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  1.  16
    „Ordnung und Organisation“. Interview zur Historiographie der Biologie mit Hans-Jörg Rheinberger und Peter McLaughlin*.Mathias Grote, Anke te Heesen, Peter McLaughlin & Hans-Jörg Rheinberger - 2021 - Berichte Zur Wissenschaftsgeschichte 44 (3):267-280.
    Berichte zur Wissenschaftsgeschichte, EarlyView.
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  2.  45
    Cycles and circulation: a theme in the history of biology and medicine.Lucy van de Wiel, Mathias Grote, Peder Anker, Warwick Anderson, Ariane Dröscher, Hans-Jörg Rheinberger, Lynn K. Nyhart, Guido Giglioni, Maaike van der Lugt, Shigehisa Kuriyama, Christiane Groeben, Janet Browne, Staffan Müller-Wille & Nick Hopwood - 2021 - History and Philosophy of the Life Sciences 43 (3):1-39.
    We invite systematic consideration of the metaphors of cycles and circulation as a long-term theme in the history of the life and environmental sciences and medicine. Ubiquitous in ancient religious and philosophical traditions, especially in representing the seasons and the motions of celestial bodies, circles once symbolized perfection. Over the centuries cyclic images in western medicine, natural philosophy, natural history and eventually biology gained independence from cosmology and theology and came to depend less on strictly circular forms. As potent ‘canonical (...)
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  3. The molecular vista: current perspectives on molecules and life in the twentieth century.Mathias Grote, Lisa Onaga, Angela N. H. Creager, Soraya de Chadarevian, Daniel Liu, Gina Surita & Sarah E. Tracy - 2021 - History and Philosophy of the Life Sciences 43 (1):1-18.
    This essay considers how scholarly approaches to the development of molecular biology have too often narrowed the historical aperture to genes, overlooking the ways in which other objects and processes contributed to the molecularization of life. From structural and dynamic studies of biomolecules to cellular membranes and organelles to metabolism and nutrition, new work by historians, philosophers, and STS scholars of the life sciences has revitalized older issues, such as the relationship of life to matter, or of physicochemical inquiries to (...)
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  4.  19
    Petri dish versus Winogradsky column: a longue durée perspective on purity and diversity in microbiology, 1880s–1980s.Mathias Grote - 2017 - History and Philosophy of the Life Sciences 40 (1):11.
    Microbial diversity has become a leitmotiv of contemporary microbiology, as epitomized in the concept of the microbiome, with significant consequences for the classification of microbes. In this paper, I contrast microbiology’s current diversity ideal with its influential predecessor in the twentieth century, that of purity, as epitomized in Robert Koch’s bacteriological culture methods. Purity and diversity, the two polar opposites with regard to making sense of the microbial world, have been operationalized in microbiological practice by tools such as the “clean” (...)
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  5.  6
    Petri dish versus Winogradsky column: a longue durée perspective on purity and diversity in microbiology, 1880s–1980s.Mathias Grote - 2018 - History and Philosophy of the Life Sciences 40 (1):1-30.
    Microbial diversity has become a leitmotiv of contemporary microbiology, as epitomized in the concept of the microbiome, with significant consequences for the classification of microbes. In this paper, I contrast microbiology’s current diversity ideal with its influential predecessor in the twentieth century, that of purity, as epitomized in Robert Koch’s bacteriological culture methods. Purity and diversity, the two polar opposites with regard to making sense of the microbial world, have been operationalized in microbiological practice by tools such as the “clean” (...)
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  6.  33
    Surfaces of action: cells and membranes in electrochemistry and the life sciences.Mathias Grote - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):183-193.
    The term ‘cell’, in addition to designating fundamental units of life, has also been applied since the nineteenth century to technical apparatuses such as fuel and galvanic cells. This paper shows that such technologies, based on the electrical effects of chemical reactions taking place in containers, had a far-reaching impact on the concept of the biological cell. My argument revolves around the controversy over oxidative phosphorylation in bioenergetics between 1961 and 1977. In this scientific conflict, a two-level mingling of technological (...)
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  7.  15
    Surfaces of action: cells and membranes in electrochemistry and the life sciences.Mathias Grote - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):183-193.
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  8.  23
    Purple Matter, Membranes and 'Molecular Pumps' in Rhodopsin Research (1960s–1980s).Mathias Grote - 2013 - Journal of the History of Biology 46 (3):331-368.
    In the context of 1960s research on biological membranes, scientists stumbled upon a curiously coloured material substance, which became called the “purple membrane.” Interactions with the material as well as chemical analyses led to the conclusion that the microbial membrane contained a photoactive molecule similar to rhodopsin, the light receptor of animals’ retinae. Until 1975, the find led to the formation of novel objects in science, and subsequently to the development of a field in the molecular life sciences that comprised (...)
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  9.  3
    Wissenschaftsgeschichte als Handbuchwissenschaft.Mathias Grote - 2018 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 26 (1):91-101.
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  10.  6
    Bausteine zu einer Oral History der Wissenschaftsgeschichte Interview mit Dieter Hoffmann.Mathias Grote, Anke te Heesen & Dieter Hoffmann - 2023 - Berichte Zur Wissenschaftsgeschichte 46 (4):378-412.
    Wie kann man einen historischen Blick auf das eigene Fach werfen? Diese Frage ist nicht einfach zu beantworten – will man einerseits nicht in einer Nabelschau und Hagiographie enden, andererseits aber auch keinen umfassenden Entwurf einer zukünftigen Historiographie vorlegen. Die hier in loser Folge publizierten Interviews mit bekannten Protagonist:innen der Berliner Wissenschaftsgeschichte von ca. 1970–1990 in West und Ost rücken die Geschichte des Faches deshalb in einem bestimmten Milieu in den Fokus und versuchen, die Historiographie jenseits einer Institutionen- oder Theoriegeschichte (...)
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  11.  8
    Bausteine zu einer Oral History der Wissenschaftsgeschichte Wissenschaft als Arbeitsprozess. Interview mit Wolfgang Lefèvre.Mathias Grote, Anke te Heesen & Wolfgang Lefèvre - 2022 - Berichte Zur Wissenschaftsgeschichte 45 (1-2):265-280.
    Wie kann man einen historischen Blick auf das eigene Fach werfen? Diese Frage ist nicht einfach zu beantworten – will man einerseits nicht in einer Nabelschau und Hagiographie enden, andererseits aber auch keinen umfassenden Entwurf einer zukünftigen Historiographie vorlegen. Die hier als Bausteine zu einer Oral History der Wissenschaftsgeschichte in loser Folge publizierten Interviews mit bekannten Protagonisten der Berliner Wissenschaftsgeschichte von ca. 1970–1990 in West und Ost rücken die Geschichte des Faches deshalb in einem bestimmten Milieu in den Fokus und (...)
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  12.  8
    Das Fach der Stunde, reloaded.Mathias Grote & Anke te Heesen - 2018 - Berichte Zur Wissenschaftsgeschichte 41 (4):355-358.
    Subject of the Moment, Reloaded. The catalogue of Ludwig Darmstaedter's document collection, which contains sources as well as a categorization conspicuous of a history of knowledge avant la lettre, invites for a revisiting of the history of our discipline, thereby asking for its current role in academia and beyond. We argue that as historians of science or as historians of knowledge, our discipline disposes of the tools and topics necessary to respond to urgent epistemic and political problems.
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  13.  23
    Die „Kräfte des Organischen" Transformationen des Naturbildes in C.F. Kielmeyers Karlsschulrede.Mathias Grote - 2005 - Cultura 2 (2):7-25.
    The so-called.Karlsschulrede. (1793) of the German naturalist Carl Friedrich Kielmeyer can be considered as a keystone to the understanding of"Naturphilosophie" both in German idealism (Schelling) and the romantic period.Kielmeyer's work considers life as the result of specific forces in the organic realm and thereby searches to explain the harmony of organic existence anddevelopment. Taking into account Kant.s outlines for a lifescience in the "Kritik der Urteilskraft" (1790), Kielmeyer's notion of teleological processes in nature is sketched. The historical and epistemological relevance (...)
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  14.  21
    Die „Kräfte des Organischen“.Mathias Grote - 2005 - Cultura 2 (2):7-25.
    The so-called .Karlsschulrede. (1793) of the German naturalist Carl Friedrich Kielmeyer can be considered as a keystone to the understanding of"Naturphilosophie" both in German idealism (Schelling) and the romantic period.Kielmeyer's work considers life as the result of specific forces in the organic realm and thereby searches to explain the harmony of organic existence anddevelopment. Taking into account Kant.s outlines for a lifescience in the "Kritik der Urteilskraft" (1790), Kielmeyer's notion of teleological processes in nature is sketched. The historical and epistemological (...)
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  15.  12
    Introduction: Surface Histories.Mathias Grote & Max Stadler - 2015 - Science in Context 28 (3):311-315.
    The first section of this issue brings together four essays on “surfaces” – a subject matter which might seem conspicuous or, indeed, palpable enough. Just think of the sheets of paper, window panes, and haptic interfaces surrounding you: the world, evidently, is diffused with surfaces, membranes, and boundaries of all sorts. Some of these things have been salient, for obvious reasons in fields such as media studies, or implicit in notions such as “boundary object”: the retina, photographic plates, basilar membranes, (...)
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  16.  4
    Vintage PhysiologyVintage Physiology. Otto Warburg’s Laboratory Manuals and Instruments.Mathias Grote - 2013 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 21 (2):171-185.
    Laboratory manuals, notebooks and instrumentation from Otto Warburg’s Institute of Cell Physiology have been discovered at the Max Planck Institute of Biochemistry. Following Warburg’s death in 1970 one of his technicians was transferred from Berlin-Dahlem to the newly founded biochemical institute at Martinsried near Munich, and brought with him these resources, which epitomize the singular position of Warburg’s work style and institute in the 1950s and 1960s. Since the technician’s skills and apparently outmoded instrumentation like the Warburg apparatus were still (...)
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  17.  8
    Rezension: Biomedical Computing. Digitizing Life in the United States von Joseph C. November. Biology, Computing, and the History of Molecular Sequencing. From Proteins to DNA, 1945–2000 von Miguel García‐Sancho. [REVIEW]Mathias Grote - 2013 - Berichte Zur Wissenschaftsgeschichte 36 (2):200-202.
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