Results for 'epigenetic memory'

977 found
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  1.  13
    Can you remember silence? Epigenetic memory and reversibility as a site of intervention.Stephanie Lloyd, Pierre-Eric Lutz & Chani Bonventre - 2023 - Bioessays 45 (7):2300019.
    Just over 20 years ago, molecular biologists Leonie Ringrose and Renato Paro published an article with a provocative title, “Remembering Silence”, in BioEssays. The article focused on how epigenetic elements could return to their silent state, operationally defined as their epigenetic status before their modulation by experimental or environmental factors. Though Ringrose and Paro's article was on fruit flies and factors affecting embryological growth, the article asked a question of considerable importance to rapidly expanding research in neuroepigenetics on (...)
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  2.  20
    How Communication Between Nucleosomes Enables Spreading and Epigenetic Memory of Histone Modifications.Fabian Erdel - 2017 - Bioessays 39 (12):1700053.
    Nucleosomes “talk” to each other about their modification state to form extended domains of modified histones independently of the underlying DNA sequence. At the same time, DNA elements promote modification of nucleosomes in their vicinity. How do these site-specific and histone-based activities act together to regulate spreading of histone modifications along the genome? How do they enable epigenetic memory to preserve cell identity? Many models for the dynamics of repressive histone modifications emphasize the role of strong positive feedback (...)
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  3.  19
    Dosage Sensing, Threshold Responses, and Epigenetic Memory: A Systems Biology Perspective on Random X‐Chromosome Inactivation.Verena Mutzel & Edda G. Schulz - 2020 - Bioessays 42 (4):1900163.
    X‐chromosome inactivation ensures dosage compensation between the sexes in mammals by randomly choosing one out of the two X chromosomes in females for inactivation. This process imposes a plethora of questions: How do cells count their X chromosome number and ensure that exactly one stays active? How do they randomly choose one of two identical X chromosomes for inactivation? And how do they stably maintain this state of monoallelic expression? Here, different regulatory concepts and their plausibility are evaluated in the (...)
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  4.  21
    Epigenetic regulation of replication origin assembly: A role for histone H1 and chromatin remodeling factors.Lucia Falbo & Vincenzo Costanzo - 2021 - Bioessays 43 (1):2000181.
    During early embryonic development in several metazoans, accurate DNA replication is ensured by high number of replication origins. This guarantees rapid genome duplication coordinated with fast cell divisions. In Xenopus laevis embryos this program switches to one with a lower number of origins at a developmental stage known as mid‐blastula transition (MBT) when cell cycle length increases and gene transcription starts. Consistent with this regulation, somatic nuclei replicate poorly when transferred to eggs, suggesting the existence of an epigenetic (...) suppressing replication assembly origins at all available sites. Recently, it was shown that histone H1 imposes a non‐permissive chromatin configuration preventing replication origin assembly on somatic nuclei. This somatic state can be erased by SSRP1, a subunit of the FACT complex. Here, we further develop the hypothesis that this novel form of epigenetic memory might impact on different areas of vertebrate biology going from nuclear reprogramming to cancer development. (shrink)
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  5.  22
    Epigenetic editing: Dissecting chromatin function in context.Cristina Policarpi, Juliette Dabin & Jamie A. Hackett - 2021 - Bioessays 43 (5):2000316.
    How epigenetic mechanisms regulate genome output and response to stimuli is a fundamental question in development and disease. Past decades have made tremendous progress in deciphering the regulatory relationships involved by correlating aggregated (epi)genomics profiles with global perturbations. However, the recent development of epigenetic editing technologies now enables researchers to move beyond inferred conclusions, towards explicit causal reasoning, through 'programing’ precise chromatin perturbations in single cells. Here, we first discuss the major unresolved questions in the epigenetics field that (...)
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  6.  60
    How Polycomb‐Mediated Cell Memory Deals With a Changing Environment.Federica Marasca, Beatrice Bodega & Valerio Orlando - 2018 - Bioessays 40 (4):1700137.
    Cells and tissues are continuously exposed to a changing microenvironment, hence the necessity of a flexible modulation of gene expression that in complex organism have been achieved through specialized chromatin mechanisms. Chromatin-based cell memory enables cells to maintain their identity by fixing lineage specific transcriptional programs, ensuring their faithful transmission through cell division; in particular PcG-based memory system evolved to maintain the silenced state of developmental and cell cycle genes. In evolution the complexity of this system have increased, (...)
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  7.  2
    Epigenetics in Biological Communication.Guenther Witzany (ed.) - 2024 - Cham: SpringerNature.
    Every cell, tissue, organ and organism is competent to use signs to exchange information reaching common coordinations and organisations of both single cell and group behavior. These sign-mediated interactions we term biological communication. The regulatory system that works in development, morphology, cell fate and identity, physiology, genetic instructions, immunity, memory/learning, physical and mental disease depends on epigenetic marks. The communication of cells, persistent viruses and their defectives such as mobile genetic elements and RNA networks ensures both the transport (...)
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  8.  33
    DNA Methylation in Embryo Development: Epigenetic Impact of ART.Sebastian Canovas, Pablo J. Ross, Gavin Kelsey & Pilar Coy - 2017 - Bioessays 39 (11):1700106.
    DNA methylation can be considered a component of epigenetic memory with a critical role during embryo development, and which undergoes dramatic reprogramming after fertilization. Though it has been a focus of research for many years, the reprogramming mechanism is still not fully understood. Recent results suggest that absence of maintenance at DNA replication is a major factor, and that there is an unexpected role for TET3-mediated oxidation of 5mC to 5hmC in guarding against de novo methylation. Base-resolution and (...)
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  9.  19
    Is Metabolic Epigenetics as Ancient as Life Itself? Of Memory that Might Pre‐Date RNA and DNA.Andrew Moore - 2020 - Bioessays 42 (1):1900239.
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  10.  35
    Assimiliating an Associative Trait: from Eco-Physiology to Epigenetics.Andres Kurismaa - 2018 - Biosemiotics 11 (2):199-229.
    The possible evolutionary significance of epigenetic memory and codes is a key problem for extended evolutionary synthesis and biosemiotics. In this paper, some less known original works are reviewed which highlight theoretical parallels between current evolutionary epigenetics, on the one hand, and its predecessors in the eco-physiology of higher nervous activity, on the other. Recently, these areas have begun to converge, with first evidence now indicating the possibility of transgenerational epigenetic inheritance of conditional associations in the mammalian (...)
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  11.  31
    Epigenetic‐induced alterations in sex‐ratios in response to climate change: An epigenetic trap?Sofia Consuegra & Carlos M. Rodríguez López - 2016 - Bioessays 38 (10):950-958.
    We hypothesize that under the predicted scenario of climate change epigenetically mediated environmental sex determination could become an epigenetic trap. Epigenetically regulated environmental sex determination is a mechanism by which species can modulate their breeding strategies to accommodate environmental change. Growing evidence suggests that epigenetic mechanisms may play a key role in phenotypic plasticity and in the rapid adaptation of species to environmental change, through the capacity of organisms to maintain a non‐genetic plastic memory of the environmental (...)
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  12. Thinking embodiment with genetics: epigenetics and postgenomic biology in embodied cognition and enactivism.Maurizio Meloni & Jack Reynolds - 2020 - Synthese 198 (11):10685-10708.
    The role of the body in cognition is acknowledged across a variety of disciplines, even if the precise nature and scope of that contribution remain contentious. As a result, most philosophers working on embodiment—e.g. those in embodied cognition, enactivism, and ‘4e’ cognition—interact with the life sciences as part of their interdisciplinary agenda. Despite this, a detailed engagement with emerging findings in epigenetics and post-genomic biology has been missing from proponents of this embodied turn. Surveying this research provides an opportunity to (...)
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  13. The social brain meets the reactive genome: neuroscience, epigenetics and the new social biology.Maurizio Meloni - 2014 - Frontiers in Human Neuroscience 8.
    The rise of molecular epigenetics over the last few years promises to bring the discourse about the sociality and susceptibility to environmental influences of the brain to an entirely new level. Epigenetics deals with molecular mechanisms such as gene expression, which may embed in the organism “memories” of social experiences and environmental exposures. These changes in gene expression may be transmitted across generations without changes in the DNA sequence. Epigenetics is the most advanced example of the new postgenomic and context-dependent (...)
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  14.  35
    Initiated by CREB: Resolving Gene Regulatory Programs in Learning and Memory.Jenifer C. Kaldun & Simon G. Sprecher - 2019 - Bioessays 41 (8):1900045.
    Consolidation of long-term memory is a highly and precisely regulated multistep process. The transcription regulator cAMP response element-binding protein (CREB) plays a key role in initiating memory consolidation. With time processing, first the cofactors are changed and, secondly, CREB gets dispensable. This ultimately changes the expressed gene program to genes required to maintain the memory. Regulation of memory consolidation also requires epigenetic mechanisms and control at the RNA level. At the neuronal circuit level, oscillation in (...)
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  15.  20
    Memory in bacteria and phage.Josep Casadesús & Richard D'Ari - 2002 - Bioessays 24 (6):512-518.
    Whenever the state of a biological system is not determined solely by present conditions but depends on its past history, we can say that the system has memory. Bacteria and bacteriophage use a variety of memory mechanisms, some of which seem to convey adaptive value. A genetic type of heritable memory is the programmed inversion of specific DNA sequences, which causes switching between alternative patterns of gene expression. Heritable memory can also be based on epigenetic (...)
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  16. Memory and Learning in Plants.Baluska Frantisek, Gagliano Monica & Guenther Witzany (eds.) - 2018 - Cham: Springer.
    This book assembles recent research on memory and learning in plants. Organisms that share a capability to store information about experiences in the past have an actively generated background resource on which they can compare and evaluate coming experiences in order to react faster or even better. This is an essential tool for all adaptation purposes. Such memory/learning skills can be found from bacteria up to fungi, animals and plants, although until recently it had been mentioned only as (...)
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  17.  54
    In Situ Reprogramming of Neurons and Glia – A Risk in Altering Memory and Personality?Bor Luen Tang - 2024 - American Journal of Bioethics Neuroscience 15 (2):90-95.
    The recent emergence of reprogramming technologies to convert brain cell types or epigenetically alter neurons and neural progenitors in vivo and in situ hold significant promises in brain repair and neuronal aging reversal. However, given the significant epigenetic and transcriptomic changes to components of the existing neuronal cells and network, we question if these reprogramming technology might inadvertently alter or erase memory engrams, conceivably resulting in changes in narrative identity or personality. We suggest that the nature of these (...)
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  18. Memory and Learning as Key Competences of Living Organisms.G. Witzany - 2018 - In Baluska Frantisek, Gagliano Monica & Guenther Witzany (eds.), Memory and Learning in Plants. Cham: Springer. pp. 1-16.
    Organisms that share the capability of storing information about experiences in the past have an actively generated background resource on which they can compare and evaluate more recent experiences in order to quickly or even better react than in previous situations. This is an essential competence for all reaction and adaptation purposes of living organisms. Such memory/learning skills can be found from akaryotes up to unicellular eukaryotes, fungi, animals and plants, although until recently, it had been mentioned only as (...)
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  19.  21
    Exercise Training Improves Memory Performance in Older Adults: A Narrative Review of Evidence and Possible Mechanisms.Parvin Babaei & Helya Bolouki Azari - 2022 - Frontiers in Human Neuroscience 15.
    GraphicalExercise, neurotransmitters, growth factors, myokines, and potential effects on the brain.As human life expectancy increases, cognitive decline and memory impairment threaten independence and quality of life. Therefore, finding prevention and treatment strategies for memory impairment is an important health concern. Moreover, a better understanding of the mechanisms involved underlying memory preservation will enable the development of appropriate pharmaceuticals drugs for those who are activity limited. Exercise training as a non-pharmacological tool, has been known to increase the mean (...)
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  20.  37
    Bernard Stiegler on Transgenerational Memory and the Dual Origin of the Human.Michael Haworth - 2016 - Theory, Culture and Society 33 (3):151-173.
    This article reconsiders Stiegler’s account of the emergence of the human species in light of research in the field of transgenerational epigenetics. Stiegler traces this emergence to the appearance of technical artefacts allowing for the intergenerational transmission of acquired memory that would otherwise die along with the organism. This is taken to constitute a rupture in the history of life. The argument that I develop critiques Stiegler’s account at two levels: On the empirical level I argue that emerging neo-Lamarckian (...)
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  21.  20
    Cellular Adaptation Relies on Regulatory Proteins Having Episodic Memory.Razvan C. Stan, Darshak K. Bhatt & Maristela M. de Camargo - 2020 - Bioessays 42 (1):1900115.
    The ability to memorize changes in the environment is present at all biological levels, from social groups and individuals, down to single cells. Trans‐generational memory is embedded subcellularly through genetic and epigenetic mechanisms. Evidence that cells process and remember features of the immediate environment using protein sensors is reviewed. It is argued that this mnemonic ability is encapsulated within the protein conformational space and lasts throughout its lifetime, which can overlap with the lifespan of the organism. Means to (...)
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  22.  26
    What an epigenome remembers.Ulrike C. Lange & Robert Schneider - 2010 - Bioessays 32 (8):659-668.
    During mammalian development, maintenance of cell fate through mitotic divisions require faithful replication not only of the DNA but also of a particular epigenetic state. Germline cells have the capacity of erasing this epigenetic memory at crucial times during development, thereby resetting their epigenome. Certain marks, however, appear to escape this reprogramming, which allows their transmission to the offspring and potentially guarantees transgenerational epigenetic inheritance. Here we discuss the molecular requirements for faithful transmission of epigenetic (...)
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  23.  32
    Evolutionary Biosemiotics and Multilevel Construction Networks.Alexei A. Sharov - 2016 - Biosemiotics 9 (3):399-416.
    In contrast to the traditional relational semiotics, biosemiotics decisively deviates towards dynamical aspects of signs at the evolutionary and developmental time scales. The analysis of sign dynamics requires constructivism to explain how new components such as subagents, sensors, effectors, and interpretation networks are produced by developing and evolving organisms. Semiotic networks that include signs, tools, and subagents are multilevel, and this feature supports the plasticity, robustness, and evolvability of organisms. The origin of life is described here as the emergence of (...)
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  24. Solution to the Mind-Body Relation Problem: Information.Florin Gaiseanu - 2021 - Philosophy Study 11 (1):42-55.
    In this paper it is analyzed from the informational perspective the relation between mind and body, an ancient philosophic issue defined as a problem, which still did not receive up to date an adequate solution. By introducing/using the concept of information, it is shown that this concept includes two facets, one of them referring to the common communications and another one referring to a hidden/structuring matter-related information, effectively acting in the human body and in the living systems, which determines the (...)
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  25.  65
    Neuroepigenetics in Philosophical Focus: A Critical Analysis of the Philosophy of Mechanisms.Antonella Tramacere & John Bickle - 2024 - Biological Theory 19 (1):56-71.
    Epigenetics investigates the dynamics of gene expression in various cells, and the signals from the internal and external environment affecting these dynamics. Neuroepigenetics extends this research into neurons and glia cells. Environmental-induced changes in gene expression are not only associated with the emerging structure and function of the nervous system during ontogeny, but are also fundamental to the wiring of neural circuitries responsible for learning and memory. Yet philosophers of science and neuroscience have so far paid little attention to (...)
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  26. The "Work" of Art: Stanisław Brzozowski and Bernard Stiegler.Adrian Mróz - 2021 - Humanities and Social Sciences 28 (3):39-48.
    This article relates the ideas of Stanisław Brzozowski (1878-1911) with those of Bernard Stiegler (1952-2020), both of whom problematize the "work" of art understood as a labor practice. Through the conceptual analysis of epigenetics and epiphylogenetics for aesthetic theory, I claim that both thinkers develop practical concepts relevant to contemporary art philosophy. First, I present an overview of Brzozowski's aesthetics, for whom literature and the arts are linked with ethics, and aesthetic form is tied with moral judgment. Then, I continue (...)
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  27.  27
    Experience and the ever‐changing brain: What the transcriptome can reveal.Todd G. Rubin, Jason D. Gray & Bruce S. McEwen - 2014 - Bioessays 36 (11):1072-1081.
    The brain is an ever‐changing organ that encodes memories and directs behavior. Neuroanatomical studies have revealed structural plasticity of neural architecture, and advances in gene expression technology and epigenetics have demonstrated new mechanisms underlying the brain's dynamic nature. Stressful experiences challenge the plasticity of the brain, and prolonged exposure to environmental stress redefines the normative transcriptional profile of both neurons and glia, and can lead to the onset of mental illness. A more thorough understanding of normal and abnormal gene expression (...)
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  28.  28
    H2A.Z helps genes remember their history so we can remember ours.Iva B. Zovkic & Brandon J. Walters - 2015 - Bioessays 37 (6):596-601.
    Histone variant exchange is a novel epigenetic regulator of cognition. We speculate that H2A.Z, a variant of canonical histone H2A, exerts unique effects on transcription during distinct stages of memory formation, ultimately acting to maintain memory of previous transcriptional states and poise genes for re‐activation. Hippocampus‐dependent memory formation is initiated by transient expression of memory‐related genes, which support the storage of recently acquired memories. Soon after, memories undergo systems consolidation, which transfers memories from the hippocampus (...)
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  29. From outer space and across the street: Matthew Lipman’s double vision.David Kennedy - 2011 - Childhood and Philosophy 7 (13):49-74.
    This review of Matthew Lipman’s autobiography, A Life Teaching Thinking, is a reflection on the themes and patterns of his extraordinarily productive career. His book begins with memories of earliest childhood and his preoccupation with the possibility of being able to fly, moves through the years in which his family struggled with the effects of the Great Depression, through his service in the military during World War II, his discovery of the joy and beauty of philosophy, his academic rise at (...)
     
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  30. Mechanisms of Lipid‐Associated Macrophage Accrual in Metabolically Stressed Adipose Tissue.Isabel Reinisch, Sarah Enzenhofer & Andreas Prokesch - forthcoming - Bioessays:e202400203.
    Adipose tissue (AT) inflammation, a hallmark of the metabolic syndrome, is triggered by overburdened adipocytes sending out immune cell recruitment signals during obesity development. An AT immune landscape persistent throughout weight loss and regain constitutes an immune‐obesogenic memory that hinders long‐term weight loss management. Lipid‐associated macrophages (LAMs) are emerging as major players in diseased, inflamed metabolic tissues and may be key contributors to an obesogenic memory in AT. Our previous study found that LAM abundance increases with weight loss (...)
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  31.  17
    Silence of the fathers: Early X inactivation.Mimi K. Cheng & Christine M. Disteche - 2004 - Bioessays 26 (8):821-824.
    X chromosome inactivation is the mammalian answer to the dilemma of dosage compensation between males and females. The study of this fascinating form of chromosome-wide gene regulation has yielded surprising insights into early development and cellular memory. In the past few months, three papers1-3 reported unexpected findings about the paternal X chromosome (Xp). All three studies agree that the Xp is imprinted to become inactive earlier than ever suspected during embryonic development. Although apparently incomplete, this early form of inactivation (...)
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  32.  22
    Shorebirds’ Longer Migratory Distances Are Associated With Larger ADCYAP1 Microsatellites and Greater Morphological Complexity of Hippocampal Astrocytes.Diego de Almeida Miranda, Juliana Araripe, Nara G. de Morais Magalhães, Lucas Silva de Siqueira, Cintya Castro de Abreu, Patrick Douglas Corrêa Pereira, Ediely Pereira Henrique, Pedro Arthur Campos da Silva Chira, Mauro A. D. de Melo, Péricles Sena do Rêgo, Daniel Guerreiro Diniz, David Francis Sherry, Cristovam W. P. Diniz & Cristovam Guerreiro-Diniz - 2022 - Frontiers in Psychology 12.
    For the epic journey of autumn migration, long-distance migratory birds use innate and learned information and follow strict schedules imposed by genetic and epigenetic mechanisms, the details of which remain largely unknown. In addition, bird migration requires integrated action of different multisensory systems for learning and memory, and the hippocampus appears to be the integration center for this task. In previous studies we found that contrasting long-distance migratory flights differentially affected the morphological complexity of two types of hippocampus (...)
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  33.  35
    Evolution by Meaning Attribution: Notes on Biosemiotic Interpretations of Extended Evolutionary Synthesis.Jana Švorcová & Karel Kleisner - 2018 - Biosemiotics 11 (2):231-244.
    The aim of this contribution is to investigate certain selected parts of the extended evolutionary synthesis which all have a common denominator, namely evolution by meaning attribution. We start by arguing that living organisms can manipulate and interpret their genetic script via epigenetic modifications in a semiotic manner, that is, by meaning attribution. Genes do not build living beings to be transmitted to future generations. Genes have been shaped by evolution as a memory medium that is transmitted from (...)
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  34.  64
    Brain Projective Reality: Novel Clothes for the Emperor.Arturo Tozzi, James F. Peters, Andrew A. Fingelkurts, Alexander A. Fingelkurts & Pedro C. Marijuán - 2017 - Physics of Life Reviews 21:46-55.
    First of all, we would like to gratefully thank all commentators for the attention and effort they have put into reading and responding to our review paper [this issue] and for useful observations that suggest novel applications for our framework. We understand and accept that some of our claims might appear controversial and raise skepticism, because the overall neural framework we have proposed is difficult to frame in established categories, given its strong multidisciplinary character. To make an example, Elsevier is (...)
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  35.  44
    Global Allegory: Electronic Waste and the San Francisco Bay Area.Key MacFarlane - 2021 - Environment, Space, Place 13 (1):74-110.
    In recent years, there has been a growing interest in the geographies of electronic waste (e-waste). Several studies have examined how e-waste is increasingly exported to processing sites in China, India, Pakistan, Ghana and elsewhere across the global south, where it leads to devastating health effects. Through an interdisciplinary patchwork of human geography, public health, narrative theory, and philosophies of memory, this paper seeks to show how the export of e-waste to the global south—and the toxins it brings along (...)
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  36.  69
    Distributed Adaptations: Can a Species Be Adapted While No Single Individual Carries the Adaptation?Ehud Lamm & Oren Kolodny - 2022 - Frontiers in Ecology and Evolution 10.
    Species’ adaptation to their environments occurs via a range of mechanisms of adaptation. These include genetic adaptations as well as non-traditional inheritance mechanisms such as learned behaviors, niche construction, epigenetics, horizontal gene transfer, and alteration of the composition of a host’s associated microbiome. We propose to supplement these with another modality of eco-evolutionary dynamics: cases in which adaptation to the environment occurs via what may be called a “distributed adaptation,” in which the adaptation is not conferred via something carried by (...)
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  37.  26
    Cell Fate and Developmental Regulation Dynamics by Polycomb Proteins and 3D Genome Architecture.Vincent Loubiere, Anne-Marie Martinez & Giacomo Cavalli - 2019 - Bioessays 41 (3):1800222.
    Targeted transitions in chromatin states at thousands of genes are essential drivers of eukaryotic development. Therefore, understanding the in vivo dynamics of epigenetic regulators is crucial for deciphering the mechanisms underpinning cell fate decisions. This review illustrates how, in addition to its cell memory function, the Polycomb group of transcriptional regulators orchestrates temporal, cell and tissue‐specific expression of master genes during development. These highly sophisticated developmental transitions are dependent on the context‐ and tissue‐specific assembly of the different types (...)
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  38.  22
    Distributed Perception: Resonances and Axiologies.Natasha Lushetich & Iain Campbell - 2021 - Routledge.
    Contributors to this book include key theorists and practitioners from media theory, Native Science, bio-media and sound art, philosophy, art history and design informatics. Collectively, they examine the becoming-technique of animal-human- machinic perceptibilities; and micro-perceptions that lie beneath the threshold of known perceptions yet create energetic vibrations. Who, what, and where perceives, and how? What are the sedimentations, inscriptions and axiologies of animal, human and machinic perceptions? What are their perceptibilities? Deleuze uses the word 'visibilities' to indicate that visual perception (...)
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  39.  41
    Mammalian synthetic biology – from tools to therapies.Dominique Aubel & Martin Fussenegger - 2010 - Bioessays 32 (4):332-345.
    Mammalian synthetic biology holds the promise of providing novel therapeutic strategies, and the first success stories are beginning to be reported. Here we focus on the latest generation of mammalian transgene control devices, highlight state‐of‐the‐art synthetic gene network design, and cover prototype therapeutic circuits. These will have an impact on future gene‐ and cell‐based therapies and help bring drug discovery into a new era. The inventory of biological parts that are essential for life on this planet is becoming increasingly complete. (...)
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  40.  72
    Memory for Emotional Events.Eyewitness Memory - 2000 - In Endel Tulving (ed.), The Oxford Handbook of Memory. Oxford University Press. pp. 379.
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  41.  41
    Features and conjunctions in visual working memory.Working Memory - 2012 - In Jeremy Wolfe & Lynn Robertson (eds.), From Perception to Consciousness: Searching with Anne Treisman. Oxford University Press. pp. 369.
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  42.  13
    Is Memory Purely Preservative?Two Forms Of Memory - 2001 - In Christoph Hoerl & Teresa McCormack (eds.), Time and memory: issues in philosophy and psychology. New York: Oxford University Press. pp. 213.
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  43.  29
    Memory Changes in Healthy Older Adults.Declarative Memory - 2000 - In Endel Tulving (ed.), The Oxford Handbook of Memory. Oxford University Press. pp. 395.
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  44.  10
    Aware and Unaware Memory.Does Unaware Memory Underlie - 2001 - In Christoph Hoerl & Teresa McCormack (eds.), Time and memory: issues in philosophy and psychology. New York: Oxford University Press. pp. 187.
  45. Verse: Soft is this Stone.Memory Mcgonigal - 1960 - Pacific Philosophical Quarterly 41 (4):491.
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  46.  26
    Presentations at the Annual Meeting of the Neuroethics Society: An Index of Online Abstracts Available at Bioethics. net.Memory Manipulation - 2009 - American Journal of Bioethics 9 (1):57-58.
  47.  23
    A surrebuttal.John M. Memory & Charles H. Rose - 2002 - Criminal Justice Ethics 21 (1):55-57.
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  48.  25
    The attorney as moral agent: A critique of Cohen.John M. Memory & Charles H. Rose - 2002 - Criminal Justice Ethics 21 (1):28-39.
  49. Friends ($20 to $99).Memorial Gifts & Calla Burhoe - 1995 - Zygon 30 (3).
     
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  50. Desire,".Mixing Memory - 1976 - American Philosophical Quarterly 13:213-220.
     
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