What, if anything, is the medial temporal lobe, and how can the amygdala be part of it if there is no such thing?

Neurobiology of Learning and Memory - Tập 82 - Trang 178-198 - 2004
Elisabeth A. Murray1, Steven P. Wise2
1Laboratory of Neuropsychology, National Institute of Mental Health, Building 49, Room 1B80, MSC 4415, 49 Convent Drive, Bethesda, MD 20892-4415, USA
2Laboratory of Systems Neuroscience, National Institute of Mental Health, Building 49, Room B1EE17, MSC 4401, 49 Convent Drive, Bethesda, MD 20892-4401, USA

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Aboitiz, 2002, Evolutionary divergence of the reptilian and the mammalian brains: Considerations on connectivity and development, Brain Research Reviews, 39, 141, 10.1016/S0165-0173(02)00180-7 Aggleton, 1999, Episodic memory, amnesia, and the hippocampal–anterior thalamic axis, Behavioral and Brain Sciences, 22, 425, 10.1017/S0140525X99002034 Baars, 2003, Brain, conscious experience, and the observing self, Trends in Neurosciences, 26, 671, 10.1016/j.tins.2003.09.015 Bachevalier, 1984, An early and a late developing system for learning and retention in infant monkeys, Behavioral Neuroscience, 98, 770, 10.1037/0735-7044.98.5.770 Bachevalier, 1985, Visual recognition in monkeys: Effects of separate vs. combined transection of fornix and amygdalofugal pathways, Experimental Brain Research, 57, 554, 10.1007/BF00237842 Bannerman, 2002, Double dissociation of function within the hippocampus: Spatial memory and hyponeophagia, Behavioral Neuroscience, 116, 884, 10.1037/0735-7044.116.5.884 Bannerman, 2003, Ventral hippocampal lesions affect anxiety but not spatial learning, Behavioural Brain Research, 139, 197, 10.1016/S0166-4328(02)00268-1 Baxter, 1999, Rhinal cortex lesions produce mild deficits in visual discrimination learning for an auditory secondary reinforcer in rhesus monkeys, Behavioral Neuroscience, 113, 243, 10.1037/0735-7044.113.2.243 Baxter, 2001, Impairments in visual discrimination learning and recognition memory produced by neurotoxic lesions of rhinal cortex in rhesus monkeys, European Journal of Neuroscience, 13, 1228, 10.1046/j.0953-816x.2001.01491.x Baxter, 2001, Opposite relationship of hippocampal and rhinal cortex damage to delayed nonmatching-to-sample deficits in monkeys, Hippocampus, 11, 61, 10.1002/1098-1063(2001)11:1<61::AID-HIPO1021>3.0.CO;2-Z Baxter, 2000, Control of response selection by reinforcer value requires interaction of amygdala and orbital prefrontal cortex, Journal of Neuroscience, 20, 4311, 10.1523/JNEUROSCI.20-11-04311.2000 Beason-Held, 1999, Hippocampal formation lesions produce memory impairment in the rhesus monkey, Hippocampus, 9, 562, 10.1002/(SICI)1098-1063(1999)9:5<562::AID-HIPO10>3.0.CO;2-X Blundell, 2001, Lesions of the basolateral amygdala disrupt selective aspects of reinforcer representation in rats, Journal of Neuroscience, 21, 9018, 10.1523/JNEUROSCI.21-22-09018.2001 Brasted, 2003, Role of the hippocampal system in associative learning beyond the spatial domain, Brain, 126, 1202, 10.1093/brain/awg103 Buckley, 1998, Learning and transfer of object–reward associations and the role of the perirhinal cortex, Behavioral Neuroscience, 112, 15, 10.1037/0735-7044.112.1.15 Buckley, 1998, Perirhinal cortex ablation impairs configural learning and paired-associate learning equally, Neuropsychologia, 36, 535, 10.1016/S0028-3932(97)00120-6 Buckley, 1998, Perirhinal cortex ablation impairs visual object identification, Journal of Neuroscience, 18, 2268, 10.1523/JNEUROSCI.18-06-02268.1998 Buckley, 2000, The hippocampus, perirhinal cortex, and memory in the monkey Buckley, 1997, Functional double dissociation between two inferior temporal cortical areas: Perirhinal cortex versus middle temporal gyrus, Journal of Neurophysiology, 77, 587, 10.1152/jn.1997.77.2.587 Buckmaster, 1999, Unimpaired object recognition and discrimination performance in monkeys with excitotoxic lesions of the hippocampus, Society for Neuroscience Abstracts, 25, 88 Buffalo, 1999, Dissociation between the effects of damage to perirhinal cortex and area TE, Learning & Memory, 6, 572, 10.1101/lm.6.6.572 Buffalo, 2000, Perception and recognition memory in monkeys following lesions of area TE and perirhinal cortex, Learning & Memory, 7, 375, 10.1101/lm.32100 Buffalo, 1998, The human perirhinal cortex and recognition memory, Hippocampus, 8, 330, 10.1002/(SICI)1098-1063(1998)8:4<330::AID-HIPO3>3.0.CO;2-L Buffalo, 1998, A reexamination of the concurrent discrimination learning task: The importance of anterior inferotemporal cortex, area TE, Behavioral Neuroscience, 112, 3, 10.1037/0735-7044.112.1.3 Burns, 1993, Differential effects of excitotoxic lesions of the basolateral amygdala, ventral subiculum and medial prefrontal cortex on responding with conditioned reinforcement and locomotor activity potentiated by intra-accumbens infusions of d-amphetamine, Behavioural Brain Research, 55, 167, 10.1016/0166-4328(93)90113-5 Bussey, 2000, Distinct patterns of behavioral impairments resulting from fornix transection or neurotoxic lesions of the perirhinal and postrhinal cortices in the rat, Behavioural Brain Research, 111, 187, 10.1016/S0166-4328(00)00155-8 Bussey, 2001, Functionally dissociating aspects of event memory: The effects of combined perirhinal and postrhinal cortex lesions on object and place memory in the rat, Journal of Neuroscience, 19, 495, 10.1523/JNEUROSCI.19-01-00495.1999 Bussey, 2002, The organization of visual object representations: A connectionist model of effects of lesions in perirhinal cortex, European Journal of Neuroscience, 15, 355, 10.1046/j.0953-816x.2001.01850.x Bussey, 2002, Perirhinal cortex resolves feature ambiguity in complex visual discriminations, European Journal of Neuroscience, 15, 365, 10.1046/j.0953-816x.2001.01851.x Bussey, 2003, Impairments in visual discrimination after perirhinal cortex lesions: Testing `declarative' vs. `perceptual–mnemonic' views of perirhinal cortex function, European Journal of Neuroscience, 17, 649, 10.1046/j.1460-9568.2003.02475.x Chudasama, Y., & Murray E. A. (2004). Hippocampal lesions disrupt emotional responses but not reinforcer devaluation. Federated European Neuroscience Societies Abstract, July, 2004 Correll, 1965, Performance on delayed match following lesions of medial temporal lobe structures, Journal of Comparative and Physiological Psychology, 60, 360, 10.1037/h0022549 DeLong, 1981, Motor functions of the basal ganglia, 1017 Eacott, 1994, Preserved recognition memory for small sets and impaired stimulus identification for large sets, following rhinal cortex ablations in monkeys, European Journal of Neuroscience, 6, 1466, 10.1111/j.1460-9568.1994.tb01008.x Gaffan, 1974, Recognition impaired and association intact in the memory of monkeys after transection of the fornix, Journal of Comparative and Physiological Psychology, 86, 1100, 10.1037/h0037649 Gaffan, 2001, What is a memory system? Horel's critique revisited, Behavioural Brain Research, 127, 5, 10.1016/S0166-4328(01)00360-6 Gaffan, 2002, Against memory systems, Philosophical Transactions of the Royal Society of London, Series B, Biological Sciences, 357, 1111, 10.1098/rstb.2002.1110 Gaffan, 1987, Amygdalectomy and disconnection in visual learning for auditory secondary reinforcement by monkeys, Journal of Neuroscience, 7, 2285 Gaffan, 1990, Amygdalar interaction with the mediodorsal nucleus of the thalamus and the ventromedial prefrontal cortex in stimulus–reward associative learning in the monkey, Journal of Neuroscience, 10, 3479, 10.1523/JNEUROSCI.10-11-03479.1990 Gaffan, 1996, Interaction of perirhinal cortex with the fornix-fimbria: Memory for objects and “object-in-place” memory, Journal of Neuroscience, 16, 5864, 10.1523/JNEUROSCI.16-18-05864.1996 Goulet, 2001, Aspiration lesions of the amygdala disrupt the rhinal corticothalamic projection system in rhesus monkeys, Experimental Brain Research, 119, 131, 10.1007/s002210050326 Goulet, 2001, Neural substrates of crossmodal association memory in monkeys: The amygdala versus the anterior rhinal cortex, Behavioral Neuroscience, 115, 271, 10.1037/0735-7044.115.2.271 Hadfield, 2003, Effects of combined and separate removals of rostral dorsal superior temporal sulcus cortex and perirhinal cortex on visual recognition memory in rhesus monkeys, Journal of Neurophysiology, 90, 2419, 10.1152/jn.00290.2003 Hampton, R. R., Hampstead, B., & Murray, E. A. (2004). Selective hippocampal damage in rhesus monkeys impairs spatial memory in an open-field test. Hippocampus, Published Online: 15 Apr 2004, DOI:10.1002/hipo.10217 Hampton, 2002, Learning of discriminations is impaired, but generalization to altered views is intact, in monkeys (Macaca mulatta) with perirhinal cortex removal, Behavioral Neuroscience, 116, 363, 10.1037/0735-7044.116.3.363 Hatfield, 1996, Neurotoxic lesions of basolateral, but not central, amygdala interfere with Pavlovian second-order conditioning and reinforcer devaluation effects, Journal of Neuroscience, 16, 5256, 10.1523/JNEUROSCI.16-16-05256.1996 Houk, 1995, Distributed modular architectures linking basal ganglia, cerebellum, and cerebral cortex: Their role in planning and controlling action, Cerebral Cortex, 5, 95, 10.1093/cercor/5.2.95 Izquierdo, A., Suda, R. K., & Murray, E. A. (2003). Effects of selective amygdala and orbital prefrontal cortex lesions on object reversal learning in monkeys. 2003 Abstract viewer/itinerary planner. Washington, DC, Society for Neuroscience, Program no. 90.2 Jones, 1972, Limbic lesions and the problem of stimulus–reinforcement associations, Experimental Neurology, 36, 362, 10.1016/0014-4886(72)90030-1 Killcross, 1997, Different types of fear-conditioned behaviour mediated by separate nuclei within amygdala, Nature, 388, 377, 10.1038/41097 Kjelstrup, 2002, Reduced fear expression after lesions of the ventral hippocampus, Proceedings of the National Academy of Sciences, USA, 99, 10825, 10.1073/pnas.152112399 Liu, 2000, Learning motivational significance of visual cues for reward schedules requires rhinal cortex, Nature Neuroscience, 3, 1307, 10.1038/81841 Mahut, 1971, Spatial and object reversal learning in monkeys with partial temporal lobe ablations, Neuropsychologia, 9, 409, 10.1016/0028-3932(71)90005-4 Mahut, 1986, The monkey and the sea horse, 241 Malkova, 1997, Excitotoxic lesions of the amygdala fail to produce impairment in visual learning for auditory secondary reinforcement but interfere with reinforcer devaluation effects in rhesus monkeys, Journal of Neuroscience, 17, 6011, 10.1523/JNEUROSCI.17-15-06011.1997 Malkova, 2003, One-trial memory for object–place associations after separate lesions of hippocampus and posterior parahippocampal region in the monkey, Journal of Neuroscience, 23, 1956, 10.1523/JNEUROSCI.23-05-01956.2003 McDonald, 1995, Information acquired by the hippocampus interferes with acquisition of the amygdala-based conditioned-cue preference in the rat, Hippocampus, 5, 189, 10.1002/hipo.450050305 Meunier, 1993, Effects on visual recognition of combined and separate ablations of the entorhinal and perirhinal cortex in rhesus monkeys, Journal of Neuroscience, 13, 5418, 10.1523/JNEUROSCI.13-12-05418.1993 Meunier, 1996, Effects of rhinal cortex lesions combined with hippocampectomy on visual recognition memory in rhesus monkeys, Journal of Neurophysiology, 75, 1190, 10.1152/jn.1996.75.3.1190 Mishkin, 1978, Memory in monkeys severely impaired by combined but not by separate removal of amygdala and hippocampus, Nature, 273, 297, 10.1038/273297a0 Mishkin, 1975, An analysis of short-term visual memory in the monkey, Journal of Experimental Psychology, Animal Behaviour, 326, 10.1037/0097-7403.1.4.326 Murray, 1996, What have ablation studies told us about the neural substrates of stimulus memory?, Seminars in the Neurosciences, 8, 13, 10.1006/smns.1996.0003 Murray, 2000, Memory for objects in nonhuman primates, 753 Murray, 1998, Monkeys with rhinal cortex damage or neurotoxic hippocampal lesions are impaired on spatial scene learning and object reversals, Behavioral Neuroscience, 112, 1291, 10.1037/0735-7044.112.6.1291 Murray, 1999, Perceptual–mnemonic functions of the perirhinal cortex, Trends in Cognitive Sciences, 3, 142, 10.1016/S1364-6613(99)01303-0 Murray, 2000, The parahippocampal region and object identification, Annals of the New York Academy of Sciences, 911, 166, 10.1111/j.1749-6632.2000.tb06725.x Murray, 1993, Neural substrates of visual stimulus–stimulus association in rhesus monkeys, Journal of Neuroscience, 13, 4549, 10.1523/JNEUROSCI.13-10-04549.1993 Murray, 1984, Severe tactual as well as visual memory deficits follow combined removal of the amygdala and hippocampus in monkeys, Journal of Neuroscience, 4, 2565, 10.1523/JNEUROSCI.04-10-02565.1984 Murray, 1985, Amygdalectomy impairs crossmodal association in monkeys, Science, 228, 604, 10.1126/science.3983648 Murray, 1998, Object recognition and location memory in monkeys with excitotoxic lesions of the amygdala and hippocampus, Journal of Neuroscience, 16, 6568, 10.1523/JNEUROSCI.18-16-06568.1998 Murray, 1996, Role of the hippocampus plus subjacent cortex but not amygdala in visuomotor conditional learning in rhesus monkeys, Behavioral Neuroscience, 110, 1261, 10.1037/0735-7044.110.6.1261 Neary, 1990, The pallium of anuran amphibians, 107, 10.1007/978-1-4757-9622-3_4 Nemanic, 2004, The hippocampal/parahippocampal regions and recognition memory: Insights from visual paired comparison versus object-delayed nonmatching in monkeys, Journal of Neuroscience, 24, 2013, 10.1523/JNEUROSCI.3763-03.2004 Northcutt, 1996, The agnathan ark: The origin of craniate brains, Brain, Behavior, and Evolution, 48, 237, 10.1159/000113203 Northcutt, 2001, Changing views of brain evolution, Brain Research Bulletin, 55, 663, 10.1016/S0361-9230(01)00560-3 O'Keefe, 1999, Do hippocampal pyramidal cells signal non-spatial as well as spatial information?, Hippocampus, 9, 352, 10.1002/(SICI)1098-1063(1999)9:4<352::AID-HIPO3>3.0.CO;2-1 Orbach, 1960, Learning and retention in monkeys after amygdala–hippocampus resection, Archives of Neurology, 3, 230, 10.1001/archneur.1960.00450030008002 Packard, 2002, Learning and memory functions of the basal ganglia, Annual Review of Neuroscience, 25, 563, 10.1146/annurev.neuro.25.112701.142937 Parkinson, 2000, Dissociable roles of the central and basolateral amygdala in appetitive emotional learning, European Journal of Neuroscience, 12, 405, 10.1046/j.1460-9568.2000.00960.x Parkinson, 1988, A selective mnemonic role for hippocampus in monkeys: Memory for the location of objects, Journal of Neuroscience, 8, 4159, 10.1523/JNEUROSCI.08-11-04159.1988 Petrovich, 2001, Combinatorial amygdalar inputs to hippocampal domains and hypothalamic behavior systems, Brain Research Reviews, 38, 247, 10.1016/S0165-0173(01)00080-7 Puelles, 2001, Thoughts on the development, structure and evolution of the mammalian and avian telencephalic pallium, Philosophical Transactions of the Royal Society of London, Series B Biological Sciences, 356, 1583, 10.1098/rstb.2001.0973 Puelles, 2000, Pallial and subpallial derivatives in the embryonic chick and mouse telencephalon, traced by the expression of the genes dlx-2, Emx-1, Nkx-2.1, Pax-6, and Tbr-1, Journal of Comparative Neurology, 424, 409, 10.1002/1096-9861(20000828)424:3<409::AID-CNE3>3.0.CO;2-7 Rupniak, 1987, Monkey hippocampus and learning about spatially directed movements, Journal of Neuroscience, 7, 2331 Sakai, 1993, Memory and imagery in the temporal lobe, Current Opinion in Neurobiology, 3, 166, 10.1016/0959-4388(93)90205-D Saksida, L. M., Bussey, T. J., Buckmaster, C. A., & Murray, E. A. (2003). Perirhinal cortex lesions can impair, and hippocampal can facilitate, transverse patterning in rhesus monkeys. 2003 Abstract viewer/itinerary planner. Washington, DC, Society for Neuroscience, Program no. 939.12 Saunders, 1984, Further evidence that amygdala and hippocampus contribute equally to recognition memory, Neuropsychologia, 22, 785, 10.1016/0028-3932(84)90103-9 Spiegler, 1981, Evidence for the sequential participation of inferior temporal cortex and amygdala in the acquisition of stimulus–reward associations, Behavioural Brain Research, 3, 303, 10.1016/0166-4328(81)90002-4 Squire, 1992, Memory and the hippocampus: a synthesis from findings with rats, monkeys and humans, Psychological Reviews, 99, 195, 10.1037/0033-295X.99.2.195 Squire, 1993, The structure and organization of memory, Annual Review of Psychology, 44, 453, 10.1146/annurev.ps.44.020193.002321 Squire, 1983, The neurology of memory: The case for correspondence between the findings for human and nonhuman primate, 199 Stefanacci, 2003, Selective neurotoxic amygdala lesions in monkeys disrupt reactivity to food and object stimuli and have limited effects on memory, Behavioral Neuroscience, 117, 1029, 10.1037/0735-7044.117.5.1029 Striedter, 1997, The telencephalon of tetrapods in evolution, Brain, Behavior, and Evolution, 49, 179, 10.1159/000112991 Suzuki, 2003, Perirhinal and parahippocampal cortices of the macaque monkey: cytoarchitectonic and chemoarchitectonic organization, Journal of Comparative Neurology, 463, 67, 10.1002/cne.10744 Swanson, 2000, Cerebral hemisphere regulation of motivated behavior, Brain Research, 886, 113, 10.1016/S0006-8993(00)02905-X Swanson, 2004 Swanson, 1998, What is the amygdala?, Trends in Neurosciences, 21, 323, 10.1016/S0166-2236(98)01265-X Teng, 2000, Contrasting effects on discrimination learning after hippocampal lesions and conjoint hippocampal–caudate lesions in monkeys, Journal of Neuroscience, 20, 3853, 10.1523/JNEUROSCI.20-10-03853.2000 Thornton, 1998, Rhinal cortex lesions fail to disrupt reinforcer devaluation effects in rhesus monkeys (Macaca mulatta), Behavioral Neuroscience, 112, 1020, 10.1037/0735-7044.112.4.1020 Ulinski, 1991, Cortical circuitry underlying visual motion analysis in turtles Westerhaus, 2001, Central representation of the sympathetic nervous system in the cerebral cortex, Brain Research, 903, 117, 10.1016/S0006-8993(01)02453-2 Wicht, 1992, The forebrain of the Pacific hagfish: A cladistic reconstruction of the ancestral craniate forebrain, Brain, Behavior, and Evolution, 40, 25, 10.1159/000113900 Wicht, 1998, Telencephalic connections in the Pacific hagfish (Eptatretus stouti), with special reference to the thalamopallial system, Journal of Comparative Neurology, 395, 245, 10.1002/(SICI)1096-9861(19980601)395:2<245::AID-CNE8>3.0.CO;2-2 Zola, 2000, The medial temporal lobe and the hippocampus, 485 Zola, 2001, Relationship between magnitude of damage to the hippocampus and impaired recognition memory in monkeys, Hippocampus, 11, 92, 10.1002/hipo.1027 Zola, 2000, Impaired recognition memory in monkeys after damage limited to the hippocampal region, Journal of Neuroscience, 20, 451, 10.1523/JNEUROSCI.20-01-00451.2000 Zola-Morgan, 1984, Preserved learning in monkeys with medial temporal lesions: Sparing of motor and cognitive skills, Journal of Neuroscience, 4, 1072, 10.1523/JNEUROSCI.04-04-01072.1984 Zola-Morgan, 1985, Medial temporal lesions in monkeys impair memory on a variety of tasks sensitive to human amnesia, Behavioral Neuroscience, 99, 22, 10.1037/0735-7044.99.1.22 Zola-Morgan, 1982, The neuroanatomy of amnesia: Amygdala–hippocampus versus temporal stem, Science, 218, 1337, 10.1126/science.6890713 Zola-Morgan, 1994, Severity of memory impairment in monkeys as a function of locus and extent of damage within the medial temporal lobe memory system, Hippocampus, 4, 483, 10.1002/hipo.450040410