Results for 'Nobel Prize in physiology or medicine'

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  1.  15
    Cajal beyond the brain: Don Santiago contemplates the mind and its education: 20 essays of Santiago Ramón y Cajal, winner of the Nobel Prize in Physiology or Medicine.Santiago Ramón Y. Cajal - 2015 - Indianapolis, IN: Corpus Callosum. Edited by Lazaros Constantinos Triarhou.
    This compilation brings together 20 essays of Santiago Ramón y Cajal (1852-1934), the neuroscientist par excellence and 1906 Nobel Laureate in Medicine, on topics beyond neuroanatomy, most appearing in English for the first time. The annotated collection makes available in one handy volume Cajal's ideas on psychology, art and education, still current and still relevant, derived from his books La Psicología de los Artistas, Charlas de Café, El Mundo Visto a los Ochenta Años, Pensamientos Pedagógicos and Escritos Inéditos. (...)
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  2.  36
    Tu Youyou winning the Nobel Prize: Ethical research on the value and safety of traditional Chinese medicine.Wei‐Rong Zheng, En‐Chang Li, Song Peng & Xiao‐Shang Wang - 2018 - Bioethics 34 (2):166-171.
    In 2015, the Chinese pharmacologist, Tu Youyou, was awarded the Nobel Prize for Physiology or Medicine for the discovery of artemisinin. Traditional Chinese medicine (TCM) was the source of inspiration for Tu's discovery and provides an opportunity for the world to know more about TCM as a source of medical knowledge and practice. In this article, the value of TCM is evaluated from an ethical perspective. The characteristics of ‘jian, bian, yan, lian’ are explored in (...)
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  3. Arrhenius vs. Ehrlich on immunochemistry: Decisions about scientific progress in the context of the nobel prize.Franz Luttenberger - 1992 - Theoretical Medicine and Bioethics 13 (2).
    This study forms part of a larger research project examining the election process for the Nobel prizes for Physiology or Medicine at the Karolinska Institute in Stockholm, and the role and function of the prizes in early 20th century Swedish and international medicine. The purpose of the study is to clarify the decision-making process which led to the Nobel prize for Paul Ehrlich in 1908, for work on immunity. His award was preceded by the (...)
     
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  4.  31
    „Der erste zu sein.“[1]– Über den ersten Medizinnobelpreis für Emil von Behring im Jahr 1901.Ulrike Enke - 2018 - Berichte Zur Wissenschaftsgeschichte 41 (1):19-46.
    “To be the first one.” – On the first Nobel Prize in Physiology or Medicine awarded to Emil von Behring in 1901. The German immunologist Emil von Behring is the first Nobel Prize laureate in physiology or medicine. Behring received the award in 1901 “for his work on serum therapy, especially its application against diphtheria”. Behring's name was strongly connected with progress in the field of diphtheria research through various publications. This study (...)
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  5.  25
    From Einstein to Shirakawa: The Nobel Prize in Japan.M. Low - 2001 - Minerva 39 (4):446-460.
    There have been two Japanese Nobel laureates in chemistry, three in physics, and one in the category of medicine or physiology. This relatively small number has been attributed to shortcomings in Japanese science. The award of the Physics Prize in 1949 to Hideki Yukawa and to his colleague Sin'itirô Tomonaga in 1965 gave public evidence of how Japanese could make outstanding individual contributions to science. Paradoxically, the Prize also reinforced a belief that such men formed (...)
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  6. The biomedical paradigm and the nobel prize: Is it time for a change?Laurence Foss - 1998 - Theoretical Medicine and Bioethics 19 (6):621-644.
    An examination of the early history of Nobel Committee deliberations, coupled with a survey of discoveries for which prizes have been awarded to date – and, equally revealing, discoveries for which prizes have not been awarded – reveals a pattern. This pattern suggests that Committee members may have internalized the received, biomedical model and conferred awards in accord with the physicalistic premises that ground this model. I consider the prospect of a paradigm change in medical science and the possible (...)
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  7.  25
    „Prisvärdig“ Forschung? Wilhelm Roux und sein Programm der Entwicklungsmechanik.Thorsten Halling, Nils Hansson & Heiner Fangerau - 2018 - Berichte Zur Wissenschaftsgeschichte 41 (1):73-97.
    “Prizeworthy Research?” Wilhelm Roux and His Program of Developmental Mechanics. The Nobel Prize in physiology or medicine is awarded annually to a maximum of three laureates. Not surprisingly, the number of nominees is much larger. Drawing on Nobel Prize nominations in the Nobel archives in Sweden, the core of this paper deals with the nomination letters for the physiologist Wilhelm Roux to discuss competition and some controversies among German physiologists around 1900 in this (...)
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  8.  17
    Diauxic Inhibition: Jacques Monod's Ignored Work.Pierre Louis Blaiseau & Allyson M. Holmes - 2021 - Journal of the History of Biology 54 (2):175-196.
    Diauxie is at the origin of research that led Jacques Monod, François Jacob, and André Lwoff to win the Nobel Prize in Physiology or Medicine in 1965 for their description of the first genetic regulatory model. Diauxie is a term coined by Jacques Monod in 1941 in his doctoral dissertation that refers to microbial growth in two phases. In this article, we first examine Monod’s thesis to demonstrate how and why Monod interpreted diauxie as a phenomenon (...)
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  9.  43
    Fishing for Genes: How the Largest Gene Family in the Mammalian Genome was Found.Ann-Sophie Barwich - 2021 - Perspectives on Science 29 (4):359-387.
    In 1991, Linda Buck and Richard Axel identified the multigene family expressing odor receptors. Their discovery transformed research on olfaction overnight, and Buck and Axel were awarded the 2004 Nobel Prize in Physiology or Medicine. Behind this success lies another, less visible study about the methodological ingenuity of Buck. This hidden tale holds the key to answering a fundamental question in discovery analysis: What makes specific discovery tools fit their tasks? Why do some strategies turn out (...)
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  10.  24
    „In Stockholm hatte man offenbar irgendwelche Gegenbewegung” – Ferdinand Sauerbruch (1875–1951) und der Nobelpreis.Udo Schagen & Nils Hansson - 2014 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 22 (3):133-161.
    The archive of the Nobel Assembly for Physiology or Medicine in Solna, Sweden, is a remarkable repository that contains reports and dossiers of the Nobel Prize nominations of senior and junior physicians from around the world. Although this archive has begun to be used more by scholars, it has been insufficiently examined by historians of surgery. No other German surgeon was nominated as often as Ferdinand Sauerbruch for the Nobel Prize for Physiology (...)
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  11.  44
    A controversy about chance and the origins of life: thermodynamicist Ilya Prigogine replies to molecular biologist Jacques Monod.Emanuel Bertrand - 2023 - History and Philosophy of the Life Sciences 45 (2):1-23.
    The ancient, interlinked questions about the role of chance in the living world and the origins of life, gained new relevance with the development of molecular biology in the twentieth century. In 1970, French molecular biologist Jacques Monod, joint winner of the 1965 Nobel Prize in Physiology or Medicine, devoted a popular book on modern biology and its philosophical implications to these questions, which was quickly translated into English as _Chance and Necessity_. Nine years later, Belgian (...)
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  12.  22
    Blobel and Sabatini’s “Beautiful Idea”: Visual Representations of the Conception and Refinement of the Signal Hypothesis.Michelle Lynne LaBonte - 2017 - Journal of the History of Biology 50 (4):797-833.
    In 1971, Günter Blobel and David Sabatini proposed a novel and quite speculative schematic model to describe how proteins might reach the proper cellular location. According to their proposal, proteins destined to be secreted from the cell contain a “signal” to direct their release. Despite the fact that Blobel and Sabatini presented their signal hypothesis as a “beautiful idea” not grounded in experimental evidence, they received criticism from other scientists who opposed such speculation. Following the publication of the 1971 model, (...)
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  13. Philosophical Dimensions of the Morris Water Maze.Jordan Dopkins - 2023 - Dissertation, University of California, Santa Cruz
    In 2014, John O’Keefe was awarded the Nobel Prize in Physiology or Medicine for his work on the hippocampus and its role in encoding map-like representations. His contributions were significantly influenced by Morris water maze studies. O’Keefe himself acknowledged the pivotal role of the Morris water maze, stating that it remains the preeminent behavioral assay for assessing hippocampal function. Indeed, thousands of researchers have turned to the Morris water maze for evidence about navigation abilities and the (...)
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  14.  45
    Nobel Prize Winners in Physics, 1901-1950Niels H. de V. HeathcoteNobel Prize Winners in Medicine and Physiology, 1901-1950Lloyd G. StevensonNobel Prize Winners in Chemistry, 1901-1950Eduard Farber. [REVIEW]I. Cohen - 1954 - Isis 45 (4):407-408.
  15.  21
    Karl von Frisch and the Discipline of Ethology.Kelle Dhein - 2021 - Journal of the History of Biology 54 (4):739-767.
    In 1973, the discipline of ethology came into its own when three of its most prominent practitioners—Konrad Lorenz, Nikolaas Tinbergen, and Karl von Frisch—jointly received the Nobel Prize for Physiology or Medicine. Historians have shown how Lorenz and Tinbergen were central to the practical and theoretical innovations that came to define ethology as a distinct form of animal behavior research in the twentieth century. Frisch is rarely mentioned in such histories. In this paper, I ask, What (...)
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  16.  25
    Inside the Nobel Committee on Medicine: Prize Competition Procedures 1901–1950 and the Fate of Carl Neuberg. [REVIEW]Ragnar Björk - 2001 - Minerva 39 (4):393-408.
    The present study explores some ofthe mechanisms at work in the award of theNobel Prize in medicine or physiology duringthe period 1901–1950. In his will, Nobelmentioned three explicit criteria for the NobelCommittees, but an examination of the fate ofGerman biochemist Carl Neuberg reveals howimplicit criteria came to be added. Forexample, the Nobel Committees in Medicine andChemistry were challenged by the emergence ofnew disciplines such as biochemistry, and inresponse began to rotate awards arounddifferent specialities.
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  17. SVANTE PÄÄBO'S PALEOGENOMICS RESULTS IN THE CONTEXT OF POST-ACADEMIC TRANSFORMATIONS OF MODERN TECHNOSCIENCE(strokes to the portrait of the Nobel laureate in the socio-cultural context).Valentin Cheshko - 2022 - Biophysical Bulletin 48:25-32.
    The studies of Svante Pääbo, Nobel Laureate in Physiology or Medicine in 2022 are analyzed in two aspects: firstly, as the most striking example of the evolutionary transformation of classical scienceinto the so-called post-academic (techno)science and, secondly, as an element of the so-called "biopolitical turn" in the socio-humanitarian and political knowledge of technological civilization and, in particular, in the concept of "civil society".
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  18.  18
    Innovation in medicine: Ignaz the reviled and Egas the regaled.Antonei Benjamin Csoka - 2016 - Medicine, Health Care and Philosophy 19 (2):163-168.
    In our current climate of rapid technological progress, it seems counterintuitive to think that modern science can learn anything of ethical value from the dark recesses of the nineteenth century or earlier. However, this happens to be quite true, with plenty of knowledge and wisdom to be gleaned by studying our scientific predecessors. Presently, our journals are flooded with original concepts and potential breakthroughs, a continuous stream of ideas pushing the frontiers of knowledge ever forward. Some ideas flourish while others (...)
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  19.  15
    Intellectual Capital: Forty Years of the Nobel Prize in Economics.Tom Karier - 2010 - Cambridge University Press.
    There is arguably no award more recognized in the academic and professional worlds than the Nobel Prize. The public pays attention to the prizes in the fields of economics, literature, and peace because their recipients are identified with particular ideas, concepts, or actions that often resonate with or sometimes surprise a global audience. The Nobel Prize in Economic Science established by the Bank of Sweden in 1969 has been granted to 64 individuals. Thomas Karier explores the (...)
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  20.  57
    Oswald T. Avery: Nobel Laureate or Noble Luminary?Frank Portugal - 2010 - Perspectives in Biology and Medicine 53 (4):558-570.
    The fact that Oswald T. Avery (1877-1955) did not become a Nobel Laureate for his discovery of DNA as the genetic material has frequently been cited as a prime example of a mistake made in the awarding of the Nobel Prizes. The late Nobel Laureate Arne Tiselius explained the oversight away by saying that Avery "was an old man when he made his discovery" (Litell 1967)—although Avery was actually younger than several others who won the Nobel (...)
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  21.  31
    One Hundred Years of the Nobel Science PrizesElisabeth Crawford (Editor). Historical Studies in the Nobel Archives: The Prizes in Science and Medicine. viii + 161 pp., index. Tokyo: Universal Academy Press, 2002. ¥3,600, $30.37 (paper).Elisabeth Crawford. The Nobel Population, 1901–1950: A Census of the Nominators and Nominees for the Prizes in Physics and Chemistry. vi + 420 pp., tables. Tokyo: Universal Academy Press, 2002. ¥4,800, $40.49 (paper).Mauro Dardo. Nobel Laureates and Twentieth‐Century Physics. x + 515 pp., index. Cambridge: Cambridge University Press, 2004. $39.99 (paper).Robert Marc Friedman. The Politics of Excellence: Behind the Nobel Prize in Science. xv + 400 pp., notes, index. New York: W. H. Freeman, 2001. $30 (cloth).István Hargittai. The Road to Stockholm: Nobel Prizes, Science, and Scientists. xvii + 342 pp., illus., tables, index. Oxford/New York: Oxford University Press, 2002. £19.99, $29.95 (cloth).George Thomas Kurian. _The Nobel Scientists: A Biog. [REVIEW]James R. Bartholomew - 2005 - Isis 96 (4):625-632.
  22. The Nobel Prize as a Reward Mechanism in the Genomics Era: Anonymous Researchers, Visible Managers and the Ethics of Excellence. [REVIEW]Hub Zwart - 2010 - Journal of Bioethical Inquiry 7 (3):299-312.
    The Human Genome Project is regarded by many as one of the major scientific achievements in recent science history, a large-scale endeavour that is changing the way in which biomedical research is done and expected, moreover, to yield considerable benefit for society. Thus, since the completion of the human genome sequencing effort, a debate has emerged over the question whether this effort merits to be awarded a Nobel Prize and if so, who should be the one to receive (...)
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  23.  77
    The asymmetry between discoveries and inventions in the Nobel Prize in Physics.Christoph Bartneck & Matthias Rauterberg - 2008 - Technoetic Arts 6 (1):73-77.
    This paper presents an empirical study on the frequency of discoveries and inventions that were awarded with the. More than 70 per cent of all Nobel Prizes were given to discoveries. The majority of inventions were awarded at the beginning of the twentieth century and only three inventions had a direct application for society. The emphasis on discoveries moves the Nobel Prize further away from its original intention to reward the greatest contribution to society in the preceding (...)
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  24. This Year's Nobel Prize (2022) in Physics for Entanglement and Quantum Information: the New Revolution in Quantum Mechanics and Science.Vasil Penchev - 2023 - Philosophy of Science eJournal (Elsevier: SSRN) 18 (33):1-68.
    The paper discusses this year’s Nobel Prize in physics for experiments of entanglement “establishing the violation of Bell inequalities and pioneering quantum information science” in a much wider, including philosophical context legitimizing by the authority of the Nobel Prize a new scientific area out of “classical” quantum mechanics relevant to Pauli’s “particle” paradigm of energy conservation and thus to the Standard model obeying it. One justifies the eventual future theory of quantum gravitation as belonging to the (...)
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  25.  12
    Beyond a world divided: human values in the brain-mind science of Roger Sperry.Erika Erdmann - 1991 - [New York, N.Y.]: Distributed in the U.S. by Random House. Edited by David Stover.
    For ages there has been a gap between the two cultures of the sciences and religions. According to Roger Sperry, science can now bridge the gap between the cold hard facts of the sciences and humanitarian and religious values. Sperry won the Nobel Prize in 1981 for his work on the differences between the left and right halves of the brain. For the past twenty years he has been campaigning for human consciousness and values to be investigated scientificlly. (...)
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  26.  36
    Rogera Sperry’ego teoria świadomości.Józef Bremer - 2017 - Philosophical Problems in Science 63:133-166.
    Roger W. Sperry received the Nobel Prize for Physiology in 1981 for his outstanding scientific achievements in connection with the study of people with severed brain commissures. Sperry linked the results of his research to philosophical considerations pertaining to the conscious mind of human beings and its place in the natural sciences. He was interested in the philosophical question of whether or not the severing of the cerebral hemispheres constituted a violation of the unity of consciousness. Sperry’s (...)
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  27.  48
    What Makes a Nobel Prize Innovator? Early Growth Experiences and Personality Traits.Linlin Zheng, Yenchun Jim Wu, Yuyi Li & Wenzhuo di YeLi - 2022 - Frontiers in Psychology 13.
    The original innovation talents and their achievements promote the development of natural science and are regarded as a symbol of the national comprehensive power. This study explores the process that causes original innovation talents’ personality, uses fuzzy-set qualitative comparative analysis, and explores the linkage between configurations made up of early growth experiences and personality. We took Nobel Prize winners as samples and discovered that high responsibility was inspired by high family democracy driving, high family size driving, high family (...)
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  28.  65
    (1 other version)Muller’s nobel prize research and peer review.Edward J. Calabrese - 2018 - Philosophy, Ethics and Humanities in Medicine 13 (1):1-6.
    This paper assesses possible reasons why Hermann J. Muller avoided peer-review of data that became the basis of his Nobel Prize award for producing gene mutations in male Drosophila by X-rays. Extensive correspondence between Muller and close associates and other materials were obtained from preserved papers to compliment extensive publications by and about Muller in the open literature. These were evaluated for potential historical insights that clarify why he avoided peer-review of his Nobel Prize findings. This (...)
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  29. The proliferation of prizes: Nobel complements and nobel surrogates in the reward system of science.Harriet Zuckerman - 1992 - Theoretical Medicine and Bioethics 13 (2).
    In the last two decades, prizes in the sciences have proliferated and, in particular, rich prizes with large honoraria. These developments raise several questions: Why have rich prizes proliferated? Have they greatly changed the reward system of science? What effects will such prizes have on scientists and on science? The proliferation of such prizes derives from marked limitations on the numbers and types of scientists eligible for Nobel prizes and consequent increases in the number of uncrowned laureate-equivalents. These would-be (...)
     
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  30. The Birth of Information in the Brain: Edgar Adrian and the Vacuum Tube.Justin Garson - 2015 - Science in Context 28 (1):31-52.
    As historian Henning Schmidgen notes, the scientific study of the nervous system would have been “unthinkable” without the industrialization of communication in the 1830s. Historians have investigated extensively the way nerve physiologists have borrowed concepts and tools from the field of communications, particularly regarding the nineteenth-century work of figures like Helmholtz and in the American Cold War Era. The following focuses specifically on the interwar research of the Cambridge physiologist Edgar Douglas Adrian, and on the technology that led to his (...)
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  31.  13
    Simply a matter of chemistry? The Nobel Prize for 1920.Diana Kormos Barkan - 1994 - Perspectives on Science 2 (4):357-395.
    When, how, and by whom scientific knowledge is recognized with highest honors is illustrated by this avowedly atypical episode involving the Nobel Prize awarded to Walther Nernst for 1920. Mine is not a postmortem “wie es eigentlich gewesen” evaluation of the cognitive legitimation of his 1905 third law of thermodynamics, of whether the debates surrounding his work were justified, or whether the prize was merited. Rather, it is an admittedly close reading of many new and some old (...)
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  32. February2019-2014GabrielVacariuThe UNBELIEVABLE similar ideas to my ideas (2002-2008).Gabriel Vacariu - 2019 - Dissertation,
    Some preliminary comments Introduction: The EDWs perspective in my article from 2005 and my book from 2008 -/- I. PHYSICS, COGNITIVE NEUROSCIENCE, PHILOSOPHY (‘REBORN DINOSAURS’ ) • (2016) Did Sean Carroll’s ideas (California Institute of Technology, USA) (within the wrong framework, the “universe”) plagiarize my ideas (2002-2010) (within the EDWs framework) on quantum mechanics, the relationship between Einstein relativity and quantum mechanics, life, the mind-brain problem, etc.? • (2016) The unbelievable similarities between Frank Wilczek’s ideas (Nobel Prize in (...)
     
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  33.  24
    On Emanuel Ringelblum's New Research Program for the History of Jewish Medicine: Introductory Remarks.Guy Finkelstein & Alexandre Métraux - 2010 - Science in Context 23 (4):571-580.
    When Emanuel Ringelblum was born on November 21, 1900, in Buczacz, the small, multilingual and multi-ethnic Galician town was to be found on the far northeastern part of the Austrian Empire. As a mail stamp on a Correspondenz-Karte or Karta korrespondencyja of 1890 shows, the place was officially spelled in accordance with its Polish orthography. However, it was called Butschtasch in German, Bichuch in Yiddish, and still differently in Ukranian. After World War I, it was for a short while part (...)
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  34.  12
    The influence of Genetics in Contemporary Thinking.Anne Fagot-Largeault, Shahid Rahman & Juan Manuel Torres (eds.) - 2007 - Springer.
    This volume reflects on the effects of recent discoveries in genetics on a broad range of scientific fields. In addition to neuroscience, evolutionary biology, anthropology and medicine, contributors analyze the effects of genetics on theories of health, law, epistemology and philosophy of biology. Social and moral concerns about the relationship between genetics, society and the individual also figure prominently. Genetic discoveries fuel central contemporary public policy debates concerning, for example, human cloning, equitable access to healthcare or the role of (...)
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  35.  35
    Ulf Lagerkvist: Erling Norrby : The periodic table and a missed Nobel Prize: World Scientific Publishing Co., Singapore/hackensack, NJ/london, 2012, xii + 122 pp, ISBN: 978-981-4295-95-6 , $22, £15.George B. Kauffman - 2014 - Foundations of Chemistry 16 (3):249-251.
    The “story behind the story” of the genesis of this book is an involved and fascinating one. In May the Sven and Dagmar Salén Foundation decided to give a grant to Ulf Lagerqvist to permit publication of his manuscript titled The Bewildered Nobel Committee by the World Scientific Publishing Company . This decision was based on a thorough review by Torbjörn Norin, Professor of Organic Chemistry at the Royal School of Technology in Stockholm and a member of the board (...)
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  36.  34
    Science by Nobel committee: decision making and norms of scientific practice in the early physics and chemistry prizes.Gustav Källstrand - 2022 - British Journal for the History of Science 55 (2):187-205.
    This paper examines the early years of decision making in the award of the Nobel Prize in physics and chemistry, and shows how the prize became a tool in the boundary work which upheld the social demarcations between scientists and inventors, as well as promoting a particular normative view of individual scientific achievement. The Nobel committees were charged with rewarding scientific achievements that benefited humankind: their interpretation of that criterion, however, turned in the first instance on (...)
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  37.  23
    The worm and the tumor: Reflections on Fibiger's Nobel prize.William C. Campbell - 1997 - Perspectives in Biology and Medicine 40 (4):498-504.
  38. Belief: An Essay.Jamie Iredell - 2011 - Continent 1 (4):279-285.
    continent. 1.4 (2011): 279—285. Concerning its Transitive Nature, the Conversion of Native Americans of Spanish Colonial California, Indoctrinated Catholicism, & the Creation There’s no direct archaeological evidence that Jesus ever existed. 1 I memorized the Act of Contrition. I don’t remember it now, except the beginning: Forgive me Father for I have sinned . . . This was in preparation for the Sacrament of Holy Reconciliation, where in a confessional I confessed my sins to Father Scott, who looked like Jesus, (...)
     
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  39.  59
    Nobel Rhetoric; or, Petrarch’s Pendulum.Philippe-Joseph Salazar - 2009 - Philosophy and Rhetoric 42 (4):pp. 373-400.
    In lieu of an abstract, here is a brief excerpt of the content:Nobel Rhetoric; or, Petrarch's PendulumPhilippe-Joseph SalazarVery many authors who have their roots in other countries work in Europe, because it is only here where you can be left alone and write, without being beaten to death. It is dangerous to be an author in big parts of Asia and Africa.1The ceremony of [Petrarch's] coronation was performed on the Capitol, by his friend and patron the supreme magistrate of (...)
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  40. Medicine and Physiology in Joseph Addison’s Aesthetics.Botond Csuka - 2025 - In Gergely Fórizs, Piroska Balogh, Katalin Bartha-Kovács & Botond Csuka (eds.), Ästhetische Kommunikation in Europa 1700–1850 / Aesthetic Communication in Europe 1700–1850. Berlin, Boston: De Gruyter. pp. 25-43.
    The aim of this paper is to situate Addison’s aesthetics within the diverse, transdisciplinary aesthetic communication of the early eighteenth century, through which the new anthropology of sensibility took shape. Like many of his contemporaries, Addison draws on the medico-physiological literature of his time. Aesthetic pleasure is explained as consisting in or being produced by neurophysiological processes described in terms of iatromechanism and animal spirit physiology. These processes, he argues, are beneficial to the health and well-being of the human (...)
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  41. Pneuma and the Pneumatist School of Medicine.Sean Coughlin & Orly Lewis - 2020 - In Sean Coughlin, David Leith & Orly Lewis (eds.), The Concept of Pneuma after Aristotle. Berlin: Edition Topoi. pp. 203-236.
    The Pneumatist school of medicine has the distinction of being the only medical school in antiquity named for a belief in a part of a human being. Unlike the Herophileans or the Asclepiadeans, their name does not pick out the founder of the school. Unlike the Dogmatists, Empiricists, or Methodists, their name does not pick out a specific approach to medicine. Instead, the name picks out a belief: the fact that pneuma is of paramount importance, both for explaining (...)
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  42.  15
    Pozytywizm, racjonalizm i... romantyzm Marii Skłodowskiej-Curie.Barbara Petelenz - 2015 - Zagadnienia Filozoficzne W Nauce 59:101-124.
    The International Year of Chemistry, intertwined with commemoration of the Nobel Prize in Chemistry awarded in 1911 to Marie Skłodowska-Curie, made me to ask about the philosophical background of this outstanding woman. The first factor which I could see was the positivism, launched by August Comte in France and developed a few decades later by his Polish followers. Another factor which seemed to me important was the interplay between the emotional and intellectual attitudes among the Poles in the (...)
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  43.  43
    The Microbiome Function in a Host Organism: A Medical Puzzle or an Essential Ecological Environment?Tamar Schneider - 2024 - Biological Theory 19 (1):44-55.
    The dual role of microbial communities as either beneficial/functional or harmful/pathogenic involves two issues concerning causality in physiology and medicine, etiology of disease, and the notion of function in biology. Causal explanation formulated by the germ theory of disease and the Koch postulates connects the existence of a specifically identified microbe to disease by the isolation and identification of a pathogen from an organism with the disease and the successful infection of a healthy individual. Similarly, microbiome research in (...)
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  44.  83
    Tensions and opportunities in convergence: Shifting concepts of disease in emerging molecular medicine[REVIEW]Marianne Boenink - 2009 - NanoEthics 3 (3):243-255.
    The convergence of biomedical sciences with nanotechnology as well as ICT has created a new wave of biomedical technologies, resulting in visions of a ‘molecular medicine’. Since novel technologies tend to shift concepts of disease and health, this paper investigates how the emerging field of molecular medicine may shift the meaning of ‘disease’ as well as the boundary between health and disease. It gives a brief overview of the development towards and the often very speculative visions of molecular (...)
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  45.  43
    Meanings of Sex Difference in the Middle Ages: Medicine, Science, and Culture.Joan Cadden - 1993 - Cambridge University Press.
    In describing and explaining the sexes, medicine and science participated in the delineation of what was "feminine" and what was "masculine" in the Middle Ages. Hildegard of Bingen and Albertus Magnus, among others, writing about gynecology, the human constitution, fetal development, or the naturalistic dimensions of divine Creation, became increasingly interested in issues surrounding reproduction and sexuality. Did women as well as men produce procreative seed? How did the physiology of the sexes influence their healthy states and their (...)
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  46.  19
    The Nobel Prize in Physics 2007: Giant Magnetoresistance. An idiosyncratic survey of spintronics from 1963 to the present: Peter Weinberger's contributions. [REVIEW]P. M. Levy - 2008 - Philosophical Magazine 88 (18-20):2603-2613.
  47.  54
    Seeing Patterns: Models, Visual Evidence and Pictorial Communication in the Work of Barbara McClintock. [REVIEW]Carla Keirns - 1999 - Journal of the History of Biology 32 (1):163 - 196.
    Barbara McClintock won the Nobel Prize in 1983 for her discovery of mobile genetic elements. Her Nobel work began in 1944, and by 1950 McClintock began presenting her work on "controlling elements." McClintock performed her studies through the use of controlled breeding experiments with known mutant stocks, and read the action of controlling elements (transposons) in visible patterns of pigment and starch distribution. She taught close colleagues to "read" the patterns in her maize kernels, "seeing" pigment and (...)
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    Margaret Pabst Battin, MFA, Ph. D. is Distinguished Professor of Philosophy and Adjunct Professor of Internal Medicine in the Division of Medical Ethics and Humanities at the University of Utah. The author of prize-winning short stories and recipient of the University of Utah's Distinguished Research Award, she has authored, edited, or coedited fifteen books, among them a study of philosophical. [REVIEW]Michael Boylan - 2008 - In International Public Health Policy & Ethics. Dordrecht. pp. 42--289.
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  49.  15
    Georg von Békésy, Nobel Laureate in Physiology, Experimental Physicist and Art Collector was Born 100 Years Ago.László Kovács - 2001 - Science & Education 10 (1-2):149-152.
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  50. Emergent Quasiparticles. Or How to Get a Rich Physics from a Sober Metaphysics.Alexandre Guay & Olivier Sartenaer - 2018 - In Melinda Fagan, Otávio Bueno & Ruey-Lin Chen (eds.), Individuation, Process, and Scientific Practices. New York, USA: Oxford University Press. pp. 214-235.
    Among the very architects of the recent re-emergence of emergentism in the physical sciences, Robert B. Laughlin certainly occupies a prominent place. Through a series of works beginning as early as his Nobel lecture in 1998, a lecture given after having been awarded, together with Störmer and Tsui, the Nobel prize in physics for its contribution in the elucidation of the fractional quantum Hall effect, Laughlin openly and relentlessly advocated a strongly anti-reductionistic view of physics – and, (...)
     
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