Title: Extracting Time and Space Scales with Feedback and Nonlinearity
1Extracting Time and Space Scales with Feedback
and Nonlinearity
André Longtin Physics Cellular and Molecular
Medicine CENTER FOR NEURAL DYNAMICS UNIVERSITY
OF OTTAWA Funding by NSERC, CIHR, PREA
2Overview
- Processing of spatio-temporal signals
- Global Feedback common noise ?? oscillations
- Spatial scale for feedback and input
- Envelope processing for narrowband in time
- Information resonances
- Coincidence transforms for synchronous firing
- Short term Plasticity and information processing
3Research Program
- Stochastic neural network
- driven by
- Stochastic input in space and time
- Experimental lt-gt Theoretical
4Relevance to this group
- What nonlinearity (if any) supports patterns or
computations ?
5HIGHER BRAIN AREA II
HIGHER BRAIN AREA I
THALAMUS
RECEPTORS
PHYSICAL STIMULI
6Brain Diagram by Arab philosopher Avicenna (circa
1300)Five ventricles common sense, imagination,
judging, second imagination (composing/combining
images), memory.(University Library, Cambridge)
From Da Vincis notes
7Electrosensory lateralline lobe (ELL)
Courtesy W. Ellis (1991)
Courtesy N. Berman and L. Maler, J. Exp. Biol.,
1999
8The electric sense
Electrosensory Input
Electrosensory Lateral Line Lobe (ELL)
Electric Organ Discharge (EOD)
Higher Brain
Amplitude Modulation (AM)
Electroreceptors
afferents
Krahe and Gabbiani (2004) Nat. Neurosci.Rev.
513-23
9Temporal Characteristics
Spatial Characteristics
global
Harmonic
local
Broadband (noise)
- Frequency tuning is highly correlated with
spatial frequency- Tuning for harmonics or
broadband signals are qualitatively the same
Chacron, et al., Nature, 2003
10 Weakly Electric Fish main negative feedback
loop
ELL Pyramidal Cells the first stage of sensory
processing
11Prey Stimuli
Prey (bug) excites a fraction of the
electroreceptors Local stimulation
12Communication Stimuli
Communication calls between fish stimulate the
whole body Global Stimulation
13Oscillation Mechanism(Doiron, Chacron, Bastian,
Longtin, Maler, Nature 2003)
14Electrosensory Circuitry
15Network Model Global Stimuli
Autocorrelation
Histogram
To mimic communication stimuli we apply the
external stimulus to all neurons equally.
16Experimental VerificationDoiron, Chacron, Maler,
Longtin and Bastian, Nature 42, 539 (2003)
ISI Histogram
Autocorrelation
17Correlated Stimuli in Experiments
Each dipole emits an intrinsic noise xi(t), and
global source, xG(t). Their relative strengths
is c, i.e. the covariance between dipoles.
18Integrate-and-fire dynamics
y
19Linear Response
Consider the spike train from the ith neuron in
our network, .
Assuming weak inputs, the Fourier transform of
the spike train is
(1)
A(w) intrinsic frequency response of the noisy
neuron. Xi(w) Fourier transform of input
(external feedback) to neuron i.
20POWER SPECTRUM
21Single Neuron Power Spectrumvspercentage of
common noise (c)
(Input-output sync) (spike-spike
sync.)
22Fokker-Planck analysis on noisy Leaky
Integrate-and-fire Neurons Delays Spatial
InputDoiron, Lindner, Longtin, Bastian and
Maler, Phys. Rev. Lett. 93, 048101 (2004)Linear
Fluctuation Theory needs noise.
23Input-output coherence for delayed feedback
network(global feedback)
24Coherence function
Correlation coefficient (in the frequency domain)
between two signals, X and Y
Response spike train
Stimulus
- narrowband stimulus(linear)
- envelope of narrowbandstimulus (non-linear)
25Network of stochastic Perfect IFs with and -
global delayed feedback
S(t) is the stimulus
Chacron, Longtin, Maler, Phys.Rev.E (2005)
26Network of Perfect IFs with global feedback
Information theory
Coherence H(f)2 Pss/Pxx
27INFORMATION RESONANCE(Chacron, Longtin, Maler,
PRE 2005)
Experimental DATA !!
Glt0
G0
28Introducing
- Spatial scale for feedback
- Spatial scale for noise
- Two regimes with respect to
- gamma oscillations
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30In linear response, only the ratio of length
scales matters (Hutt, Sutherland, Longtin,
submitted)
31GLOBAL IN SPACE
- NARROWBAND IN TIME
- 2 TIME SCALES
32EOD amplitude
EOD
33EOD amplitude
EOD
Hey guys
34EODamplitude
EOD
Average Df in black (white) waters
Day 35.3 (54.1) HzNight 54.6 (65.8) Hz
Most probable populationsize 3-5 fish
From E. W. Tan et al, Behav.Brain Res.,
16483-92 (2005)
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36P-units (primary receptors)
Feed forward
- P-units respond as linear encoders
37Pyramidal Cells
- global stimulation linear
- response to narrowband signal and its low
frequency envelope- Envelope response is absent
under local stimulation
38Middleton, Longtin, Benda, Maler, PNAS (2006)
39MECHANISM
output
- Generation of envelope signal is likely due to
spike threshold nonlinearity - Output spike train is phase- locked to fast
oscillation and modulated at lower frequencies
Middleton, Harvey-Girard, Maler, Longtin, Phys.
Rev. E. (2006)
input
40transferfunction
output signal
input signal
(rectification)
41signals
Spectral composition
frequency
time
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46Network instead of single cell
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49Stochastic Envelope Gating(and not SR! See
Middleton et al., PRE 2006)
50Leaky Integrate-and-Fire (LIF) neuron
Mean firing rate
where
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52GLOBAL SPATIAL SIGNALS
- EXTRACTING
- HIGH FREQUENCY CHIRPS
- FROM
- LOWER FREQUENCY BEATS
- SYNC-DESYNC CODE
53Context electrocommunication
- Male-male or female-female call causes
synchronization of receptors - Male-female or female-male call causes
desynchronization of receptors - (Benda, Longtin, Maler, Neuron 2006)
54Encoding a modulatory signal
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56Coincidence transforms
Middleton, Longtin, Benda, Maler (submitted)
57Short-term Plasticity
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64Broadband Coding
Depression dominates
Facilitation dominates
65- Gamma rhythms for global correlated inputs
- Gamma strength proportional to correlation
- Spatial feedback can assess spatial correlation
of input - Information resonances with delayed feedback
- Envelope generation due to spike threshold
nonlinearity - Envelope generation is dependent on mean bias
and noise
66- Intrinsic noise can gate a signal competing with
envelope - Plasticity paradoxical effects on coding
- Importance of spatiotemporal statistics of input
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68Brent Doiron
Jan Benda
Len Maler André Longtin
Joe Bastian Connie Sutherland
Maurice Chacron
Benjamin Lindner
Jason Middleton
Carlo Laing
Eric Harvey-Girard
John Lewis
Axel Hutt
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70COHERENCE AND STOCHASTIC RESONANCE WITH DELAYED
FEEDBACKMorse and Longtin, Phys. Lett. A (2006)
71MULTIPLE RESONANCES(fixed driving frequency)
72- The analytic signal
- The Hilbert transform 90o phaseshift
- Mapping of a time varying signal onto a 2D phase
plane - Allows for the definition of phase and amplitude
variables
73- Ovoid Cells are high-pass
- Ovoid spike trains are coherent with
narrowband signals (blue) and their envelopes
(red) - Subthreshold voltage shows no coherence with
signal envelope
74Apteronotus Leptorhynchus
Electric Fields
Courtesy G. Hupe and J. Lewis (2005)
Courtesy R. Krahe and F. Gabbiani, Nat. Neurosci.
Rev. (2004)
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