Results for 'biology life definition'

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  1.  16
    A Biological Definition of the Human Embryo.Life Begin - 2011 - In Stephen Napier (ed.), Persons, Moral Worth, and Embryos: A Critical Analysis of Pro-Choice Arguments. Springer. pp. 111--211.
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  2. (1 other version)Is defining life pointless? Operational definitions at the frontiers of Biology.Leonardo Bich & Sara Green - 2017 - Synthese:1-28.
    Despite numerous and increasing attempts to define what life is, there is no consensus on necessary and sufficient conditions for life. Accordingly, some scholars have questioned the value of definitions of life and encouraged scientists and philosophers alike to discard the project. As an alternative to this pessimistic conclusion, we argue that critically rethinking the nature and uses of definitions can provide new insights into the epistemic roles of definitions of life for different research practices. This (...)
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  3.  46
    Definitions of life as epistemic tools that reflect and foster the advance of biological knowledge.Alba Amilburu, Álvaro Moreno & Kepa Ruiz-Mirazo - 2020 - Synthese 198 (11):10565-10585.
    During the last decades the question of defining life has gained increased interest but, at the same time, the difficulty in reaching consensus on a possible answer has led many to skeptical positions. This, in turn, has raised a wider debate about why defining life is so hard and controversial. Such a debate introduces additional aspects to be considered, like the role and nature of a definition of life itself. In this paper, we will focus on (...)
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  4.  62
    The biological and philosophical definitions of life.M. Jeuken - 1975 - Acta Biotheoretica 24 (1-2):14-21.
    A distinction must be made between various levels of thought. For a definition of life the formulation on the level of natural sciences,i.e. the biological definition, will not be the same as the philosophical expression. The biological definition is based on thephenomenon of life, the appearance, and considers the molecular structure and functions of a cell. The philosophical definition regards thebeing and it is proposed to consider life as transcendental. It is argued that (...)
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  5. The brain-life theory: towards a consistent biological definition of humanness.J. M. Goldenring - 1985 - Journal of Medical Ethics 11 (4):198-204.
    This paper suggests that medically the term a 'human being' should be defined by the presence of an active human brain. The brain is the only unique and irreplaceable organ in the human body, as the orchestrator of all organ systems and the seat of personality. Thus, the presence or absence of brain life truly defines the presence or absence of human life in the medical sense. When viewed in this way, human life may be seen as (...)
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  6.  40
    The somatic integration definition of the beginning of life.Mark T. Brown - 2019 - Bioethics 33 (9):1035-1041.
    The somatic integration definition of life is familiar from the debate on the determination of death, with some bioethicists arguing that it supports brain death while others argue that some brain‐dead bodies exhibit sufficient somatic integration for biological life. I argue that on either interpretation, the somatic integration definition of life implies that neither the preimplantation embryo nor the postimplantation embryo meet the somatic integration threshold condition for organismal human life. The earliest point at (...)
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  7. Life without definitions.Carol E. Cleland - 2012 - Synthese 185 (1):125-144.
    The question ‘what is life?’ has long been a source of philosophical debate and in recent years has taken on increasing scientific importance. The most popular approach among both philosophers and scientists for answering this question is to provide a “definition” of life. In this article I explore a variety of different definitional approaches, both traditional and non-traditional, that have been used to “define” life. I argue that all of them are deeply flawed. It is my (...)
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  8.  7
    (1 other version)Biological Phenomena Which a Definition of Life Must Include.Miriam I. Pennypacker - 1942 - In Francis Palmer Clarke & Milton Charles Nahm (eds.), Philosophical Essays: In Honor of Edgar Arthur Singer, Jr. London,: University of Pennsylvania Press. pp. 86-99.
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  9.  50
    Life, Inwardness and Struggle. The Definition of Life in the Thought of H. Plessner and H. Jonas.Carlos Blanco - 2013 - Ideas Y Valores 62 (151):129-141.
    El objetivo de este artículo es examinar la definición de "vida" en el pensamiento de Helmut Plessner y de Hans Jonas, para, con base en las evidencias biológicas y las reflexiones de estos autores, plantear la pregunta por las categorías fundamentales que diferencian lo vital de lo inerte, que son, a nuestro juicio, tres: la célula como unidad estructural y funcional, la transmisión de información genética, y la evolución por selección natural. The objective of the article is to explore the (...)
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  10.  72
    Defining life from death: problems with the somatic integration definition of life.Bruce P. Blackshaw & Daniel Rodger - 2020 - Bioethics (5):1-5.
    To determine when the life of a human organism begins, Mark T. Brown has developed the somatic integration definition of life. Derived from diagnostic criteria for human death, Brown’s account requires the presence of a life‐regulation internal control system for an entity to be considered a living organism. According to Brown, the earliest point at which a developing human could satisfy this requirement is at the beginning of the fetal stage, and so the embryo is not (...)
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  11.  18
    (1 other version)Life Defined in Terms of Entropy Production: 20th Century Physics Meets 21st Century Biology.Leonid M. Martyushev - 2020 - Bioessays 42 (9):2000101.
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  12. Synthetic Biology and the Moral Significance of Artificial Life: A Reply to Douglas, Powell and Savulescu.Andreas Christiansen - 2016 - Bioethics 30 (5):372-379.
    I discuss the moral significance of artificial life within synthetic biology via a discussion of Douglas, Powell and Savulescu's paper 'Is the creation of artificial life morally significant’. I argue that the definitions of 'artificial life’ and of 'moral significance’ are too narrow. Douglas, Powell and Savulescu's definition of artificial life does not capture all core projects of synthetic biology or the ethical concerns that have been voiced, and their definition of moral (...)
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  13.  99
    On the Definition of Life.Jianhui Li - 2019 - Philosophy Study 9 (9):497-510.
    The definition of life is a very important issue in the philosophy of biology, but this issue has unfortunately been neglected by the mainstream philosopher of biology for many years. In this paper, the difficulties with and the reasons for defining life are illustrated, the characteristics of life on Earth are explored, ways of defining life are examined, the main definitions of life are explained and evaluated, and finally, a new information (...) of life is proposed. (shrink)
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  14. A semiotical reflection on biology, living signs and artificial life.Claus Emmeche - 1991 - Biology and Philosophy 6 (3):325-340.
    It is argued, that theory sf signs, especially in the tradition of the great philosopher Charles Sanders Peirce (1839–1914) can inspire the study of central problems in the philosophy of biology. Three such problems are considered: (1) The nature of biology as a science, where a semiotically informed pluralistic approach to the theory of science is introduced. (2) The peculiarity of the general object of biology, where a realistic interpretation of sign- and information-concepts is required to see (...)
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  15. What are definitions of life good for? Transdisciplinary and other definitions in astrobiology.Tarja Knuuttila & Andrea Loettgers - 2017 - Biology and Philosophy 32 (6):1185-1203.
    The attempt to define life has gained new momentum in the wake of novel fields such as synthetic biology, astrobiology, and artificial life. In a series of articles, Cleland, Chyba, and Machery claim that definitions of life seek to provide necessary and sufficient conditions for applying the concept of life—something that such definitions cannot, and should not do. We argue that this criticism is largely unwarranted. Cleland, Chyba, and Machery approach definitions of life as (...)
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  16.  84
    Negotiating boundaries in the definition of life: Wittgensteinian and Darwinian insights on resolving conceptual border conflicts. [REVIEW]Robert T. Pennock - 2012 - Synthese 185 (1):5-20.
    What is the definition of life? Artificial life environments provide an interesting test case for this classical question. Understanding what such systems can tell us about biological life requires negotiating the tricky conceptual boundary between virtual and real life forms. Drawing from Wittgenstein’s analysis of the concept of a game and a Darwinian insight about classification, I argue that classifying life involves both causal and pragmatic elements. Rather than searching for a single, sharp (...), these considerations suggest that life is a cluster concept with fuzzy boundaries and that there are multiple legitimate ways to make the notion precise for different scientific purposes. This pluralist, realist account avoids unnecessary border disputes by emphasizing how science negotiates such questions in relation to theory and evidence. I also discuss several objections to this approach, including a “moral hesitation” some have to allowing broader application of the concept of life to include artificial life. (shrink)
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  17. Towards a Hierarchical Definition of Life, the Organism, and Death.Gerard A. J. M. Jagers op Akkerhuis - 2010 - Foundations of Science 15 (3):245-262.
    Despite hundreds of definitions, no consensus exists on a definition of life or on the closely related and problematic definitions of the organism and death. These problems retard practical and theoretical development in, for example, exobiology, artificial life, biology and evolution. This paper suggests improving this situation by basing definitions on a theory of a generalized particle hierarchy. This theory uses the common denominator of the “operator” for a unified ranking of both particles and organisms, from (...)
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  18.  70
    Towards a holistic definition of death: the biological, philosophical and social deficiencies of brain stem death criteria.Abigail Maguire - 2019 - The New Bioethics 25 (2):172-184.
    With no statutory definition of death, the accepted medical definition relies on brain stem death criteria as a definitive measure of diagnosing death. However, the use of brain stem death criteria in this way is precarious and causes widespread confusion amongst both medical and lay communities. Through critical analysis, this paper considers the insufficiencies of brain stem death. It concludes that brain stem death cannot be successfully equated with either biological death or the loss of integrated bodily function. (...)
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  19. Scientific-Philosophical definition of life.Klaus Fröhlich - 2022 - Science and Philosophy 10 (2):188-205.
    There are about 100 different contradictory definitions of life. The definition of life based on symbiosis that is presented here differs fundamentally from them; it gives life a value. So this definition offers a basis for ethical and legal action e.g. in organ transplants. It is based on principles and is not an ad hoc model: Significant processes for life are basis for a theoretical concept. Quality criteria for definitions are employed to control the (...)
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  20. Quantum aspects of life: Relating evolutionary biology with theology via modern physics.Anna Ijjas - 2013 - Zygon 48 (1):60-76.
    In the present paper, I shall argue that quantum theory can contribute to reconciling evolutionary biology with the creation hypothesis. After giving a careful definition of the theological problem, I will, in a first step, formulate necessary conditions for the compatibility of evolutionary theory and the creation hypothesis. In a second step, I will show how quantum theory can contribute to fulfilling these conditions. More precisely, I claim that (1) quantum probabilities are best understood in terms of ontological (...)
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  21. Life in the Interstices: Systems Biology and Process Thought.Joseph E. Earley - 2014 - In Spyridon A. Koutroufinis (ed.), Life and Process: Towards a New Biophilosophy. Boston: De Gruyter. pp. 157-170.
    When a group of processes achieves such closure that a set of states of affairs recurs continually, then the effect of that coherence on the world differs from what would occur in the absence of that closure. Such altered effectiveness is an attribute of the system as a whole, and would have consequences. This indicates that the network of processes, as a unit, has ontological significance. Whenever a network of processes generates continual return to a limited set of states of (...)
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  22.  83
    A general definition of interpretation and its application to origin of life research.Andrew Robinson & Christopher Southgate - 2010 - Biology and Philosophy 25 (2):163-181.
    We draw on Short’s work on Peirce’s theory of signs to propose a new general definition of interpretation. Short argues that Peirce’s semiotics rests on his naturalised teleology. Our proposal extends Short’s work by modifying his definition of interpretation so as to make it more generally applicable to putatively interpretative processes in biological systems. We use our definition as the basis of an account of different kinds of misinterpretation and we discuss some questions raised by the (...) by reference to parallel problems in the field of teleosemantics. We propose that interpretative responses fulfilling the criteria of our definition may be made by relatively simple molecular entities and we suggest two specific empirical applications of the definition to experimental work in the field of origin of life research. Our wider aim is to suggest that a well formulated naturalistic definition of interpretation will allow a re-evaluation of the role of semiotic phenomena in biological systems, including the generation of empirically testable hypotheses. (shrink)
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  23.  55
    Life Extension Research: An Analysis of Contemporary Biological Theories and Ethical Issues. [REVIEW]Jennifer Marshall - 2005 - Medicine, Health Care and Philosophy 9 (1):87-96.
    Many opinions and ideas about aging exist. Biological theories have taken hold of the popular and scientific imagination as potential answers to a “cure” for aging. However, it is not clear what exactly is being cured or whether aging could be classified as a disease. Some scientists are convinced that aging will be biologically alterable and that the human lifespan will be vastly extendable. Other investigators believe that aging is an elusive target that may only be “statistically” manipulatable through a (...)
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  24. Can synthetic biology shed light on the origin of life?Christophe Malaterre - 2009 - Biological Theory 4 (4):357-367.
    It is a most commonly accepted hypothesis that life originated from inanimate matter, somehow being a synthetic product of organic aggregates, and as such, a result of some sort of prebiotic synthetic biology. In the past decades, the newly formed scientific discipline of synthetic biology has set ambitious goals by pursuing the complete design and production of genetic circuits, entire genomes or even whole organisms. In this paper, I argue that synthetic biology might also shed some (...)
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  25. Why I stopped worrying about the definition of life... and why you should as well.Edouard Machery - 2012 - Synthese 185 (1):145-164.
    In several disciplines within science—evolutionary biology, molecular biology, astrobiology, synthetic biology, artificial life—and outside science—primarily ethics—efforts to define life have recently multiplied. However, no consensus has emerged. In this article, I argue that this is no accident. I propose a dilemma showing that the project of defining life is either impossible or pointless. The notion of life at stake in this project is either the folk concept of life or a scientific concept. (...)
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  26. Autopoietic systems, replicators, and the search for a meaningful biologic definition of life.Claus Emmeche - 1997 - Ultimate Reality and Meaning 20:244-264.
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  27.  21
    The Garden in the Machine: The Emerging Science of Artificial Life.Claus Emmeche - 1994 - Princeton: Princeton University Press.
    What is life? Is it just the biologically familiar--birds, trees, snails, people--or is it an infinitely complex set of patterns that a computer could simulate? What role does intelligence play in separating the organic from the inorganic, the living from the inert? Does life evolve along a predestined path, or does it suddenly emerge from what appeared lifeless and programmatic? In this easily accessible and wide-ranging survey, Claus Emmeche outlines many of the challenges and controversies involved in the (...)
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  28. Centre for the Philosophy of Nature and Science Studies, Niels Bohr Institute, Copenhagen, Denmark, "Autopoietic Systems, Replicators, and the Search for a Meaningful Biologic Definition of Life".Claus Emmeche - 1997 - Ultimate Reality and Meaning 20 (4).
  29. Towards a Definition of Life.Peter T. Macklem & Andrew Seely - 2010 - Perspectives in Biology and Medicine 53 (3):330-340.
    Because biologists are concerned with life in all its forms, and physicians deal with life and death on a daily basis, it is crucial that they explicitly understand what life is. Nevertheless, a clear idea of what life means remains elusive, and there is no universally accepted definition. Therefore, we offer our own: Life is a self-contained, self-regulating, self-organizing, self-reproducing, interconnected, open thermodynamic network of component parts which performs work, existing in a complex regime (...)
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  30.  65
    Scientific progress, normative discussions, and the pragmatic account of definitions of life.Ludo L. J. Schoenmakers - 2023 - Synthese 201 (4):1-20.
    Discussions on the status of definitions of life have long been dominated by a position known as definitional pessimism. Per the definitional pessimist, there is no point in trying to define life. This claim is defended in different ways, but one of the shared assumptions of all definitional pessimists is that our attempts to define life are attempts to provide a list of all necessary and sufficient conditions for something to count as alive. In other words, a (...)
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  31.  78
    Life as Adaptive Capacity: Bringing New Life to an Old Debate.Kelly C. Smith - 2018 - Biological Theory 13 (2):76-92.
    Whatever we take “life” to mean, it must involve an attempt to describe the objective reality beyond scientists’ biases. Traditionally, this is thought to involve comparing our scientific categories to “natural kinds.” But this approach has been tainted with an implicit metaphysics, inherited from Aristotle, that does not fit biological reality. In particular, we must accept that biological categories will never be specifiable in terms of necessary and sufficient conditions or shared underlying physical structures that produce clean boundaries. (...) blurs all lines and failure to embrace this unique feature has blocked attempts to reach consensus on the meaning of “life.” Thus, while the three classical accounts all fall short of offering a complete definition, their advocates fail to realize that they share the same view of life’s ultimate, functional hallmark: its uniquely rich adaptive capacity. I develop an account of life as adaptive capacity that sidesteps debates about the relative importance of specific mechanisms and the precise location of boundaries to bring the three classical accounts together under a shared conceptual framework. (shrink)
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  32. Nicolai Hartmann's Definition of Biological Species.Frederic Tremblay - 2011 - In Roberto Poli, Carlo Scognamiglio & Frederic Tremblay (eds.), The Philosophy of Nicolai Hartmann. Walter de Gruyter. pp. 125--139.
    Before the Darwinian revolution species were thought to be universals. Since then, numerous attempts have been made to propose new definitions. The twentieth-century German philosopher Nicolai Hartmann defined 'species' as an individual system of processes and a process of life of a higher-order. To provide a clear understanding of Hartmann's conception of species, I first present his method of definition. Then I look at Hartmann's Philosophie der Natur (1950) to present his concepts of "organism" and "species." And I (...)
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  33.  29
    Life on Earth is an individual.Margarida Hermida - 2016 - Theory in Biosciences 135 (1-2):37-44.
    Life is a self-maintaining process based on metabolism. Something is said to be alive when it exhibits organization and is actively involved in its own continued existence through carrying out metabolic processes. A life is a spatio-temporally restricted event, which continues while the life processes are occurring in a particular chunk of matter (or, arguably, when they are temporally suspended, but can be restarted at any moment), even though there is continuous replacement of parts. Life is (...)
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  34. What are biological sexes?Paul E. Griffiths - manuscript
    Biological sexes (male, female, hermaphrodite) are defined by different gametic strategies for reproduction. Sexes are regions of phenotypic space which implement those gametic reproductive strategies. Individual organisms pass in and out of these regions – sexes - one or more times during their lives. Importantly, sexes are life-history stages rather than applying to organisms over their entire lifespan. This fact has been obscured by concentrating on humans, and ignoring species which regularly change sex, as well as those with non-genetic (...)
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  35. Biological Organization.Leonardo Bich - 2024 - Cambridge: Cambridge University Press.
    Living systems are complex systems made of components that tend to degrade, but nonetheless they maintain themselves far from equilibrium. This requires living systems to extract energy and materials from the environment and use them to build and repair their parts. They do so by regulating their activities on the basis of their internal and external conditions in ways that allow them to keep living. The philosophical and theoretical approach discussed in this book aims to explain these features of biological (...)
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  36.  34
    To be or not to be alive: How recent discoveries challenge the traditional definitions of viruses and life.Patrick Forterre - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 59:100-108.
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  37.  17
    Self Definition: A Philosophical Inquiry from the Global South and Global North.Teodros Kiros - 2019 - Lexington Books.
    This book argues that anatomy and biology frame our gender, sex, and class, but they do not decide our possibilities. Our life-styles are our own constructions and expressions of self-definition. Teodros Kiros supports his argument by a careful reading of the literature from both the Global South and Global North that spans figures, works, and eras from antiquity to our late modern present.
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  38. Towards a Dynamic Definition of Health and Disease.Johannes Bircher - 2005 - Medicine, Health Care and Philosophy 8 (3):335-341.
    A multifactorial and growing crisis of health care systems in the developed world has affected medicine. In order to provide rational responses, some central concepts of the past, such as the definitions of health and disease, need to be updated. For this purpose physicians should initiate a new debate. As a point of departure the following definitions are proposed: Health is a dynamic state of wellbeing characterized by a physical, mental and social potential, which satisfies the demands of a (...) commensurate with age, culture, and personal responsibility. If the potential is insufficient to satisfy these demands the state is disease. This term includes sickness, illness, ill health, and malady. The described potential is divided into a biologically given and a personally acquired partial potential. Their proportions vary throughout the life cycle. The proposed definitions render it empirically possible to diagnose persons as healthy or diseased and to apportion some of the responsibility for their state of health to individuals themselves. Treatment strategies should always consider three therapeutic routes: improvements of the biologically given and of the personally acquired partial potentials and adaptations of the demands of life. These consequences favourably contrast with those resulting from the WHO-definition of health. (shrink)
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  39. Playing God in Frankenstein’s Footsteps: Synthetic Biology and the Meaning of Life[REVIEW]Henk van den Belt - 2009 - NanoEthics 3 (3):257-268.
    The emergent new science of synthetic biology is challenging entrenched distinctions between, amongst others, life and non-life, the natural and the artificial, the evolved and the designed, and even the material and the informational. Whenever such culturally sanctioned boundaries are breached, researchers are inevitably accused of playing God or treading in Frankenstein’s footsteps. Bioethicists, theologians and editors of scientific journals feel obliged to provide an authoritative answer to the ambiguous question of the ‘meaning’ of life, both (...)
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  40.  65
    Biological sex is binary, even though there is a rainbow of sex roles.Wolfgang Goymann, Henrik Brumm & Peter M. Kappeler - 2023 - Bioessays 45 (2):2200173.
    Biomedical and social scientists are increasingly calling the biological sex into question, arguing that sex is a graded spectrum rather than a binary trait. Leading science journals have been adopting this relativist view, thereby opposing fundamental biological facts. While we fully endorse efforts to create a more inclusive environment for gender‐diverse people, this does not require denying biological sex. On the contrary, the rejection of biological sex seems to be based on a lack of knowledge about evolution and it champions (...)
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  41.  40
    Life's Intrinsic Value: Science, Ethics, and Nature.Nicholas Agar - 2001 - Columbia University Press.
    Are bacteriophage T4 and the long-nosed elephant fish valuable in their own right? Nicholas Agar defends an affirmative answer to this question by arguing that anything living is intrinsically valuable. This claim challenges received ethical wisdom according to which only human beings are valuable in themselves. The resulting biocentric or life-centered morality forms the platform for an ethic of the environment. -/- Agar builds a bridge between the biological sciences and what he calls "folk" morality to arrive at a (...)
  42. Life as a Homeostatic Property Cluster.Antonio Diéguez - 2013 - Biological Theory 7 (2):180-186.
    All of the attempts to date to find a set of necessary and sufficient conditions for life, in order to provide an essential definition of life, have failed. We only have at our disposal series of lists that contain diverse characteristics usually found in living beings. Some authors have drawn from this fact the conclusion that life is not a natural kind. It will be argued here that this conclusion is too hasty and that if (...) is understood as a natural kind in the non-essentialist sense of a homeostatic property cluster, it is easy to see why the attempts to find a unique and essentialist definition of life have failed. Understanding life in this way would imply that the pretension to find such a type of definition should be abandoned. (shrink)
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  43.  13
    Aristotle's Biology and Aristotle's Philosophy.James G. Lennox - 2018 - In Sean D. Kirkland & Eric Sanday (eds.), A Companion to Ancient Philosophy. Evanston, Illinois: Northwestern University Press. pp. 292–315.
    This chapter contains sections titled: Introduction Biology and the Theory of Knowledge Biology and Metaphysics Soul, Life, and Reason Conclusion Bibliography.
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  44.  16
    Creating a Physical Biology: The Three Man Paper and Early Molecular Biology.Phillip R. Sloan & Brandon Fogel (eds.) - 2011 - University of Chicago Press.
    In 1935 geneticist Nikolai Timoféeff-Ressovsky, radiation physicist Karl G. Zimmer, and quantum physicist Max Delbrück published “On the Nature of Gene Mutation and Gene Structure,” known subsequently as the “Three-Man Paper.” This seminal paper advanced work on the physical exploration of the structure of the gene through radiation physics and suggested ways in which physics could reveal definite information about gene structure, mutation, and action. Representing a new level of collaboration between physics and biology, it played an important role (...)
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  45.  28
    Biological taxon names are descriptive names.Jerzy A. Brzozowski - 2020 - History and Philosophy of the Life Sciences 42 (3):1-25.
    The so-called ‘type method’ widely employed in biological taxonomy is often seen as conforming to the causal-historical theory of reference. In this paper, I argue for an alternative account of reference for biological nomenclature in which taxon names are understood as descriptive names. A descriptive name, as the concept came to be known from the work of Gareth Evans, is a referring expression introduced by a definite description. There are three main differences between the DN and the causal account. First, (...)
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  46.  20
    Biological Ethics in the Thought of Oscar De Beaux.Franco Pedrotti - 2001 - Global Bioethics 14 (1):39-44.
    Oscar de Beaux was professor of Zoology at Genova University and then director of Civil Museum of Natural History in the same town. The first contributions of de Beaux which included elements of biological ethics concerned the european bison of Bialowieza and the brown bear of the Alps between 1923–1929. In 1930 de Beaux published his most important study called “Biological ethics: an attempt to arouse a naturalistic conscience”, translated also in german (1932) and in english (1933). According to Oscar (...)
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  47.  36
    The Problems of Biology.John Maynard Smith - 1986 - Oxford University Press USA.
    Concentrating on problems that commonly perplex general readers and beginning students, John Maynard Smith discusses fundamental issues in biology, with emphasis on evolution, development, and cognition. He provides a nontechnical account of molecular genetics, which is the foundation of modern biology, and explores such issues as heredity, animal behavior, the definition and origin of life, the brain and how we know things, artificial and natural intelligence, and genetics. The book is unique in presenting modern ideas in (...)
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  48.  62
    Implicit Definition.Paul T. Sagal - 1973 - The Monist 57 (3):443-450.
    Philosophers probably ask more What is questions than anyone else. From the Socratic-Platonic What is Justice, Love, Virtue, etc., through the Aristotelian quest for essences and the contemporary concern with various modes of meaning, philosophers have kept raising What is questions. Now some say that this penchant for What is represents the worst in philosophy. Such questions inevitably lead to confusing verbal or definitional matters, with substantive or factual matters. Lexicography is not an important part of either science or philosophy. (...)
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  49.  97
    Death is a Biological Phenomenon.Don Marquis - 2018 - Diametros 55:20-26.
    John Lizza says that to define death well, we must go beyond biological considerations. Death is the absence of life in an entity that was once alive. Biology is the study of life. Therefore, the definition of death should not involve non-biological concerns.
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  50.  45
    The life of concepts:: Georges Canguilhem and the history of science.Henning Schmidgen - 2014 - History and Philosophy of the Life Sciences 36 (2):232-253.
    Twelve years after his famous Essay on Some Problems Concerning the Normal and the Pathological (1943), the philosopher Georges Canguilhem (1904–1995) published a book-length study on the history of a single biological concept. Within France, his Formation of the Reflex Concept in the Seventeenth and Eighteenth Centuries (1955) contributed significantly to defining the “French style” of writing on the history of science. Outside of France, the book passed largely unnoticed. This paper re-reads Canguilhem’s study of the reflex concept with respect (...)
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