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Systems theories and a priori aspect...
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Jordan, J. Scott.
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Systems theories and a priori aspects of perception
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Systems theories and a priori aspects of perception/ edited by J. Scott Jordan.{me_controlnum}
其他作者:
Jordan, J. Scott.
出版者:
New York :Elsevier, : 1998.,
面頁冊數:
1 online resource (xii, 369 p.) :ill.
內容註:
Preface. List of Contributors. Historical Perspective. Control systems with
a priori
intentions register environmental disturbances
a posteriori
(W.A. Hershberger). William James, chaos theory, and conscious experience (A.R. Bailey). Systems theories: their origins, foundations, and development (A. Laszlo, S. Krippner). Systems-theoretical Models of Perception. Neural networks and perception (I.E. Dror, C.S. Schreiner). Broad mindedness and perceptual flexibility: lessons from dynamic ecosystems (W.A. Johnston
et al
.). Sensory capture and the projection of conscious perception (T.M. Cowan
et al
.). Systems-theoretical Models of Perception and Action. Perceiving one's own action & ndash;and what it leads to (B. Hommel). Intentionality, perception, and autocatalytic closure: a potential means of repaying psychology's conceptual debt (J. Scott Jordan). What do event-related brain potentials tell us about the organization of action: cognitive-psychological and biological approaches (B. Kotchoubey). Chaos-theoretical Models of Perception. How
a priori
image-schematic, simulative neuro-algorithms provide us with mental universals which parallel physical world principles (L.R. Vandervert). Visual perception at the edge of chaos (C. van Leeuwen). Phase transistions in cognition (G. Vetter, M. Stadler). Stability and instability in the dynamics of perceptual learning (J.B. Cooney). Author and subject index.
內容註:
Machine generated contents note: 1. Control Systems with A Priori Intentions -- Register Environmental Disturbances A Posteriori 3 -- Wayne A. Hershberger -- 2. William James, Chaos Theory, and Conscious Experience 25 -- Andrew R. Bailey -- 3. Systems Theories: Their Origins, Foundations, and Development 47 -- Alexander Laszlo and Stanley Krippner -- Systems-theoretical Models of Perception -- 4. Neural Networks and Perception 77 -- Itiel E. Dror and Christopher S. Schreiner -- 5. Broad Mindedness and Perceptual Flexibility: Lessons from Dynamic Ecosystems 87 -- William A. Johnston, David L. Strayer, and Shaun P. Vecera -- 6. Sensory Capture and the Projection of Conscious Perception 105 -- Thaddeus M. Cowan, Dale R. Dickson, and Giovanni Misceo -- Systems-theoretical Models of Perception and Action -- 7. Perceiving One's Own Action--and What it Leads to 143 -- Bernhard Hommel -- 8. Intentionality, Perception, and Autocatalytic Closure: A Potential Means of Repaying Psychology's Conceptual Debt 181 -- J. Scott Jordan -- 9. What do Event-related Brain Potentials Tell Us about the Organization of Action 209 -- Boris Kotchoubey -- Chaos-theoretical Models of Perception -- 10. How A Priori Image-Schematic, Simulative -- Neuro-Algorithms Provide Us with Mental Universals which Parallel Physical World Principles 259 -- Larry R. Vandervert -- 11. Visual Perception at the Edge of Chaos 289 -- Cees van Leeuwen -- 12. Phase Transistions in Cognition 315 -- Giinter Vetter and Michael Stadler -- 13. Stability and Instability in the Dynamics of Perceptual Learning 337 -- John B. Cooney.
標題:
Perception. -
電子資源:
http://www.sciencedirect.com/science/book/9780444826046
ISBN:
9780444826046
Systems theories and a priori aspects of perception
Systems theories and a priori aspects of perception
[electronic resource] /edited by J. Scott Jordan.{me_controlnum} - New York :Elsevier,1998. - 1 online resource (xii, 369 p.) :ill. - Advances in psychology ;126. - Advances in psychology (Amsterdam, Netherlands) ;53..
Includes bibliographical references and index.
Preface. List of Contributors. Historical Perspective. Control systems with <IT>a priori</IT> intentions register environmental disturbances <IT>a posteriori</IT> (W.A. Hershberger). William James, chaos theory, and conscious experience (A.R. Bailey). Systems theories: their origins, foundations, and development (A. Laszlo, S. Krippner). Systems-theoretical Models of Perception. Neural networks and perception (I.E. Dror, C.S. Schreiner). Broad mindedness and perceptual flexibility: lessons from dynamic ecosystems (W.A. Johnston <IT>et al</IT>.). Sensory capture and the projection of conscious perception (T.M. Cowan <IT>et al</IT>.). Systems-theoretical Models of Perception and Action. Perceiving one's own action & ndash;and what it leads to (B. Hommel). Intentionality, perception, and autocatalytic closure: a potential means of repaying psychology's conceptual debt (J. Scott Jordan). What do event-related brain potentials tell us about the organization of action: cognitive-psychological and biological approaches (B. Kotchoubey). Chaos-theoretical Models of Perception. How <IT>a priori</IT> image-schematic, simulative neuro-algorithms provide us with mental universals which parallel physical world principles (L.R. Vandervert). Visual perception at the edge of chaos (C. van Leeuwen). Phase transistions in cognition (G. Vetter, M. Stadler). Stability and instability in the dynamics of perceptual learning (J.B. Cooney). Author and subject index.
This book takes as a starting point, John Dewey's article, <IT>The Reflex Arc Concept in Psychology</IT>, in which Dewey was calling for, in short, the utilisation of systems theories within psychology, theories of behaviour that capture its nature as a vastly-complex dynamic coordination of nested coordinations. This line of research was neglected as American psychology migrated towards behaviourism, where perception came to be thought of as being both a neural response to an external stimulus and a mediating neural stimulus leading to, or causing a muscular response. As such, perception becomes a question of how it is the perceiver creates neural representations of the physical world. Gestalt psychology, on the other hand, focused on perception itself, utilising the term Phenomenological Field; a term that elegantly nests perception and the organism within their respective, as well as relative, levels of organisation. With the development of servo-mechanisms during the second world war, systems theory began to take on momentum within psychology, and then in the 1970s William T Powers brought the notion of servo-control to perception in his book, <IT>Behavior: The Control of Perception</IT>. Since then, scientists have come to see nature not as linear chain of contingent cause-effect relationships, but rather, as a non linear, unpredictable nesting of self referential, emergent coordinations, best described as Chaos theory. The implications for perception are astounding, while maintaining the double-aspect nature of perception espoused by the Gestalt psychologists. In short, system theories model perception within the context of a functioning organism, so that objects of experience come to be seen as scale-dependent, psychophysically-neutral, phenomenological transformations of energy structures, the dynamics of which are the result of evolution, and therefore, <IT>a priori</IT> to the individual case. This <IT>a priori</IT>, homological unity among brain perception and world is revealed through the use of systems theories and represents the thrust of this book. All the authors are applying some sort of systems theory to the psychology of perception. However, unlike Dewey we have close to a century of technology we can bring to bear upon the issue. This book should be seen as a collection of such efforts.
ISBN: 9780444826046
Source: 122559:127177Elsevier Science & Technologyhttp://www.sciencedirect.comSubjects--Topical Terms:
527749
Perception.
Index Terms--Genre/Form:
542853
Electronic books.
LC Class. No.: BF311 / .S848 1998eb
Dewey Class. No.: 153.7/01/1
National Library of Medicine Call No.: W1 / AD798L v.126 1998
Systems theories and a priori aspects of perception
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Preface. List of Contributors. Historical Perspective. Control systems with <IT>a priori</IT> intentions register environmental disturbances <IT>a posteriori</IT> (W.A. Hershberger). William James, chaos theory, and conscious experience (A.R. Bailey). Systems theories: their origins, foundations, and development (A. Laszlo, S. Krippner). Systems-theoretical Models of Perception. Neural networks and perception (I.E. Dror, C.S. Schreiner). Broad mindedness and perceptual flexibility: lessons from dynamic ecosystems (W.A. Johnston <IT>et al</IT>.). Sensory capture and the projection of conscious perception (T.M. Cowan <IT>et al</IT>.). Systems-theoretical Models of Perception and Action. Perceiving one's own action & ndash;and what it leads to (B. Hommel). Intentionality, perception, and autocatalytic closure: a potential means of repaying psychology's conceptual debt (J. Scott Jordan). What do event-related brain potentials tell us about the organization of action: cognitive-psychological and biological approaches (B. Kotchoubey). Chaos-theoretical Models of Perception. How <IT>a priori</IT> image-schematic, simulative neuro-algorithms provide us with mental universals which parallel physical world principles (L.R. Vandervert). Visual perception at the edge of chaos (C. van Leeuwen). Phase transistions in cognition (G. Vetter, M. Stadler). Stability and instability in the dynamics of perceptual learning (J.B. Cooney). Author and subject index.
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Machine generated contents note: 1. Control Systems with A Priori Intentions -- Register Environmental Disturbances A Posteriori 3 -- Wayne A. Hershberger -- 2. William James, Chaos Theory, and Conscious Experience 25 -- Andrew R. Bailey -- 3. Systems Theories: Their Origins, Foundations, and Development 47 -- Alexander Laszlo and Stanley Krippner -- Systems-theoretical Models of Perception -- 4. Neural Networks and Perception 77 -- Itiel E. Dror and Christopher S. Schreiner -- 5. Broad Mindedness and Perceptual Flexibility: Lessons from Dynamic Ecosystems 87 -- William A. Johnston, David L. Strayer, and Shaun P. Vecera -- 6. Sensory Capture and the Projection of Conscious Perception 105 -- Thaddeus M. Cowan, Dale R. Dickson, and Giovanni Misceo -- Systems-theoretical Models of Perception and Action -- 7. Perceiving One's Own Action--and What it Leads to 143 -- Bernhard Hommel -- 8. Intentionality, Perception, and Autocatalytic Closure: A Potential Means of Repaying Psychology's Conceptual Debt 181 -- J. Scott Jordan -- 9. What do Event-related Brain Potentials Tell Us about the Organization of Action 209 -- Boris Kotchoubey -- Chaos-theoretical Models of Perception -- 10. How A Priori Image-Schematic, Simulative -- Neuro-Algorithms Provide Us with Mental Universals which Parallel Physical World Principles 259 -- Larry R. Vandervert -- 11. Visual Perception at the Edge of Chaos 289 -- Cees van Leeuwen -- 12. Phase Transistions in Cognition 315 -- Giinter Vetter and Michael Stadler -- 13. Stability and Instability in the Dynamics of Perceptual Learning 337 -- John B. Cooney.
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This book takes as a starting point, John Dewey's article, <IT>The Reflex Arc Concept in Psychology</IT>, in which Dewey was calling for, in short, the utilisation of systems theories within psychology, theories of behaviour that capture its nature as a vastly-complex dynamic coordination of nested coordinations. This line of research was neglected as American psychology migrated towards behaviourism, where perception came to be thought of as being both a neural response to an external stimulus and a mediating neural stimulus leading to, or causing a muscular response. As such, perception becomes a question of how it is the perceiver creates neural representations of the physical world. Gestalt psychology, on the other hand, focused on perception itself, utilising the term Phenomenological Field; a term that elegantly nests perception and the organism within their respective, as well as relative, levels of organisation. With the development of servo-mechanisms during the second world war, systems theory began to take on momentum within psychology, and then in the 1970s William T Powers brought the notion of servo-control to perception in his book, <IT>Behavior: The Control of Perception</IT>. Since then, scientists have come to see nature not as linear chain of contingent cause-effect relationships, but rather, as a non linear, unpredictable nesting of self referential, emergent coordinations, best described as Chaos theory. The implications for perception are astounding, while maintaining the double-aspect nature of perception espoused by the Gestalt psychologists. In short, system theories model perception within the context of a functioning organism, so that objects of experience come to be seen as scale-dependent, psychophysically-neutral, phenomenological transformations of energy structures, the dynamics of which are the result of evolution, and therefore, <IT>a priori</IT> to the individual case. This <IT>a priori</IT>, homological unity among brain perception and world is revealed through the use of systems theories and represents the thrust of this book. All the authors are applying some sort of systems theory to the psychology of perception. However, unlike Dewey we have close to a century of technology we can bring to bear upon the issue. This book should be seen as a collection of such efforts.
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