Key references Flashcards

(38 cards)

1
Q

Place cell remapping experiment - different box, same location

A

Fyhn et al 2007

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2
Q

Place cell remapping experiment - same box different location

A

Fyhn et al 2007

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3
Q

Place cell remapping experiment - different colour box walls

A

Fyhn et al 2007

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4
Q

Anterograde amnesia

A

Weiskrantz and Warrington 1979

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5
Q

unilateral lesions

A

Yeo et al 1995

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6
Q

food in bards

A

Rose at al., 2019

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7
Q

phase precession in Sz

A

Speers et al., 2021

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8
Q

memory consolidation in sleep

A

Lee and Wilson 2002

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9
Q

forward/revers replay

A

Diba and Busaki 2008

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10
Q

position decoding

A

Johnson and Redish 2007

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11
Q

O’Keefe and Dostrovsky 1971

A

place cells

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12
Q

phase precession

A

O’Keefe and Recce 1993

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13
Q

jennifer anniston cells

A

Quiroga et al 2005

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14
Q

hedonic hotspots

A

Pecina smith and berridge 2006

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15
Q

stimulation in rats

A

Olds & Milner 1954

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16
Q

lateral hypothalamus

A

Hernandez and Hoebel 1988

17
Q

extinction, loading, reinstatement

18
Q

THC and heroin study

A

Tanda et al., 1997

19
Q

gamble task

A

Stauffer et al 2014

20
Q

drugs block natural RPE

A

Pope et al 2016; Volkow & Morales 2015

21
Q

midbrain DA RPE

22
Q

stepwise transfer

A

schultz 2016, enomoto et al 2011

23
Q

cerebellum inhibitis inferior olive once CR learned

A

Medina et al 2002

24
Q

lesions in cortex = weak CR

cortex = timing/amp
nucleus = storage

A

Lindquist et al 2013

25
pro brainstem = performance deficit
Llinas and Welsh 1993
26
large lesions in deep nuclei = CR abolished (memory trace stored)
Thompson 1983
27
slice studies
Ito 1984a
28
adaptive filter
Dean et al 2010
29
role of LTD
Medina and Mauk 2000
30
LTD at PF-PC
Jirenhead et al 2007
31
CNQX
Attwell et al 2001
32
blocking red nucleus removes cr but comes back = just a performance deficit not loss of memory
Krupa et al 1993
33
slices are protective and not in vivo
DeSchutter et al 1995
34
deep nucleur inactivation inhibits feedback to IO = More complex spikes and extinction of CR
Zucca et al 2016
35
microzones all PC receive identical CF input and project to same area cerebellum parallelised into many adaptive filters
Eccles 1967
36
dual-pathway plasticity direct = PF-PC (excitatory) indirect = PF - interneurons - PC (inhib) If direct pathway undergoes LTD, indirect does LTP to minimise error
Häusser & Clark (1997)
37
Knockout mice
schonwille et al 2011
38
Law of effect
Thorndike 1988