Results for ' homeostasis'

391 found
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  1. Hunger, Homeostasis, and Desire.Mohan Matthen - 2023 - Mind and Language 40:1–18.
    Hunger is a psychological state that serves physiological energy homeostasis. I argue that it is a pure underived desire to eat and examine its role in homeostasis. After scene-setting explanations of homeostasis and desire, I argue that hunger is a close phenomenological match with underived desire. Then, I show why desire is an apt instrument for energy homeostasis. Finally, I argue that energy homeostasis is a multi-factorial future-regarding behavioural strategy. Hunger is a special purpose sensory (...)
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  2.  63
    Homeostasis and drinking.F. M. Toates - 1979 - Behavioral and Brain Sciences 2 (1):95-102.
  3. Health, homeostasis, and the situation-specificity of normality.Antoine C. Dussault & Anne-Marie Gagné-Julien - 2015 - Theoretical Medicine and Bioethics 36 (1):61-81.
    Christopher Boorse’s Biostatistical Theory of Health has been the main contender among naturalistic accounts of health for the last 40 years. Yet, a recent criticism of this theory, presented by Elselijn Kingma, identifies a dilemma resulting from the BST’s conceptual linking of health and statistical typicality. Kingma argues that the BST either cannot accommodate the situation- specificity of many normal functions or cannot account for many situation-specific diseases. In this article, we expand upon with Daniel Hausman’s response to Kingma’s dilemma. (...)
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  4.  73
    Homeostasis y representaciones intelectuales: una aproximación a la conducta moral desde la teoría de la emoción de Antonio Damasio.Miguel Grijalba Uche & Luis Enrique Echarte - 2015 - Persona y Bioética 19 (1).
    Antonio Damasio elabora una teoría de la mente humana y de la conducta moral a partir de su hipótesis sobre la evolución de los mecanismos de autorregulación biológicos. En ella, a la capacidad para representar relaciones organismo-mundo se le confiere un importante papel en los cambios organizacionales que emergen de los sistemas con un sistema nervioso central. Concretamente, en nuestro artículo analizamos, en primer lugar, la tesis acerca de la doble homeostasis biológica- mental que caracteriza a los agentes racionales. (...)
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  5.  9
    Hunger, homeostasis, and desire.Mohan Matthen - 2024 - Mind and Language 39 (3):397-414.
    Hunger is a psychological state that serves physiological energy homeostasis. I argue that it is a pure underived desire to eat and examine its role in homeostasis. After scene‐setting explanations of homeostasis and desire, I argue that hunger is a close phenomenological match with underived desire. Then, I show why desire is an apt instrument for energy homeostasis. Finally, I argue that energy homeostasis is a multi‐factorial future‐regarding behavioural strategy. Hunger is a special purpose sensory (...)
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  6. Homeostasis, species, and higher taxa.Richard Boyd - 1999 - In Robert Andrew Wilson (ed.), Species: New Interdisciplinary Essays. MIT Press. pp. 141-85.
  7.  23
    Homeostasis and Gauss statistics: barriers to understanding natural variability.Bruce J. West - 2010 - Journal of Evaluation in Clinical Practice 16 (3):403-408.
  8. Homeostasis, Higher Taxa, and Monophyly.Richard Boyd - 2010 - Philosophy of Science 77 (5):686-701.
    Several authors have argued that higher taxa are monophyletic homeostatic property cluster natural kinds. On the traditional definition of monophyly, this will not work: the emergence of taxon-defining homeostatic property clusters would not always correspond to unique speciation events. An alternative conception of monophyly is developed and advocated, which can accommodate the homeostatic property cluster proposal. Recent work in philosophy of science shows that it meets appropriate standards of objectivity and precision.
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  9. Homeostasis and Differentiation in Random Genetic Control Networks.Stuart Kauffman - 1969 - Nature 224:177-178.
  10.  18
    Homeostasis Is Maintained in Yan Xin Life Science Technology-Optimized Caloric Restriction: Physiological and Biochemical Studies.Jun Wang, Hua Shen, Wei Chin, Chao Lu, Canhui Li & Xin Yan - 2002 - Bulletin of Science, Technology and Society 22 (5):397-402.
    Yan Xin Life Science Technology-Optimized Caloric Restriction (YXLST-CR) is a unique food abstinence, which suppresses appetite and sensation of hunger while maintaining physiological homeostasis. The authors review the first clinical case study on YXLST-CR, or YXLST-bigu, a 15-day, 24-hour observation in 1987 on a 21-year-old female undergoing YXLST-bigu for several months. The participant took no food or water and conducted normal physical activities. The daily records of body weight, temperature, pulse rate, blood pressure, and daily urine test results showed (...)
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  11.  51
    Dynamic homeostasis. A unifying principle in organic, social, and ethical evolution.Alfred E. Emerson - 1968 - Zygon 3 (2):129-168.
  12.  50
    Homeostasis and the Mean in Aristotle's Ethics.George N. Terzis - 1992 - Apeiron 25 (4):175 - 189.
  13.  6
    Neuronal homeostasis and rem sleep.David Horn, Nir Levy & Eytan Ruppin - 1996 - In Garrison W. Cottrell (ed.), Proceedings of the Eighteenth Annual Conference of The Cognitive Science Society. Lawrence Erlbaum. pp. 18--436.
  14.  2
    Replacing homeostasis by optimization: preaching to the converted.Alasdair Houston - 1979 - Behavioral and Brain Sciences 2 (1):107-107.
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  15.  14
    Homeostasis and equilibrium in linguistics and text analysis.Winfried Nöth - 1975 - Semiotica 14 (3).
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  16.  8
    Homeostasis is insufficient to account for subtlety of behavior.D. H. Overstreet - 1979 - Behavioral and Brain Sciences 2 (1):113-113.
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  17.  13
    Thirst, homeostasis, and bodily fluid deficits.Jeffrey W. Peck - 1979 - Behavioral and Brain Sciences 2 (1):114-115.
  18.  10
    Homeostasis and servo-mechanisms for what?Christian O. Weber - 1949 - Psychological Review 56 (4):234-239.
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  19.  13
    Homeostasis: corruptions or misconceptions? A reply.Ross Stagner - 1954 - Psychological Review 61 (3):205-208.
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  20.  14
    Homeostasis and the Mean in Aristotle's Ethics.George N. Terzis - 1995 - Apeiron 28 (4):175-190.
  21.  9
    Homeostasis, the straw man.Glenn I. Hatton - 1979 - Behavioral and Brain Sciences 2 (1):106-106.
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  22.  21
    Homeostasis as an explanatory principle in psychology.J. M. Fletcher - 1942 - Psychological Review 49 (1):80-87.
  23.  22
    Sleep homeostasis.Alexander A. Borbély - 1986 - Behavioral and Brain Sciences 9 (3):401-401.
  24.  9
    Homeostasis, elasticity, and reinforcer interactions.S. E. G. Lea - 1979 - Behavioral and Brain Sciences 2 (1):109-109.
  25.  16
    Neither homeostasis nor simulation.Charles T. Snowdon - 1979 - Behavioral and Brain Sciences 2 (1):119-120.
  26.  5
    Neurofilament homeostasis and motoneurone degeneration.Carla Perrone Capano, Roberto Pernas-Alonso & Umberto di Porzio - 2001 - Bioessays 23 (1):24-33.
  27.  92
    Homeostasis, society, and values.Radhakamal Mukerjee - 1966 - Philosophy and Phenomenological Research 27 (1):74-79.
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  28. Angular homeostasis: IV. Polygonal orbits.Edmond A. Murphy, Kenneth R. Berger, Joseph E. Trojak & E. Manuel Rosell - 1989 - Theoretical Medicine and Bioethics 10 (4).
    Some properties are discussed of regular polygons that may result from angular homeostatic processes in stable orbit. To characterize these homeostatic polygons we need to discuss the winding number, the sidedness (integer, fractional and irrational), multiplicity, envelopes, and density. A regular (i.e., equilateral, equiangular) polygon may be closed in one revolution about its unique center, in multiple revolutions, or not at all. A homeostatic polygon can be generated only if all vertices are included in a single polygon, which occurs if (...)
     
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  29.  16
    Homeostasis as a unifying concept in personality theory.Ross Stagner - 1951 - Psychological Review 58 (1):5-17.
  30.  57
    Sleep and synaptic homeostasis.Giulio Tononi & Chiara Cirelli - 2005 - Behavioral and Brain Sciences 28 (1):85-85.
    We propose that sleep is linked to synaptic homeostasis. Specifically, we propose that: (1) Wakefulness is associated with synaptic potentiation in cortical circuits; (2) synaptic potentiation is tied to the homeostatic regulation of slow wave activity; (3) slow wave activity is associated with synaptic downscaling; and (4) synaptic downscaling is tied to several beneficial effects of sleep, including performance enhancement.
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  31.  12
    Homeostasis and Extinction: Ted Chiang's "Exhalation".Jean-Thomas Tremblay - 2023 - Substance 52 (1):22-29.
    "Exhalation," a 2008 science fiction short story by Ted Chiang, virtuoso of the genre and the form, begins with a truism, refuted: "It has long been said that air (which others call argon) is the source of life. This is not in fact the case, and I engrave these words to describe how I came to understand the true source of life and, as a corollary, the means by which life will one day end" (37). The narrator's promise is so (...)
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  32.  18
    Homeostasis and life.Timothy Schallert & Sigmund Hsiao - 1979 - Behavioral and Brain Sciences 2 (1):118-118.
  33.  15
    Ubiquitin in homeostasis, development and disease.Sylviane Muller & Lawrence M. Schwartz - 1995 - Bioessays 17 (8):677-684.
    Ubiquitin is the most phylogenetically conserved protein known. This 8,500 Da polypeptide can be covalently attached to cellular proteins as a posttranslational modification. In most cases, the addition of multiple ubiquitin adducts to a protein targets it for rapid degradation by a multisubunit protease known as the 26S proteasome. While the ubiquitin/26S proteasome pathway is responsible for the degradation of the bulk of cellular proteins during homeostasis, it may also be responsible for the rapid loss of protein during the (...)
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  34.  77
    Troubles with the causal homeostasis theory of reference.Charles Nussbaum - 2001 - Philosophical Psychology 14 (2):155 – 178.
    While purely causal theories of reference have provided a plausible account of the meanings of names and natural kind terms, they cannot handle vacuous theoretical terms. The causal homeostasis theory can but incurs other difficulties. Theories of reference that are intensional and not purely causal tend to be molecularist or holist. Holist theories threaten transtheoretic reference, whereas molecularist theories must supply a principled basis for selecting privileged meaning-determining relations between terms. The causal homeostasis theory is a two-factor molecularist (...)
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  35. Social Homeostasis and the Exceeding Normativity.Andrea Bardin - 2015 - In Epistemology and Political Philosophy in Gilbert Simondon. Springer Netherlands.
     
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  36. Angular homeostasis: III. The formalism of discrete orbits in ontogeny.Kenneth R. Berger & Edmond A. Murphy - 1989 - Theoretical Medicine and Bioethics 10 (4).
    The formal properties of orbits in a plane are explored by elementary topology. The notions developed from first principles include: convex and polygonal orbits; convexity; orientation, winding number and interior; convex and star-shaped regions. It is shown that an orbit that is convex with respect to each of its interior points bounds a convex region. Also, an orbit that is convex with respect to a fixed point bounds a star-shaped region.Biological considerations that directed interest to these patterns are indicated, and (...)
     
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  37. Unlocking the therapeutic potential of TRPV3: Insights into thermosensation, channel modulation, and skin homeostasis involving TRPV3.Jing Lei & Makoto Tominaga - forthcoming - Bioessays.
    Recent insights reveal the significant role of TRPV3 in warmth sensation. A novel finding elucidated how thermosensation is affected by TRPV3 membrane abundance that is modulated by the transmembrane protein TMEM79. TRPV3 is a warmth‐sensitive ion channel predominantly expressed in epithelial cells, particularly skin keratinocytes. Multiple studies investigated the roles of TRPV3 in cutaneous physiology and pathophysiology. TRPV3 activation by innocuous warm temperatures in keratinocytes highlights its significance in temperature sensation, but whether TRPV3 directly contributes to warmth sensations in vivo (...)
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  38.  9
    B-neurons mediating homeostasis and behavior?Daniel P. Yox - 1990 - Behavioral and Brain Sciences 13 (2):317-317.
  39.  7
    The Quantum Homeostasis Hypothesis and Divine Providence.Sergey Sekatskii - 2015 - Journal of Interdisciplinary Studies 27 (1-2):82-98.
    The idea that a human being may select at will outcomes of certain quantum events, and that this is free will, has been put forward long ago. But how can such a possibility to control quantum randomness be recombined with the necessity to obey the known statistical distributions of the laws of nature? Antoine Suarez proposes a Quantum Homeostasis Hypothesis (QHH), where this may happen during sleep or dreams. Divine providence may also be placed exactly here without violating the (...)
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  40.  14
    Neural stem cell pools in the vertebrate adult brain: Homeostasis from cell‐autonomous decisions or community rules?Nicolas Dray, Emmanuel Than-Trong & Laure Bally-Cuif - 2021 - Bioessays 43 (3):2000228.
    Adult stem cell populations must coordinate their own maintenance with the generation of differentiated cell types to sustain organ physiology, in a spatially controlled manner and over long periods. Quantitative analyses of clonal dynamics have revealed that, in epithelia, homeostasis is achieved at the population rather than at the single stem cell level, suggesting that feedback mechanisms coordinate stem cell maintenance and progeny generation. In the central nervous system, however, little is known of the possible community processes underlying neural (...)
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  41.  39
    Clarifying the roles of homeostasis and allostasis in physiological regulation.Douglas S. Ramsay & Stephen C. Woods - 2014 - Psychological Review 121 (2):225-247.
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  42.  21
    Economics from a biological perspective: the role of sociocultural homeostasis.Marco Verweij & Antonio Damasio - forthcoming - Journal of Economic Methodology:1-18.
    Economics and biology have long been overlapping and mutually enriching fields. We contribute to this cross-fertilization by spelling out the implications for economic theory of some recent insights from evolutionary neurobiology. We note that dynamic homeostasis, a core feature of life processes, has shaped social interactions at varied stages of evolution – from the patterns of competition and cooperation among early life forms to the complex process of human cultures. The resulting homeostatic perspective is not compatible with several leading (...)
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  43.  6
    Paneth cells: Maintaining dynamic microbiome‐host homeostasis, protecting against inflammation and cancer.Vladimir N. Nikolenko, Marine V. Oganesyan, Maria V. Sankova, Kirill V. Bulygin, Andzhela D. Vovkogon, Negoriya A. Rizaeva & Mikhail Y. Sinelnikov - 2021 - Bioessays 43 (3):2000180.
    The human intestines are constantly under the influence of numerous pathological factors: enteropathogenic microorganisms, food antigens, physico‐chemical stress associated with digestion and bacterial metabolism, therefore it must be provided with a system of protection against adverse impact. Recent studies have shown that Paneth cells play a crucial role in maintaining homeostasis of the small intestines. Paneth cells perform many vital functions aimed at maintaining a homeostatic balance between normal microbiota, infectious pathogens and the human body, regulate the qualitative composition (...)
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  44.  17
    MicroRNAs at the epicenter of intestinal homeostasis.Antoaneta Belcheva - 2017 - Bioessays 39 (3).
    Maintaining intestinal homeostasis is a key prerequisite for a healthy gut. Recent evidence points out that microRNAs (miRNAs) act at the epicenter of the signaling networks regulating this process. The fine balance in the interaction between gut microbiota, intestinal epithelial cells, and the host immune system is achieved by constant transmission of signals and their precise regulation. Gut microbes extensively communicate with the host immune system and modulate host gene expression. On the other hand, sensing of gut microbiota by (...)
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  45.  5
    Stress, Cortisone and Homeostasis. Adrenal Cortex Hormones and Physiological Equilibrium, 1936–1960.Lea Haller - 2010 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 18 (2):169-195.
    This article investigates the emergence of the concept of stress in the 1930s and outlines its changing disciplinary and conceptual frames up until 1960. Originally stress was a physiological concept applied to the hormonal regulation of the body under stressful conditions. Correlated closely with chemical research into corticosteroids for more than a decade, the stress concept finally became a topic in cognitive psychology. One reason for this shift of the concept to another discipline was the fact that the hormones previously (...)
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  46. Complexity and information: Measuring emergence, self‐organization, and homeostasis at multiple scales.Carlos Gershenson & Nelson Fernández - 2013 - Complexity 18 (2):29-44.
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  47. Fluid intake and homeostasis.E. M. Stricker & J. G. Verbalis - 1999 - In M. J. Zigmond & F. E. Bloom (eds.), Fundamental Neuroscience. pp. 2--991.
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  48.  18
    Walter B. Cannon and homeostasis.D. D. Fleming - 1984 - Social Research: An International Quarterly 51 (3):609.
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  49.  3
    Creative transformation of synergy and homeostasis of the natural space in the peaceful development of humankind.Bidzina Savaneli - 2014 - Hauppauge, New York: Nova Science Publisher's.
    Principal propositions -- Synergetic and homeostatic transformations of energies in the natural space -- Mathematical basis for the applicability of synergy and homeostasis in the normative systems -- Natural normative order and comparison of the aggression of nonhuman and human animals -- Applicability of synergy and homeostasis for the normative transformations in civil society -- Applicability of synergy and homeostasis for the normative transformations in legal order -- Human rights and applicability of synergy and homeostasis for (...)
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  50.  19
    A defence of homeostasis.Dawid J. Ramsay - 1979 - Behavioral and Brain Sciences 2 (1):116-116.
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