It is sometimes therapeutically necessary to breathe oxygen that has been pressurized from one and one-half to three times its state under normal atmospheric conditions. First used as a method of preventing deep-water divers from experiencing the agony of decompression sickness, commonly called the bends, this treatment has become common for people who need specific types of medical attention. Hyperbaric facility upgrading improves existing hospital systems for both patients and staff.
During treatment patients enter a special airtight room. Atmospheric gases are composed of 21% oxygen, and breathing a completely pure mixture provides benefits, but in a limited fashion. More significant outcomes can be experienced by delivering oxygen that is not only pure, but is also pressurized. The results can be specifically measured by the amount present in blood afterward.
For many patients, the outcome is faster and more extensive blood vessel formation, more consistent control of infection, reduced toxicity of some poisons, faster healing of resistant open wounds, and reduced tissue deterioration. Increasing the amount of oxygen delivered throughout the body decreases the probability of obstructions caused by gas bubbles, and encourages thorough healing. Treatments may be as few as two, or may take place daily.
The injuries and illnesses helped by this type of therapy not only include those related to decompression, but also involve stubborn sores common to diabetic people, injuries sustained by crushing, gangrene that threatens to spread, and the damage caused by cancer radiation treatments. People who have suffered extensive burns and grafting heal more rapidly, and carbon monoxide poisoning victims also benefit.
This type of facility is normally located within a hospital, and includes chambers ranging from individual sizes to those that can hold a dozen people. Monoplace facilities accommodate one person, are made of plastic, and are often shaped like tubes. An individual reclines inside while atop a table, and remains for two or more hours. Common side effects include ear-popping caused by air pressure changes.
The amount of pressure and the time it takes for treatment are dependent on a specific diagnosis, and patient history regarding oxygen response. Some individuals benefit most from a daily regimen, while others require far fewer. In general, this procedure is safe and reliable. Patients with upper respiratory infections or other counter-indications may experience treatment delays.
Inspections takes place on a regular basis in order to review current operations. Often performed by medical consultants, the equipment itself is analyzed during operation, and staff members are asked to present existing issues or problems. Logs of necessary maintenance and operation often define where those improvements are necessary, and whether equipment needs replacing.
Upgrading to state-of-the-art equipment benefits both patients and staff. Not only does an improved facility provide better care, but is important for hospital administrators controlling the financial bottom line. Consultants can provide solid statistics that reveal cost savings compared to the amount needed to invest in improvements. Installation of improved equipment is coordinated to prevent any interruption in patient scheduling.
During treatment patients enter a special airtight room. Atmospheric gases are composed of 21% oxygen, and breathing a completely pure mixture provides benefits, but in a limited fashion. More significant outcomes can be experienced by delivering oxygen that is not only pure, but is also pressurized. The results can be specifically measured by the amount present in blood afterward.
For many patients, the outcome is faster and more extensive blood vessel formation, more consistent control of infection, reduced toxicity of some poisons, faster healing of resistant open wounds, and reduced tissue deterioration. Increasing the amount of oxygen delivered throughout the body decreases the probability of obstructions caused by gas bubbles, and encourages thorough healing. Treatments may be as few as two, or may take place daily.
The injuries and illnesses helped by this type of therapy not only include those related to decompression, but also involve stubborn sores common to diabetic people, injuries sustained by crushing, gangrene that threatens to spread, and the damage caused by cancer radiation treatments. People who have suffered extensive burns and grafting heal more rapidly, and carbon monoxide poisoning victims also benefit.
This type of facility is normally located within a hospital, and includes chambers ranging from individual sizes to those that can hold a dozen people. Monoplace facilities accommodate one person, are made of plastic, and are often shaped like tubes. An individual reclines inside while atop a table, and remains for two or more hours. Common side effects include ear-popping caused by air pressure changes.
The amount of pressure and the time it takes for treatment are dependent on a specific diagnosis, and patient history regarding oxygen response. Some individuals benefit most from a daily regimen, while others require far fewer. In general, this procedure is safe and reliable. Patients with upper respiratory infections or other counter-indications may experience treatment delays.
Inspections takes place on a regular basis in order to review current operations. Often performed by medical consultants, the equipment itself is analyzed during operation, and staff members are asked to present existing issues or problems. Logs of necessary maintenance and operation often define where those improvements are necessary, and whether equipment needs replacing.
Upgrading to state-of-the-art equipment benefits both patients and staff. Not only does an improved facility provide better care, but is important for hospital administrators controlling the financial bottom line. Consultants can provide solid statistics that reveal cost savings compared to the amount needed to invest in improvements. Installation of improved equipment is coordinated to prevent any interruption in patient scheduling.
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