HBOT Conversations:
Tom Fox (Part 2)

 

Tom is the Research Physiologist for the Hyperbaric Institute for Research and Training, a division of Island Hyperbaric Centre in Pincourt QC. He has worked in the field of Clinical Hyperbaric Oxygen for the last 30 years, and has been intimately involved with the implementation and the development of the US Army’s Clinical Hyperbaric Service at Dwight David Eisenhower Army Medical Center.  Tom is a senior army aviator and flew twelve years as a Medical Evacuation Pilot for the US Army.

Tom joined the Extivita-RTP team in 2022 as the Safety Director, and is joining us in a 2-part series to discuss the history of Hyperbaric Oxygen Therapy and dive into his personal experience healing patients with HBOT.

Subscribe. Join the discussion. Share the hope.

Watch the Podcast

In Part 2 of Ed di Girolamo’s conversation with Tom Fox, we dive further into the history of hyperbarics and how this all plays a part in where we are today in understanding, administering, and healing patients with HBOT.  Part 1 discussed HBOT history up to Cunningham’s ball in the 1920s.

We start our conversation discussing the time when operating rooms were essentially hyperbaric chambers.  Tom explains that was before the FDA, and they started using pressurized rooms and oxygen as an alternative method to do heart surgery and replace valves, because if you super-saturate the body during surgery you can extend the length of time that a patient can go without oxygen.  The time was upwards of 13 to 15 minutes, allowing the surgeon more time to do valve replacement.  This could have been a real game-changer for the HBOT industry, but it was short-lived because the bypass machine replaced hyperbaric operating rooms.

Then in 1963 the HBOT industry had a set-back. President John F. Kennedy had a premature son who had a condition that lead to a hypoxic event (lack of oxygen) following birth. The child was placed in a hyperbaric oxygen chamber at Harvard.  Initially, he did very well.  But, 60 years ago we didn’t know a lot about the toxic effects and the therapeutic limits of the use of oxygen. He was treated at a much greater pressure than physicians would treat people today, and this little baby was treated for extended time, up to 7 hours! So Hyperbaric Oxygen Therapy was seen in a negative light right after that, because as different physicians got involved in it, they said that it was HBOT that killed John F. Kennedy’s baby.  That incident made it difficult for the hyperbaric industry to bounce back into a positive light. Yet, there was a saving grace; thankfully around this same time and soon after Europe and the USSR were developing whole systems and procedures to administer HBOT.   They had hospitals in a former USSR that was using hyperbarics as their principal treatment; so when physicians here in the US wanted to treat with HBOT, they used a machine to translate a Russian manual, so they could get it right.

Moving forward, a lot of the physicians that were fostering and having great success treating with HBOT came out of the military. Tom explains that he has been in the HBOT industry for a long time, 31 years and he has been in the presence of some of the true pioneers in hyperbarics.

And then the Undersea Medical Society enters the picture…..

Tom explains, “Now in 1967, that’s kind of when the Undersea Medical Society came around, you know, what they did was they go, ‘Okay, this is the Wild West. We need to rein this in and we need to identify the rationale, why we’re doing this so that we can structure this into an offering in medicine, a therapeutic offering into medicine.’  And you had doctors like Dr. Kindwall, Dr. Hart, these are pioneers at the time that were instrumental in the formation of the new Medical Society.  You know, that was both a curse and it had a lot of positive effects, too. But the thing was they put hyperbarics and undersea medicine together, and that’s been a problem. It certainly prevents the thought of clinical hyperbarics progressing independently of diving medicine.

Next, the FDA worked together with the Undersea & Hyperbaric Medical Society, and together they produced a committee report that looked at the indications. The indications were a lot more than what we have today, and since then it’s been refined.

Tom stresses that there’s an art to properly using Hyperbaric Oxygen Therapy, and he states the following —

“In the right hands, hyperbarics can do wonderful things. In the wrong hands, most often it won’t do bad things, but it will not have the desired results.”

di Girolamo and Tom Fox further dive into the art of using hyperbarics properly, and even how incorporating things like a good diet and exercise will play just as much of an important part in a person’s health.  Tom stresses that HBOT is not a cure in most cases, but it can be an extremely useful tool to help someone get closer to their baseline.

The one thing that has stood the test of time is that no one can deny that HBOT is effective for hypoxia and inflammation.  Any indication that has those two conditions associated with it, can be positively affected by using Hyperbaric Oxygen Therapy. He ends this segment encouraging everyone to keep an open mind about the god-given miracle of combining oxygen and pressure.

“I think you’re going to find that whether you’re dealing with something currently or you may be having, you know, something going on that you’re not even aware of, HBOT is not going to hurt you. It’s a good option.”

 

Guests

Elena Schertz, NP

Thomas M. Fox, MAS,MS, CHT - Safety Director at Extivita RTP & Research Physiologist for the Hyperbaric Institute for Research and Training

Tom is the Research Physiologist for the Hyperbaric Institute for Research and Training, a division of Island Hyperbaric Centre in Pincourt QC. He has worked in the field of Clinical Hyperbaric Oxygen for the last 30 years. During this time, he has been intimately involved with the implementation and the development of the US Army’s Clinical Hyperbaric Service at Dwight David Eisenhower Army Medical Center. He has provided contract hyperbaric services since 1997. Prior to accepting his current position in Quebec, Canada, Mr. Fox served as the Chief of the Atmospherics Branch of the U.S. Army School of Aviation Medicine, Fort Rucker Alabama. In this capacity, he was responsible for hyperbaric/ hypobaric operations and training of US and NATO aviators, flight surgeons and flight medics. Mr. Fox is a senior army aviator and flew twelve years as a Medical Evacuation Pilot for the US Army.

Tom joined the Extivita team in 2022 as the Safety Director, helping Extivita to maintain a healthy and safe environment for exceptional patient care.

Subscribe Now, It’s Free!

[contact-form-7 id="65934" title="Subscribe"]

Recent HBOT News

Clinical Trial – Transcranial Magnetic Stimulation and Hyperbaric Chamber for Women Fibromyalgia

Fibromyalgia syndrome (FMS) is a multisystem disease, characterized by generalized chronic
musculoskeletal pain. In addition, there is a lot of care for fatigue, sleep disorders,
morning stiffness, cognitive disorders, depression, anxiety and stress. Other common symptoms
are back pain, headaches, irritable bowel, balance problems and deterioration of physical
function in general. Patients with fibromyalgia (FM) often show pain at specific points that
are known as "tender spots or tender spots, with an increased sensitivity to painful stimuli"
(hyperalgesia) and a decreased pain threshold (allodynia). which can be evidenced in the
physical examination and in the absence of anomalies that justify in the biological or image
tests. These pain points to pressure, based on the most specific and specific criteria for
the diagnosis of the disease, traditionally based on the criteria of the American College of
Rheumatology (ACR), according to which, should be presented so minus 11 out of 18 painful
points to confirm it. Although the etiology remains unknown and unclear, its appearance is
attributed to a problem of central sensitization, that is, changes in central processing,
which causes an alteration of the mechanisms that regulate the sensation of pain, with
amplification of nociceptive input . and perpetuation of painful stimuli. Fibromyalgia is
becoming a common syndrome in the countries of Western Europe, with a prevalence in the
general population that ranges between 1-3%, and specifically in Spain, around 2.4%. In
addition, it has a higher incidence in women than men (73-95%), predominantly affecting women
between the ages of 40-50 years. About 3% of women with fibromyalgia are at an age when
menopause occurs, so not only do they experience the symptoms of both states but they even
exacerbate the syndrome with each other. On the other hand, and in relation to its
chronicity, the care of this type of patients involves large costs for society with a
significant consumption of health resources in the field of primary care, as well as the
costs of work absenteeism. For these reasons, it is considered an important problem with a
great impact on the health system, and therefore more and more studies are being developed
with the aim of better understanding the pathophysiology of this disease. The therapeutic
approach includes low cost and easy access measures, such as physical exercise (EF) programs
to improve the symptoms of FM. Physical exercise has positive effects directly on pain, joint
and muscle stiffness, generalized sensitivity and fatigue, among others, and secondarily on
cognitive disorders. Thus, the vast majority of studies focus on low-impact aerobic exercise,
performed between 60% and 70% of the maximum heart rate two to three times a week. However,
to date, there is no study that compares the effectiveness of physical exercise with other
innovative therapeutic actions, such as transcranial magnetic stimulation (TMS), the
hyperbaric chamber (HBOT), in parameters related to pain and quality of life. the life of
patients with fibromyalgia. The general objective is the effectiveness of transcranial
magnetic stimulation and the hyperbaric chamber in women with fibromyalgia. As specific
objectives we propose:

To assess the effect of HBOT, TMS and EF on quality of life in women with fibromyalgia.

– Object the effect of HBOT, TMS and EF in cortical functioning.

– Evaluate the effect of HBOT, TMS and EF on fatigue.

– Evaluate the effect of HBOT, TMS and EF on psychological aspects, such as depression and
anxiety.

– Evaluate the effect of HBOT, TMS and EF on the perception of pain and the number of
painful points.

– Evaluate the effect of HBOT, TMS and EF on the quality of sleep.

– Evaluate the effect of HBOT, TMS and EF on the quality of life.

– Evaluate the effect of HBOT, TMS and EF on the pain constructs.

– Determine the effect of HBOT, TMS and EF on plasma endorphin levels.