Maguire Flashcards

1
Q

Aim

A
  • investigate differences of hippocampus vol in London taxi drivers + non ltd
  • see how far brain shows neuroplasticity when exposed to extensive navigation experience
  • see if there’s correlation between taxi driving experience length & measure of grey matter vol
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
2
Q

Method

A
  • Quasi: (taxi or not) highly controlled
  • Correlation: (experience length)
  • Matched pairs: minimises individual differences
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
3
Q

Sample

A
  • 16 taxi drivers
  • male, right handed
  • 32-62y (mean 44y)
  • healthy medical, neurological + psychiatric profiles

comparison group
- 50 control pts chosen from MRI scan database at same unit where tds scanned
- healthy, male, 32-62y

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
4
Q

Variables

A
  • IV: taxi drivers & non-taxi drivers
  • DV: hippocampus vol
  • Correlational analysis: length of experience (V1) & grey matter vol (V2)
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
5
Q

Procedure: Voxel-Based Morphometry

A
  • separates imaging of white & grey matter
  • identifies differences in grey matter densities in diff brain parts
  • grey matter has dense neural connections + associated w higher order of thinking
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
6
Q

Procedure 2: Pixel Counting

A
  • pixels counted in photographic ‘slices’ made thru brain using MRI ~ calculate hippocampus vol
  • pixels counted for anterior (front), posterior (back) + body hippocampus
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
7
Q

Controls

A
  • ppts scanned using same scanner adjustments
  • diff brain sizes accounted ~ all data = comparable
  • expert analysers blind to ppts td/not td
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
8
Q

Results: Experiment

A
  • td greater grey matter vol in posterior hippocampus (remember by: posture = back = I sit back of taxi)
  • ntd greater vol in anterior hippocampus
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
9
Q

Results: Correlation

A
  • longer td = more dense posterior hippocampus ~ significant positive correlation
  • ~ more experience = more grey matter ANTERIOR
  • significant negative correlation for anterior hippocampus
  • ~ more experience = less grey matter in ANTERIOR hippocampus
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
10
Q

Conclusion: Experiment

A
  • navigation skills in ltd associated w REDISTRIBUTION of grey matter in hippocampus
  • brain plasticity ; brain structure changes in response to environmental demand
  • ~ mental map of London stored in posterior hippocampus
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
11
Q

Correlation

A
  • supports ^ ; longer experience = greater posterior hippocampus vol
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
12
Q

Type of Data

A

Quantitaive
grey matter density & no. Pixels measured

Scan analysis:
- Objective & replicable
- Useful for analysis & comparison
- Unbiased

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
13
Q

Validity

A
  • High internal: controls (eg. Blind expert analyser) ensures only IV (td/ntd) impact DV (hippocampus vol)
  • Low ecological: unrealistic ; brain not measured in relation to driving/navigating experience
  • Concurrent Validitiy: both Quasi experiment & Correlation results support same conclusion
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
14
Q

Reliability

A
  • High ; used accurate/scientific equipment, eg. fMRI
  • standaridised procedure: all similar experience ; controls, eg. Scanned by same scanner
  • BUT no measure of amount of driving done by controls
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
15
Q

Sampling bias/Ethnocentirsm

A
  • biased ; small, all male, from London, right handed
How well did you know this?
1
Not at all
2
3
4
5
Perfectly
16
Q

Ethics

A
  • informed consent
  • slight PFH: ; fMRI little stressful but only 16 did + used 50 scans from previous patients so ppl unnecessary stress
17
Q

Practical Applications

A
  • normal activity can induce changes in brain structure & grey matter
  • many implications for rehabilitation after brain injury