vivant comme modèle.Gauthier Chapelle - 2015 - Paris: Albin Michel. Edited by Michèle Decoust, Nicolas Hulot, Jean-Marie Pelt & Luc Schuiten.
    Des millions d'années avant l'apparition de l'homme, la vie avait déjà inventé la roue, le moteur atomique, le sonar, le vol stationnaire, la capture de l'énergie solaire, l'éclairage électrique, le GPS et des myriades de techniques qui nous dépassent encore complètement : cicatrisation, reproduction, congélation suivie de réanimation, et des cerveaux dont chacun des milliards de neurones est un univers informatique. Pour le comprendre, il a fallu attendre que nos propres technologies atteignent les profondeurs moléculaires du vivant, nous révélant que (...)
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  27.  7
    Lilliputian Computer Ethics.John Weckert - 2002 - Metaphilosophy 33 (3):366-375.
    This essay considers some ethical issues of nanotechnology and quantum computing, particularly the issue of privacy, and questions related to artificial intelligence, implants, and virtual reality. It then examines the claim that research in this field should be halted.
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  28. The Case Against Perfection.Michael J. Sandel - 2004 - The Atlantic (April):1–11.
    What's wrong with designer children, bionic athletes, and genetic engineering.
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  29.  7
    The Material Turn in the Study of Form: From Bio-Inspired Robots to Robotics-Inspired Morphology.Marco Tamborini - 2021 - Perspectives on Science 29 (5):643-665.
    . This paper investigates the mechanisms of knowledge production of twenty-first century robotics-inspired morphology. How robotics influences investigations into the structure, development, and change of organic forms? Which definition of form is presupposed by this new approach to the study of form? I answer these questions by investigating how robots are used to understand and generate new questions about the locomotion of extinct animals in the first case study and in high-performance fishes in the second case study. After having illustrated (...)
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  30. What Does it Mean to Mimic Nature? A Typology for Biomimetic Design.Alessio Gerola, Zoë Robaey & Vincent Blok - 2023 - Philosophy and Technology 36 (4):1-20.
    In an effort to produce new and more sustainable technologies, designers have turned to nature in search of inspiration and innovation. Biomimetic design (from the Greek bios, life, mimesis, imitation) is the conscious imitation of biological models to solve today's technical and ecological challenges. Nowadays numerous different approaches exist that take inspiration from nature as a model for design, such as biomimicry, biomimetics, bionics, permaculture, ecological engineering, etc. This variety of practices comes in turn with a wide range of (...)
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  31.  58
    The future of humankind in the era of human and computer hybridization: An anthropological analysis. [REVIEW]Daniela Cerqui - 2002 - Ethics and Information Technology 4 (2):101-108.
    My anthropological analysis of bionics is basedon the representations of engineers concerningthe definition of humankind and its future. Thedifference between repairing and improving onhuman beings is disappearing and we strive toreach a kind of `perfection', whose criteriaare evolving with technical developments.Nowadays, in the so-called information society,information is described as the best value: aperfect human being would be a free braindirectly connected to the web, and without abody because it is considered as an impedimentto the circulation of information. But what (...)
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  32.  4
    Posthumanity: Thinking Philosophically About the Future.Brian Cooney - 2004 - Rowman & Littlefield Publishers.
    By the end of the 21st century humans could have increasingly bionic bodies with greatly enhanced brains and sensory organs. They could be spending their abundant leisure in a variety of richly detailed, stimulating worlds provided by virtual reality technology, while computers and robots of various kinds do their work for them. What should we think of this prospect?
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  33.  11
    Technische Form und Konstruktion.Marco Tamborini - 2020 - Deutsche Zeitschrift für Philosophie 68 (5):712-733.
    In this paper, I delineate the first pages of a philosophical genealogy which outlines the cornerstones of a philosophy of bio-technical forms. In so doing, the essay contributes to the philosophical understanding of some key scientific concepts. In particular, it analyses the philosophical and historical preconditions, the epistemic assumptions, as well as the ontological commitments of the concept of form as used in digital design and in bionics. In the first section, I investigate Ernst Kapp’s philosophy of technical forms. (...)
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  34.  9
    Architectural Approach to Design of Emotional Intelligent Systems.Александра Викторовна Шиллер & Олег Эдуардович Петруня - 2021 - Russian Journal of Philosophical Sciences 64 (1):102-115.
    Over the past decades, due to the course towards digitalization of all areas of life, interest in modeling and creating intelligent systems has increased significantly. However, there are now a stagnation in the industry, a lack of attention to analog and bionic approaches as alternatives to digital, numerous speculations on “neuro” issues for commercial and other purposes, and an increase in social and environmental risks. The article provides an overview of the development of artificial intelligence (AI) conceptions toward increasing the (...)
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  35.  63
    An Empirically Informed Critique of Habermas’ Argument from Human Nature.Nicolae Morar - 2015 - Science and Engineering Ethics 21 (1):95-113.
    In a near-future world of bionics and biotechnology, the main ethical and political issue will be the definition of who we are. Could biomedical enhancements transform us to such an extent that we would be other than human? Habermas argues that any genetic enhancement intervention that could potentially alter ‘human nature’ should be morally prohibited since it alters the child’s nature or the very essence that makes the child who he is. This practice also commits the child to a (...)
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  36.  34
    Vanishing senses—restoration of sensory functions by electronic implants.Steffen K. Rosahl - 2004 - Poiesis and Praxis 2 (4):285-295.
    Is the endeavour to restore perceptive brain functions by electronic implants the first step on the way to create bionic cyborgs? Can we augment or multiply our senses by directly contacting computer chips to the brain? Will bio-implants influence and permanently change human psyche?
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  37. Abortion, embryo destruction and the future of value argument.J. Savulescu - 2002 - Journal of Medical Ethics 28 (3):133-135.
    Abortion and embryo destruction prevent a future of value, but that does not make them wrong.Abortion involves the killing of a fetus. One bad thing about killing a fetus is that the fetus is deprived of a future of value. Think of all the things which make your life good and worth living: understanding the world, seeing your children grow into independent, intelligent, and happy people, watching a sunset over the hills, enjoying good times with friends. By killing the fetus, (...)
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  38. Towards a philosophy of interdisciplinarity.Jan Schmidt - 2007 - Poiesis and Praxis 5 (1):53-69.
    This paper aims to contribute to the expanding discourse on inter- and transdisciplinarity. Referring to well-established distinctions in philosophy of science, the paper argues in favor of a plurality of four different dimensions: Interdisciplinarity with regard to objects, knowledge/theories, methods/practices, and further, problem perception/problem solving. Different philosophical thought traditions can be related to these distinguishable meanings. The philosophical framework of the four different dimensions will be illustrated by some of the most popular examples of research programs that are labeled interdisciplinary (...)
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  39.  5
    Analogy.Наталья Томова - 2020 - Philosophical Anthropology 6 (1):102-119.
    The paper is devoted to the concept of analogy. We consider the peculiarities of its use in the history of philosophy, starting from Antiquity, from the school of Pythagoras, which is associated with the origin of this term. The use of analogy by Plato, Aristotle, Renaissance and Modern philosophers is discussed. The definition of analogical inference as a special type of plausible inference is given. The types of analogical inference and the corresponding examples are listed. We also consider the use (...)
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  40.  7
    What the future looks like: scientist predict the next great discoveries and reveal how today's breakthroughs are already shaping our world.Jim Al-Khalili (ed.) - 2018 - New York, NY: The Experiment.
    Get the science facts, not science fiction, on the cutting-edge developments that are already changing the course of our future. Every day, scientists conduct pioneering experiments with the potential to transform how we live. Yet it isn’t every day you hear from the scientists themselves! Now, award–winning author Jim Al–Khalili and his team of top-notch experts explain how today’s earthshaking discoveries will shape our world tomorrow—and beyond. Pull back the curtain on: genomics robotics AI the “Internet of Things” synthetic biology (...)
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  41.  3
    Advancing the human self: do technologies make us "posthuman"?Ewa Nowak - 2020 - Berlin: Peter Lang.
    Do technologies advance our self-identities, as they do our bodies or cognitive skills? Are doomed to disintegration and an episodic self? This book examines how technologies affect our selves from the perspective of health humanities (e.g., transplantology, bionics, disability studies), phenomenology, philosophy of mind and posthumanism.
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  42. The Physics and Electronics meaning of vivartanam.Varanasi Ramabrahmam - manuscript
    A modern scientific awareness of the famous advaitic expression Brahma sat, jagat mithya, jivo brahmaiva na aparah is presented. The one ness of jiva and Brahman are explained from modern science point of view. The terms dristi, adhyasa, vivartanam, aham and idam are understood in modern scientific terms and a scientific analysis is given. -/- Further, the forward (purodhana) and reverse (tirodhana) transformation of maya as jiva, prapancham, jagat and viswam, undergoing vivartanam is understood and explained using concepts from physics (...)
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  43.  16
    Philosophie der Bionik: Das Komponieren von bio-robotischen Formen.Marco Tamborini - 2023 - Deutsche Zeitschrift für Philosophie 71 (1):30-51.
    In this paper, I explore how bio-hybrid forms can be created and combined starting from organic forms. The thesis put forward is epistemological: the combinatorial practice of bionics, biomimetics, biorobotics, and all design strategies inspired by nature is not based on a kind of biomimetic inspiration, i. e., on a kind of imitation of nature, but on a practice of translation. To develop this thesis, I focus on the practices of contemporary biorobotics, first examining the practice of translating natural (...)
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  44.  20
    A New Approach to Modeling and Controlling a Pneumatic Muscle Actuator-Driven Setup Using Back Propagation Neural Networks.Jun Zhong, Xu Zhou & Minzhou Luo - 2018 - Complexity 2018:1-9.
    Pneumatic muscle actuators own excellent compliance and a high power-to-weight ratio and have been widely used in bionic robots and rehabilitated robots. However, the high nonlinear characteristics of PMAs due to inherent construction and pneumatic driving principle bring great challenges in applications acquired accurately modeling and controlling. To tackle the tricky problem, a single PMA mass setup is constructed, and a back propagation neural network is employed to identify the dynamics of the setup. An offline model is built up using (...)
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  45.  79
    Is There a Moral Obligation to Develop Brain Implants Involving NanoBionic Technologies? Ethical Issues for Clinical Trials.Frédéric Gilbert & Susan Dodds - 2014 - NanoEthics 8 (1):49-56.
    In their article published in Nanoethics, “Ethical, Legal and Social Aspects of Brain-Implants Using Nano-Scale Materials and Techniques”, Berger et al. suggest that there may be a prima facie moral obligation to improve neuro implants with nanotechnology given their possible therapeutic advantages for patients [Nanoethics, 2:241–249]. Although we agree with Berger et al. that developments in nanomedicine hold the potential to render brain implant technologies less invasive and to better target neural stimulation to respond to brain impairments in the near (...)
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  46.  5
    Education and the Female Superhero: Slayers, Cyborgs, Sorority Sisters, and Schoolteachers.Andrew L. Grunzke - 2019 - Lexington Books.
    Exploring a variety of female superhero narratives, including Wonder Woman comics and television shows like The Secrets of Isis, The Bionic Woman, and Buffy the Vampire Slayer, this book argues that twentieth-century superheroine stories historically depicted education as the path to female liberation and empowerment.
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  47.  9
    Globalization and the posthuman.William S. Haney - 2009 - Newcastle upon Tyne: Cambridge Scholars Press.
    Globalization and the Posthuman argues that by globalizing posthumanism through biotechnology, particularly through the invasive interface of humans and machines, we may well interfere with and even undermine the innate quality of human psycho-physiology and the experience of the internal observer, the non-socially constructed self or pure consciousness. Furthermore, many features of globalization in-and-of itselfâ "such as the fall of public man, the exterritorialization of capital, the loss of an impersonal public world to localized communities based on emotively shared interestsâ (...)
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  48.  10
    Locomotion Prediction for Lower Limb Prostheses in Complex Environments via sEMG and Inertial Sensors.Fang Peng, Cheng Zhang, Bugong Xu, Jiehao Li, Zhen Wang & Hang Su - 2020 - Complexity 2020:1-12.
    Previous studies have shown that the motion intention recognition for lower limb prosthesis mainly focused on the identification of performed gait. However, the bionic prosthesis needs to know the next movement at the beginning of a new gait, especially in complex operation environments. In this paper, an upcoming locomotion prediction scheme via multilevel classifier fusion was proposed for the complex operation. At first, two motion states, including steady state and transient state, were defined. Steady-state recognition was backtracking of a completed (...)
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  49.  9
    Staff’s Views from One Canadian Organ Procurement Organization on Organ Donation and Organ Transplant Technologies: a Content Analysis.Jennifer Cheung & Gregor Wolbring - 2017 - NanoEthics 11 (2):187-202.
    Advancements in scientific research and technological development influence the practice of organ donation and organ transplantation. Many SRTD governance discourses put forward the need for multi-stakeholder engagements. We posit that staff employed by organ procurement organizations have a stake in the discussions around SRTD applicable to ODOT because SRTD is one factor that shapes ODOT and because staff are involved in ODOT education and awareness raising while acting as a nexus between donors and the public. Therefore, we performed a content (...)
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    Ethical issues of human enhancement technologies.Ivana Greguric - 2014 - Journal of Information, Communication and Ethics in Society 12 (2):133-148.
    Purpose – This paper aims to focus on the modern development of bionics and linking new technologies with the human nervous system or other biological systems that cause changes of the human biological structure. Design/methodology/approach – The paper is a discursive evaluation of technological progress and new systems where computers and machines integrate, making a single matrix entity – the cyborg. Here fundamental questions arise, such as what it means to be human and what is and what should be (...)
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