Special Report – Veterans and HBOT
The unfortunate truth is that countless veterans, just like Simon, repeatedly battle suicidal thoughts. They struggle from their battle wounds and PTSD with each passing minute.
These brave souls protected our country, and it’s beyond time that we protect their future. Thankfully there is hope in HBOT.
Watch the 30 Minute Special Report
Veterans are at especially high risk for suicide due to the injuries they’ve endured and the horrific images they’ve seen. Post-traumatic stress disorder (PTSD) and traumatic brain injury (TBI) rank high among the reasons why veterans are choosing death over living. But there is hope for new beginnings. Hyperbaric oxygen therapy (HBOT) is helping war veterans turn their lives around.
In this Special Report, Edward diGirolamo, host of the HBOT News Network, dives into HBOT and what the state of North Carolina is doing to help get veterans this life saving therapy. We hear from Melissa Spain, CEO of the Community Foundation of NC East, as she discusses their involvement to get NC Senate Bill 442 passed; a bill that has appropriated funds to provide HBOT to NC veterans who suffer from TBI and PTSD.
We are also greeted by Elena Schertz, Nurse Practitioner at Extivita-RTP in Durham, NC. Elena gives us a tour of their state-of-the-art clinic where soldiers are receiving HBOT. One of their veteran patients, Simon LeMay, agreed to share his story with us to help spread the hope that exists within the world of hyperbaric oxygen therapy.
Meet a true American Hero, Simon LeMay, retired Sergeant Major with 25-years in the US Marine Corps. LeMay was deployed to Iraq and Afghanistan five times during a ten year period. He lost his best friend in battle and witnessed horrific incidents of violence and injury among his Marine bothers. Although LeMay was blessed to avoid serious physical injury to himself, he did come home with an invisible wound of war.
IED exposures left him with a TBI and visions of war and death haunted him with PTSD. Simon turned to alcohol and pain pills to ease the emotional and physical pain, leading him down a dark tunnel of depression and suicidal thoughts that almost ended in demise.
After hearing about it from friends, his loving family talked him into trying hyperbaric oxygen therapy to help heal his brain injuries. LeMay received treatment at Extivita- RTP in Durham, NC and states after 20-30 treatments he started realizing that he was once again “starting to feel emotion,” with the sense of worthlessness disappearing and the suicidal ideation being no more.
“I started looking forward to the next day,” Simon exclaims.
Also included in this Special Report is a raw and personal interview with Cate, Simon’s wife. Today she is thrilled with Simon’s progress, even calling hyperbaric oxygen therapy “God sent.”
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Fibromyalgia (FM) is a chronic pain condition affecting several millions of Canadians.
Although the etiology and pathophysiology are poorly understood, there is a well-recognized
association between muscular pain in fibromyalgia and muscular hypoperfusion, hypoxia,
abnormal muscle metabolism and oxidative stress. Currently there is no cure for FM.
Pharmacological and non-pharmacological strategies are directed to control symptoms such as
pain, fatigue, non-restorative sleep and depression.
Hyperbaric oxygen therapy (HBOT) is an intermittent inhalation of 100% oxygen in a hyperbaric
chamber at a pressure higher than 1 absolute atmosphere. Physiological effect of HBOT is
based on a dramatic increase in the amount of dissolved oxygen carried by the blood which
enables oxygenation of ischemic areas with compromised circulation. It also activates
oxidant-antioxidant system, stimulates angio- and neurogenesis, modulates inflammatory
response, induces brain neuroplasticity and possesses analgesic effect.
While some interventions offer benefit for some patients, additional treatment alternatives
are needed for patients with FM in whom currently available options are either ineffective or
poorly tolerated. Given its physiological effect, HBOT could be considered as a potential
therapy for treatment of underlying muscular hypoxia, optimizing oxidant- antioxidant system
and controlling FM symptoms. The results from this study could therefore provide new
information supporting the basic science underling the pathophysiology of this disease and
stimulate novel therapies for patients suffering with FM.
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