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  1. The Remembered Present; A Biological Theory of Consciousness.George Berger - 1994 - Noûs 28 (2):272-276.
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  • Neuroscience and the multiple realization of cognitive functions.Carrie Figdor - 2010 - Philosophy of Science 77 (3):419-456.
    Many empirically minded philosophers have used neuroscientific data to argue against the multiple realization of cognitive functions in existing biological organisms. I argue that neuroscientists themselves have proposed a biologically based concept of multiple realization as an alternative to interpreting empirical findings in terms of one‐to‐one structure‐function mappings. I introduce this concept and its associated research framework and also how some of the main neuroscience‐based arguments against multiple realization go wrong. *Received October 2009; revised December 2009. †To contact the author, (...)
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  • Degeneracy and cognitive anatomy.Cathy J. Price & Karl J. Friston - 2002 - Trends in Cognitive Sciences 6 (10):416-421.
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  • Degeneracy at Multiple Levels of Complexity.Paul H. Mason - 2010 - Biological Theory 5 (3):277-288.
    Degeneracy is a poorly understood process, essential to natural selection. In the 18th and 19th centuries, the concept of degeneracy was commandeered by the colonial imagination. A rigid understanding of species, race, and culture grew to dominate the normative thinking that persisted well into the burgeoning new industrial age. A 20th-century reconfiguration of the concept by George Gamow highlighted a form of intraorganismic variation that is still underexplored. Degeneracy exists in a population of variants where structurally different components perform a (...)
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  • Selection, tinkering, and emergence in complex networks.Ricard V. Solé, Ramon Ferrer-Cancho, Jose M. Montoya & Sergi Valverde - 2002 - Complexity 8 (1):20-33.
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  • Modeling the complexity of genetic networks: Understanding multigenic and pleiotropic regulation.Roland Somogyi & Carol Ann Sniegoski - 1996 - Complexity 1 (6):45-63.
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  • Degeneration under the Microscope at the fin se siècle.Christopher Lawrence - 2009 - Annals of Science 66 (4):455-471.
    Summary Theories of familial, racial, and national degeneration in the late nineteenth and early twentieth centuries have been explored by historians in the context of social and moral pathology. At the same time nerve degeneration was studied in the post mortem room and in the laboratory but links to the broader ideology of degeneration have not been investigated by scholars. This paper joins these domains by examining the concept of Wallerian degeneration. It argues that various discourses—including those of the laboratory (...)
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  • The impact of genomics on mammalian neurobiology.Graham E. Budd - 1999 - Bioessays 21 (2):157-163.
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  • Ga 30322, usa.William Bechtel, Marc H. Bornstein, Stevan Hamad, Terrence W. Deacon, Angela D. Friederici, Alexandra Maryanski, Alberto Piazza, Duane M. Rumbaugh, E. Sue Savage-Rumbaugh & Eckart Scheerer - 1996 - In B. Velichkovsky & Duane M. Rumbaugh (eds.), Communicating Meaning: The Evolution and Development of Language. Hillsdale, NJ: Lawrence Erlbaum Associates.
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  • Systems biology reveals biology of systems.Marta Bertolaso, Alessandro Giuliani & Laura De Gara - 2011 - Complexity 16 (6):10-16.
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  • Synthetic Neural Modeling and Brain-Based Devices.Gerald M. Edelman - 2006 - Biological Theory 1 (1):8-9.
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  • Is gene duplication a viable explanation for the origination of biological information and complexity?Joseph Esfandiar Hannon Bozorgmehr - 2011 - Complexity 16 (6):17-31.
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  • Complex systems and human movement.Gottfried Mayer-Kress, Yeou-Teh Liu & Karl M. Newell - 2006 - Complexity 12 (2):40-51.
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  • Problems and paradigns. Evolution of mitochondrial genomes and the genetic code.C. G. Kurland - 1992 - Bioessays 14 (10):709-714.
    Mitochondrial genomes are clearly marked by a strong tendency towards reductive evolution. This tendency has been facilitated by the transfer of most of the essential genes for mitochondrial propogation and function to the nuclear genome. The most extreme examples of genomic simplification are seen in animal mitochondria, where there also are the greatest tendencies to codon reassignment. The reassignment of codons to amino acids different from those designated in the so called universal code is seen in part as an expression (...)
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  • Quantitative aspects of T-cell recognition: from within the antigen-presenting cell to within the T cell.Pierre Bongrand & Bernard Malissen - 1998 - Bioessays 20 (5):412-422.
    T lymphocytes circulate continually throughout the peripheral lymphoid organs, where they scrutinize the surface of cells to detect the presence of nonself protein fragments. During the last years, many facets of T-cell function have been unravelled. After being bound by major histocompatibility complex (MHC) molecules, peptides derived from nonself as well as from self proteins are delivered to the cell surface. A few copies of a nonself peptide “presented” at the cell surface in the context of an MHC molecule can (...)
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  • (16 other versions)Complexity at large.Carlos Gershenson - 2011 - Complexity 16 (6):1-4.
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  • (5 other versions)News items.Carlos Gershenson - 2010 - Complexity:NA-NA.
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  • (5 other versions)News items.Carlos Gershenson - 2011 - Complexity 16 (5):1-6.
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  • On the opportunistic nature of transcription and replication initiation in the metazoan genome.Joana Sequeira-Mendes & María Gómez - 2012 - Bioessays 34 (2):119-125.
    Cellular identity and its response to external or internal signalling variations are encoded in a cell's genome as regulatory information. The genomic regions that specify this type of information are highly variable and degenerated in their sequence determinants, as it is becoming increasingly evident through the application of genome‐scale methods to study gene expression. Here, we speculate that the same scenario applies to the regulatory regions controlling where DNA replication starts in the metazoan genome. We propose that replication origins cannot (...)
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  • Personalised Medicine: A Critique on the Future of Health Care. [REVIEW]Jacqueline Savard - 2013 - Journal of Bioethical Inquiry 10 (2):197-203.
    In recent years we have seen the emergence of “personalised medicine.” This development can be seen as the logical product of reductionism in medical science in which disease is increasingly understood in molecular terms. Personalised medicine has flourished as a consequence of the application of neoliberal principles to health care, whereby a commercial and social need for personalised medicine has been created. More specifically, personalised medicine benefits from the ongoing commercialisation of the body and of genetic knowledge, the idea that (...)
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