Prefrontal working memory signal controls phase-coded information within extrastriate cortex
Опубликована: Апрель 8, 2025
In
order
to
understand
how
prefrontal
cortex
provides
the
benefits
of
working
memory
(WM)
for
visual
processing
we
examined
influence
WM
on
representation
signals
in
V4
neurons
two
macaque
monkeys.
We
found
that
induces
strong
β
oscillations
and
timing
action
potentials
relative
this
oscillation
reflects
sensory
information-i.e.,
a
phase
coding
information.
Pharmacologically
inactivating
Frontal
Eye
Field
part
cortex,
confirmed
necessity
WM-driven
boost
Indeed,
changes
average
firing
rate
were
correlated
with
WM-induced
oscillatory
changes.
present
network
model
describe
can
recruit
areas
by
inducing
within
these
discuss
implications
findings
recruitment
theory
through
coherence.
Язык: Английский
Machine Learning Diagnosis of Node Failures Based on Wireless Sensor Networks
Applied Mathematics and Nonlinear Sciences,
Год журнала:
2024,
Номер
9(1)
Опубликована: Янв. 1, 2024
Abstract
Wireless
sensors
are
widely
deployed
to
harsh
environments
for
information
monitoring,
as
the
sensor
nodes
highly
susceptible
various
failures,
resulting
in
erroneous
monitoring
data.
Sensor
fault
diagnosis
is
subject
of
research
work
this
paper.
faults
categorized
based
on
their
causes
and
mechanisms.
Secondly,
wavelet
transform,
tuned
Q
LSTM-based
neural
network
model
utilized
equipment
feature
extraction
diagnosis.
The
structure
LSTM
network,
well
parameter
settings,
completed
with
an
adaptive
moment
estimation
algorithm
training,
simulations
carried
out
verification.
diagnostic
accuracy
paper
high
97%,
root
mean
square
error
converges
0.02
after
170
times
which
shows
training
time
very
short,
only
1.226s,
that
efficient
meets
requirements
practical
applications,
proving
effectiveness
paper’s
wireless
node
Язык: Английский
Prefrontal working memory signal primarily controls phase-coded information within extrastriate cortex
bioRxiv (Cold Spring Harbor Laboratory),
Год журнала:
2024,
Номер
unknown
Опубликована: Авг. 29, 2024
Abstract
In
order
to
understand
how
prefrontal
cortex
provides
the
benefits
of
working
memory
(WM)
for
visual
processing
we
examined
influence
WM
on
representation
signals
in
V4
neurons
two
macaque
monkeys.
We
found
that
induces
strong
β
oscillations
and
timing
action
potentials
relative
this
oscillation
reflects
sensory
information-i.e.,
a
phase
coding
information.
Pharmacologically
inactivating
Frontal
Eye
Field
part
cortex,
confirmed
necessity
WM-driven
boost
Indeed,
changes
average
firing
rate
could
be
accounted
by
WM-induced
oscillatory
changes.
present
network
model
describe
can
recruit
areas
primarily
inducing
within
these
discuss
implications
findings
recruitment
theory
through
coherence.
Язык: Английский
Prefrontal working memory signal primarily controls phase-coded information within extrastriate cortex
Опубликована: Дек. 13, 2024
In
order
to
understand
how
prefrontal
cortex
provides
the
benefits
of
working
memory
(WM)
for
visual
processing
we
examined
influence
WM
on
representation
signals
in
V4
neurons
two
macaque
monkeys.
We
found
that
induces
strong
β
oscillations
and
timing
action
potentials
relative
this
oscillation
reflects
sensory
information-i.e.,
a
phase
coding
information.
Pharmacologically
inactivating
Frontal
Eye
Field
part
cortex,
confirmed
necessity
WM-driven
boost
Indeed,
changes
average
firing
rate
could
be
accounted
by
WM-induced
oscillatory
changes.
present
network
model
describe
can
recruit
areas
primarily
inducing
within
these
discuss
implications
findings
recruitment
theory
through
coherence.
Язык: Английский
Prefrontal working memory signal primarily controls phase-coded information within extrastriate cortex
Опубликована: Дек. 13, 2024
In
order
to
understand
how
prefrontal
cortex
provides
the
benefits
of
working
memory
(WM)
for
visual
processing
we
examined
influence
WM
on
representation
signals
in
V4
neurons
two
macaque
monkeys.
We
found
that
induces
strong
β
oscillations
and
timing
action
potentials
relative
this
oscillation
reflects
sensory
information-i.e.,
a
phase
coding
information.
Pharmacologically
inactivating
Frontal
Eye
Field
part
cortex,
confirmed
necessity
WM-driven
boost
Indeed,
changes
average
firing
rate
could
be
accounted
by
WM-induced
oscillatory
changes.
present
network
model
describe
can
recruit
areas
primarily
inducing
within
these
discuss
implications
findings
recruitment
theory
through
coherence.
Язык: Английский