Evidence of Quantum-Entangled Higher States of Consciousness
Computational and Structural Biotechnology Journal,
Journal Year:
2025,
Volume and Issue:
30, P. 21 - 40
Published: Jan. 1, 2025
What
if
quantum
entanglement
could
accelerate
learning
by
unlocking
higher
states
of
conscious
experience?
This
study
provides
empirical
and
statistical
evidence
how
influences
consciousness
at
a
biophysical
level.
We
analyzed
data
from
106
monozygotic
twin
pairs
(N
=
212),
randomly
assigned
to
control
experimental
groups.
Using
consanguinity-based
matching
technique,
(A-B)
were
formed.
Two
distinct
2-qubit
circuits
designed:
C1
(non-entangled)
for
the
group
E1
(entangled)
group.
These
manipulated
visual
stimulus
contingencies
during
144-trial
implicit
experiment
conducted
under
nonlocal
conditions,
executed
via
IBM
Brisbane
supercomputer.
Mental
assessed
with
3D
electroencephalography
(EEG),
while
biomarkers-including
Brain-Derived
Neurotrophic
Factor
(BDNF)
neuroplasticity,
Free
Fatty
Acids
(FFA),
Alpha-Amylase
physiological
arousal-were
measured.
To
advance
this
field,
we
introduced
Quantum-Multilinear
Integrated
Coefficient
(Q),
groundbreaking
metric
capable
estimating
variance
increases
attributable
effects
within
response
matrices.
Our
findings
revealed
that
qubits
in
configurations
explained
13.5
%
accuracy
The
Q
coefficient
captured
up
31.6
increase
across
responses,
neuroplasticity
markers
26.2
cognitive
performance
entangled
conditions.
results
provide
robust
enhances
experience
facilitates
faster,
more
efficient
learning.
They
point
existence
anomalous
mechanisms
anticipating
future,
unpredictable
stimuli,
representing
profound
leap
our
understanding
its
underpinnings.
Language: Английский
Mathematical proof of the Fisher-Escolà Q statistical distribution in quantum consciousness modeling
Computational and Structural Biotechnology Journal,
Journal Year:
2025,
Volume and Issue:
30, P. 41 - 58
Published: Jan. 1, 2025
Language: Английский
Fascial Manual Medicine: A Continuous Evolution
Cureus,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Oct. 14, 2024
From
the
perspective
of
fascial
manual
medicine
(FMM),
body
should
not
be
considered
as
a
set
compartments,
but
functional
continuum,
where
most
tissues
(considering
embryology)
are
fascia.
The
cells
that
make
up
fascia
can
use
multiple
strategies
to
communicate,
with
neighboring
cells,
tissue
which
they
belong,
and
entire
body,
thanks
biochemical
(microscopy)
electromagnetic
(nanoscopy)
possibilities.
These
capacities
send
receive
information
border
or
layer
different
seem
absent.
All
techniques
profess
only
ones
work
on
patient's
symptoms,
dictating
standardized
procedure
all
patients
undergo,
represent
clinical
deviation.
Likewise,
thinking
approach
provide
biomechanical
stimuli
single
specific
structure
is
conceptual
error.
This
narrative
review
briefly
reviews
history
fascial-related
nomenclature
how
system
currently
considered,
posing
new
reflections
continuum
could
conceived
by
practitioners
who
apply
FMM
in
clinic,
such
osteopaths,
chiropractors,
physiotherapists.
Language: Английский