Abstract:
A hyperbaric exercise facility is provided allowing a persons to perform exercises and other activities at increased pressures along with controlled levels of oxygen. Additionally, a catastrophe shelter is provided to protect its occupants from peril.
Abstract:
A hyperbaric oxygen device and methods of applying hyperbaric oxygen are disclosed. The device comprises an enclosure including a collapsible bag defined by two sheets of fluid impervious material sealed together at both ends such that gas can be delivered between the sheets to inflate the enclosure to a rigid state and maintain the enclosure in the rigid state when oxygen pressure in the interior of the enclosure is cycled between ambient pressure and above ambient pressure.
Abstract:
A hyperbaric oxygen therapy system includes a pressure vessel containing a gas, an oxygen concentration measurement apparatus for monitoring the concentration of oxygen in the gas, an environmental control apparatus for controlling the temperature of the gas in the vessel, and a pressure/ventilation control apparatus for controlling the pressure of the gas in the vessel. The pressure vessel is capable of accommodating a patient. The oxygen concentration measurement apparatus includes an oxygen concentration analyzer and a plurality of gas lines connecting the oxygen analyzer to the pressure vessel. The pressure/ventilation control apparatus includes a pressure controlling valve, a pressure sensor, a ventilation valve, and a controller having a programmable pressure profile. The environmental control apparatus includes a scrubber, a heat exchanger and a blower located within the pressure vessel. A compressor for the system includes a compressor silencer. An airlock providing access to the pressure vessel includes a safety mechanism.
Abstract:
A physical fitness system incorporating aspects of scuba diving and hyperbaric pressure therapy is described. An enclosure, such as a cage or elevator, is selectively placed in a body of water, such as an ocean, lake, river, or pool, wherein one or more individuals can remain or exercise (e.g., scuba dive) there, for a sufficient period of time and for a sufficient number of times in order to realize a health benefit, such as reduced weight, reduced blood pressure, increased metabolic rate, increased energy levels, and/or the like. Additionally, hyperbaric pressure therapy can also be employed in conjunction with the use of the enclosure. For example, the enclosure, such as a swimming pool, can be situated in a selectively sealable structure. The structure is first sealed and then the pressure inside the structure is raised to a sufficient level to produce a hyperbaric pressure state therein. The individuals in the water-filled enclosure would then remain or exercise there for a sufficient period of time and for a sufficient number of times to realize a health benefit. An oxygen-rich air environment can also be provided in the sealed structure, as well.
Abstract:
A hyperbaric oxygen therapy system includes a pressure vessel containing a gas, an oxygen concentration measurement apparatus for monitoring the concentration of oxygen in the gas, an environmental control apparatus for controlling the temperature of the gas in the vessel, and a pressure/ventilation control apparatus for controlling the pressure of the gas in the vessel. The pressure vessel is capable of accommodating a patient. The oxygen concentration measurement apparatus includes an oxygen concentration analyzer and a plurality of gas lines connecting the oxygen analyzer to the pressure vessel. The pressure/ventilation control apparatus includes a pressure controlling valve, a pressure sensor, a ventilation valve, and a controller having a programmable pressure profile. The environmental control apparatus includes a scrubber, a heat exchanger and a blower located within the pressure vessel. A compressor for the system includes a compressor silencer. An airlock providing access to the pressure vessel includes a safety mechanism.
Abstract:
A hyperbaric oxygen therapy system includes a pressure vessel containing a gas, an oxygen concentration measurement apparatus for monitoring the concentration of oxygen in the gas, an environmental control apparatus for controlling the temperature of the gas in the vessel, and a pressure/ventilation control apparatus for controlling the pressure of the gas in the vessel. The pressure vessel is capable of accommodating a patient. The oxygen concentration measurement apparatus includes an oxygen concentration analyzer and a plurality of gas lines connecting the oxygen analyzer to the pressure vessel. The pressure/ventilation control apparatus includes a pressure controlling valve, a pressure sensor, a ventilation valve, and a controller having a programmable pressure profile. The environmental control apparatus includes a scrubber, a heat exchanger and a blower located within the pressure vessel. A compressor for the system includes a compressor silencer. An airlock providing access to the pressure vessel includes a safety mechanism.
Abstract:
A shelter in the form of a tubular structure with closeable openings at each end. Material is to be a lightweight core, such as PVC or Rohacell foam, sandwiched between two skin layers, each of which consists of fiberglass, carbon fiber, or aramid fiber. Form is to be several sections that can be expanded and contracted telescopically thereby allowing for transport as a backpack while contracted, and shelter for a supine adult while expanded. The sections are to be linked and not independent or free-standing. The sections at either end are to have rigid doors that allow access to the shelter interior. When fully expanded, the sections lock together providing for an airtight, rigid structure. This structure may serve as shelter and hyperbaric chamber for treatment of illnesses such as those resulting from exposure to low barometric pressures at high altitudes (e.g., HACE, HAPE). The structure can be fitted with a pump and a pressure release valve, which allow for control of barometric pressure to relieve such ailments associated with high altitudes. The shelter takes the place of separate backpack, tent or other shelter, insulating pad, sleeping bag, and transportable hyperbaric device.
Abstract:
A medical lock is provided to a hyperbaric chamber for objects to be passed through, which includes a tube secured to a shell of a hyperbaric chamber, an inner plate for sealing an inner end of the tube, a circular outer plate for sealing an outer end of the tube, and a security assembly, which has a locking rod movable in a direction parallel to an axis of the tube; the locking rod will fit into a cavity of the outer plate when the inner plate is opened, and will be forced to retreat from the cavity when the inner plate is moved to the closed position; therefore, the outer plate is prevented from turning to an unlocked position by means of the locking rod when the inner plate is in the opened position.
Abstract:
A low pressure hyperbaric chambers and methods of using same are disclosed. The present invention provides means for designing, building, and using low pressure chambers suitable for use in managing pain associated with medical conditions.
Abstract:
A hyperbaric oxygen therapy system includes a pressure vessel containing a gas, an oxygen concentration measurement apparatus for monitoring the concentration of oxygen in the gas, an environmental control apparatus for controlling the temperature of the gas in the vessel, and a pressure/ventilation control apparatus for controlling the pressure of the gas in the vessel. The pressure vessel is capable of accommodating a patient. The oxygen concentration measurement apparatus includes an oxygen concentration analyzer and a plurality of gas lines connecting the oxygen analyzer to the pressure vessel. The pressure/ventilation control apparatus includes a pressure controlling valve, a pressure sensor, a ventilation valve, and a controller having a programmable pressure profile. The environmental control apparatus includes a scrubber, a heat exchanger and a blower located within the pressure vessel. A compressor for the system includes a compressor silencer. An airlock providing access to the pressure vessel includes a safety mechanism.