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For Adjuvant Treatment of Some Diseases

SHANGHAI BAOBANG MEDICAL EQUIPMENT CO., LTD

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Hyperbaric Oxygen Chamber for Clinical Use

Your body’s tissues need an adequate supply of oxygen to function. When tissue is injured, it requires even more oxygen to survive. Hyperbaric oxygen therapy increases the amount of oxygen your blood can carry. Hyperbaric oxygen therapy for ligament damage, COPD, anxiety, autism, cancer, diabetes feet, Lyme disease, brain injury, stroke, etc. is widely used in clinics and medical centers.

  • Optimization of microcirculation
  • Activation and improvement of the lymphatic system
  • Activation of drainage systems to eliminate toxins
  • Oxygenation of peripheral tissues
  • Improvement of overall blood system circulation
  • Improvement of cardiac functions
  • Osteoarticular and muscular system improvement
  • Anti-inflammatory effect on subcutaneous fat
  • Speeds up the recovery process for post-op patients
  • Well-established treatment for decompression sickness
Effects of hyperbaric oxygen therapy on oxygen diffusion and pressure

① Hyperbaric chamber with Stroke Recovery

In the event of a stroke, oxygen is the primary substance the brain is deprived of. When not enough oxygen gets to the brain, the intracranial tissues begin to die, leading to permanent damage and loss of function.

In the ever-progressing field of medicine, neurologists now accept that the oxygen-starved brain tissues do not die immediately; instead, they sustain trauma, and it is possible for this trauma to be reversed.

Hyperbaric oxygen chamber has a good recovery effect on stroke patients and can effectively improve the symptoms of hypoxia in patients’ brain tissue. After entering the hyperbaric chamber, oxygen enters the blood more easily through pressurisation, increasing the partial pressure of oxygen in the blood, increasing the oxygen content in the blood, improving the radius of oxygen diffusion, reducing intracranial pressure, reducing blood viscosity, improving microcirculation, and improving brain function.

Normal oxygen transport to the brain

NORMAL

Under normal conditions, O2 binds only to the hemoglobin (Hb) in red blood cells and is transported to the brain by blood supply. Oxygen travels through capillaries, but damaged or blocked areas may remain difficult to reach.

Hyperbaric oxygen reaching the brain

HYPERBARIC

Under hyperbaric conditions, the brain is saturated by oxygen, allowing O2 to reach areas previously inaccessible by blood supply or blocked by damage. Increasing oxygen availability can support injured tissues and cellular recovery.

According to one study, in the late 1990s, three Dutch neuroscientists brought the brain cells of thirty deceased persons back to life by the administration of oxygen to the cells in the brain. Stroke patients experienced a wide variety of functional improvements, including the reversal of paralysis, increased sensation, and the recovery of language skills.

If you or a loved one have recently sustained tissue damage due to a stroke or lack of adequate blood flow to the brain, consider pursuing HBOT as a treatment option to revitalize traumatized tissue and boost the production of new cells.

② Hyperbaric chamber with Autism

Research has proven that autism is partly caused by a continuous period of ischemia and insufficient oxygen supply to the brain from infancy, which leads to developmental disorders in the relevant areas of the brain (especially blood vessels, etc.), and that autism is caused by a lack of oxygen supply to the brain.

How to increase the oxygen supply. Theoretically, there are two ways to do this, one is to increase the blood oxygen concentration. The other is to regenerate or dilate blood vessels to increase (or restore) the blood supply to the cerebral circulation. This has led to the development of two parallel clinical treatments: one is hyperbaric chamber and the other is vasodilatation.

The latter is actually not easy, while the former is obviously more practical compared to.

  • Hyperbaric oxygen can rapidly improve the hypoxia of the body and promote the growth and development of brain tissue. Before brain development is complete, it can promote the development of nerve cells and repair of damaged tissues, thus promoting the recovery of brain function.
  • Hyperbaric oxygen can inhibit the growth and reproduction of anaerobic bacteria. Bacteria in the intestinal tract are partly anaerobic, and some of the intestinal flora of children with autism are dysfunctional.
  • Children with autism may have dysfunctional intestinal flora, functional disorders and constipation. Long-term constipation is not conducive to the excretion of toxins, but increases their absorption.
  • Hyperbaric oxygen can promote intestinal peristalsis and have a certain therapeutic effect on intestinal flora disorders.
  • Hyperbaric oxygen can promote the body’s metabolism and enhance immunity.

Food structure should not have much difference, its intake should be the same. The problem is in the metabolism of heavy metals: substance metabolism requires the joint participation of enzymes and oxygen, and the formation of enzymes also depends on the existence of oxygen. High pressure oxygen can therefore accelerate the metabolism of substances and promote the excretion of heavy metals.

Handwriting comparison before and after treatment

③ Hyperbaric Chamber with Diabetes

Diabetes arises because of high blood glucose. High blood glucose is related to insulin cells: pancreatic islet cell dysfunction causes a decline in insulin secretion, so blood glucose cannot be effectively utilised. HBOT can strengthen metabolism and help achieve stronger substance metabolism, thus reducing blood glucose to some extent.

HBOT can strengthen the metabolism, which can achieve a stronger substance metabolism function, thus lowering blood sugar to a certain extent. It can also achieve a preventive effect to a certain extent.

  • Diabetic foot is one of the most serious chronic complications in diabetic patients, mainly caused by high blood sugar leading to high blood viscosity, peripheral neuropathy and vasculopathy, resulting in reduced blood flow to the lower extremities.
  • A prolonged hypoxic environment can cause bacterial toxin reproduction. Hyperbaric oxygen therapy can increase the partial pressure of oxygen so oxygen can be transported to hypoxic tissues, promote blood circulation and wound healing, and improve blood viscosity and flow.
  • Long-term hypoxia can allow bacterial toxins to continue to multiply and lead to necrosis. Hyperbaric oxygen can inhibit the growth and multiplication of anaerobic bacteria and help control the scope of necrosis.
Stages of diabetic foot injury and healing

④ Hyperbaric Chamber with Cancer

Hyperbaric oxygen therapy can enhance the sensitivity of cancer cells to radiotherapy and chemotherapy, thus strengthening the therapeutic effect, and at the same time alleviate the side effects of radiotherapy and chemotherapy, and promote the recovery of tissue cell function.

Specifically, it is like this:

  • Cancer cells are afraid of oxygen: Cancer cells are anaerobic cells, which are mainly formed from low oxygen environment. An aerobic environment will reduce the activity of cancer cells, so as to intervene in the regeneration and metastasis of cancer cells.
  • Hyperbaric oxygen can assist radiotherapy and chemotherapy applied to malignant tumours. When malignant tumour tissues are in a state of hypoxia, their sensitivity to radiotherapy and chemotherapy decreases and their malignant behaviour increases. Hyperbaric oxygen can increase the oxygen and free radicals in cancer tissues.
  • For example, radiotherapy X-rays require three times the intensity if cancer cells are in a lack of oxygen, and only one times the intensity is needed to kill cancer cells in an oxygen-rich condition.
  • Hyperbaric oxygen therapy can reduce the side effects of radiotherapy and chemotherapy, improve oxygen supply and metabolism, and help create a better environment that can be adapted to treatment.
Chart comparing cancer response under control and hyperbaric oxygen conditions

Cancer cells are afraid of oxygen. Cancer cells are anaerobic cells, mainly formed in low-oxygen environments. An aerobic environment will reduce their activity and may intervene in regeneration and metastasis.

Microscopy view of tissue after hyperbaric oxygen treatment

Hyperbaric oxygen therapy can reduce the side effects of radiotherapy and chemotherapy, improve oxygen supply and metabolism, and help create a better environment for treatment.

Research microscopy and statistical results comparing control and hyperbaric oxygen groups

For more information and more efficacy,please contact us!

we will advise you accordingly in your specific case!

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Your benefit when contacting us:

  • Tailored Chamber Options
  • Stringent Safety Protocol
  • Innovative R&D Solutions
  • Global After-Sales Care
  • Diverse Product Portfolio
  • Trusted By Many Clients
  • Comprehensive Service Suite
  • Advanced Tech Insight

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Address Business

Contact With Us

Your benefit when contacting us:

  • Tailored Chamber Options
  • Stringent Safety Protocol
  • Innovative R&D Solutions
  • Global After-Sales Care
  • Diverse Product Portfolio
  • Trusted By Many Clients
  • Comprehensive Service Suite
  • Advanced Tech Insight

Submit your request to us

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*

Please select your requirement type

Need RetailNeed Wholesale Want To Be Agent
Submitting!
Submitted successfully!
Submission failed! Please try again later!
Email format error!
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