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  1. The hippocampus as episodic encoder: Does it play tag?Robert H. I. Dale - 1985 - Behavioral and Brain Sciences 8 (3):499-500.
  • The ethics of fetal tissue grafting should be considered along with the science.Keith A. Crutcher - 1995 - Behavioral and Brain Sciences 18 (1):53-54.
    In addition to the scientific and medical issues surrounding the use of fetal tissue transplants, the ethical implications should be considered. Two major ethical issues are relevant. The first of these is whether this experimental procedure can be justified on the basis of potential benefit to the patient. The second is whether the use of tissue obtained from intentionally aborted fetuses can be justified in the context of historical and existing guidelines for the protection of human subjects. The separation of (...)
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  • The hunting of the hippocampal function.Wim E. Crusio - 1996 - Behavioral and Brain Sciences 19 (4):767-768.
    Eichenbaum et al.'s (1994a) theory suffers from a lack of ecological validation. It is not at all clear why the hypothesized faculties would have evolved and what their adaptive value would be. I argue that hippocampal function can only be understood if the animal is seen in its natural context.
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  • Remembering experiences and the experience of remembering.Robert G. Crowder - 1986 - Behavioral and Brain Sciences 9 (3):566-567.
  • Inhibition, attention, and the hippocampus.Andrew Crider & Paul R. Solomon - 1982 - Behavioral and Brain Sciences 5 (3):484-485.
  • Hippocampus, delay neurons, and sensory heterogeneity.Michael Colombo & Charles G. Gross - 1996 - Behavioral and Brain Sciences 19 (4):766-767.
    We raise three issues concerning the Eichenbaum, Otto & Cohen (1994) model. (1) We argue against the strict division of labor that Eichenbaum et al. attribute to neocortical and limbic regions. (2) We raise the possibility that the anterior and posterior portions of the hippocampus may be important for different types of information processing. (3) We argue that, rather than reflecting relational processing, different neural responses to “match” and “nonmatch” trials may relate to different required spatial responses.
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  • Minding the general memory store: Further consideration of the role of the hippocampus in memory.Neal J. Cohen & Matthew Shapiro - 1985 - Behavioral and Brain Sciences 8 (3):498-499.
  • On the alleged backward referral of experience and its relevance to the mind-body problem.Patricia Smith Churchland - 1981 - Philosophy of Science 48 (June):165-81.
    A remarkable hypothesis has recently been advanced by Libet and promoted by Eccles which claims that there is standardly a backwards referral of conscious experiences in time, and that this constitutes empirical evidence for the failure of identity of brain states and mental states. Libet's neurophysiological data are critically examined and are found insufficient to support the hypothesis. Additionally, it is argued that even if there is a temporal displacement phenomenon to be explained, a neurophysiological explanation is most likely.
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  • Gene therapy for neurodegenerative disorders and malignant brain tumors.Lan Chiang, Eric P. Flores, Dennis Y. Wen, Walter A. Hall & Walter C. Low - 1995 - Behavioral and Brain Sciences 18 (1):52-53.
    Gene therapy approaches have great promise in the treatment of neurodegenerative disorders and malignant brain tumors. Neuwelt et al. review available viral-mediated gene therapy methods and their blood-brain-barrier (BBB) disruption delivery technique, briefly mentioning nonviral mediated gene therapy methods. This commentary discussed the BBB disruption delivery technique, viral and nonviral mediated gene therapy approaches to Parkinson's disease, and the potential use of antisense oligo to suppress malignant brain tumors.
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  • Possible brain damage by electroconvulsive therapy: Memory impairment and cultural resistance.Arthur Cherkin - 1984 - Behavioral and Brain Sciences 7 (1):25-26.
  • The structure, operation, and functionality of intracerebral grafts.Jean-Christophe Cassel & Bruno Will - 1995 - Behavioral and Brain Sciences 18 (1):51-52.
    The concept of structure, operation, and functionality, as they may be understood by clinicians or researchers using neural transplantation techniques, are briefly defined. Following Stein & Glasier, we emphasize that the question of whether an intracerebral graft is really functional should be addressed not only in terms of what such a graft does in a given brain structure, but also in terms of what it does at the level of the organism.
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  • The “reciprocal loop” model: How strong is the evidence, how useful is the model?Vivien A. Casagrande - 1987 - Behavioral and Brain Sciences 10 (1):121-121.
  • Representations of the environment, multiple brain maps, and control systems.Charles M. Butter - 1982 - Behavioral and Brain Sciences 5 (4):640-641.
  • The “neuroethological revolution” in unit studies.Jan Bureš - 1979 - Behavioral and Brain Sciences 2 (4):497-498.
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  • Processing temporally discontiguous information is neither an exclusive nor the only function of the hippocampus.J. Bureš, O. Burešová & J. J. Bolhuis - 1987 - Behavioral and Brain Sciences 10 (1):154-156.
  • Are hippocampus and superior colliculus more related to each other than to other brain structures?J. Bureš & O. Burešová - 1987 - Behavioral and Brain Sciences 10 (1):120-121.
  • Recording the recognition due to the parahippocampal region places hippocampal relational encoding in context.M. W. Brown - 1994 - Behavioral and Brain Sciences 17 (3):474-476.
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  • Electroshock therapy and brain damage: The acute organic brain syndrome as treatment.Peter R. Breggin - 1984 - Behavioral and Brain Sciences 7 (1):24-25.
  • Another hippocampal theory.Marc N. Branch - 1985 - Behavioral and Brain Sciences 8 (3):497-498.
  • Repairing the brain: Trophic factor or transplant?Nigel W. Bond - 1995 - Behavioral and Brain Sciences 18 (1):49-51.
    Three experiments on neural grafting with adult rat hosts are described. Working memory impairments were produced by lesioning the hippocampus or severing its connections with the septum by ablating the fimbria-fornix. The results suggest that the survival and growth of a neural graft, whether an autograft or a xenograft, is not a necessary condition for functional recovery on a task tapping working memory.
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  • The hippocampal system, time, and memory representations.J. J. Bolhuis & I. C. Reid - 1994 - Behavioral and Brain Sciences 17 (3):474-474.
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  • ECT: Wanted and unwanted effects.Tom G. Bolwig - 1984 - Behavioral and Brain Sciences 7 (1):23-24.
  • Anxiety: Dysfunction of transmission or modulation?Béla Bohus - 1982 - Behavioral and Brain Sciences 5 (3):484-484.
  • Immunobiology of neural transplants and functional incorporation of grafted dopamine neurons.Jeffrey B. Blount, Takeshi Kondoh, Lisa L. Pundt, John Conrad, Elizabeth M. Jansen & Walter C. Low - 1995 - Behavioral and Brain Sciences 18 (1):48-49.
    In contrast to the views put forth by Stein & Glasier, we support the use of inbred strains of rodents in studies of the immunobiology of neural transplants. Inbred strains demonstrate homology of the major histocompatibility complex (MHC). Virtually all experimental work in transplantation immunology is performed using inbred strains, yet very few published studies of immune rejection in intracerebral grafts have used inbred animals.
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  • O'Keefe & Nadel's three-stage model for hippocampal representation of space.T. V. P. Bliss - 1979 - Behavioral and Brain Sciences 2 (4):496-497.
  • Behavioral analysis of the hippocampal syndrome.D. Caroline Blanchard & Robert J. Blanchard - 1979 - Behavioral and Brain Sciences 2 (4):496-496.
  • Remembering spatial cognition as a hippocampal functional component.Verner P. Bingman - 1994 - Behavioral and Brain Sciences 17 (3):473-474.
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  • Some perspectives on electroconvulsive therapy.T. George Bidder - 1984 - Behavioral and Brain Sciences 7 (1):22-23.
  • Selective activation of hippocampal neurons.Theodore W. Berger - 1979 - Behavioral and Brain Sciences 2 (4):495-496.
  • Hippocampal–collicular interactions: An example of input linkages to the hippocampus.Thomas L. Bennett - 1987 - Behavioral and Brain Sciences 10 (1):119-119.
  • The Fruitful Metaphor, but a Metaphor, nonetheless.Marc Belth - 1984 - Behavioral and Brain Sciences 7 (4):622-623.
  • Therapeutic uses for neural grafts: Progress slowed but not abandoned.Ronald H. Baisden - 1995 - Behavioral and Brain Sciences 18 (1):47-48.
    In spite of Stein and Glasier's justifiable conclusion that initial optimism concerning the immediate clinical applicability of neural transplantation was premature, there exists much experimental evidence to support the potential for incorporating this procedure into a therapeutic arsenal in the future. To realize this potential will require continued evolution of our knowledge at multiple levels of the clinical and basic neurosciences.
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  • Neuropsychological evidence and the semantic/episodic distinction.Alan D. Baddeley - 1984 - Behavioral and Brain Sciences 7 (2):238.
  • The Oscillatory Basis of Working Memory Function and Dysfunction in Epilepsy.Olivia N. Arski, Julia M. Young, Mary-Lou Smith & George M. Ibrahim - 2021 - Frontiers in Human Neuroscience 14.
    Working memory deficits are pervasive co-morbidities of epilepsy. Although the pathophysiological mechanisms underpinning these impairments remain elusive, it is thought that WM depends on oscillatory interactions within and between nodes of large-scale functional networks. These include the hippocampus and default mode network as well as the prefrontal cortex and frontoparietal central executive network. Here, we review the functional roles of neural oscillations in subserving WM and the putative mechanisms by which epilepsy disrupts normative activity, leading to aberrant oscillatory signatures. We (...)
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  • Neural transplants are grey matters.Britt Anderson, Anjan Chatterjee & George Graham - 1995 - Behavioral and Brain Sciences 18 (1):46-47.
    The lesion and transplantation data cited by Sinden et al., when considered in tandem, seem to harbor an internal inconsistency, raising questions of false localization of function. The extrapolation of such data to cognitive impairment and potential treatment strategies in Alzheimer's disease is problematic. Patients with focal basal forebrain lesions (e.g., anterior communicating artery aneurysm rupture) might be a more appropriate target population.
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  • Hippocampus, memory and movement.Abram Amsel - 1979 - Behavioral and Brain Sciences 2 (4):494-495.
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  • 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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  • 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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  • A defense of ignorance.Jonathan E. Adler - 1984 - Behavioral and Brain Sciences 7 (4):621.
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  • The role of consciousness in memory.S. Franklin, B. J. Baars, U. Ramamurthy & M. Ventura - 2005 - Brains, Minds and Media 1.
    Conscious events interact with memory systems in learning, rehearsal and retrieval (Ebbinghaus 1885/1964; Tulving 1985). Here we present hypotheses that arise from the IDA computional model (Franklin,Kelemen and McCauley 1998; Franklin 2001b) of global workspace theory (Baars 1988, 2002). Our primary tool for this exploration is a flexible cognitive cycle employed by the IDA computational model and hypothesized to be a basic element of human cognitive processing. Since cognitive cycles are hypothesized to occur five to tentimes a second and include (...)
     
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