Results for 'Genetic circuit'

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  1.  12
    Noise in a small genetic circuit that undergoes bifurcation.Trent Toulouse, Ping Ao, Ilya Shmulevich & Stuart Kauffman - 2005 - Complexity 11 (1):45-51.
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  2.  8
    Modeling/Experimentation: The Synthetic Strategy in the Study of Genetic Circuits.Tarja Knuuttila & Andrea Loettgers - 2018 - In Isabelle Peschard & Bas C. Van Fraassen (eds.), The Experimental Side of Modeling. University of Minnesota Press. pp. 118-147.
  3. Information-Matter Bipolarity of the Human Organism and Its Fundamental Circuits: From Philosophy to Physics/Neurosciences-Based Modeling.Florin Gaiseanu - 2020 - Philosophy Study 10 (2):107-118.
    Starting from a philosophical perspective, which states that the living structures are actually a combination between matter and information, this article presents the results on an analysis of the bipolar information-matter structure of the human organism, distinguishing three fundamental circuits for its survival, which demonstrates and supports this statement, as a base for further development of the informational model of consciousness to a general informational model of the human organism. For this, it was examined the Informational System of the Human (...)
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  4. Artificial Intelligence Applications in Power Electronics-Equivalent Electric Circuit Modeling of Differential Structures in PCB with Genetic Algorithm.Jong Kang Park, Yong Ki Byun & Jong Tae Kim - 2006 - In O. Stock & M. Schaerf (eds.), Lecture Notes in Computer Science. Springer Verlag. pp. 907-913.
  5.  49
    How do shared circuits develop?Lindsay M. Oberman & Vilayanur S. Ramachandran - 2008 - Behavioral and Brain Sciences 31 (1):34-35.
    The target article discusses a model of how brain circuits mediate social behaviors such as imitation and mindreading. Hurley suggests potential mechanisms for development of shared circuits. We propose that empirical studies can be designed to differentiate the influence of genetic and learning-based factors on the development of shared circuits. We use the mirror neuron system as a model system.
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  6.  10
    Genetic approach to neuroethology.Martin Heisenberg - 1997 - Bioessays 19 (12):1065-1073.
    In neuroethology, the nervous system and behavior are analyzed in the context of the animal's natural habitat and evolutionary history. For the last 30 years the influence of genetics on neuroethology has steadily grown, particularly in Drosophila. Genetic variants reveal new properties of neurons; they help to dissect neuronal circuits and complex behavioral systems; genetics provides new methods to visualize certain brain structures and to assign behavioral functions to them; and, finally, genetic variants can be used to test (...)
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  7.  20
    Genetics, biology and multifactorial diseases.John Stewart - 2002 - Acta Biotheoretica 50 (4):323-329.
    The schematic concept of levels of causal interaction is applied to the relation between genetics and biology. The strength of classical formal genetics lies in its power to proceed directly from observations on an external phenotype, to inferences concerning the nature and properties of the fundamental genetic factors. Its weakness comes from the fact that by short-circuiting the causal chain leading from genotype to phenotype, it creates a divorce between genetics and biology. It is argued that in order to (...)
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  8.  75
    Social Cognitive Neuroscience of Empathy: Concepts, Circuits, and Genes.Henrik Walter - 2012 - Emotion Review 4 (1):9-17.
    This article reviews concepts of, as well as neurocognitive and genetic studies on, empathy. Whereas cognitive empathy can be equated with affective theory of mind, that is, with mentalizing the emotions of others, affective empathy is about sharing emotions with others. The neural circuits underlying different forms of empathy do overlap but also involve rather specific brain areas for cognitive (ventromedial prefrontal cortex) and affective (anterior insula, midcingulate cortex, and possibly inferior frontal gyrus) empathy. Furthermore, behavioral and imaging (...) studies provide evidence for a genetic basis for empathy, indicating a possible role for oxytocin and dopamine as well as for a genetic risk variant for schizophrenia near the gene ZNF804A. (shrink)
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  9.  6
    Managing fuels and fluids: Network integration of osmoregulatory and metabolic hormonal circuits in the polymodal control of homeostasis in insects.Takashi Koyama, Danial Wasim Rana & Kenneth Veland Halberg - 2023 - Bioessays 45 (9):2300011.
    Osmoregulation in insects is an essential process whereby changes in hemolymph osmotic pressure induce the release of diuretic or antidiuretic hormones to recruit individual osmoregulatory responses in a manner that optimizes overall homeostasis. However, the mechanisms by which different osmoregulatory circuits interact with other homeostatic networks to implement the correct homeostatic program remain largely unexplored. Surprisingly, recent advances in insect genetics have revealed several important metabolic functions are regulated by classic osmoregulatory pathways, suggesting that internal cues related to osmotic and (...)
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  10.  10
    Neural and Genetic Bases for Human Ability Traits.Camila Bonin Pinto, Jannis Bielefeld, Rami Jabakhanji, Diane Reckziegel, James W. Griffith & A. Vania Apkarian - 2020 - Frontiers in Human Neuroscience 14:609170.
    The judgement of human ability is ubiquitous, from school admissions to job performance reviews. The exact make-up of ability traits, however, is often narrowly defined and lacks a comprehensive basis. We attempt to simplify the spectrum of human ability, similar to how five personality traits are widely believed to describe most personalities. Finding such a basis for human ability would be invaluable since neuropsychiatric disease diagnoses and symptom severity are commonly related to such differences in performance. Here, we identified four (...)
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  11.  82
    Comment on Walter’s “Social Cognitive Neuroscience of Empathy: Concepts, Circuits, and Genes”.Arthur M. Jacobs - 2012 - Emotion Review 4 (1):20-21.
    In his review, Walter (2012) links conceptual perspectives on empathy with crucial results of neurocognitive and genetic studies and presents a descriptive neurocognitive model that identifies neuronal key structures and links them with both cognitive and affective empathy via a high and a low road. After discussion of this model, the remainder of this comment deals more generally with the possibilities and limitations of current neurocognitive models, considering ways to develop process models allowing specific quantitative predictions.
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  12.  9
    The importance of deviation amplifying circuits for the understanding of the course of evolution.Henryk Szarski - 1971 - Acta Biotheoretica 20 (3-4):158-170.
    The importance of deviation-amplifying processes for the emergence of major evolutionary novelties is discussed by exemplifying the evolution of birds and the term ‘chain evolution’ is proposed.It is suggested that the importance of deviation-amplifying networks for the evolution of major systematic groups indicates that the changes leading to the origin of these groups progressed within a single genetic pool. The probability of polyphyletic origin of such taxonomic units as Tetrapoda, or Mammalia is regarded as extremely low.The diversity of the (...)
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  13.  5
    Frontal Subcortical Circuits.Subcortical Circuits - 2001 - In S. Salloway, P. Malloy & J. Duffy (eds.), The Frontal Lobes and Neuropsychiatric Illness. American Psychiatric Press. pp. 15.
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  14. Donaldson v. O'Connor.Circuit Judges - 2006 - In Stephen A. Green & Sidney Bloch (eds.), An Anthology of Psychiatric Ethics. Oxford University Press. pp. 210.
     
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  15. It is not entrapment for an undercover officer to tell the defendant that making pcp is as “easy as baking a cake”.Circuit Judge Hatchett - forthcoming - Criminal Justice Ethics.
     
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  16.  23
    Flexibility is not always adaptive: Affective flexibility and inflexibility predict rumination use in everyday life.Jessica J. Genet, Ashley M. Malooly & Matthias Siemer - 2013 - Cognition and Emotion 27 (4):685-695.
  17.  17
    Flexible control in processing affective and non-affective material predicts individual differences in trait resilience.Jessica J. Genet & Matthias Siemer - 2011 - Cognition and Emotion 25 (2):380-388.
  18.  5
    Richard E. Leakey, Roger Lewin, Ceux du lac Turkana. l’humanité et ses origins. Trad. de l’anglais par Victor Paul. Paris, Seghers, 1980. 14 × 20, 256 p., 2 cartes (« Mémoire vive »). [REVIEW] E. Genet-Varcin - 1981 - Revue de Synthèse 102 (103-104):457-459.
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  19. Intersubjetividad y riesgo.Mauricio Genet Guzmán Chávez - 2022 - In Olivia Kindl, Danièle Dehouve & Elizabeth Araiza Hernández (eds.), El mal: concepciones y tratamiento social. San Luis Potosí, S.L.P.: El Colegio de San Luis.
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  20. The object in the mirror of genetic transcendentalism: Lacan’s objet petit a between visibility and invisibility. [REVIEW]Adrian Johnston - 2013 - Continental Philosophy Review 46 (2):251-269.
    One of the more superficially perplexing features of Lacan’s notion of objet petit a is the fact that he simultaneously characterizes it as both non-specularizable (i.e., incapable of being captured in spatio-temporal representations) and specular (i.e., incarnated in visible avatars). This assignment of the apparently contradictory attributes of visibility and invisibility to object a is a reflection of this object’s strange position at the intersection of transcendental and empirical dimensions. Indeed, this object, which Lacan holds up as his central psychoanalytic (...)
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  21.  6
    Conocimiento, ambiente y poder: perspectivas desde la ecología política: segundo libro colectivo de la Red de Estudios sobre Sociedad y Medio Ambiente (RESMA).Mauricio Genet Guzmán, Leonardo Tyrtania & Claudio Garibay Orozco (eds.) - 2018 - Morelia, Michoacán, México: Centro de Investigaciones en Geografía Ambiental.
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  22. Ian Holliday.Genetic Engineering & A. Towards - 2002 - In Julia Lai Po-Wah Tao (ed.), Cross-Cultural Perspectives on the (Im) Possibility of Global Bioethics. Kluwer Academic.
     
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  23. Louis siminovitch.Genetic Manipulation - 1978 - In John E. Thomas (ed.), Matters of Life and Death: Crises in Bio-Medical Ethics. S. Stevens. pp. 156.
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  24.  29
    A few comments on electrostatic interactions in cell physiology.Stéphane Genet, Robert Costalat & Jacques Burger - 2000 - Acta Biotheoretica 48 (3-4):273-287.
    The role of fixed charges present at the surface of biological membranes is usually described by the Gouy-Chapman-Grahame theory of the electric double-layer where the Grahame equation is applied independently on each side of the membrane and where the capacitive charges are disregarded. In this article, we generalize the Gouy-Chapman-Grahame theory by taking into account both intrinsic charges and capacitive charges, in the density value of the membrane surface charges. In the first part, we show that capacitive charges couple electrostatic (...)
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  25.  4
    Genèse et lignes directrices de recherche sur l'Administration de l'Eglise.Jacques Genet - 1968 - Res Publica 10 (1):51-60.
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  26.  47
    The Epic of Evolution: A Course Developmental Project.Russell Merle Genet - 1998 - Zygon 33 (4):635-644.
    The Epic of Evolution is a course taught at Northern Arizona University. It engages the task of formulating a new epic myth that is based on the physical, natural, social, and cultural sciences. It aims to serve the need of providing meaning for human living in the vast and complex universe that the sciences now depict for us. It is an interdisciplinary effort in an academic setting that is often divided by specializations; it focuses on values in a climate of (...)
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  27.  22
    The case against sex selection.Genetics Alert Human - 2005 - Human Reproduction and Genetic Ethics 11 (1):3.
  28. John M. Broughton.Genetic Metaphysics - 1980 - In R. W. Rieber (ed.), Body and Mind: Past, Present, and Future. Academic Press. pp. 177.
     
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  29.  35
    Making Babies: Reproductive Decisions and Genetic Technologies.Human Genetics Commission - 2006 - Jahrbuch für Wissenschaft Und Ethik 11 (1).
  30.  11
    Human Genetics Commission calls for tougher rules on use and storage of genetic data.Human Genetics Commission - 2003 - Human Reproduction and Genetic Ethics 9 (1):3.
  31.  17
    タグ付遺伝子型を用いたネットワーク構造の進化的学習と最適化.伊庭 斉志 安藤 晋 - 2003 - Transactions of the Japanese Society for Artificial Intelligence 18:305-315.
    Evolutionary computation has been applied to numerous design tasks, including design of electric circuits, neural networks, and genetic circuits. Though it is a very effective solution for optimizing network structures, genetic algorithm faces many difficulties, often referred to as the permutation problems, when both topologies and the weights of the network are the target of optimization. We propose a new crossover method used in conjunction with a genotype with information tags. The information tags allow GA to recognize and (...)
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  32. A photographic miss test method.Optoelectronic Relays As Decoders, Minibar Switch, A. New, Smaller Crossbar Switch, Shunting Type Magnetic Circuit, Relay Industry Savings Resulting From Polarized & Bistable Crystal Can Relay Header Standardization - 1968 - In Peter Koestenbaum (ed.), Proceedings. [San Jose? Calif.,: [San Jose? Calif..
     
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  33.  34
    An Interview with Jean Genet.Edward de Grazia & Jean Genet - 1993 - Cardozo Studies in Law and Literature 5 (2):307-324.
  34.  7
    You Say Social Agenda, I Say My Job: Navigating Moral Ambiguities by Frontline Workers in a Social Enterprise.Rose Bote, Tao Wang & Corine Genet - forthcoming - Journal of Business Ethics:1-17.
    Building on the emerging literature on the ethics of social enterprises (SEs), this paper advances the underexplored role of frontline workers (FLWs) as embedded agents at the interface between communities and SEs. Specifically, we uncover the subjectivity of FLWs as they navigate moral ambiguities while performing their professional roles, dealing with rules and regulations within the organizational hierarchy and living as members of local communities. Based on an inductive case study of a microfinance organization in Cameroon, we find that FLWs (...)
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  35. Speech/immediacy of present experience infinite 154, 156, 171.Michel Foucault, Sigmund Freud, Jean Genet & Andre Gide - 2001 - In Gert Biesta & Denise Egéa-Kuehne (eds.), Derrida & Education. Routledge. pp. 246.
     
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  36.  11
    Middle East VoicesUn Captif Amoureux"Quatre Heures a Chatila.".Laura R. Oswald, Jean Genet, Barbara Bray & Alfred Dichy - 1991 - Diacritics 21 (1):46.
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  37.  16
    Nanotechnologies and Green Knowledge Creation: Paradox or Enhancer of Sustainable Solutions?Caroline Gauthier & Corine Genet - 2014 - Journal of Business Ethics 124 (4):571-583.
    By exploring whether nanotechnologies have the potential to generate green innovations, we consider the paradox between the negative and positive side-effects that could come with the development of nanotechnologies. Starting from the conceptual framework of green product innovation, the potential green innovation activity of more than 14,000 firms of the nanotech sector is investigated. Using a query-search method, their patenting activity is explored. Results first show that there is an increasing trend toward the creation of fundamental green knowledge by firms (...)
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  38.  15
    The Double-Edged Helix: Social Implications of Genetics in a Diverse Society.Joseph S. Alper, Catherine Ard, Adrienne Asch, Peter Conrad, Jon Beckwith, American Cancer Society Research Professor of Microbiology and Molecular Genetics Jon Beckwith, Harry Coplan Professor of Social Sciences Peter Conrad & Lisa N. Geller - 2002
    The rapidly changing field of genetics affects society through advances in health-care and through implications of genetic research. This study addresses the impacts of new genetic discoveries and technologies on different segments of today's society. The book begins with a chapter on genetic complexity, and subsequent chapters discuss moral and ethical questions arising from today's genetics from the perspectives of health care professionals, the media, the general public, special interest groups and commercial interests.
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  39.  3
    Genetics and the Law.Aubrey Milunsky, George J. Annas, National Genetics Foundation & American Society of Law and Medicine - 2012 - Springer.
    Society has historically not taken a benign view of genetic disease. The laws permitting sterilization of the mentally re tarded~ and those proscribing consanguineous marriages are but two examples. Indeed as far back as the 5th-10th centuries, B.C.E., consanguineous unions were outlawed (Leviticus XVIII, 6). Case law has traditionally tended toward the conservative. It is reactive rather than directive, exerting its influence only after an individual or group has sustained injury and brought suit. In contrast, state legislatures have not (...)
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  40.  13
    SAREF4health: Towards IoT standard-based ontology-driven cardiac e-health systems.João Moreira, Luís Ferreira Pires, Marten van Sinderen, Laura Daniele & Marc Girod-Genet - 2020 - Applied ontology 15 (3):385-410.
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  41.  89
    Identification of common variants influencing risk of the tauopathy progressive supranuclear palsy.Günter U. Höglinger, Nadine M. Melhem, Dennis W. Dickson, Patrick M. A. Sleiman, Li-San Wang, Lambertus Klei, Rosa Rademakers, Rohan de Silva, Irene Litvan, David E. Riley, John C. van Swieten, Peter Heutink, Zbigniew K. Wszolek, Ryan J. Uitti, Jana Vandrovcova, Howard I. Hurtig, Rachel G. Gross, Walter Maetzler, Stefano Goldwurm, Eduardo Tolosa, Barbara Borroni, Pau Pastor, P. S. P. Genetics Study Group, Laura B. Cantwell, Mi Ryung Han, Allissa Dillman, Marcel P. van der Brug, J. Raphael Gibbs, Mark R. Cookson, Dena G. Hernandez, Andrew B. Singleton, Matthew J. Farrer, Chang-En Yu, Lawrence I. Golbe, Tamas Revesz, John Hardy, Andrew J. Lees, Bernie Devlin, Hakon Hakonarson, Ulrich Müller & Gerard D. Schellenberg - unknown
    Progressive supranuclear palsy is a movement disorder with prominent tau neuropathology. Brain diseases with abnormal tau deposits are called tauopathies, the most common of which is Alzheimer's disease. Environmental causes of tauopathies include repetitive head trauma associated with some sports. To identify common genetic variation contributing to risk for tauopathies, we carried out a genome-wide association study of 1,114 individuals with PSP and 3,247 controls followed by a second stage in which we genotyped 1,051 cases and 3,560 controls for (...)
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  42.  37
    Les voies de la creation theatrale.J. F., J. Jacquot, D. Bablet, B. Brecht, M. Frisch, P. Weiss, A. Cesaire, J. Cabral, Melo Neto, J. Genet, E. Schwarz, John Reed, A. Miller, E. O'Neill, H. Pinter, S. Mrozek, J. Arden & S. Beckett - 1977 - Substance 6 (18/19):226.
  43.  6
    Clinical ethical practice and associated factors in healthcare facilities in Ethiopia: a cross-sectional study.Nebiyou Tafesse, Assegid Samuel, Abiyu Geta, Fantanesh Desalegn, Lidia Gebru, Tezera Tadele, Ewnetu Genet, Mulugeta Abate & Kemal Jemal - 2022 - BMC Medical Ethics 23 (1):1-12.
    BackgroundClinical ethical practice (CEP) is required for healthcare workers (HCWs) to improve health-care delivery. However, there are gaps between accepted ethical standards and CEP in Ethiopia. There have been limited studies conducted on CEP in the country. Therefore, this study aimed to determine the magnitude and associated factors of CEP among healthcare workers in healthcare facilities in Ethiopia.MethodFrom February to April 2021, a mixed-method study was conducted in 24 health facilities, combining quantitative and qualitative methods. Quantitative (survey questionnaire) and qualitative (...)
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  44.  29
    Machine metaphors and ethics in synthetic biology.Joachim Boldt - 2018 - Life Sciences, Society and Policy 14 (1):1-13.
    The extent to which machine metaphors are used in synthetic biology is striking. These metaphors contain a specific perspective on organisms as well as on scientific and technological progress. Expressions such as “genetically engineered machine”, “genetic circuit”, and “platform organism”, taken from the realms of electronic engineering, car manufacturing, and information technology, highlight specific aspects of the functioning of living beings while at the same time hiding others, such as evolutionary change and interdependencies in ecosystems. Since these latter (...)
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  45. Biological Control Variously Materialized: Modeling, Experimentation and Exploration in Multiple Media.Tarja Knuuttila & Andrea Loettgers - 2021 - Perspectives on Science 29 (4):468-492.
    This paper examines two parallel discussions of scientific modeling which have invoked experimentation in addressing the role of models in scientific inquiry. One side discusses the experimental character of models, whereas the other focuses on their exploratory uses. Although both relate modeling to experimentation, they do so differently. The former has considered the similarities and differences between models and experiments, addressing, in particular, the epistemic value of materiality. By contrast, the focus on exploratory modeling has highlighted the various kinds of (...)
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  46. 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 novel and interesting (...)
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  47.  21
    Numbers on the edges: A simplified and scalable method for quantifying the Gene Regulation Function.Raul Fernandez-Lopez, Irene del Campo, Raúl Ruiz, Val Lanza, Luis Vielva & Fernando de la Cruz - 2010 - Bioessays 32 (4):346-355.
    The gene regulation function (GRF) provides an operational description of a promoter behavior as a function of the concentration of one of its transcriptional regulators. Behind this apparently trivial definition lies a central concept in biological control: the GRF provides the input/output relationship of each edge in a transcriptional network, independently from the molecular interactions involved. Here we discuss how existing methods allow direct measurement of the GRF, and how several trade‐offs between scalability and accuracy have hindered its application to (...)
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  48.  12
    The formation of sense organs in Drosophila: A logical approach.Alain Ghysen & René Thomas - 2003 - Bioessays 25 (8):802-807.
    The genetic analysis of development has revealed the importance of small sets of interacting genes in most morphogenetic processes. The results of gene interactions have so far been examined intuitively. This approach is largely sufficient when one deals with simple interactions, a feedback circuit for example. As more components become involved, however, it is difficult to make sure that the intuitive approach gives a comprehensive view of the behaviour of the system. In this paper, we illustrate the use (...)
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  49.  9
    Modelling gene regulation: (De)compositional and template-based strategies.Tarja Knuuttila & Vivette García Deister - 2019 - Studies in History and Philosophy of Science Part A 77:101-111.
    Although the interdisciplinary nature of contemporary biological sciences has been addressed by philosophers, historians, and sociologists of science, the different ways in which engineering concepts and methods have been applied in biology have been somewhat neglected. We examine - using the mechanistic philosophy of science as an analytic springboard - the transfer of network methods from engineering to biology through the cases of two biology laboratories operating at the California Institute of Technology. The two laboratories study gene regulatory networks, but (...)
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  50.  66
    “Molecular gene”: Interpretation in the Right Context. [REVIEW]Degeng Wang - 2005 - Biology and Philosophy 20 (2-3):453-464.
    How to interpret the “molecular gene” concept is discussed in this paper. I argue that the architecture of biological systems is hierarchical and multi-layered, exhibiting striking similarities to that of modern computers. Multiple layers exist between the genotype and system level property, the phenotype. This architectural complexity gives rise to the intrinsic complexity of the genotype-phenotype relationships. The notion of a gene being for a phenotypic trait or traits lacks adequate consideration of this complexity and has limitations in explaining the (...)
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