Abstract:
A deep vein thrombosis prevention garment includes an S-shaped body having a central panel, a left and a right side panels both formed with a number of offset and opposing attachment straps having an integral fastener. The central panel is formed to have a single air chamber receiving air from a pump through a flexible air supply tube. The central panel, left side panel and right side panel are formed from a single material which does not require a skin-safe liner or other combination of materials. A single-chamber bladder is attached to the central panel. A cover panel, sized to cover the inside surface of the central panel, covers the single-chamber bladder and is attached along its perimeter to the central panel. The cover panel and the body are made from the same material which can be placed against a patient's skin.
Abstract:
A digital display air pump includes a rectangular, box-shaped body having a standard AC power cord extending from it, two air supply output ports, and a control and information panel located on its front side with user-operated buttons, a digital display for showing air pressure and alarm codes, a variable air pressure set dial, and status lights. Within the hollow interior of the body is an air compressor, a dual-output electromechanical valve having to two air output tubes, an air pressure sensor, an AC power connection, an internal loudspeaker, and an electronic circuit board controlling the digital display air pump's function. The air supply output ports, an extension of the air tubes within the body, supply air to Intermittent Pneumatic Compression (“IPC”) Therapy device garments through flexible air supply tubes.
Abstract:
A portable micro air pump includes a body, an air output port and a quick-disconnect air tube connector. The body is hand-sized, and has a user control and information panel with a power on/off button switch and a button switch for choosing which type of therapy garment is to be utilized, limb or foot. Status lights within the information panel show on/off and battery status, the therapy garment selected and alarm states of which the user needs to be aware. Within the body are an air compressor with an air output tube, a battery power source, and an electronic circuit board. The electronic circuit board has functional subunits including: a controller, a timer, a memory, an input/output interface, a pressure sensor, a status light driver and a power control driver.
Abstract:
A compact mini air pump includes a rectangular, box-shaped body having a standard AC power cord extending from it, two air supply output ports, and a control and information panel with user-operated buttons and status lights located on its front side. Within the hollow interior of the body is an air compressor, a dual-output electromechanical valve having to two air output tubes, an air pressure sensor, a DC battery power supply, an AC power connection, and an electronic circuit board controlling the mini air pump's function. The air supply output ports, an extension of the air tubes within the body, supply air to Intermittent Pneumatic Compression (“IPC”) Therapy device garments through flexible air supply tubes. The mini air pump device is sized to be held by one hand for portability.
Abstract:
A compact mini air pump includes a rectangular, box-shaped body having a standard AC power cord extending from it, two air supply output ports, and a control and information panel with user-operated buttons and status lights located on its front side. Within the hollow interior of the body is an air compressor, a dual-output electromechanical valve having to two air output tubes, an air pressure sensor, a DC battery power supply, an AC power connection, and an electronic circuit board controlling the mini air pump's function. The air supply output ports, an extension of the air tubes within the body, supply air to Intermittent Pneumatic Compression (“IPC”) Therapy device garments through flexible air supply tubes. The mini air pump device is sized to be held by one hand for portability.
Abstract:
A micro bleed hole connector for use in intermittent pneumatic compression devices includes a body made of a material that is sturdy, durable and compression resistant. The bleed hole connector resembles industry-standard air tube connectors, and has a micro bleed hose connecting its hollow lumen to the outside, ambient air. In use, the connector is inserted between the air input tube of an intermittent pneumatic compression device and an air supply tube, which is connected to an air pump. The air pump inflates and deflates the intermittent pneumatic compression device, which is placed on a patient's limb. In the event deflation of the compression device is retarded by air pump failure or air supply tube occlusion, the micro bleed hole dissipates air sufficiently to prevent injury to the patient's limb. Air dissipation through the bleed hole during normal operation is minimal and does not impact therapeutic application.
Abstract:
A deep vein thrombosis prevention garment includes a body having a central panel, a left side panel, and a right side panel formed with a number of attachment straps having an integral fastener, such as Velcro® brand hook and loop fasteners. The central panel is formed with a single air chamber containing a single expandable air bladder receiving air from a pump through a flexible air supply tube. The central panel, left side panel and right side panel are formed from a single material which does not require a skin-safe liner or other combination of materials. The single chamber with nested expandable bladder is attached to the central panel. A cover panel covers the chamber having an expandable bladder, and is attached along its perimeter to the central panel. The cover panel and the body are made from the same material which can be placed against a patient's skin.
Abstract:
A non-woven garment for deep vein thrombosis prevention includes a body having a central panel, a left side panel, and a right side panel formed with a number of attachment straps having an integral fastener and a cover. A single air chamber receiving air from a pump through a flexible air supply tube is formed on the central penal when the body and the cover are welded through an RF welding method. The body and the cover are made of the same dielectric material for their inner layers to be welded and another same material for the outer layers which can be placed against a patient's skin. The one-step RF welding method eliminates the need for tricot lining and binding and less material is used in manufacturing. Thus, the present invention significantly reduces the manufacturing steps, time, cost, and use of material in manufacturing.
Abstract:
A deep vein thrombosis prevention garment includes a body having a central panel, a left side panel, and a right side panel formed with a number of attachment straps having an integral fastener, such as Velcro® brand hook and loop fasteners. The central panel is formed with a single air chamber containing a single expandable air bladder receiving air from a pump through a flexible air supply tube. The central panel, left side panel and right side panel are formed from a single material which does not require a skin-safe liner or other combination of materials. The single chamber with nested expandable bladder is attached to the central panel. A cover panel covers the chamber having an expandable bladder, and is attached along its perimeter to the central panel. The cover panel and the body are made from the same material which can be placed against a patient's skin.
Abstract:
An adhesive single chamber deep vein thrombosis prevention garment includes a body having a central panel, a left side panel, and a right side panel formed with attachment straps having hook and loop integral fasteners. The central panel is formed to have a single air chamber which receives air from a pump through a flexible air supply tube. The inside of the single air chamber is coated with a tacky adhesive layer providing distal-to-proximal sequential inflation as air is progressively introduced into the chamber, thereby creating a distal-to-proximal pressure gradient on a patient's limb. The central, left side and right side panels are formed from a single material which does not require a skin-safe liner or other combination of materials. A cover panel attached to the central panel to cover the single-chamber bladder and the body is made from the same material which can be placed against a patient's skin.