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8
How Very Intense Pressure Pulses
Help Tissue Regeneration
CellSonic VIPP stimulates the body to regenerate damaged tissues. Recent studies have
greatly advanced the understanding of how pressure pulses affect human biology.
Dr. Rainer Mittermayr of the Ludwig Boltzmann Institute for Experimental and Clinical
Traumatology, Vienna, Austria, studied ESWT in the 2000s. Mittermayr and his team
showed that by a mechanism of mechanotransduction, the high
-
energy acoustic waves
translated into biochemical signals, that could activate various cellular and molecular
pathways leading to cell activation. This triggering of the cells generated biological
responses including angiogenesis, the recruitment of stem cells to the site of shockwave
therapy application, cell proliferation, and differentiation and modulation of the
inflammatory response.
“
These mechanisms give the non
-
invasive technology of
shockwave therapy great potential in a broad range of indications because it activates
the body
’
s own mechanisms,
”
Mittermayr concluded.
1
Studies have also shown that ESWT stimulates osteoblasts—bone cells responsible for
bone healing and the production of new bone. ESWT also stimulates fibroblasts—cells
responsible for the healing of connective tissue such as tendons, ligaments, and
fascia.
2,3
ESWT has been found to more effective than transcutaneous electric nerve stimulation
(TENS) therapy for treating chronic calcific tendinitis.
4
ESWT has emerged as a favorable treatment modality for erectile dysfunction (ED)
because it offers the possibility of permanent restoration of erectile function. The stress
and microtrauma triggered by ESWT induces biological reactions that result in the
release of angiogenic factors that trigger neovascularization of the tissue with
subsequent improvement of the blood supply.
5
1.
“
Shockwave Therapy.
”
Paper by Nayanah Siva, June 2016, accessed at
http://europe.medtronic.com/
xd
-
en/transforming
-
healthcare/EUreka/innovation
-
articles/shockwave
-
therapy.html
2. Hausdorf J, Sievers B et al. Stimulation of bone growth factor synthesis in human osteoblasts and
fibroblasts after extracorporeal shock wave application.
Archives of orthopaedic and trauma surgery.
2011;131,303
-
9
3. Schaden W, Mittermayr et al.
Extracorporeal shockwave therapy (ESWT) –
First choice treatment of
fracture non
-
unions?
International Journal of Surgery,
Dec 2015, Vol 24, Part B
4. Pan P
-
J, Chou C
-
L et al.
Extracorporeal shock wave therapy for chronic calcific tendinitis of the
shoulders: a functional and sonographic study.
Physical Medicine and Rehabilitation
, July 2003, vol 84,
issue 7
5. Peak TC, Kammel K et al.
Update on the Treatment of Erectile Dysfunction.
Reference Module in
Biomedical Sciences
. 2015
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