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  1. Hierarchical structures.Stanley N. Salthe - 2012 - Axiomathes 22 (3):355 - 383.
    This paper compares the two known logical forms of hierarchy, both of which have been used in models of natural phenomena, including the biological. I contrast their general properties, internal formal relations, modes of growth (emergence) in applications to the natural world, criteria for applying them, the complexities that they embody, their dynamical relations in applied models, and their informational relations and semiotic aspects.
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  • Origin of life as the first MST—control hierarchies and Interlevel relation.Jon Umerez & Alvaro Moreno - 1995 - World Futures 45 (1):139-154.
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  • Ecology: Scientific, Deep and Feminist.Markus J. Peterson & Tarla Rai Peterson‡ - 1996 - Environmental Values 5 (2):123 - 146.
    The application of hierarchy theory to ecological systems presents those who seek a radical change in human perspectives toward nature with a unique window of opportunity. Because hierarchy theory has enabled scientific ecologists to discover that the window through which one chooses to observe a system influences its reality, they may now be more amenable to including the perspectives of deep and feminist ecologists into their self-definition. A synergy between deep, feminist, and scientific ecology could improve environmental policy by encouraging (...)
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  • Vortexes of involvement: Social systems as turbulent flow.Erika Summers-Effler - 2007 - Philosophy of the Social Sciences 37 (4):433-448.
    How does social organization persist? How does social organization transform? This article proposes that social scientists can begin to answer these questions by considering social organization as the intermittent construction and decay of patterned action, and social actors as centers of organization with the capacity to exert force within some social scene. From this perspective, contexts that shape the dynamics of both actors and scenes could be imagined as turbulent flows that push and pull action into temporary patterns. By viewing (...)
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  • Aspects of Complexity in Life and Science.Claus Emmeche - 1997 - Philosophica 59 (1).
    A short review of complexity research from the perspective of history and philosophy of biology is presented. Complexity and its emergence has scientific and metaphysical meanings. From its beginning, biology was a science of complex systems, but with the advent of electronic computing and the possibility of simulating mathematical models of complicated systems, new intuitions of complexity emerged, together with attempts to devise quantitative measures of complexity. But can we quantify the complex?
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  • Holism vs. reductionism: Do ecosystem ecology and landscape ecology clarify the debate?Donato Bergandi & Patrick Blandin - 1998 - Acta Biotheoretica 46 (3):185-206.
    The holism-reductionism debate, one of the classic subjects of study in the philosopy of science, is currently at the heart of epistemological concerns in ecology. Yet the division between holism and reductionism does not always stand out clearly in this field. In particular, almost all work in ecosystem ecology and landscape ecology presents itself as holistic and emergentist. Nonetheless, the operational approaches used rely on conventional reductionist methodology.From an emergentist epistemological perspective, a set of general 'transactional' principles inspired by the (...)
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  • Effects of individual activity sequences on prey-predator models.Pierre M. Auger & Bruno Faivre - 1993 - Acta Biotheoretica 41 (1-2):13-22.
    We study the influence of the individual behaviour of animals on predator-prey models. Populations of preys and predators are divided into sub-populations corresponding to different activity classes. The animals are assumed to do many activities all day long such as searching for food of different types. The preys are more vulnerable when doing some activities during which they are very exposed to predators attacks rather than for others during which they are hidden. We study activity sequences of the animals and (...)
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  • Taming the tyranny of scales: models and scale in the geosciences.Alisa Bokulich - 2021 - Synthese 199 (5-6):14167-14199.
    While the predominant focus of the philosophical literature on scientific modeling has been on single-scale models, most systems in nature exhibit complex multiscale behavior, requiring new modeling methods. This challenge of modeling phenomena across a vast range of spatial and temporal scales has been called the tyranny of scales problem. Drawing on research in the geosciences, I synthesize and analyze a number of strategies for taming this tyranny in the context of conceptual, physical, and mathematical modeling. This includes several strategies (...)
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  • Phenomenal Consciousness and Emergence: Eliminating the Explanatory Gap.Todd E. Feinberg & Jon Mallatt - 2020 - Frontiers in Psychology 11:537022.
    The role of emergence in the creation of consciousness has been debated for over a century, but it remains unresolved. In particular there is controversy over the claim that a “strong” or radical form of emergence is required to explain phenomenal consciousness. In this paper we use some ideas of complex system theory to trace the emergent features of life and then of complex brains through three progressive stages or levels: Level 1 (life), Level 2 (nervous systems), and Level 3 (...)
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  • The myth of Frederic Clements’s mutualistic organicism, or: on the necessity to distinguish different concepts of organicism.Thomas Kirchhoff - 2020 - History and Philosophy of the Life Sciences 42 (2):1-27.
    In the theory and history of ecology, Frederic Clements’s theory of plant communities is usually presented as the historical prototype and a paradigmatic example of synecological organicism, characterised by the assumption that ecological communities are functionally integrated units of mutually dependent species. In this paper, I will object to this standard interpretation of Clements’s theory. Undoubtedly, Clements compares plant communities with organisms and calls them “complex organisms” and “superorganisms”. Further, he can indeed be regarded as a proponent of ecological organicism—provided (...)
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  • Levels of Organization in Biology.Markus Eronen & Daniel Stephen Brooks - unknown - Stanford Encyclopedia of Philosophy.
    Levels of organization are structures in nature, usually defined by part-whole relationships, with things at higher levels being composed of things at the next lower level. Typical levels of organization that one finds in the literature include the atomic, molecular, cellular, tissue, organ, organismal, group, population, community, ecosystem, landscape, and biosphere levels. References to levels of organization and related hierarchical depictions of nature are prominent in the life sciences and their philosophical study, and appear not only in introductory textbooks and (...)
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  • The Semiotics of Global Warming: Combating Semiotic Corrruption.Arran Gare - 2007 - Theory and Science 9 (2):1-36.
    The central focus of this paper is the disjunction between the findings of climate science in revealing the threat of global warming and the failure to act appropriately to these warnings. The development of climate science can be illuminated through the perspective provided by Peircian semiotics, but efforts to account for its success as a science and its failure to convince people to act accordingly indicate the need to supplement Peirce’s ideas. The more significant gaps, it is argued, call for (...)
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  • Beyond Desartes and Newton: Recovering life and humanity.Stuart A. Kauffman & Arran Gare - 2015 - Progress in Biophysics and Molecular Biology 119 (3):219-244.
    Attempts to ‘naturalize’ phenomenology challenge both traditional phenomenology and traditional approaches to cognitive science. They challenge Edmund Husserl’s rejection of naturalism and his attempt to establish phenomenology as a foundational transcendental discipline, and they challenge efforts to explain cognition through mainstream science. While appearing to be a retreat from the bold claims made for phenomenology, it is really its triumph. Naturalized phenomenology is spearheading a successful challenge to the heritage of Cartesian dualism. This converges with the reaction against Cartesian thought (...)
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  • Time Scales and Levels of Organization.James DiFrisco - 2017 - Erkenntnis 82 (4):795-818.
    The concept of levels of organization, despite its widespread scientific currency, has recently been criticized by a number of philosophers of science. This paper diagnoses the main source of problems facing theories of levels. On this basis, the problems with the usual criteria for distinguishing levels are evaluated: compositional relations, organizational types, and spatial scales. Drawing on some work on hierarchies in ecology, I argue in favor of an alternative conception of levels defined by the criterion of rates or time (...)
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  • Should environmentalists be organicists?Bryan G. Norton - 1993 - Topoi 12 (1):21-30.
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  • Complex ecological models with simple dynamics: From individuals to populations.Pierre M. Auger & Robert Roussarie - 1994 - Acta Biotheoretica 42 (2-3):111-136.
    The aim of this work is to study complex ecological models exhibiting simple dynamics. We consider large scale systems which can be decomposed into weakly coupled subsystems. Perturbation Theory is used in order to get a reduced set of differential equations governing slow time varying global variables. As examples, we study the influence of the individual behaviour of animals in competition and predator-prey models. The animals are assumed to do many activities all day long such as searching for food of (...)
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  • Embodied niche construction in the hominin lineage: semiotic structure and sustained attention in human embodied cognition.Aaron J. Stutz - 2014 - Frontiers in Psychology 5.
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  • The community concept in community ecology.Earl D. McCoy & K. S. Shrader-Frechette - 1994 - Perspectives on Science 2 (4):455.
    We argue that ecologists have conceived of the community concept in at least three ways, and that ecologists have used “community,” as indicated by ecological terminology, in two main ways. The typological conception emphasizes phenomenological descriptions of co-occurring species, the functional conception emphasizes mathematical relationships among co-occurring species, and the statistical conception emphasizes the frequency of species’ co-occurrence. The type usage emphasizes idealized “types,” and the group usage emphasizes quantitative boundaries and/or mathematically precise interactions. We further argue that all of (...)
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  • Integral ecology: The what, who, and how of environmental phenomena.Sean Esbjörn-Hargens - 2005 - World Futures 61 (1 & 2):5 – 49.
    Providing an overview of Integral Ecology, this article defines and explains some of the key terms and concepts that underlie an approach to the environment that is inspired by and makes use of Ken Wilber's Integral Theory. First Integral Ecology is distinguished from other environmental approaches. Then Wilber's Integral Theory is introduced, which provides a foundation for a participatory approach to ecology. Next, the ontology, epistemology, and methodology of environmental phenomena is examined in light of Wilber's framework and illustrated with (...)
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  • Guest-Editorial Introduction: Converging Evolutionary Patterns in Life and Culture.Nathalie Gontier - 2016 - Evolutionary Biology 4 (43):427-445.
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  • The Orders of Nature.Lawrence Cahoone - 2013 - State University of New York Press.
    A systematic theory of naturalism, bridging metaphysics and the science of complexity and emergence.
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  • Ecosystems and society: Implications for sustainable development.Hartmut Bossel - 1996 - World Futures 47 (2):143-213.
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  • Generalization in ecology and evolutionary biology: From hypothesis to paradigm. [REVIEW]Kari Vepsäläinen & John R. Spence - 2000 - Biology and Philosophy 15 (2):211-238.
    We argue that broad, simplegeneralizations, not specifically linked tocontingencies, will rarely approach truth in ecologyand evolutionary biology. This is because mostinteresting phenomena have multiple, interactingcauses. Instead of looking for single universaltheories to explain the great diversity of naturalsystems, we suggest that it would be profitable todevelop general explanatory frameworks. A frameworkshould clearly specify focal levels. The process orpattern that we wish to study defines our level offocus. The set of potential and actual states at thefocal level interacts with conditions at (...)
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  • Why Conceptions of Scale Matter to Artificity Arguments in SRM Ethics.Colby J. Clark - forthcoming - Ethics, Policy and Environment.
    Ethicists have raised a variety of concerns about solar radiation management (SRM). This essay investigates the specific worries associated with artificity: Does SRM transform the planet into an artifact? Should experimental SRM strategies be implemented if the consequences are unpredictable? These worries have led some to strongly reject SRM. But the conceptual framework used by environmental scientists to understand the scope of management interventions might offer a way to adequately defuse the perceived ethical concerns about artificity. Concepts from theories of (...)
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  • The fundamentals of vegetation change - complexity rules.M. Anand - 2000 - Acta Biotheoretica 48 (1):1-14.
    Long-term vegetation dynamics based on paleo-pollen data display transient behaviour, often alternating in phase between predominant determinism and predominant 'turbulence', when viewed as a trajectory in a multivariate phase space. Given this, the metaphor of vegetation dynamics as a 'flowing stream', first introduced by Cooper in his classic 1926 paper entitled "The fundamentals of vegetation change", is re-examined and revealed to be not only useful, but strikingly realistic. Vegetation dynamic theory is reviewed and classic theories are found to reflect reality (...)
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  • Environmental Values and Adaptive Management.Bryan G. Norton & Anne C. Steinemann - 2001 - Environmental Values 10 (4):473-506.
    The trend in environmental management toward more adaptive, community-based, and holistic approaches will require new approaches to environmental valuation. In this paper, we offer a new valuation approach, one that embodies the core principles of adaptive management, which is experimental, multi-scalar, and place-based. In addition, we use hierarchy theory to incorporate spatial and temporal variability of natural systems into a multi-scalar management model. Our approach results in the consideration of multiple values within community-based ecosystem management, rather than an attempt to (...)
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  • Intrinsic Value of Species.Frank Glen Avantaggio - 1993 - Dissertation, University of Hawai'i
    This is an essay about ethics and environmental responsibility. The thesis is that biologic species qua species--not only as collections of individuals or as elements of ecosystems--deserve moral regard. The argument establishes moral considerability on powers and freedoms of relative self-determination and autonomy. It is argued that species are living beings in their own right with their own projects and interests which deserve special regard. The essay draws from the arguments of Plato, Aristotle, Plotinus, Boethius, Avicenna, Maimonides, Leibniz, Spinoza, Kant, (...)
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  • Doing without representations which specify what to do.Fred A. Keijzer - 1998 - Philosophical Psychology 11 (3):269-302.
    A discussion is going on in cognitive science about the use of representations to explain how intelligent behavior is generated. In the traditional view, an organism is thought to incorporate representations. These provide an internal model that is used by the organism to instruct the motor apparatus so that the adaptive and anticipatory characteristics of behavior come about. So-called interactionists claim that this representational specification of behavior raises more problems than it solves. In their view, the notion of internal representational (...)
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  • Recursive Ontology: A Systemic Theory of Reality.Valerio Velardo - 2016 - Axiomathes 26 (1):89-114.
    The article introduces recursive ontology, a general ontology which aims to describe how being is organized and what are the processes that drive it. In order to answer those questions, I use a multidisciplinary approach that combines the theory of levels, philosophy and systems theory. The main claim of recursive ontology is that being is the product of a single recursive process of generation that builds up all of reality in a hierarchical fashion from fundamental physical particles to human societies. (...)
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  • Aggregation and emergence in hierarchically organized systems: Population dynamics.Pierre Auger & Jean-Christophe Poggiale - 1996 - Acta Biotheoretica 44 (3-4):301-316.
    The aim of this work is to present aggregation methods of hierarchically organized systems allowing one to replace the initial micro-system by a macro-system described by a few global variables. We also study the relations between the fast micro-dynamics and the slow macro-dynamics which can produce global properties. Emergence corresponds to a bottom-up coupling that is the result effected by a micro-level at a macro-level. As an example, we present prey-predator models with different time scales in an heterogeneous environment. A (...)
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  • A Journey from Science through Systems Science in Pursuit of Change.Stanley N. Salthe - 2011 - World Futures 67 (4-5):282 - 303.
    This article traces my attempts to come to grips with the problem of change. Systems science deals with general principles, but, as with science in general, is wedded to mechanistic models. Natural systems are not machines, are generative, and can change unpredictably. An example is given showing that explicit dynamical models are subverted by the present moment, which is non-existent in them. This moment can be modeled by a compositional hierarchy, but no change happens therein. Subsumptive hierarchies can serve as (...)
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  • Analysing biodiversity: The necessity of interdisciplinary trends in the development of ecological theory.Broder Breckling & Hauke Reuter - 2004 - Poiesis and Praxis 3 (s 1-2):83-105.
    Technological advancement has an ambivalent character concerning the impact on biodiversity. It accounts for major detrimental environmental impacts and aggravates threads to biodiversity. On the other hand, from an application perspective of environmental science, there are technical advancements, which increase the potential of analysis, detection and monitoring of environmental changes and open a wider spectrum of sustainable use strategies.The concept of biodiversity emerged in the last two decades as a political issue to protect the structural and functional basis of earthbound (...)
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  • Perturbations of the classical lotka-volterra system by behavioral sequences.Jean-Christophe Poggiale, Pierre Auger & Robert Roussarie - 1995 - Acta Biotheoretica 43 (1-2):27-39.
    The complexity and the variability of parameters occurring in ecological dynamical systems imply a large number of equations.Different methods, more or less successful, have been described to reduce this number of equations. For instance, in the paper of Auger and Roussarie (1993), the authors describe how to obtain a reduction by considering different time-scales. They consider a system which can be sub-divided into sub-systems such that the strengths of the intra-sub-systems interactions are much larger than those of the inter-sub-systems interactions. (...)
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  • Toward an evolutionary view of socio‐economic systems.Mika Pantzar - 1992 - World Futures 34 (1):83-103.
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  • Systems, Environments, and Soliton Rate Equations: Toward Realistic Modeling.Maciej Kuna - 2019 - Foundations of Science 24 (1):95-132.
    In order to solve a system of nonlinear rate equations one can try to use some soliton methods. The procedure involves three steps: find a ‘Lax representation’ where all the kinetic variables are combined into a single matrix \, all the kinetic constants are encoded in a matrix H; find a Darboux–Bäcklund dressing transformation for the Lax representation \]\), where f models a time-dependent environment; find a class of seed solutions \ that lead, via a nontrivial chain of dressings \ (...)
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  • (1 other version)Book ReviewBryan G. Norton, Searching for Sustainability: Interdisciplinary Essays in the Philosophy of Conservation Biology. New York: Cambridge University Press , viii + 554 pp., $30.00. [REVIEW]James Justus - 2004 - Philosophy of Science 71 (2):232-235.
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