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Effects of Ventral Effects of Ventral and Dorsal CA and Dorsal CA 1 1 Subregional Lesions Subregional Lesions on Trace Fear on Trace Fear Conditioning Conditioning J.L. Rogers, M.R. J.L. Rogers, M.R. Hunsaker, R.P. Kesner Hunsaker, R.P. Kesner

Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

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Fear Conditioning Circuitry

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Page 1: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Effects of Ventral and Effects of Ventral and Dorsal CADorsal CA11

Subregional Lesions Subregional Lesions on Trace Fear on Trace Fear ConditioningConditioningJ.L. Rogers, M.R. J.L. Rogers, M.R.

Hunsaker, R.P. KesnerHunsaker, R.P. Kesner

Page 2: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Role of Hippocampus in Role of Hippocampus in Pavlovian Fear Pavlovian Fear ConditioningConditioning

• Complete lesions produce deficits in contextual fear. (acquisition and consolidation)

• Regulates when and where extinction memories are expressed.

• Necessary for association if stimuli separated in time (trace).– Over time performance depends on

prefrontal cortex (PFC).

Page 3: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Fear Conditioning Fear Conditioning CircuitryCircuitry

Page 4: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Contextual Extinction Contextual Extinction RetrievalRetrieval

Page 5: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner
Page 6: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

HippocampusHippocampus• Dorsal (posterior - primates)–50% of volume –Preferential role – spatial learning

• Ventral (Anterior – primates)–50% of volume –Preferential role – anxiety

behaviors

Page 7: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner
Page 8: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

• Major input of visual-spatial information from primary sensory cortical areas is into dorsal subregion. (olfactory evenly distributed)

• Ventral subregion projects to PFC, dorsal does not.

• Ventral more closely connected to BNST, Amygdala, and Hypothalamic structures (HPA)

Anatomical ConnectionsAnatomical Connections

Page 9: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner
Page 10: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

• CA1 subregion involved in temporal pattern association and intermediate-term memory.

• CA1 pyramidal neurons increase activity during trace conditioning.

• CA1 NMDA receptors necessary for trace conditioning.

Page 11: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

AimsAims• Determine if ventral and dorsal

CA1 subregion of hippocampus have different roles in trace fear conditioning.

Page 12: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

MethodsMethods• 24 Long-Evans rats (4 months,

300-400g)• Tested during light phase• Stereotaxic infusion of ibotenic

acid into dorsal (n = 9) and ventral CA1 (n =7)

• Controls (n = 8) – vehicle infusions into CA1

Page 13: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Ibotenic AcidIbotenic Acid• Toxin produced by

Amanita muscaria andAmanita pantherina mushrooms

• Excitatory Amino acid agonist

• Damage to adjacent areas, fibers-of-passage, and damage to the vasculature are minimized.

Page 14: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Methodological Methodological ConsiderationsConsiderations

• Excitotoxic lesions can cause over-excitation of “downstream” structures – dysfunction of other parts of the circuit.

• Rats – hippocampus surface area ~1.2cm2 , entire isocortex ~1.5cm2 .

• Damage to amygdala and cortex. • Produce cell death – oxidative

stress.

Page 15: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner
Page 16: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

ApparatusApparatus• One used for

conditioning and context acquisition

• Another, without contextual cues or shock, used for retention testing for tone-trace

Page 17: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

• Day1 - AcquisitionDay1 - Acquisition– 2 min – 15 trials tone-trace-shock

»32s, 10s, 2s (0.5mA) (72s ITI)– Freezing measured during baseline, tone,

trace

• Day 2 –Day 2 – Context retentionContext retention– (24 hrs later) Same chamber, 8 min.

without tone, freezing measured every 8s.

• Day 3 – Tone-trace retentionDay 3 – Tone-trace retention– (48 hrs later) Different chamber, 2min

preexposure with 15 tone trace combinations freezing measured every 8s.

Page 18: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Context AcquisitionContext Acquisition

Page 19: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Context TestContext Test

Page 20: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Summary Context Summary Context ResultsResults

• All groups displayed freezing during ITI of acquisition phase.

• Ventral CA1 lesion group froze less than dorsal CA1 lesion group and controls.

• Dorsal CA1 lesion group froze significantly less than controls.

• Both involved in contextual retention , ventral more.

Page 21: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Trace AcquisitionTrace Acquisition

Page 22: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Trace TestTrace Test

Page 23: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Summary Trace Summary Trace ResultsResults

• Dorsal and ventral CA1 lesion groups not different from controls during acquisition.

• Retention – ventral CA1 froze less than controls and dorsal CA1 lesion group, dorsal CA1 lesion group was not different from controls.

Page 24: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Tone AcquisitionTone Acquisition

Page 25: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Tone TestTone Test

Page 26: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

Summary Tone ResultsSummary Tone Results

• During acquisition all groups froze during tone.

• No significant main effect for groups during retention.

Page 27: Effects of Ventral and Dorsal CA 1 Subregional Lesions on Trace Fear Conditioning J.L. Rogers, M.R. Hunsaker, R.P. Kesner

ConclusionsConclusions• Acquisition not disrupted by CA1 (d

or v) lesions.–May involve entire hippocampus

(DG, CA3)• Ventral CA1 “more important” than

dorsal CA1 for retention of context and trace fear memory but dorsal involved.

• “Mild” deficits to tone retention.