Results for 'Biophysics'

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  1.  7
    Biophysics of consciousness: a foundational approach.Roman R. Poznanski, J. A. Tuszynski & Todd E. Feinberg (eds.) - 2017 - New Jersey: World Scientific.
    The problem of how the brain produces consciousness, subjectivity and "something it is like to be" remains one of the greatest challenges to a complete science of the natural world. While various scientists and philosophers approach the problem from their own unique perspectives and in the terms of their own respective fields, Biophysics of Consciousness: A Foundational Approach attempts a consilience across disparate disciplines to explain how it is possible that an objective brain produces subjective experience. This volume unites (...)
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  2.  13
    The Biophysics of Regenerative Repair Suggests New Perspectives on Biological Causation.Michael Levin - 2020 - Bioessays 42 (2):1900146.
    Evolution exploits the physics of non‐neural bioelectricity to implement anatomical homeostasis: a process in which embryonic patterning, remodeling, and regeneration achieve invariant anatomical outcomes despite external interventions. Linear “developmental pathways” are often inadequate explanations for dynamic large‐scale pattern regulation, even when they accurately capture relationships between molecular components. Biophysical and computational aspects of collective cell activity toward a target morphology reveal interesting aspects of causation in biology. This is critical not only for unraveling evolutionary and developmental events, but also for (...)
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  3.  49
    Biophysics: Searching for Principles.William Bialek - 2012 - Princeton University Press.
    Here, William Bialek provides the first graduate-level introduction to biophysics aimed at physics students.
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  4.  8
    Building Biophysics in Mid-Century China: The University of Science and Technology of China.Yi Lai Christine Luk - 2015 - Journal of the History of Biology 48 (2):201-235.
    Biophysics has been either an independent discipline or an element of another discipline in the United States, but it has always been recognized as a stand-alone discipline in the People’s Republic of China since 1949. To inquire into this apparent divergence, this paper investigates the formational history of biophysics in China by examining the early institutional history of one of the best-known and prestigious science and technology universities in the PRC, the University of Science and Technology of China. (...)
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  5.  43
    Biophysical models of human behavior: Is there a place for logic.Rebecca Bamford & Mark D. Tschaepe - 2011 - American Journal of Bioethics Neuroscience 2 (3):70-72.
    We present a two-pronged criticism of Ramos's argument. Our main contention is that the logic of the author’s argument is flawed. As we demonstrate, the author conflates probability with necessity, in addition to conflating free will having causal efficacy with the merely illusory conscious experience of free will; such conflations undermine the claim that individual free will should be both exhibited on a social scale and necessarily cause a particular organized pattern to emerge. In addition, we will show that the (...)
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  6.  7
    A History of Biophysics in Contemporary China.Christine Yi Lai Luk - 2015 - Cham: Imprint: Springer.
    This book gives a concise history of biophysics in contemporary China, from about 1949 to 1976. It outlines how a science specialty evolved from an ambiguous and amorphous field into a fully-fledged academic discipline in the socio-institutional contexts of contemporary China. The book relates how, while initially consisting of cell biologists, the Chinese biophysics community redirected their disciplinary priorities toward rocket science in the late 1950s to accommodate the national interests of the time. Biophysicists who had worked on (...)
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  7.  6
    Biophysical approach to modeling reflection: basis, methods, results.S. I. Bartsev, G. M. Markova & A. I. Matveeva - forthcoming - Philosophical Problems of IT and Cyberspace (PhilIT&C).
    The approach used by physics is based on the identification and study of ideal objects, which is also the basis of biophysics, in combination with von Neumann heuristic modeling and functional fractionation according to R.Rosen is discussed as a tool for studying the properties of consciousness. The object of the study is a kind of line of analog systems: the human brain, the vertebrate brain, the invertebrate brain and artificial neural networks capable of reflection, which is a key property (...)
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  8.  3
    Biophysical approach to modeling reflection: basis, methods, results.С. И Барцев, Г. М Маркова & А. И Матвеева - 2023 - Philosophical Problems of IT and Cyberspace (PhilIT&C) 2:120-139.
    The approach used by physics is based on the identification and study of ideal objects, which is also the basis of biophysics, in combination with von Neumann heuristic modeling and functional fractionation according to R.Rosen is discussed as a tool for studying the properties of consciousness. The object of the study is a kind of line of analog systems: the human brain, the vertebrate brain, the invertebrate brain and artificial neural networks capable of reflection, which is a key property (...)
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  9.  14
    Radium, biophysics, and radiobiology: tracing the history of radiobiology in twentieth-century China.Christine Yi Lai Luk - 2017 - History and Philosophy of the Life Sciences 40 (1):2.
    Radiobiology assesses the biological hazards of exposure to radioactive substances and nuclear radiation. This article explores the history of radiobiology in twentieth-century China by examining the overlapping of radium research and biophysics, from roughly the 1920s Nationalist period to the 1960s Communist period; from the foreign purchase of radium by the Rockefeller Foundation’s China Medical Board during the Republican era, to the institutional establishment of radiobiology as a subset of biophysics in the People’s Republic. Western historiography of radiobiology (...)
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  10.  5
    Radium, biophysics, and radiobiology: tracing the history of radiobiology in twentieth-century China.Christine Yi Lai Luk - 2018 - History and Philosophy of the Life Sciences 40 (1):1-23.
    Radiobiology assesses the biological hazards of exposure to radioactive substances and nuclear radiation. This article explores the history of radiobiology in twentieth-century China by examining the overlapping of radium research and biophysics, from roughly the 1920s Nationalist period to the 1960s Communist period; from the foreign purchase of radium by the Rockefeller Foundation’s China Medical Board during the Republican era, to the institutional establishment of radiobiology as a subset of biophysics in the People’s Republic. Western historiography of radiobiology (...)
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  11. Biophysical Understanding of Resonance at a Cellular Level.Contzen Pereira - 2015 - Journal of Metaphysics and Connected Consciousness 1.
    Consciousness has always been linked to the nervous system or rather the brain, but there recorded conscious behaviors in organisms without nerve cells have changed the perspective of consciousness. A living cell is a blend of resonant frequencies, due to degrees of freedom that make it vibrate as a harmonic oscillator supporting the progression of vibrations as waves in and out of the system; to the neighboring cells, to the body, to other bodies and ultimately to the Universe; all of (...)
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  12. Biophysical Aspects of Molecular Electronic Spectroscopy.Sf Mason - 1965 - In Karl W. Linsenmann (ed.), Proceedings. St. Louis, Lutheran Academy for Scholarship. pp. 12--129.
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  13. The biophysics of space and time.N. Rashevsky - 1935 - Philosophy of Science 2 (1):73-85.
    In studying various possible physico-chemical interpretations of biological phenomena we arrived by a systematical development of what we have called “Mathematical Biophysics” at the interpretation of even such complex phenomena, as those involved in learning, Gestalt-discrimination and Gestalt-transposition. Yet, in spite of the apparent progress made along this newly trodden road, a sophisticated mind may feel that we are advancing into a peculiar “cul-de-sac.” Indeed we are discussing possible physico-chemical mechanisms underlying the discrimination, recognition and constancy-properties of various spatial (...)
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  14.  72
    Ultimate biophysics: Investing in the study of the biofield.Savely Savva - 2001 - World Futures 57 (1):1-19.
    The contemporary physical description of the universe reflects the inanimate world only. Broadening this description by including life may limit the application of well?established physical laws and may find new forces of the universe governing living organizations. This may also require adoption of some new assumptions and methodological principles, such as a broader principle of uncertainty, and recognition of the fact that humans? ability to manifest biofield communication is distributed very unevenly in the population. Based on available body of scientific (...)
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  15.  91
    Mathematical biophysics, cybernetics and significs.Anatol Rapoport - 1949 - Synthese 8 (1):182 - 193.
    It remains to summarize the contributions which each of the three disciplines discussed here is making toward the development of a science of man. "Significs" makes a study of the effects on human behavior of the linguistic aspects of the evaluative process, the most distinctly human aspect of the behavior of the human organism. "Mathematical Biophysics" seeks to describe the events associated with evaluative processes in physico-mathematical terms. "Cybernetics" is discovering important invariants common to these processes and others, particularly (...)
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  16. Mathematical, Biophysics, Cybernetics and Significs.Anatol Rapoport - 1949 - Synthese 8 (1):182.
    It remains to summarize the contributions which each of the three disciplines discussed here is making toward the development of a science of man. "Significs" makes a study of the effects on human behavior of the linguistic aspects of the evaluative process, the most distinctly human aspect of the behavior of the human organism. "Mathematical Biophysics" seeks to describe the events associated with evaluative processes in physico-mathematical terms. "Cybernetics" is discovering important invariants common to these processes and others, particularly (...)
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  17. Midcentury biophysics: Hiroshima and the origins of molecular biology.N. Rasmussen - 1997 - History of Science 35:244-293.
     
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  18.  4
    Building biophysics in China: Christine Yi Lai Luk: A history of biophysics in contemporary China. Dordrecht: Springer, 2015, xvii+90pp, $54.99 PB.Howard Chiang - 2016 - Metascience 25 (2):225-227.
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  19. Biophysical mechanisms in neuronal modelling.L. Graham - 2002 - In M. Arbib (ed.), The Handbook of Brain Theory and Neural Networks. MIT Press.
     
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  20.  23
    Cellular Biophysics: Transport.Thomas Fischer Weiss - 1996 - Bradford.
    Book written to preserve the wisdom of the ancient healing sages of China, and to provide the conceptual tools needed for its practical application in healing diseases of the modern world.
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  21. Biophysical mechanisms in neuronal modeling.Lyle Borg-Graham - 2002 - In M. Arbib (ed.), The Handbook of Brain Theory and Neural Networks. MIT Press. pp. 164--169.
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  22. Geometry, biophysics, and neuroscience: On the quantum nature of life and consciousness in the confluence of the thoughts of Erwin Schrodinger and Hermann Weyl.Manuel Bejar Gallego - 2009 - Pensamiento 65 (246):959-986.
     
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  23.  91
    Nicolas Rashevsky's Mathematical Biophysics.Tara H. Abraham - 2004 - Journal of the History of Biology 37 (2):333 - 385.
    This paper explores the work of Nicolas Rashevsky, a Russian émigré theoretical physicist who developed a program in "mathematical biophysics" at the University of Chicago during the 1930s. Stressing the complexity of many biological phenomena, Rashevsky argued that the methods of theoretical physics -- namely mathematics -- were needed to "simplify" complex biological processes such as cell division and nerve conduction. A maverick of sorts, Rashevsky was a conspicuous figure in the biological community during the 1930s and early 1940s: (...)
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  24.  10
    Biophysics — theme and variation: 9th international biophysics congress jerusalem, israel, 24–29 august 1987.Henryk Eisenberg - 1988 - Bioessays 9 (1):34-35.
  25.  68
    Mathematical biophysics and the central nervous system.Alston S. Householder - 1946 - Acta Biotheoretica 8 (1-2):67-76.
  26. The biophysics of the steady state of the organism.L. Von Bertalanffy - 1954 - Scientia 48 (89):361.
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  27.  70
    Mathematical biophysics in its relation to the cancer problem.N. Rashevsky - 1940 - Acta Biotheoretica 5 (3):139-154.
    Es wird einführungsweise zuerst auf den allgemeinen Zusammenhang zwischen theoretischer und experimenteller Forschung hingewiesen, insbesondere darauf, dass die theoretische Forschung dem Experimentator nicht nur neue Probleme stellt, sondern auch die Ergebnisse vieler Versuche sinnvoll macht, unabhängig davon, ob diese Ergebnisse positiv oder negativ ausfallen. — Danach wird ein kurzer Überblick über einige neuere Ergebnisse der mathematischen Biophysik gemacht und es werden einige fundamentale Probleme der Krebsforschung vom Standpunkte dieser Ergebnisse diskutiert. Es wird auf eine Reihe neuer möglicher Versuche hingewiesen, welche (...)
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  28.  5
    Mathematical Biophysics of Abstraction and Logical Thinking.N. Rashevsky & Arthur W. Burks - 1946 - Journal of Symbolic Logic 11 (3):99-100.
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  29.  49
    Epigenetic Modifications of Cytosine: Biophysical Properties, Regulation, and Function in Mammalian DNA.Jack S. Hardwick, Andrew N. Lane & Tom Brown - 2018 - Bioessays 40 (3):1700199.
    To decode the function and molecular recognition of several recently discovered cytosine derivatives in the human genome – 5-hydroxymethylcytosine, 5-formylcytosine, and 5-carboxylcytosine – a detailed understanding of their effects on the structural, chemical, and biophysical properties of DNA is essential. Here, we review recent literature in this area, with particular emphasis on features that have been proposed to enable the specific recognition of modified cytosine bases by DNA-binding proteins. These include electronic factors, modulation of base-pair stability, flexibility, and radical changes (...)
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  30.  18
    The mid-century biophysics bubble: Hiroshima and the biological revolution in America, revisited.Nicolas Rasmussen - 1997 - History of Science 35 (109):245-293.
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  31. Books etcetera-biophysics of computation: Information processing in single neurons.Alain Destexhe - 1999 - Trends in Cognitive Sciences 3 (11):443.
  32.  7
    Molecular biology and biophysics of ion channels.Richard D. Keynes - 1985 - Bioessays 2 (3):100-106.
    The transmission of electrical impulses in nerve and muscle cells depends fundamentally on the operation of specific ion channels in their membranes. Recent technical advances in electrical recording from cell membranes have permitted the analysis of the properties of single ion channels and the measurement of gating currents. The results have revealed considerable complexities, in particular in the operation of voltage‐gated sodium channels, and in the relationships between the several open and closed states of the channels. An important new development (...)
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  33. Economic and Biophysical Perspectives.Natural Resource Scarsity - 1991 - In Robert Costanza (ed.), Ecological Economics: The Science and Management of Sustainability. Columbia University Press. pp. 992.
     
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  34.  41
    Why is meat so important in Western history and culture? A genealogical critique of biophysical and political-economic explanations.Robert M. Chiles & Amy J. Fitzgerald - 2017 - Agriculture and Human Values 35 (1):1-17.
    How did meat emerge to become such an important feature in Western society? In both popular and academic literatures, biophysical and political-economic factors are often cited as the reason for meat’s preeminent status. In this paper, we perform a comprehensive investigation of these claims by reviewing the available evidence on the political-economic and biophysical features of meat over the long arc of Western history. We specifically focus on nine critical epochs: the Paleolithic, early to late Neolithic, antiquity, ancient Israel and (...)
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  35.  16
    Membrane‐mediated cytotoxicity: From biophysics to medicine.Lindsay Bashford & Peter Knox - 1986 - Bioessays 5 (3):134-135.
  36.  73
    The relation of mathematical biophysics to experimental biology.N. Rashevsky - 1938 - Acta Biotheoretica 4 (2):133-153.
    Nach einer allgemeinen Diskussion des Zusammenhanges zwischen theoretischer und experimenteller Forschung, wird in Hinblick auf die vom Verfasser entwickelten physikalisch-mathematischen Grundlagen der Biologie, eine Reihe von Einzelproblemen betrachtet. Es wird an Hand von Kurvenmaterial gezeigt wie weit die mathematisch vorausgesagten Beziehungen mit den experimentellen Befunden übereinstimmen. Folgende Fragen werden besprochen: Zellatmung, Zellgrössen, deren Abhängigkeit von Stoffwechsel, Zellteilung, Protoplasmaströmungen, Nervenerregung, psychophysische Gesetze, Reaktion auf geometrische Gestalten.Après une mise au point générale de la relation entre les sciences théoriques et expérimentales, diverses questions (...)
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  37.  28
    A Topological Approach to Infinity in Physics and Biophysics.Arturo Tozzi & James F. Peters - 2020 - Foundations of Science 26 (2):245-255.
    Physical and biological measurements might display range values extending towards infinite. The occurrence of infinity in equations, such as the black hole singularities, is a troublesome issue that causes many theories to break down when assessing extreme events. Different methods, such as re-normalization, have been proposed to avoid detrimental infinity. Here a novel technique is proposed, based on geometrical considerations and the Alexander Horned sphere, that permits to undermine infinity in physical and biophysical equations. In this unconventional approach, a continuous (...)
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  38. Foundations of mathematical biophysics.N. Rashevsky - 1934 - Philosophy of Science 1 (2):176-196.
    Mathematical methods in biology occupy a somewhat peculiar position, and the attitude of many biologists toward them is similar to that of many practical engineers toward what is called pure scientific research. The modern progressive engineer recognizes the value of pure science, which seeks for truth regardless of any possibility of practical applications; yet he still frequently shows a definite dislike towards such investigations. The whole history of civilization demonstrates that discoveries which, at the time they were made, did not (...)
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  39. Conceptualising the structure of the biophysical organising principle: Triple-aspect-theory of being.Joseph Naimo - 2012 - In Patricia Hanna (ed.), An Anthology of Philosophical Studies Vol. VI,. Athens: ATINER. pp. 121-132.
    When examining the human being as a conscious being, we are still to arrive at an understanding of, firstly, the conditions required whereby physical processes give rise to consciousness and secondly, how consciousness is something fundamental to life as an intrinsic part of nature. Humans are complex organisms with myriad interacting systems whereby the convergence of the activities toward the support and development of the whole organism requires a high level of organisation. Though what accounts for the dynamic unity of (...)
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  40.  42
    Seeking Resistance in Coral Reef Ecosystems: The Interplay of Biophysical Factors and Bleaching Resistance under a Changing Climate.Charlotte E. Page, William Leggat, Scott F. Heron, Severine M. Choukroun, Jon Lloyd & Tracy D. Ainsworth - 2019 - Bioessays 41 (7):1800226.
    If we are to ensure the persistence of species in an increasingly warm world, of interest is the identification of drivers that affect the ability of an organism to resist thermal stress. Underpinning any organism's capacity for resistance is a complex interplay between biological and physical factors occurring over multiple scales. Tropical coral reefs are a unique system, in that their function is dependent upon the maintenance of a coral–algal symbiosis that is directly disrupted by increases in water temperature. A (...)
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  41.  17
    Innovations in communication: Origin of Biochemical & biophysical research communications.W. D. McElroy - 1985 - Bioessays 3 (2):83-83.
    This feature series will present short articles on the development of new journals and forms of communication in Biology.
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  42.  36
    From Physics to Biophysics[REVIEW]Robert Olby - 1989 - History and Philosophy of the Life Sciences 11 (2):305 - 309.
  43.  41
    Genome evolution is driven by gene expression-generated biophysical constraints through RNA-directed genetic variation: A hypothesis.Didier Auboeuf - 2017 - Bioessays 39 (10):1700069.
    The biogenesis of RNAs and proteins is a threat to the cell. Indeed, the act of transcription and nascent RNAs challenge DNA stability. Both RNAs and nascent proteins can also initiate the formation of toxic aggregates because of their physicochemical properties. In reviewing the literature, I show that co-transcriptional and co-translational biophysical constraints can trigger DNA instability that in turn increases the likelihood that sequences that alleviate the constraints emerge over evolutionary time. These directed genetic variations rely on the biogenesis (...)
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  44.  12
    To Know them, Remove their Information: An Outer Methodological Approach to Biophysics and Humanities.Arturo Tozzi - 2022 - Philosophia 51 (2):977-1005.
    Set theory faces two difficulties: formal definitions of sets/subsets are incapable of assessing biophysical issues; formal axiomatic systems are complete/inconsistent or incomplete/consistent. To overtake these problems reminiscent of the old-fashioned principle of individuation, we provide formal treatment/validation/operationalization of a methodological weapon termed “outer approach” (OA). The observer’s attention shifts from the system under evaluation to its surroundings, so that objects are investigated from outside. Subsets become just “holes” devoid of information inside larger sets. Sets are no longer passive containers, rather (...)
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  45.  30
    The volterra competition equations with resource - independent growth coefficients and discussion on their biological and biophysical implications.I. Walker - 1984 - Acta Biotheoretica 33 (4):253-270.
    Analysis of the biophysical conditions for a correct application of the Volterra Competition Equations with resource-independent coefficients reveals the following:The traditional, mathematical formalism with the two equations representing two straight lines at the condition of zero growth applies.
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  46.  35
    Different aspects of consciousness explained by distinct biophysical processes.Wieslaw L. Galus - forthcoming - Journal of Theoretical and Philosophical Psychology.
    The great task of cognitive science is to explain the phenomenal, first-person experience through the brain’s biophysical processes. This articles takes up this challenge by presenting the theory of how to reconcile the distinguishable properties of a material and mental processes. For this purpose, I describe how knowledge representations arise and how they can correlate with the emotions that accompany their formation. These associations can lead to first-person sense impressions, that is, qualia, which are the gist of phenomenal awareness. I (...)
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  47.  2
    Rashevsky N.. Mathematical biophysics. Revised edition. The University of Chicago Press, Chicago 1948, xxiii + 669 pp. [REVIEW]Alonzo Church - 1949 - Journal of Symbolic Logic 14 (2):128-128.
  48.  4
    Review: N. Rashevsky, Mathematical Biophysics[REVIEW]Alonzo Church - 1949 - Journal of Symbolic Logic 14 (2):128-128.
  49.  9
    Rashevsky N.. Mathematical biophysics of abstraction and logical thinking. The bulletin of mathematical biophysics, vol. 7 , pp. 133–148.Rashevsky N.. Some remarks on the Boolean algebra of nervous nets in mathematical biophysics. The bulletin of mathematical biophysics, vol. 7 , pp. 203–211.Rashevsky N.. The neural mechanism of logical thinking. The bulletin of mathematical biophysics, vol. 8 , pp. 29–40.Burks Arthur W.. Laws of nature and reasonableness of regret. Mind, n.s. vol. 55 , pp. 170–172. [REVIEW]Charles A. Baylis - 1946 - Journal of Symbolic Logic 11 (3):99-100.
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  50.  30
    Radiation‐induced chromosome aberrations: Insights gained from biophysical modeling.Lynn Hlatky, Rainer K. Sachs, Mariel Vazquez & Michael N. Cornforth - 2002 - Bioessays 24 (8):714-723.
    Enzymatic misrepair of ionizing‐radiation‐induced DNA damage can produce large‐scale rearrangements of the genome, such as translocations and dicentrics. These and other chromosome exchange aberrations can cause major phenotypic alterations, including cell death, mutation and neoplasia. Exchange formation requires that two (or more) genomic loci come together spatially. Consequently, the surprisingly rich aberration spectra uncovered by recently developed techniques, when combined with biophysically based computer modeling, help characterize large‐scale chromatin architecture in the interphase nucleus. Most results are consistent with a picture (...)
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