IntechOpen eBooks,
Год журнала:
2024,
Номер
unknown
Опубликована: Окт. 31, 2024
This
chapter
delves
into
how
artificial
intelligence
(AI)
is
set
to
transform
paramedicine
practices.
It
explores
emerging
AI
technologies—like
wearable
devices,
autonomous
drones,
and
advanced
robotics—are
not
just
tools
of
the
future
but
are
beginning
change
paramedics
make
decisions,
respond
emergencies,
ultimately
improve
patient
care.
The
also
discusses
ethical
practical
challenges
bringing
this
critical
field,
such
as
ensuring
data
privacy,
avoiding
biases
in
algorithms,
balancing
technology
with
essential
human
touch
By
highlighting
both
exciting
possibilities
real-world
challenges,
offers
a
thoughtful
guide
for
paramedics,
healthcare
leaders,
policymakers
on
responsibly
effectively
integrate
prehospital
care
systems.
successful
integration
requires
addressing
that
augments
rather
than
replaces
vital
element
emergency
medical
services.
Biosensors,
Год журнала:
2024,
Номер
14(4), С. 190 - 190
Опубликована: Апрель 13, 2024
As
technology
advances,
electronic
tongues
and
noses
are
becoming
increasingly
important
in
various
industries.
These
devices
can
accurately
detect
identify
different
substances
gases
based
on
their
chemical
composition.
This
be
incredibly
useful
fields
such
as
environmental
monitoring
industrial
food
applications,
where
the
quality
safety
of
products
or
ecosystems
should
ensured
through
a
precise
analysis.
Traditionally,
this
task
is
performed
by
an
expert
panel
using
laboratory
tests
but
sometimes
becomes
bottleneck
because
time
other
human
factors
that
solved
with
technologies
provided
tongue
nose
devices.
Additionally,
these
used
medical
diagnosis,
monitoring,
even
automotive
industry
to
gas
leaks.
The
possibilities
endless,
continue
improve,
they
will
undoubtedly
play
role
improving
our
lives
ensuring
safety.
Because
multiple
applications
developments
field
last
years,
work
present
overview
from
point
view
approaches
developed
methodologies
data
analysis
steps
aim.
In
same
manner,
shows
some
found
use
ends
conclusions
about
current
state
technologies.
Biosensors,
Год журнала:
2024,
Номер
14(11), С. 560 - 560
Опубликована: Ноя. 18, 2024
Wearable
biosensors
are
a
fast-evolving
topic
at
the
intersection
of
healthcare,
technology,
and
personalized
medicine.
These
sensors,
which
frequently
integrated
into
clothes
accessories
or
directly
applied
to
skin,
provide
continuous,
real-time
monitoring
physiological
biochemical
parameters
such
as
heart
rate,
glucose
levels,
hydration
status.
Recent
breakthroughs
in
downsizing,
materials
science,
wireless
communication
have
greatly
improved
functionality,
comfort,
accessibility
wearable
biosensors.
This
review
examines
present
status
biosensor
with
an
emphasis
on
advances
sensor
design,
fabrication
techniques,
data
analysis
algorithms.
We
analyze
diverse
applications
clinical
diagnostics,
chronic
illness
management,
fitness
tracking,
emphasizing
their
capacity
transform
health
facilitate
early
disease
diagnosis.
Additionally,
this
seeks
shed
light
future
healthcare
wellness
by
summarizing
existing
trends
new
advancements.
Bioengineering,
Год журнала:
2024,
Номер
11(4), С. 358 - 358
Опубликована: Апрель 6, 2024
In
recent
years,
the
proliferation
of
wearable
healthcare
devices
has
marked
a
revolutionary
shift
in
personal
health
monitoring
and
management
paradigm.
These
devices,
ranging
from
fitness
trackers
to
advanced
biosensors,
have
not
only
made
more
accessible,
but
also
transformed
way
individuals
engage
with
their
data.
By
continuously
signs,
physical-based
biochemical-based
such
as
heart
rate
blood
glucose
levels,
technology
offers
insights
into
human
health,
enabling
proactive
rather
than
reactive
approach
healthcare.
This
towards
personalized
empowers
knowledge
tools
make
informed
decisions
about
lifestyle
medical
care,
potentially
leading
earlier
detection
issues
tailored
treatment
plans.
review
presents
fabrication
methods
flexible
applications
care.
The
potential
challenges
future
prospectives
are
discussed.
Nanoscale,
Год журнала:
2024,
Номер
16(39), С. 18134 - 18164
Опубликована: Янв. 1, 2024
Hormones
are
chemical
messengers
that
regulate
a
wide
range
of
physiological
processes
including
metabolism,
development,
growth,
reproduction
and
mood.
The
concentration
hormones
orchestrate
the
numerous
bodily
functions
is
very
low
(1
nM
or
less).
Efforts
have
been
made
to
develop
highly
sensitive
tools
detect
them.
This
review
represents
critical
comparison
between
different
types
nanoparticle-based
electrochemical
biosensors
for
detection
various
hormones,
namely
cortisol,
sex
(estradiol,
progesterone,
testosterone),
insulin,
thyroid-stimulating
hormone
(TSH)
growth
(GH).
investigated
each
first
divided
on
basis
biological
fluid
tested
their
detection,
successively
transducer
utilized
in
device
(voltammetric
impedimetric).
Focus
placed
nanoparticles
employed
successive
electrode
modification
developed
order
improve
sensitivity
specificity
biosensor
stability.
Limit
(LOD),
linear
range,
reproducibility
possibility
regeneration
continuous
reuse
also
compared.
addresses
recent
trends
development
wearable
point-of-care
testing
clinical
diagnostics
useful
endocrinology
research,
future
perspectives
regarding
integration
nanomaterials,
microfluidics,
near
field
communication
(NFC)
technology
portable
devices.
ACS Applied Materials & Interfaces,
Год журнала:
2024,
Номер
unknown
Опубликована: Сен. 13, 2024
Integrating
biomechanical
and
biomolecular
sensing
mechanisms
into
wearable
devices
is
a
formidable
challenge
key
to
acquiring
personalized
health
management.
To
address
this,
we
have
developed
an
innovative
multifunctional
sensor
enabled
by
plasma
functionalized
silk
fabric,
which
possesses
multimodal
capabilities
for
biomechanics
biomolecules.
A
seed-mediated
Journal of Materials Chemistry A,
Год журнала:
2024,
Номер
unknown
Опубликована: Янв. 1, 2024
Recent
advancements
pertaining
to
the
applications
of
MXenes
and
MOFs
in
paper-based
sensors
are
discussed,
focusing
on
challenges
future
perspectives.
Thermoelectric
(TE)
materials
and
sensors
have
emerged
as
a
frontier
in
health
environmental
monitoring,
offering
silent,
simple,
reliable
alternative
to
traditional
power
generation
methods
by
harnessing
waste
heat
into
usable
electrical
energy.
They
also
offer
superior
stability
longevity,
making
them
ideal
for
long-term
monitoring
applications.
Furthermore,
when
compared
other
self-powered
biosensors,
TE
excel
their
ability
operate
wide
range
of
temperatures
conditions,
providing
more
consistent
source
sensor
operation.
This
review
delves
the
recent
advancements
TE-based
sensors,
highlighting
multifunctional
capabilities
real-time
sensing.
We
explore
fundamental
principles
conversion,
including
Seebeck
effect,
assess
performance
metric,
specifically
figure-of-merit
(ZT
).
The
integration
with
flexible
wearable
electronics
is
discussed,
emphasizing
high
efficiency
mechanical
robustness.
Applications
devices
internet
things
(IoT)-integrated
systems
are
underscored,
particularly
fire
detection
personal
monitoring.
Challenges
material
limitations,
miniaturization,
scalability
addressed,
focus
on
future
research
directions
enhance
sustainability
longevity
sensors.
provides
comprehensive
overview
development
technology
its
trajectory,
importance
ongoing
address
current
challenges
realize
these
innovative
devices.