Frontiers in Neuroscience,
Год журнала:
2018,
Номер
12
Опубликована: Окт. 26, 2018
Optogenetics
offers
many
advantages
in
terms
of
cell-type
specificity,
allowing
to
investigate
functional
connectivity
between
different
brain
areas
at
high
spatial
and
neural
population
selectivity.
In
order
obtain
simultaneous
optical
control
electrical
readout
activity,
devices
called
"optrodes"
are
employed.
They
typically
composed
a
linear
array
microelectrodes
integrated
on
slender
probe
shafts
combined
with
flat-cleaved
fibers
(FF)
placed
above
the
recording
sites.
However,
due
tissue
absorption
scattering,
light
delivered
by
FF
unevenly
illuminates
region
interest.
This
issue
is
particular
relevance
when
cellular
populations
disposed
along
dorso-ventral
axis,
such
as
medial
prefrontal
cortex
(mPFC)
where
cortical
layers
aligned
vertically.
The
study
presented
here
aims
using
tapered
(TFs)
combination
16-electrode
better
access
distributed
axis
mPFC
newborn
mice,
restricting
delivery
over
specific
portion
layer
Half
TF
surface
coated
reflecting
metal
blocking
enable
from
one
side
probe's
shaft
only,
base
being
designed
host
fiber
without
interfering
wire-bonds
that
connect
sites
printed
circuit
board.
Monte-Carlo
simulations
have
been
implemented
define
relative
TF-probe
position
identify
intensity
distribution
vivo
recordings
indicate
stimulation
activity
benefit
use
engineered
TF-based
optrode
more
uniform
possibility
subset
Trends in Neurosciences,
Год журнала:
2020,
Номер
44(3), С. 227 - 240
Опубликована: Ноя. 24, 2020
The
role
of
the
prefrontal
cortex
(PFC)
takes
center
stage
among
unanswered
questions
in
modern
neuroscience.
PFC
has
a
Janus-faced
nature:
it
enables
sophisticated
cognitive
and
social
abilities
that
reach
their
maximum
expression
humans,
yet
underlies
some
devastating
symptoms
psychiatric
disorders.
Accordingly,
appropriate
development
is
crucial
for
many
high-order
dysregulation
this
process
been
linked
to
various
neuropsychiatric
diseases.
Reviewing
recent
advances
field,
with
primary
focus
on
rodents
we
highlight
why,
despite
differences
across
species,
cross-species
approach
fruitful
strategy
understanding
development.
We
briefly
review
developmental
contribution
molecules
extensively
discuss
how
electrical
activity
controls
early
maturation
wiring
areas,
as
well
emergence
refinement
input-output
circuitry
involved
processing.
Finally,
mechanisms
dysfunction
relevance
Journal of Neuroscience,
Год журнала:
2018,
Номер
38(24), С. 5441 - 5455
Опубликована: Май 21, 2018
Neocortical
pyramidal
neurons
with
somata
in
layers
5
and
6
are
among
the
most
visually
striking
enigmatic
brain.
These
deep-layer
(DLPNs)
integrate
a
plethora
of
cortical
extracortical
synaptic
inputs
along
their
impressive
dendritic
arbors.
The
pattern
output
to
both
local
long-distance
targets
is
sculpted
by
unique
physiological
properties
specific
DLPN
subpopulations.
Here
we
revisit
two
broad
subpopulations:
those
that
send
axons
within
telencephalon
(intratelencephalic
neurons)
project
additional
target
areas
outside
(extratelencephalic
neurons).
While
neuroscientists
across
many
subdisciplines
have
characterized
intrinsic
subpopulations,
our
increasing
ability
selectively
manipulate
these
neuron
subtypes
advances
understanding
distinct
functional
contributions.
This
Viewpoints
article
summarizes
current
knowledge
about
DLPNs
highlights
recent
work
elucidating
differences
between
Throughout
development,
the
brain
transits
from
early
highly
synchronous
activity
patterns
to
a
mature
state
with
sparse
and
decorrelated
neural
activity,
yet
mechanisms
underlying
this
process
are
poorly
understood.
The
developmental
transition
has
important
functional
consequences,
as
latter
is
thought
allow
for
more
efficient
storage,
retrieval,
processing
of
information.
Here,
we
show
that,
in
mouse
medial
prefrontal
cortex
(mPFC),
during
first
two
postnatal
weeks
decorrelates
following
specific
spatial
patterns.
This
accompanied
by
concomitant
tilting
excitation-inhibition
(E-I)
ratio
toward
inhibition.
Using
optogenetic
manipulations
network
modeling,
that
phenomena
mechanistically
linked,
relative
increase
inhibition
drives
decorrelation
activity.
Accordingly,
mice
mimicking
etiology
neurodevelopmental
disorders,
subtle
alterations
E-I
associated
impairments
correlational
structure
spike
trains.
Finally,
capitalizing
on
EEG
data
newborn
babies,
an
analogous
takes
place
also
human
brain.
Thus,
changes
control
(de)correlation
and,
these
means,
its
imbalance
might
contribute
pathogenesis
disorders.
Molecular Psychiatry,
Год журнала:
2019,
Номер
25(6), С. 1159 - 1174
Опубликована: Авг. 22, 2019
Exposure
to
stress
during
early
life
(infancy/childhood)
has
long-term
effects
on
the
structure
and
function
of
prefrontal
cortex
(PFC),
increases
risk
for
adult
depression
anxiety
disorders.
However,
little
is
known
about
molecular
cellular
mechanisms
these
effects.
Here,
we
focused
changes
induced
by
chronic
maternal
separation
first
2
weeks
postnatal
life.
Unbiased
mRNA
expression
profiling
in
medial
PFC
(mPFC)
maternally
separated
(MS)
pups
identified
an
increased
myelin-related
genes
a
decreased
immediate
genes.
Oligodendrocyte
lineage
markers
birthdating
experiments
indicated
precocious
oligodendrocyte
differentiation
mPFC
at
P15,
leading
depletion
progenitor
pool
MS
adults.
We
tested
role
neuronal
activity
oligodendrogenesis,
using
designed
receptors
exclusively
activated
drugs
(DREADDs)
techniques.
hM4Di
or
hM3Dq
constructs
were
transfected
into
neurons
fast-acting
AAV8
viruses.
Reduction
neuron
excitability
caused
premature
oligodendrocytes
similar
pups,
while
chemogenetic
activation
normalised
it
animals.
Bidirectional
manipulation
P2–P14
period
had
long
lasting
emotional
behaviours
temporal
object
recognition:
mimicked
effects,
prevented
pro-depressive
short-term
memory
impairment
MS.
Thus,
our
results
identify
as
critical
target
early-life
demonstrate
its
controlling
both
oligodendrogenesis
mPFC-related
behaviours.
Neuron,
Год журнала:
2021,
Номер
109(8), С. 1350 - 1364.e6
Опубликована: Март 7, 2021
Disturbed
neuronal
activity
in
neuropsychiatric
pathologies
emerges
during
development
and
might
cause
multifold
dysfunction
by
interfering
with
apoptosis,
dendritic
growth,
synapse
formation.
However,
how
altered
electrical
early
life
affects
function
behavior
adults
is
unknown.
Here,
we
address
this
question
transiently
increasing
the
coordinated
of
layer
2/3
pyramidal
neurons
medial
prefrontal
cortex
neonatal
mice
monitoring
long-term
functional
behavioral
consequences.
We
show
that
increased
causes
premature
maturation
interneuronal
density.
Consequently,
inhibitory
feedback
fast-spiking
interneurons
excitation/inhibition
imbalance
circuits
young
result
weaker
evoked
synchronization
gamma
frequency.
These
structural
changes
ultimately
lead
to
poorer
mnemonic
social
abilities.
Thus,
actively
controls
cognitive
performance
be
critical
for
symptoms
diseases.
Neuron,
Год журнала:
2024,
Номер
112(7), С. 1060 - 1080
Опубликована: Фев. 14, 2024
Human
episodic
memory
is
not
functionally
evident
until
about
2
years
of
age
and
continues
to
develop
into
the
school
years.
Behavioral
studies
have
elucidated
this
developmental
timeline
its
constituent
processes.
In
tandem,
lesion
neurophysiological
in
non-human
primates
rodents
identified
key
neural
substrates
circuit
mechanisms
that
may
underlie
development.
Despite
progress,
collaborative
efforts
between
psychologists
neuroscientists
remain
limited,
hindering
progress.
Here,
we
seek
bridge
human
development
research
by
offering
a
comparative
review
using
humans,
primates,
rodents.
We
highlight
critical
theoretical
methodological
issues
limit
cross-fertilization
propose
common
framework,
adaptable
different
species,
facilitate
cross-species
endeavors.
Journal of Neuroscience Research,
Год журнала:
2025,
Номер
103(2)
Опубликована: Фев. 1, 2025
ABSTRACT
Parkinson's
disease
(PD)‐related
depression
is
associated
with
aberrant
neuronal
oscillations
and
5‐hydroxytryptamine
(5‐HT)
neurotransmission
in
the
medial
prefrontal
cortex
(mPFC).
Intermittent
theta‐burst
stimulation
(iTBS),
an
updated
pattern
of
high‐frequency
repetitive
transcranial
magnetic
stimulation,
has
possible
efficacy
PD‐related
depression.
However,
whether
iTBS
alleviates
through
modulating
5‐HT
levels
mPFC
not
been
determined.
In
this
study,
male
Sprague–Dawley
rats
were
used
to
establish
a
unilateral
6‐hydroxydopamine‐induced
PD
model.
Then,
acute
was
applied
parkinsonian
rats,
behavioral,
neurochemical,
electrophysiological
experiments
performed.
We
found
that
exhibited
increased
immobility
time
decreased
sucrose
preference
accompanied
by
increase
δ
power
decrease
θ
compared
sham‐operated
rats.
One
block
(1
block‐iTBS,
300
stimuli)
alleviated
depressive‐like
behaviors
elevated
sham‐iTBS.
Additionally,
it
altered
opposite
fashion
suppressing
rhythm
enhancing
β
rhythms
sham‐iTBS,
suggesting
induces
hyperactivity
mPFC.
With
paradigm,
we
also
observed
parvalbumin
expression
mPFC,
reflecting
reduced
cortical
inhibition.
Finally,
correlation
analyses
showed
strong
between
after
1
block‐iTBS.
These
findings
suggest
application
produces
antidepressant‐like
effects,
which
may
be
normalized
Journal of Neuroscience Research,
Год журнала:
2018,
Номер
97(5), С. 620 - 638
Опубликована: Дек. 26, 2018
Abstract
Electrical
stimulation
of
the
brain
has
become
a
mainstay
fundamental
neuroscience
research
and
an
increasingly
prevalent
clinical
therapy.
Despite
decades
use
in
basic
growing
prevalence
neuromodulation
therapies,
gaps
knowledge
regarding
activation
or
inactivation
neural
elements
over
time
have
limited
its
ability
to
adequately
interpret
evoked
downstream
responses
fine‐tune
parameters
focus
on
desired
responses.
In
this
work,
vivo
two‐photon
microscopy
was
used
image
neuronal
calcium
activity
layer
2/3
neurons
somatosensory
cortex
(S1)
male
C57BL/6J‐Tg(Thy1‐GCaMP6s)GP4.3Dkim/J
mice
during
30
s
continuous
electrical
at
varying
frequencies.
We
show
frequency–dependent
differences
spatial
temporal
somatic
stimulation.
Our
results
elucidate
conflicting
from
prior
studies
reporting
either
dense
spherical
somas
biased
toward
those
near
electrode,
sparse
distance
via
axons
electrode.
These
findings
indicate
that
element
specific
response
local
stimulating
electrode
changes
as
function
applied
charge
density
frequency.
need
be
considered
properly
circuit
determining
mechanisms
action
science
experiments
therapeutic
applications.