The present invention relates to medical isolation systems.
Current available mobile personal isolation systems only isolate the patient on a stretcher, bed or exam table. This system only allows access to the patient via integrated gloves and thus makes taking care of the patient difficult. This is especially the case when life support equipment needs to be used or other invasive procedures need to be performed. In hospitals, patients are placed in Isolation Rooms. This is a specially equipped room that is negative pressurized with the use of medical hepa filtration systems that scrub and evacuate the air. When an infected or contaminated patients requires transport and medical care, a medic will accompany the patient in personal protective gear. The transport vehicle, however, will become contaminated possibly posing a serious health risk to others and requiring extensive decontamination of the vehicle.
The present invention was developed to answer the growing need for isolating infected and/or contaminated patients that require transportation via ambulance. The medical isolation transport system (“MITS”) of the present invention is a flexible rapid deployable system that may be used create an isolated space within a medical transport vehicle for use when transporting infected or contaminated patients. The MITS is essentially a rapid and easily deployed liner system for use in the transport vehicle. A flexible tent-like liner creates a room inside the vehicle where both the patient and medical personnel can be isolated and contain contaminants within. The system may be connected to a portable medical hepa filtration system to create a negative pressure environment so that contaminants remain inside the room. Air flows thru the filtration system where it is essentially be “scrubbed” of contaminants. The air discharged from the hepa system is then exhausted outside the vehicle. Clean ambient air flows into the room via adjustable vents. The in-flow or “make-up” air is restricted as compared to the outflow via the hepa scrubber, thus creating a slight negative pressure environment. It is essential that the room remains deployed and not collapse on itself as it is negative pressurized. The MITS accomplishes this by an integrated air structure that is inflated and forms the interior shape of the vehicle. The MITS will be sized to fit specific transport vehicles such as ambulance or bus.
The subsequent description of the preferred embodiments of the present invention refers to the attached drawings, wherein:
Referring to the figures, an exemplary MITS according to the invention may have the following components:
The MITS is a flexible cost effective system to create an isolated space within a medical transport vehicle. The system is easily deployed and installed within minutes with the vehicle. The liner allows for a stretcher to be placed and locked for safe transport. The system will allow for Medical personnel to be with the patient in a controlled environment. The isolated environment ensures safety to others as well as protecting the vehicle form contamination, which reduces the need for costly and time consuming decontamination. The system will make it possible to transport contaminated patients and contain the hazards associated with doing so. The MITS is compact and lightweight when stored. Most if not all of the liner system will be made with clear materials, allowing light form the vehicle to illuminate the isolated environment. Make-Up Air vent(s) will be placed near the vehicle HVAC ducts so heated or cooled air can flow from the vehicle into the isolated tent like negative pressure environment. The integrated and sealed floor will be capable of containing bodily or other spilled fluids. The mechanical systems consisting of the filtration system and, in the case of the preferred embodiment, an inflator system to erect the tubular structure will be reusable. The tent like isolated environment will be deemed disposable. Connections between the transport isolation room and the filtration system as well as the air hoses for the inflatable support structure in the preferred embodiment will be with flexible ducting and hoses allowing for easy placement of the filtration system and the air pump.
Number | Date | Country | |
---|---|---|---|
62251355 | Nov 2015 | US |