Bioengineering,
Год журнала:
2023,
Номер
11(1), С. 32 - 32
Опубликована: Дек. 27, 2023
Notably,
3D-printed
flexible
and
wearable
biosensors
have
immense
potential
to
interact
with
the
human
body
noninvasively
for
real-time
continuous
health
monitoring
of
physiological
parameters.
This
paper
comprehensively
reviews
progress
in
biosensors.
The
review
also
explores
incorporation
nanocomposites
3D
printing
A
detailed
analysis
various
processes
fabricating
is
reported.
Besides
this,
recent
advances
platforms
such
as
sweat
sensors,
glucose
electrocardiography
electroencephalography
tactile
oximeters,
tattoo
respiratory
sensors
are
discussed.
Furthermore,
challenges
prospects
associated
presented.
an
invaluable
resource
engineers,
researchers,
healthcare
clinicians,
providing
insights
into
advancements
capabilities
biosensor
domain.
Biosensors,
Год журнала:
2024,
Номер
14(7), С. 356 - 356
Опубликована: Июль 22, 2024
The
steady
progress
in
consumer
electronics,
together
with
improvement
microflow
techniques,
nanotechnology,
and
data
processing,
has
led
to
implementation
of
cost-effective,
user-friendly
portable
devices,
which
play
the
role
not
only
gadgets
but
also
diagnostic
tools.
Moreover,
numerous
smart
devices
monitor
patients'
health,
some
them
are
applied
point-of-care
(PoC)
tests
as
a
reliable
source
evaluation
patient's
condition.
Current
practices
still
based
on
laboratory
tests,
preceded
by
collection
biological
samples,
then
tested
clinical
conditions
trained
personnel
specialistic
equipment.
In
practice,
collecting
passive/active
physiological
behavioral
from
patients
real
time
feeding
artificial
intelligence
(AI)
models
can
significantly
improve
decision
process
regarding
diagnosis
treatment
procedures
via
omission
conventional
sampling
while
excluding
pathologists.
A
combination
novel
methods
digital
traditional
biomarker
detection
portable,
autonomous,
miniaturized
revolutionize
medical
diagnostics
coming
years.
This
article
focuses
comparison
modern
techniques
AI
machine
learning
(ML).
presented
technologies
will
bypass
laboratories
start
being
commercialized,
should
lead
or
substitution
current
Their
application
PoC
settings
technology
accessible
every
patient
appears
be
possibility.
Research
this
field
is
expected
intensify
Technological
advancements
sensors
biosensors
anticipated
enable
continuous
real-time
analysis
various
omics
fields,
fostering
early
disease
intervention
strategies.
integration
health
platforms
would
predictive
personalized
healthcare,
emphasizing
importance
interdisciplinary
collaboration
related
scientific
fields.
Journal of Biological Engineering,
Год журнала:
2024,
Номер
18(1)
Опубликована: Апрель 18, 2024
Periodontitis,
a
chronic
inflammatory
condition
caused
by
bacteria,
often
causes
gradual
destruction
of
the
components
that
support
teeth,
such
as
alveolar
bone,
cementum,
periodontal
ligament,
and
gingiva.
This
ultimately
results
in
teeth
becoming
loose
eventually
falling
out.
Timely
identification
has
crucial
role
preventing
controlling
its
progression.
Clinical
measures
are
used
to
diagnose
periodontitis.
However,
now,
there
is
hunt
for
alternative
diagnostic
monitoring
methods
due
progress
technology.
Various
biomarkers
have
been
assessed
using
multiple
bodily
fluids
sample
sources.
Furthermore,
conventional
categorization
factors
do
not
provide
significant
insights
into
present
disease
activity,
severity
amount
tissue
damage,
future
development,
responsiveness
treatment.
In
recent
times,
growing
utilization
nanoparticle
(NP)-based
detection
strategies
create
quick
efficient
assays.
Every
single
one
these
platforms
leverages
distinct
characteristics
NPs
identify
Plasmonic
include
metal
NPs,
quantum
dots
(QDs),
carbon
base
nanozymes,
exceptionally
potent
light
absorbers
scatterers.
These
find
application
labeling,
surface-enhanced
spectroscopy,
color-changing
sensors.
Fluorescent
function
photostable
sensitive
instruments
capable
labeling
various
biological
targets.
article
presents
comprehensive
summary
latest
developments
effective
detect
Humanities and Social Sciences Communications,
Год журнала:
2024,
Номер
11(1)
Опубликована: Март 15, 2024
Abstract
The
purpose
of
this
research
is
to
identify
and
evaluate
the
technical,
ethical
regulatory
challenges
related
use
Artificial
Intelligence
(AI)
in
healthcare.
potential
applications
AI
healthcare
seem
limitless
vary
their
nature
scope,
ranging
from
privacy,
research,
informed
consent,
patient
autonomy,
accountability,
health
equity,
fairness,
AI-based
diagnostic
algorithms
care
management
through
automation
for
specific
manual
activities
reduce
paperwork
human
error.
main
faced
by
states
regulating
were
identified,
especially
legal
voids
complexities
adequate
regulation
better
transparency.
A
few
recommendations
made
protect
data,
mitigate
risks
regulate
more
efficiently
international
cooperation
adoption
harmonized
standards
under
World
Health
Organization
(WHO)
line
with
its
constitutional
mandate
digital
public
health.
European
Union
(EU)
law
can
serve
as
a
model
guidance
WHO
reform
International
Regulations
(IHR).
Applied Sciences,
Год журнала:
2024,
Номер
14(5), С. 1876 - 1876
Опубликована: Фев. 25, 2024
This
comprehensive
review
paper
explores
the
intricate
integration
of
biosensors
with
multi-hop
Internet
Things
(IoT)
systems,
representing
a
paradigm
shift
in
healthcare
through
real-time
remote
patient
monitoring.
The
strategic
deployment
different
locations
medical
facilities,
intricately
connected
to
multiple
microcontrollers,
serves
as
cornerstone
establishment
robust
IoT
networks.
highlights
role
this
network,
which
efficiently
facilitates
seamless
transmission
vital
health
data
centralized
server.
Crucially,
utilization
cloud
connectivity
emerges
linchpin
integration,
providing
secure
and
scalable
platform
for
cloud-based
approach
not
only
improves
accessibility
critical
information
but
also
transcends
physical
limitations,
allowing
providers
monitor
patients
from
any
location.
transformative
potential
overcoming
traditional
limitations
Distributed
micro-energy
harvesting
devices
offer
the
flexibility,
sustainability,
and
multi-scenario
applicability
that
will
be
critical
to
wearable
electronic
products
in
Internet
of
Things.
The
radiofrequency
triboelectric
(RF-TE)
hybrid
energy
harvester
(HEH)
concept
prototype
is
presented
for
first
time,
simultaneously
capture
from
ambient
electromagnetic
waves
biological
motions.
proposed
system
consists
a
rectenna,
nanogenerator
(TENG),
power
management
circuit
(PMC).
Among
them,
all-fabric
rectenna
exhibits
good
impedance
matching
characteristics
ISM
frequency.
flexible
TENG
unit
can
generate
maximum
density
0.024
µW
cm
Computers,
Год журнала:
2024,
Номер
13(3), С. 67 - 67
Опубликована: Март 6, 2024
Integrating
modern
and
innovative
technologies
such
as
the
Internet
of
Things
(IoT)
Machine
Learning
(ML)
presents
new
opportunities
in
healthcare,
especially
medical
spa
therapies.
Once
considered
palliative,
these
therapies
conducted
using
mineral/thermal
water
are
now
recognized
a
targeted
specific
therapeutic
modality.
The
peculiarity
treatments
lies
their
simplicity
administration,
which
allows
for
prolonged
treatments,
often
lasting
weeks,
with
progressive
controlled
effects.
Thanks
to
technologies,
it
will
be
possible
continuously
monitor
patient,
both
on-site
remotely,
increasing
effectiveness
treatment.
In
this
context,
wearable
devices,
smartwatches,
facilitate
non-invasive
monitoring
vital
signs
by
collecting
precise
data
on
several
key
parameters,
heart
rate
or
blood
oxygenation
level,
providing
perspective
detailed
treatment
progress.
constant
acquisition
thanks
IoT,
combined
advanced
analytics
ML
collection
analysis,
allowing
real-time
personalized
adaptation.
This
article
introduces
an
IoT-based
framework
integrated
techniques
tailored
customer
management
more
effective
results.
A
preliminary
experimentation
phase
was
designed
implemented
evaluate
system’s
performance
through
evaluation
questionnaires.
Encouraging
results
have
shown
that
approach
can
enhance
highlight
value
significant
contribution
healthcare.
Recently,
flexible
electronics
have
significantly
transformed
information
and
communications
technology
(ICT).
In
particular,
wearable
devices,
via
integration
with
attachable
biosensors,
driven
the
development
of
new
types
biosensors
diagnostic
devices
for
point-of-care
testing
(POCT).
Moreover,
electrochemical
can
be
applied
to
diagnose
diseases
in
real
time
based
on
synergistic
effect
generated
from
incorporation
technique.
Besides,
improve
sensitivity
while
retaining
their
wearability,
novel
nanomaterials
nanotechnologies
been
introduced.
this
review,
recent
studies
nanotechnology-based
accurate
disease
diagnosis
are
discussed.
First,
widely
used
techniques
developing
electrodes,
including
nanolithography-
nano/microneedle-based
patches,
presented.
Next,
latest
such
as
diabetes
dermatitis
discussed
by
categorizing
into
categories.
Finally,
review
explores
research
trends
application
nanotechnology-enabled
nanopatterning
nano/microneedle
technologies
biosensors.
This
suggests
approaches
methods
real-time
under
POCT
applications.