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John P. Aggleton [7]John Aggleton [1]
  1. Episodic memory, amnesia, and the hippocampal–anterior thalamic axis.John P. Aggleton & Malcolm W. Brown - 1999 - Behavioral and Brain Sciences 22 (3):425-444.
    By utilizing new information from both clinical and experimental (lesion, electrophysiological, and gene-activation) studies with animals, the anatomy underlying anterograde amnesia has been reformulated. The distinction between temporal lobe and diencephalic amnesia is of limited value in that a common feature of anterograde amnesia is damage to part of an comprising the hippocampus, the fornix, the mamillary bodies, and the anterior thalamic nuclei. This view, which can be traced back to Delay and Brion (1969), differs from other recent models in (...)
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  2.  25
    Episodic Memory: New Directions in Research : Originating from a Discussion Meeting of the Royal Society.Alan Baddeley, John Aggleton & Martin Conway (eds.) - 2002 - Oxford University Press.
    The term 'episodic memory' refers to our memory for unique, personal experiences, that we can date at some point in our past - our first day at school, the day we got married. It has again become a topic of great importance and interest to psychologists, neuroscientists, and philosophers. How are such memories stored in the brain, why do certain memories disappear (especially those from early in childhood), what causes false memories (memories of events we erroneously believe have really taken (...)
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  3.  18
    Is Eichenbaum et al.'s proposal testable and how extensive is the hippocampal memory system?John P. Aggleton - 1994 - Behavioral and Brain Sciences 17 (3):472-473.
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  4. Neural systems underlying episodic memory: insights from animal research.John P. Aggleton & John M. Pearce - 2002 - In Alan Baddeley, John Aggleton & Martin Conway (eds.), Episodic Memory: New Directions in Research. Oxford University Press.
    Two strategies used to uncover neural systems for episodic-like memory in animals are discussed: (i) an attribute of episodic memory (what? when? where?) is examined in order to reveal the neuronal interactions supporting that component of memory; and (ii) the connections of a structure thought to be central to episodic memory in humans are studied at a level of detail not feasible in humans. By focusing on spatial memory (where?) and the hippocampus, it has proved possible to bring the strategies (...)
     
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  5.  2
    Refining the bigger picture: On the integrative memory model.John P. Aggleton - 2019 - Behavioral and Brain Sciences 42.
    The integrative memory model contains multiple subsystems. In this commentary, the processes within these subsystems are questioned. First, the assumption that familiarity largely reflects perceptual fluency is examined. Next, the distinction between “process” and “representational” models of temporal lobe function is challenged. Finally, the “relational representation core system”, which is central to the model, is especially sketchy. Here, I highlight key questions to be addressed in order to understand this system's role in trace formation.
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  6.  25
    The enigma of the amygdala: on its contribution to human emotion.John P. Aggleton & Andrew W. Young - 2000 - In Richard D. R. Lane, L. Nadel, G. L. Ahern, J. Allen & Alfred W. Kaszniak (eds.), Cognitive Neuroscience of Emotion. Oxford University Press. pp. 106--128.
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  7.  46
    Thanks for the memories: Extending the hippocampal-diencephalic mnemonic system.John P. Aggleton & Malcolm W. Brown - 1999 - Behavioral and Brain Sciences 22 (3):471-479.
    The goal of our target article was to review a number of emerging facts about the effects of limbic damage on memory in humans and animals, and about divisions within recognition memory in humans. We then argued that this information can be synthesized to produce a new view of the substrates of episodic memory. The key pathway in this system is from the hippocampus to the anterior thalamic nuclei. There seems to be a general agreement that the importance of this (...)
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  8.  16
    Emotion: Sensory Representation, Reinforcement, and the Temporal Lobe.Robert W. Kentridge & John P. Aggleton - 1990 - Cognition and Emotion 4 (3):191-208.