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Joseph Steinmetz
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13
Finn, Peter
12
Thompson, Richard
9
Lavond, David
7
Green, John
6
Hetrick, William
6
Tracy, Jo Anne
6
O'Donnell, Brian
5
Justus, Alicia
5
Rogers, Ronald
4
Rorick, Linda
4
Katz, Donald
4
Mazas, Carlos
4
Blankenship, Matthew
3
Bolbecker, Amanda
3
Garraghty, Preston
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All Publications
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2009: Bolbecker Amanda R; Mehta Crystal S; Edwards Chad R; Steinmetz Joseph E; O'Donnell Brian F; Hetrick William P
Eye-blink conditioning deficits indicate temporal processing abnormalities in schizophrenia.
Schizophrenia research 2009;111(1-3):182-91.
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2009: Bolbecker Amanda R; Hetrick William P; Johannesen Jason K; O'Donnell Brian F; Steinmetz Joseph E; Shekhar Anantha S
Secretin effects on cerebellar-dependent motor learning in schizophrenia.
The American journal of psychiatry 2009;166(4):460-6.
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2009: Bolbecker Amanda R; Mehta Crystal; Johannesen Jason K; Edwards Chad R; O'Donnell Brian F; Shekhar Anantha; Nurnberger John I; Steinmetz Joseph E; Hetrick William P
Eyeblink conditioning anomalies in bipolar disorder suggest cerebellar dysfunction.
Bipolar disorders 2009;11(1):19-32.
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2008: Skosnik Patrick D; Edwards Chad R; O'Donnell Brian F; Steffen Ashley; Steinmetz Joseph E; Hetrick William P
Cannabis use disrupts eyeblink conditioning: evidence for cannabinoid modulation of cerebellar-dependent learning.
Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology 2008;33(6):1432-40.
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2008: Edwards Chad R; Newman Sharlene; Bismark Andrew; Skosnik Patrick D; O'Donnell Brian F; Shekhar Anantha; Steinmetz Joseph E; Hetrick William P
Cerebellum volume and eyeblink conditioning in schizophrenia.
Psychiatry research 2008;162(3):185-94.
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2008: Walker Adam G; Steinmetz Joseph E
Hippocampal lesions in rats differentially affect long- and short-trace eyeblink conditioning.
Physiology & behavior 2008;93(3):570-8.
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2005: Timberlake William; Schaal David W; Steinmetz Joseph E
Relating behavior and neuroscience: introduction and synopsis.
Journal of the experimental analysis of behavior 2005;84(3):305-11.
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2005: Brown S M; Kieffaber P D; Carroll C A; Vohs J L; Tracy J A; Shekhar A; O'Donnell B F; Steinmetz J E; Hetrick W P
Eyeblink conditioning deficits indicate timing and cerebellar abnormalities in schizophrenia.
Brain and cognition 2005;58(1):94-108.
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2005: Green John T; Steinmetz Joseph E
Purkinje cell activity in the cerebellar anterior lobe after rabbit eyeblink conditioning.
Learning & memory (Cold Spring Harbor, N.Y.) 2005;12(3):260-9.
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2005: Blankenship Matthew R; Huckfeldt Rachel; Steinmetz Jacob J; Steinmetz Joseph E
The effects of amygdala lesions on hippocampal activity and classical eyeblink conditioning in rats.
Brain research 2005;1035(2):120-30.
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2005: Tracy Jo Anne; McFall Richard M; Steinmetz Joseph E
Effects of emotional valence and arousal manipulation on eyeblink classical conditioning and autonomic measures.
Integrative physiological and behavioral science : the official journal of the Pavlovian Society 2005;40(1):45-54.
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2004: Rorick Linda M; Finn Peter R; Steinmetz Joseph E
Heart rate reactivity in HAD and LAD rats during Pavlovian fear conditioning.
Integrative physiological and behavioral science : the official journal of the Pavlovian Society 2004;39(1):24-41.
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2003: Rorick Linda M; Finn Peter R; Steinmetz Joseph E
High-alcohol-drinking rats exhibit persistent freezing responses to discrete cues following Pavlovian fear conditioning.
Pharmacology, biochemistry, and behavior 2003;76(2):223-30.
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2003: Rorick Linda M; Finn Peter R; Steinmetz Joseph E
Moderate doses of ethanol partially reverse avoidance learning deficits in high-alcohol-drinking rats.
Pharmacology, biochemistry, and behavior 2003;75(1):89-102.
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2002: Green John T; Tran Tuan; Steinmetz Joseph E; Goodlett Charles R
Neonatal ethanol produces cerebellar deep nuclear cell loss and correlated disruption of eyeblink conditioning in adult rats.
Brain research 2002;956(2):302-11.
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2002: Katz Donald B; Rogers Ronald F; Steinmetz Joseph E
Novel factors contributing to the expression of latent inhibition.
Behavioral neuroscience 2002;116(5):824-36.
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2002: Katz Donald B; Steinmetz Joseph E
Psychological functions of the cerebellum.
Behavioral and cognitive neuroscience reviews 2002;1(3):229-41.
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2002: Green John T; Johnson Timothy B; Goodlett Charles R; Steinmetz Joseph E
Eyeblink classical conditioning and interpositus nucleus activity are disrupted in adult rats exposed to ethanol as neonates.
Learning & memory (Cold Spring Harbor, N.Y.) 2002;9(5):304-20.
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2002: Finn Peter R; Mazas Carlos A; Justus Alicia N; Steinmetz Joseph
Early-onset alcoholism with conduct disorder: go/no go learning deficits, working memory capacity, and personality.
Alcoholism, clinical and experimental research 2002;26(2):186-206.
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2001: Tracy J A; Britton G B; Steinmetz J E
Comparison of single unit responses to tone, light, and compound conditioned stimuli during rabbit classical eyeblink conditioning.
Neurobiology of learning and memory 2001;76(3):253-67.
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2001: Justus A N; Finn P R; Steinmetz J E
P300, disinhibited personality, and early-onset alcohol problems.
Alcoholism, clinical and experimental research 2001;25(10):1457-66.
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2001: Steinmetz J E; Tracy J A; Green J T
Classical eyeblink conditioning: clinical models and applications.
Integrative physiological and behavioral science : the official journal of the Pavlovian Society 2001;36(3):220-38.
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2001: Rogers R F; Britton G B; Steinmetz J E
Learning-related interpositus activity is conserved across species as studied during eyeblink conditioning in the rat.
Brain research 2001;905(1-2):171-7.
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2001: Finn P R; Justus A N; Mazas C; Rorick L; Steinmetz J E
Constraint, alcoholism, and electrodermal response in aversive classical conditioning and mismatch novelty paradigms.
Integrative physiological and behavioral science : the official journal of the Pavlovian Society 2001;36(2):154-67.
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2001: Katz D B; Tracy J A; Steinmetz J E
Rabbit classical eyeblink conditioning is altered by brief cerebellar cortical stimulation.
Physiology & behavior 2001;72(4):499-510.
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2001: Churchill J D; Green J T; Voss S E; Manley E; Steinmetz J E; Garraghty P E
Discrimination reversal conditioning of an eyeblink response is impaired by NMDA receptor blockade.
Integrative physiological and behavioral science : the official journal of the Pavlovian Society 2001;36(1):62-74.
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2000: Blankenship M R; Finn P R; Steinmetz J E
A characterization of approach and avoidance learning in high-alcohol-drinking (HAD) and low-alcohol-drinking (LAD) rats.
Alcoholism, clinical and experimental research 2000;24(12):1778-84.
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2000: Steinmetz J E; Blankenship M R; Green J T; Smith G B; Finn P R
Evaluation of behavioral disinhibition in P/NP and HAD1/LAD1 rats.
Progress in neuro-psychopharmacology & biological psychiatry 2000;24(6):1025-39.
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2000: Mazas C A; Finn P R; Steinmetz J E
Decision-making biases, antisocial personality, and early-onset alcoholism.
Alcoholism, clinical and experimental research 2000;24(7):1036-40.
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2000: Justus A N; Finn P R; Steinmetz J E
The influence of traits of disinhibition on the association between alcohol use and risky sexual behavior.
Alcoholism, clinical and experimental research 2000;24(7):1028-35.
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2000: Steinmetz J E
Brain substrates of classical eyeblink conditioning: a highly localized but also distributed system.
Behavioural brain research 2000;110(1-2):13-24.
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2000: Green J T; Rogers R F; Goodlett C R; Steinmetz J E
Impairment in eyeblink classical conditioning in adult rats exposed to ethanol as neonates.
Alcoholism, clinical and experimental research 2000;24(4):438-47.
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1999: Rogers R F; Fender A F; Steinmetz J E
The cerebellum is necessary for rabbit classical eyeblink conditioning with a non-somatosensory (photic) unconditioned stimulus.
Behavioural brain research 1999;104(1-2):105-12.
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1999: Finn P R; Justus A; Mazas C; Steinmetz J E
Working memory, executive processes and the effects of alcohol on Go/No-Go learning: testing a model of behavioral regulation and impulsivity.
Psychopharmacology 1999;146(4):465-72.
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1999: Banks M K; Mohr N L; Besheer J; Steinmetz J E; Garraghty P E
The effects of phenytoin on instrumental appetitive-to-aversive transfer in rats.
Pharmacology, biochemistry, and behavior 1999;63(3):465-72.
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1999: Merrill K A; Steinmetz J E; Viken R J; Rose R J
Genetic influences on human conditionability: a twin study of the conditioned eyeblink response.
Behavior genetics 1999;29(2):95-102.
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1998: Tracy J A; Steinmetz J E
Purkinje cell responses to pontine stimulation CS during rabbit eyeblink conditioning.
Physiology & behavior 1998;65(2):381-6.
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1998: Blankenship M R; Finn P R; Steinmetz J E
A characterization of approach and avoidance learning in alcohol-preferring and alcohol-nonpreferring rats.
Alcoholism, clinical and experimental research 1998;22(6):1227-33.
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1998: Churchill J D; Voss S E; Miller D P; Steinmetz J E; Garraghty P E
Phenytoin blocks the reversal of a classically conditioned discriminative eyeblink response in rabbits.
Epilepsia 1998;39(6):584-9.
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1998: Rogers R F; Steinmetz J E
Contextually based conditional discrimination of the rabbit eyeblink response.
Neurobiology of learning and memory 1998;69(3):307-19.
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1997: Katz D B; Steinmetz J E
Single-unit evidence for eye-blink conditioning in cerebellar cortex is altered, but not eliminated, by interpositus nucleus lesions.
Learning & memory (Cold Spring Harbor, N.Y.) 1997;4(1):88-104.
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1996: Gabriel M; Kang E; Poremba A; Kubota Y; Allen M T; Miller D P; Steinmetz J E
Neural substrates of discriminative avoidance learning and classical eyeblink conditioning in rabbits: a double dissociation.
Behavioural brain research 1996;82(1):23-30.
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1996: Sears L L; Logue S F; Steinmetz J E
Involvement of the ventrolateral thalamic nucleus in rabbit classical eyeblink conditioning.
Behavioural brain research 1996;74(1-2):105-17.
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1996: Allen M T; Steinmetz J E
A nitric oxide synthase inhibitor delays the formation of learning-related neural activity in the cerebellar interpositus nucleus during rabbit eyelid conditioning.
Pharmacology, biochemistry, and behavior 1996;53(1):147-53.
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1996: Gould T J; Steinmetz J E
Changes in rabbit cerebellar cortical and interpositus nucleus activity during acquisition, extinction, and backward classical eyelid conditioning.
Neurobiology of learning and memory 1996;65(1):17-34.
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1994: Sears L L; Finn P R; Steinmetz J E
Abnormal classical eye-blink conditioning in autism.
Journal of autism and developmental disorders 1994;24(6):737-51.
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1994: Gould T J; Steinmetz J E
Multiple-unit activity from rabbit cerebellar cortex and interpositus nucleus during classical discrimination/reversal eyelid conditioning.
Brain research 1994;652(1):98-106.
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1994: Anderson B J; Steinmetz J E
Cerebellar and brainstem circuits involved in classical eyeblink conditioning.
Reviews in the neurosciences 1994;5(3):251-73.
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1994: White I M; Miller D P; White W; Dike G L; Rebec G V; Steinmetz J E
Neuronal activity in rabbit neostriatum during classical eyelid conditioning.
Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale 1994;99(2):179-90.
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1993: Steinmetz J E; Logue S F; Miller D P
Using signaled barpressing tasks to study the neural substrates of appetitive and aversive learning in rats: behavioral manipulations and cerebellar lesions.
Behavioral neuroscience 1993;107(6):941-54.
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1993: Gould T J; Sears L L; Steinmetz J E
Possible CS and US pathways for rabbit classical eyelid conditioning: electrophysiological evidence for projections from the pontine nuclei and inferior olive to cerebellar cortex and nuclei.
Behavioral and neural biology 1993;60(2):172-85.
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1993: Woodruff-Pak D S; Lavond D G; Logan C G; Steinmetz J E; Thompson R F
Cerebellar cortical lesions and reacquisition in classical conditioning of the nictitating membrane response in rabbits.
Brain research 1993;608(1):67-77.
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1992: Steinmetz J E; Lavond D G; Ivkovich D; Logan C G; Thompson R F
Disruption of classical eyelid conditioning after cerebellar lesions: damage to a memory trace system or a simple performance deficit?
The Journal of neuroscience : the official journal of the Society for Neuroscience 1992;12(11):4403-26.
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1992: Steinmetz J E; Logue S F; Steinmetz S S
Rabbit classically conditioned eyelid responses do not reappear after interpositus nucleus lesion and extensive post-lesion training.
Behavioural brain research 1992;51(1):103-14.
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1992: Chapman P F; Atkins C M; Allen M T; Haley J E; Steinmetz J E
Inhibition of nitric oxide synthesis impairs two different forms of learning.
Neuroreport 1992;3(7):567-70.
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1992: Steinmetz J E; Sengelaub D R
Possible conditioned stimulus pathway for classical eyelid conditioning in rabbits. I. Anatomical evidence for direct projections from the pontine nuclei to the cerebellar interpositus nucleus.
Behavioral and neural biology 1992;57(2):103-15.
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1991: Steinmetz J E; Sears L L; Gabriel M; Kubota Y; Poremba A; Kang E
Cerebellar interpositus nucleus lesions disrupt classical nictitating membrane conditioning but not discriminative avoidance learning in rabbits.
Behavioural brain research 1991;45(1):71-80.
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1991: Sears L L; Steinmetz J E
Dorsal accessory inferior olive activity diminishes during acquisition of the rabbit classically conditioned eyelid response.
Brain research 1991;545(1-2):114-22.
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1991: Gould T J; Steinmetz J E
Haloperidol impairs classical nictitating membrane conditioning in rabbits when stimulation of the pontine nuclei is used as a conditioned stimulus.
Life sciences 1991;49(3):233-40.
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1990: Chapman P F; Steinmetz J E; Sears L L; Thompson R F
Effects of lidocaine injection in the interpositus nucleus and red nucleus on conditioned behavioral and neuronal responses.
Brain research 1990;537(1-2):149-56.
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1990: Sears L L; Steinmetz J E
Acquisition of classically conditioned-related activity in the hippocampus is affected by lesions of the cerebellar interpositus nucleus.
Behavioral neuroscience 1990;104(5):681-92.
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1990: Sears L L; Steinmetz J E
Haloperidol impairs classically conditioned nictitating membrane responses and conditioning-related cerebellar interpositus nucleus activity in rabbits.
Pharmacology, biochemistry, and behavior 1990;36(4):821-30.
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1990: Steinmetz J E
Classical nictitating membrane conditioning in rabbits with varying interstimulus intervals and direct activation of cerebellar mossy fibers as the CS.
Behavioural brain research 1990;38(2):97-108.
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1989: Rosen D J; Steinmetz J E; Thompson R F
Classical discrimination conditioning of the rabbit's eyelid response using pontine stimulation as a conditioned stimulus.
Behavioral and neural biology 1989;52(1):51-62.
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1989: Lavond D G; Steinmetz J E
Acquisition of classical conditioning without cerebellar cortex.
Behavioural brain research 1989;33(2):113-64.
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1989: Steinmetz J E; Lavond D G; Thompson R F
Classical conditioning in rabbits using pontine nucleus stimulation as a conditioned stimulus and inferior olive stimulation as an unconditioned stimulus.
Synapse (New York, N.Y.) 1989;3(3):225-33.
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1988: Woodruff-Pak D S; Steinmetz J E; Thompson R F
Classical conditioning of rabbits 2-1/2 to 4 years old using mossy fiber stimulation as a CS.
Neurobiology of aging 1988;9(2):187-93.
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1988: Chapman P F; Steinmetz J E; Thompson R F
Classical conditioning does not occur when direct stimulation of the red nucleus or cerebellar nuclei is the unconditioned stimulus.
Brain research 1988;442(1):97-104.
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1987: Lavond D G; Knowlton B J; Steinmetz J E; Thompson R F
Classical conditioning of the rabbit eyelid response with a mossy-fiber stimulation CS: II. Lateral reticular nucleus stimulation.
Behavioral neuroscience 1987;101(5):676-82.
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1987: Steinmetz J E; Logan C G; Rosen D J; Thompson J K; Lavond D G; Thompson R F
Initial localization of the acoustic conditioned stimulus projection system to the cerebellum essential for classical eyelid conditioning.
Proceedings of the National Academy of Sciences of the United States of America 1987;84(10):3531-5.
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1987: Lavond D G; Steinmetz J E; Yokaitis M H; Thompson R F
Reacquisition of classical conditioning after removal of cerebellar cortex.
Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale 1987;67(3):569-93.
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1986: Steinmetz J E; Rosen D J; Chapman P F; Lavond D G; Thompson R F
Classical conditioning of the rabbit eyelid response with a mossy-fiber stimulation CS: I. Pontine nuclei and middle cerebellar peduncle stimulation.
Behavioral neuroscience 1986;100(6):878-87.
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1986: Steinmetz J E; Rosen D J; Woodruff-Pak D S; Lavond D G; Thompson R F
Rapid transfer of training occurs when direct mossy fiber stimulation is used as a conditioned stimulus for classical eyelid conditioning.
Neuroscience research 1986;3(6):606-16.
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