During the 20th century scuba diving was introduced, allowing frogmen to attain previously unreachable depths. Those who ascended too rapidly sometimes suffered from expanding gas bubbles in the blood, which could cause extreme pain, paralysis, and even death. The solution that still remains in use today is slow equalization of atmospheric pressure accomplished inside a special room. A decompression chamber service helps those facilities run without interruption.
Also known as hyperbaric chambers, these vessels were originally adapted from the steel boilers used to power ships. They were already being used in a a high-pressure capacity, and could easily be transformed into airtight rooms big enough to hold people. This solution worked well, and the basic structural concept has been modified over the years with additional safety features and construction techniques.
Metal cylinders are still used for pressure equalization, but most modern units are acrylic plastic, and in some locations resemble a standard hospital treatment room. To make the time spent inside pass more pleasantly, many facilities are equipped with sound and entertainment systems, have advanced methods of fire suppression, and are controlled by computers. The emphasis is on patient comfort.
Those designed for one person at a time are called monoplace chambers, and can be pressurized and the air inside replaced with pure oxygen. These models are featured by most manufacturers, and cost slightly more than those made of metal. The safety records associated with this design show a high level of reliability, and allow patients to be closely observed and medically monitored.
Multiplace chambers are intended for use by several people, and also contain advanced monitoring systems. There may be more than one airlock used to maintain room integrity, and individual oxygen is supplied by a mask or hood, or sometimes through an endotracheal tube. This makes it unnecessary to completely fill the room with pure oxygen, and reduces the possibility of fire. People with different degrees of distress can be treated simultaneously .
Hospitals today use the same kind of pressurized oxygen to treat patients with problems healing normally. Spending time in a hyperbaric chamber can assist those with open diabetic sores, people who have been badly burned and require skin grafting, and those who have sustained crushing injuries in an accident or are recovering from chemotherapy. The pressure measurably increases the amount of oxygen in the blood.
Because of these systems are integral during emergencies, unexpected down-time is unacceptable. Specific services exist today that specialize not only in the installation of these facilities, but also help maintain them in peak operating condition. The emphasis today is on rapid employee deployment whenever mechanical repair issues arise, and remote computer diagnostics allows developing problems to be discovered quickly.
These specialized businesses not only keep their products operational, but may also provide targeted training for hospital operators and administrators in centers that replicate the latest procedures and equipment. Their goal is to significantly reduce the time necessary for routine service and upgrades, and to enable all locations using decompression to provide a high level of readiness.
Also known as hyperbaric chambers, these vessels were originally adapted from the steel boilers used to power ships. They were already being used in a a high-pressure capacity, and could easily be transformed into airtight rooms big enough to hold people. This solution worked well, and the basic structural concept has been modified over the years with additional safety features and construction techniques.
Metal cylinders are still used for pressure equalization, but most modern units are acrylic plastic, and in some locations resemble a standard hospital treatment room. To make the time spent inside pass more pleasantly, many facilities are equipped with sound and entertainment systems, have advanced methods of fire suppression, and are controlled by computers. The emphasis is on patient comfort.
Those designed for one person at a time are called monoplace chambers, and can be pressurized and the air inside replaced with pure oxygen. These models are featured by most manufacturers, and cost slightly more than those made of metal. The safety records associated with this design show a high level of reliability, and allow patients to be closely observed and medically monitored.
Multiplace chambers are intended for use by several people, and also contain advanced monitoring systems. There may be more than one airlock used to maintain room integrity, and individual oxygen is supplied by a mask or hood, or sometimes through an endotracheal tube. This makes it unnecessary to completely fill the room with pure oxygen, and reduces the possibility of fire. People with different degrees of distress can be treated simultaneously .
Hospitals today use the same kind of pressurized oxygen to treat patients with problems healing normally. Spending time in a hyperbaric chamber can assist those with open diabetic sores, people who have been badly burned and require skin grafting, and those who have sustained crushing injuries in an accident or are recovering from chemotherapy. The pressure measurably increases the amount of oxygen in the blood.
Because of these systems are integral during emergencies, unexpected down-time is unacceptable. Specific services exist today that specialize not only in the installation of these facilities, but also help maintain them in peak operating condition. The emphasis today is on rapid employee deployment whenever mechanical repair issues arise, and remote computer diagnostics allows developing problems to be discovered quickly.
These specialized businesses not only keep their products operational, but may also provide targeted training for hospital operators and administrators in centers that replicate the latest procedures and equipment. Their goal is to significantly reduce the time necessary for routine service and upgrades, and to enable all locations using decompression to provide a high level of readiness.
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