HBOT Conversations:
Robert Beckman & NBIRR Study

Robert Beckman, Ph.D., Founder of the TreatNow Coalition in Arlington, Virginia, discusses the National Brain Injury Rescue Rehabilitation study focused on the use of Hyperbaric Oxygen Therapy for brain injuries. Beckman has a passion for data and helping veterans, which is what ultimately got him first involved in Hyperbaric Oxygen Therapy back in 2008. He was one of many, participating with an elite group of doctors and HBOT experts, who organized and oversaw the results of NBIRR, a multi-center HBOT trial for mild traumatic brain injury with post-concussive symptoms.

The TreatNow Coalition’s Mission is to Stop service member suicides by identifying and treating veterans and others suffering from brain wounds, TBI, PTSD, and Concussion.

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HBOT News podcast host, Edward di Girolamo, talks with guest, Robert Beckman, founder of Treatnow.org, who was instrumental in the compilation and release of The National Brain Injury Rescue and Rehabilitation Study – a multicenter observational study of hyperbaric oxygen for mild traumatic brain injury with post-concussive symptoms.

It took over a decade for that study to be completed and published. Once it was, it not only opened a door for veterans and others who were looking for a way to heal from head trauma, the NBIRR study ignited other studies to start, focusing solely on the safety & efficacy of Hyperbaric Oxygen Therapy for brain injuries.

Beckman discusses some of the challenges he has witnessed over the years, including the Army declaring that HBOT does not work. After combing through the data, Beckman states that their analysis is rooted in a “lie” about the sham they used in their study; everyone got better. This starts an in-depth conversation between di Girolamo and Beckman about the frustration of the government so easily dismissing HBOT, inflammation linked to PTSD, the stigma of PTSD being a personal and not a physical problem, the disappointment that most veterans don’t even know HBOT exists, and why more is not being done to heal our veterans from these invisible injuries of war.

Beckman proudly states that what started as nine clinics to treat veterans under the NBIRR study, has grown to about 135 clinics across the country that specialize in treating veterans with HBOT for free or reduced rates. Additionally, there are now a combined 12,500-plus success stories from these 135 clinics of individuals with TBI, PTSD, and mTBI who have completed 40 treatments/dives.

Beckman gives surgical statistics relating to HBOT and explains that by pre-oxygenating and post-oxygenating via hyperbaric chambers, patients can benefit from a 30-40% faster healing rate. He points out that countless professional athletes are now using hyperbaric oxygen therapy for faster recuperation to treat pain, injuries, and inflammation; and hyperbarics is being used all over the world right now for successfully treating COVID long-haulers. He states that COVID long-haulers are hypoxic suffering patients, and data exists that military personnel who have experienced the blow of an IUD are suffering in much of the same manner – it’s that lack of oxygen to the brain and all parts of the suffering body that HBOT helps.

di Girolamo asks the question so many of us are curious about, “If HBOT obviously works, why isn’t the military admitting to this? Why aren’t we using it more?” Beckman suggests we read this particular blog on his website that sheds much light on the subject, The Obvious Question: If HBOT works, why aren’t we using it?

Beckman reminds di Girolamo – and all of us – that this is a marathon. Yes, they’ve made great strides over the past two decades in education and research for hyperbaric oxygen therapy, but they still have a way to go. He continues to be optimistic that one day we’ll all witness our shared goal of eliminating the suicide epidemic by utilizing HBOT to thoroughly heal brain injuries.

TreatNow Coalition

Guest

Robert Beckman

Robert L. Beckman, Ph.D.

Dr. Beckman has been building knowledge management systems most of his professional career, primarily in the Intelligence Community and DOD. He is currently helping to run the Clinical Trial researching TBI and PTSD in brain-injured wounded warriors. He is responsible for sustaining the national network of hyperbaric clinics as well as improving the technology platform for data collection and analysis. He is a former USAF KC-135 pilot and a Vietnam Veteran.

TreatNow.org

(571) 549-4258
beckmanr88@gmail.com
Contact TreatNow.org
https://treatnow.org/

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Recent HBOT News

Clinical Trial – HBOT Late Radiation Tissue Injury

Background: Radiotherapy is a common treatment for many malignancies. Radiation-related
complications developing months or years after radiation treatment are known as late
radiation tissue injury (LRTI) and are estimated to effect 5%-15% of all long-term survivors
who have received radiation.

Hyperbaric oxygen therapy (HBOT) is a well established treatment of LRTI. Most of the studies
evaluating effect of HBOT on LRTI are focused on survival, resolution of tissue damage and
improvement in LENT-SOMA scale. Very few studies have addressed effect of HBOT on pain in
LTRI. Krahn and colleagues were the first to report the analgesic effect of HBOT in 3 cases
of refractory pain in oncological patients with radiation soft tissue injury. Other studies
showed significant improvement in pain intensity in patients with breast cancer and pelvic
malignancies treated with HBOT for LTRI. In patients that had developed radiation- induced
brachial plexopathy, HBOT elicited an increase in warm pain thresholds and a reduction in
lymphoedema. A prospective case study of 16 patients with gynecological cancer found no
changes with respect to pain and depression outcomes. A trial in patients with radiation
induced proctopathy showed that 75% of patients with rectal pain had some improvement,
although none experienced a complete resolution of pain symptoms.

There are several mechanisms by which HBOT may elicit analgesic effects. There is a growing
body of evidence that HBOT’s analgesic effect related to nitric oxide metabolism and
endogenous opioid secretion. Furthermore, the inhibition of tumor necrosis factor alph
(TNF-α), the production of substance P, and the modulation of serotonergic pathways have all
demonstrated a modification in the pain response following HBOT. In animal studies HBOT
decreased allodynia and hyperalgesia in different models of neuropathic and inflammatory
pain. The long lasting antinociceptive effect of HBOT was found to be dose-dependent in
non-injured tissues.

In human studies, HBOT decreased pain and edema and improved function in patients suffering
from the complex regional pain syndrome, and improved pain scores and range of motion in
patients with idiopathic femoral head necrosis. Women suffering from interstitial cystitis
demonstrated a reduction in pelvic pain following weeks and months of HBOT treatment. In
patients suffering from idiopathic trigeminal neuralgia HBOT produced a rapid reduction in
symptoms and these effects were lasting for 6 months following treatment. HBOT was also found
to be an effective treatment for cluster headaches and migraines and alleviated muscle and
bone pains in patients with myofascial syndrome, fibromyalgia, and biphosphonate-related
osteonecrosis of the jaw.

Based on the evidence presented above and HBOT’s known analgesic effect in many conditions,
the investigators designed this study with the objective to evaluate if HBOT reduces pain,
improves depression and impacts on patients quality of life in patients suffering from late
radiation tissue injury.

Study Design: Prospective observational study (n=300). Patients that have had radiation
therapy for malignancy, developed late radiation injury and suffer from chronic pain.

Clinical Trial – HBOT in Fibromyalgia

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.