Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

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Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015

Transcript of Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Page 1: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Circular statisticsMaximum likelihood

Local likelihoodKenneth D. Harris

4/3/2015

Page 2: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Relationship of cells to oscillations

Klausberger & Somogyi, Science 2008

Page 3: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Relationship of cells to oscillations

O’Keefe & Recce, Hippocampus 1993

Page 4: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

How do we quantify:

• A cell’s average phase of firing?

• How phase depends on other variables?

Page 5: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Computing instantaneous phase• Hilbert transform

• Peak fitting

Page 6: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Phase histogram

• Different cells prefer different phases

• How do we compute each cell’s mean phase?

Page 7: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Linear mean doesn’t work

Page 8: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Circular mean

• Treat angles as points on a circle

• The mean of these gives you• Circular mean • Vector strength

• If all angles are the same:• is this angle• is 1

• If angles are completely uniform• is 0• is meaningless.

𝑧=𝑒𝑖𝜃

𝑧=𝑅𝑒𝑖𝜃

𝜃R

Page 9: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

von Mises distribution

• is central angle

• is concentration parameter• Larger -> more peaked• Zero -> uniform distribution

• is a Modified Bessel function• Needed to make probabilities integrate to 1.

Page 10: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Maximum likelihood estimation

• Given data set , how do we estimate parameters and ?

• Choose them to maximize

Page 11: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Maximum likelihood estimation

• Given data set , how do we estimate parameters and ?

• Log likelihood

• Solve and

Page 12: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Maximum likelihood von Mises

• , ( = circular mean).

• is the solution of , ( = vector strength).

• is another modified Bessel function.

Page 13: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

How does phase depend on another variable?

• Don’t use linear regression!

Page 14: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Locally-weighted likelihood

• Log likelihood

• Locally-weighted likelihood • Spike phases occur at positions :

E.g.

Page 15: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Kernel smoother

Is local likelihood for a Gaussian

Page 16: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Place field estimation

Local likelihood estimation for a Poisson distribution

Page 17: Circular statistics Maximum likelihood Local likelihood Kenneth D. Harris 4/3/2015.

Phase field

• Local likelihood estimation for von Mises

Physical space

Abstract space

Harris et al Nature 2002

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Confirmatory statistics:

• How to test that phase is independent of place?

• Shuffling method?

• Test statistic?