
Why Would
You Continue to Suffer from Arthritis Pain?
Millions of people live with arthritis pain every day,
often believing that pain and stiffness simply come with
age.
Modern research, however, paints a more hopeful picture.
Scientists continue to investigate many approaches that
may help support joint function, reduce discomfort, and
improve quality of life. No single solution works for everyone,
but many people find that combining good medical care with
healthy lifestyle choices and supportive therapies offers
meaningful benefits.

Arthritis involves far
more than simply getting older. Researchers have
linked joint health to inflammation,
circulation, nutrition, movement, cellular communication,
and the body's
remarkable ability to repair itself. As our understanding
of these processes grows, so do the opportunities
to support the body's natural healing capabilities.
Perhaps
the better
question no longer asks, "Why suffer?" but instead, "What
options might help me live more comfortably and stay
active?"

By simple exposure of
the body to pulsating low frequency magnetic fields stimulate
cell metabolism, increase oxygen assimilation, and accelerate
the removal of toxic chemicals and waste. Pulsating electromagnetic
fields can fully penetrate the body and reinforce weak
functional cycles in a natural way. This allows the body
to recover its self-healing capabilities. As a result,
health and wellness improves.
Why Would You Continue
to Suffer from Arthritis?
It
often starts as a slight morning
stiffness. For the lucky person with arthritis,
that's as far as it goes. But for millions of
others, arthritis can become a disabling, even
crippling, disease. Roman Emperor Diocletian
exempted citizens with severe arthritis from
paying taxes, no doubt realizing that the disease
itself can be taxing enough.
One
in seven Americans--nearly 40 million--have some
form of arthritis. That number will climb as the baby boomers age.
The disease is physical, but also exacts a mental, emotional and economic
toll.
Arthritis
means joint inflammation. In a normal joint,
where two bones meet, the ends are coated with
cartilage, a smooth, slippery cushion that protects
the bone and reduces friction during movement.
A tough capsule lined with synovial membrane
seals the joint and produces a lubricating fluid.
Ligaments surround and support each joint, connecting
the bones and preventing excessive movement.
Muscles attach to bone by tendons on each side
of a joint. Inflammation can affect any of these tissues |
.
🧲 Pulsed Electromagnetic
Fields (PEMF)
Several clinical studies have reported that PEMF may help reduce pain and improve
function in people with osteoarthritis, Proposed mechanisms
include effects on inflammation, circulation, cell signaling, and tissue repair. Results vary between studies,
but systematic reviews suggest PEMF may provide modest
benefits for some people.
Cell“injury,” the
state of a cell when it is not healthy, leads to
disease conditions. Magnetic
fields protect against cell injury by improving
circulation, repair processes and energy, and increasing
special
stress proteins in the cells. These proteins are
used to prevent cell breakdown and wear and tear
as well as help speed recovery from injury. Magnetic
fields balance cells, tissues and bodily functions
at very fundamental levels, even before damage
and problems become obvious to you. |
⚡ Radio Frequency Therapy
High-frequency electromagnetic energy has been used medically for decades in
various forms of diathermy. These treatments produce
deep tissue heating and have been investigated for
relieving pain, reducing muscle spasm, and improving
joint mobility. Modern physiotherapy still uses radiofrequency-based
technologies for selected conditions.
Reported Treatment Utilizing Rife Ffrequencies...
We have searched the net, and found many lists
and frequency sequences
that practitioners have put together, and others
have added through their experiences...
Osteoarthritis (also see Arthritis) - 1500, 770
Osteoarthritis 1500 20 Min. 727 787 880
Bone disease, (see osteo) - 47.5, 1800, 1600, 650,
625, 600, 880, 787, 776, for 3 min, 727/728 for
15 min
Osteomyelitis (bone infection) 11 + 16, 12, 14,
15, 17, 18, 20 + 22 + 24, 79, 4, 5, 6, 7, 8, 9,
10
Units that can utilise those frequencies |
🧬 Cells Communicate Electrically
Every cell maintains a tiny electrical membrane potential.
Researchers continue to study how electrical and electromagnetic stimulation
influences:
🟢 calcium signaling
🟢 inflammation
🟢 blood flow
🟢 ATP production
🟢 tissue repair
These are active areas of research and may help explain why some bioelectromagnetic therapies
have shown promising results.
The immune system contains two major types of
white blood cells, known as B cells and T cells.
These cells recognise the difference between molecules
that belong to the body and molecules that originate
from bacteria, viruses, and other foreign organisms.
B cells produce antibodies that normally attach
only to foreign molecules. Each B cell produces
antibodies that recognise one particular type of
foreign molecule. Before producing these antibodies,
however, B cells usually require assistance from
T cells that recognise another part of the same
foreign molecule. In this way, T cells help regulate
antibody production.
Because T cells help coordinate normal immune responses,
many researchers have proposed that autoimmunity
begins when some T cells respond to the body's
own molecules as though they belonged to a foreign
substance. Those T cells may then stimulate B cells
that recognise the same body molecules, leading
to the production of autoantibodies.
Researchers can create this type of autoimmune
response in laboratory animals by exposing them
to their own molecules under controlled conditions.
In most cases, however, the response gradually
declines after several weeks.
Human autoimmune diseases appear to behave differently.
Current evidence suggests that autoimmune conditions
in people involve more complex processes than those
observed in many experimental animal models. Scientists
continue to investigate these mechanisms to better
understand how autoimmunity develops and persists. |
FAQ
❓Is arthritis simply "wear and tear"?
Not always. Osteoarthritis involves cartilage changes, but inflammation also
plays an important role. Rheumatoid arthritis is an
autoimmune disease.
An autoimmune
disease affecting the whole body, rheumatoid arthritis
can also cause weakness, fatigue, loss of appetite, muscle
pain, and weight loss. Blood tests may reveal anemia
and the presence of an antibody called rheumatoid factor
(RF). However, some people with RF never develop rheumatoid
arthritis, and some people with the disease never have
RF. In about one in six, the disease becomes severe and
can shorten life. Researchers hope to find ways to predict
which patients should be treated more aggressively.

Arthritis can
develop as a result of an infection. For example, bacteria
that cause gonorrhea or Lyme disease can cause arthritis.
Infectious arthritis can cause serious damage, but usually
clears up completely with antibiotics. Scleroderma is
a systemic disease that involves the skin, but may include
problems with blood vessels, joints, and internal organs.
Fibromyalgia syndrome is a soft-tissue rheumatism that
doesn't lead to joint deformity, but affects an estimated
5 million Americans, mostly women.
❓Can magnetic fields cure arthritis?
Some clinical studies suggest certain
pulsed electromagnetic field (PEMF) therapies may help
reduce pain and improve function in some people.

❓Can radio frequencies reduce joint pain?
Medical radiofrequency treatments and diathermy have been used for many decades
to help relieve pain and stiffness in selected patients.
❓Why are cells electrical?
Every living cell maintains an electrical membrane potential that is essential
for normal function, communication, and transport of
nutrients and ions.

❓What did Georges Lakhovsky believe?
Lakhovsky proposed that living cells behave like tiny electrical oscillators and suggested
that exposing the body to a broad spectrum of radio
frequencies might support normal cellular function.
This remains a historical theory and is not part of
mainstream medical practice.
The study was conducted with partial support from
a grant from the National Institutes of Health Center
for Complementary and Alternative Medicine.
Three measures of pain were used: functional status
reported by study participants on a standardized
fibromyalgia questionnaire used nationwide, number
of tender points on the body and pain intensity
ratings. Data were compiled for 94 fibromyalgia
patients randomly divided into four groups. One
control group received sham pads containing magnets
that had been demagnetized through heat processing.
The second control group received only their usual
treatment for fibromyalgia. Two other groups received
active magnetic pads: one group used Pad A, which
provided whole-body exposure to a low, uniformly
static magnetic field of negative polarity. The
other used Pad B, which exposed subjects to a low
static magnetic field that varied spatially and
in polarity. The subjects were treated and tracked
for six months.
"When we compared the groups, we did not
find significant statistical differences in most
of the outcome measures," said Ann Gill Taylor,
R.N., Ed.D., co-investigator for the study, professor
of nursing and director and principal investigator
of the Center for Study of Complementary and Alternative
Therapies at the University of Virginia. "However,
we did find a statistically significant difference
in pain intensity reduction for one of the active
magnet pad groups. |

Testimonials
⭐ "After years of waking every morning with stiff knees, I was
surprised by how much easier moving became after several
weeks."
"Finding any positive
results in the groups using the magnets was surprising,
given how little we know about how magnets work to reduce
pain," said the study's principal investigator Dr.
Alan P. Alfano, assistant professor of physical medicine
and rehabilitation and medical director of the U.Va.
HealthSouth Rehabilitation Hospital. "The results
tell us maybe this therapy works, and that maybe more
research is justified. "

⭐ "I was able to garden again for the first time in months." Janet
NSW Australia
⭐ "My hands felt less stiff, especially first thing in the morning.
RJ Florida USA"
In 2002, Health Canada certified
the use of PEMF to treat severe depression and currently
several private Canadian clinics offer PEMF therapy.
In 2011, the FDA approved TMS Therapy system for use
if the patient failed to respond to antidepressants.
This treatment, known as transcranial pulsed electromagnetic
therapy uses a strong electromagnetic field that is pulsed
into the patients head. The treatment usually consists
of two 15-minute treatments each day for two weeks
⭐ "I noticed better mobility and greater comfort throughout the
day." J Hughs Nevada USA
(These are individual user experiences,
not guarantees.)

Recent research encourages people to seek
early diagnosis, appropriate medical care, and practical
self-management strategies. These approaches may help
improve function, reduce pain, and support a better quality
of life.
Each person has unique health needs, so discussing symptoms
and treatment options with a qualified health care provider
can help guide informed decisions..
Know
someone who may enjoy this newsletter?
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Using advanced technology, the
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