Patent classifications
A61F2007/0069
THERMAL CONTROL OF LIQUIDS FOR TRANSCUTANEOUS DELIVERY
The invention provides a device for controlling the temperature of liquids delivered to the skin during cosmetic, diagnostic, or curative procedures. The invention further provides procedures for treating the skin, including an efficient procedure for removing pigments or tattoos, employing a liquid delivered to the skin with precisely controlled temperature and flowrate.
APPARATUS AND METHOD FOR DELIVERING FLUIDS AND/OR GASES TO THE LUNGS
An apparatus and method for providing heat exchange in the lungs of the mammal during partial liquid ventilation are provided. The apparatus and method can control delivery and removal of partial liquid ventilation to the lungs of a mammal by responding to pressure change in the lungs to minimize danger of causing barotrauma to the patient.
METHOD AND APPARATUS FOR PERITONEAL OXYGENATION
Embodiments of the invention provide apparatus, systems and method for introducing fluids into a body cavity for treatment. One embodiment provides an apparatus for treating a patient including an access device for insertion into the peritoneal cavity of the patient including an infusion member in a lumen of the access device. An oxygenated solution may be infused and removed into and out of the cavity via the infusion member.
COLD SLURRY CONTAINMENT
The present invention provides methods and devices for controlling a cold slurry that is delivered to a target tissue and for limiting heat transferring from surrounding tissue to the target tissue. In particular, a balloon structure is deployed at or near a point of delivery to act as a physical and/or thermal barrier. In some instances, the balloon structure can act as a pressure device obstructing the flow of warm blood into a treatment area, which can melt the cold slurry.
Apparatus and method for delivering fluids and/or gases to the lungs
An apparatus and method for providing heat exchange in the lungs of the mammal during partial liquid ventilation are provided. The apparatus and method can control delivery and removal of partial liquid ventilation to the lungs of a mammal by responding to pressure change in the lungs to minimize danger of causing barotrauma to the patient.
METHOD AND APPARATUS FOR BIOLOGICAL EVALUATION
A medical device for monitoring biological parameters through an Abreu Brain Thermal Tunnel (ABTT) is provided. By monitoring and analyzing the temperature of the ABTT, it is possible to diagnosis changes in a patient or subject under a variety of conditions, including predicting the course of medical conditions. Furthermore, since the ABTT is predictive, analysis of the ABTT may be used to control mechanisms for safety when an impending medical condition makes such operation hazardous.
Prosthetic socket system
A prosthetic socket system includes a socket having an inner surface defining a socket cavity. A liner is adapted to receive a residual limb and be removably positioned within the socket cavity. A substantially sealed volume is defined between at least a portion of an outer surface of the liner and a corresponding portion of the inner surface of the socket. A wicking material is positionable in the substantially sealed volume and at least one cooling fluid can be carried by the wicking material. The at least one cooling fluid is adapted to selectively boil within the substantially sealed volume such that heat from the residual limb is converted into latent heat of vaporization by the at least one cooling fluid for a cooling effect.
METHOD AND DEVICE FOR NON-INVASIVE ANATOMICAL AND SYSTEMIC COOLING AND NEUROPROTECTION
The present invention provides a method and device for non-invasive anatomical and systemic cooling, fluid removal and/or energy removal. The method and device provide for removal of fluid and cooling of various bodily fluid-containing spaces or surfaces, such as mucus-containing spaces or surfaces via delivery of a dry fluid not including a coolant into or upon the mucus-containing space or surface. Exposure of such mucus to the dry fluid results in evaporation of body fluid, removal of energy, cooling of the anatomical feature, and systemic cooling. In this fashion, therapeutic hypothermia may be achieved to provide for neuroprotection of various organs after ischemic insult, such the brain after cardiac arrest. Similarly, excess fluid removal may be achieved for treatment of cardiogenic shock or other conditions that cause significant fluid build-up, especially in cases of compromised renal function. Additionally, the invention may be used to reduce fever, and other conditions where removal of heat, energy and/or water are beneficial.
Recirculating-air warming blanket
A thermal device includes an inflatable non-perforated blanket, a conduit structure, and a recirculating assembly. The inflatable non-perforated blanket is configured to transport warm air internally. The conduit structure is configured to provide conduit to transport the warm air externally to the inflatable non-perforated blanket. The recirculating assembly is configured to inflate the inflatable non-perforated blanket with the warm air and: (1) to cause the warm air to flow from the first port to the second port in a first direction, and (2) to recirculate the warm air through the conduit structure to flow from the second port to the first port in the first direction. The inflatable non-perforated blanket includes first and second sheets. The first sheet faces ambient air and has a first thermal conductivity. The second sheet faces the subject body and has a second thermal conductivity higher than the first thermal conductivity.
THERMOREGULATION SYSTEM AND METHOD
Disclosed is a thermoregulation system, including an output port (54), an input port (62), a thermoregulation fluid supply system, an output pump (52) for pumping thermoregulation fluid out through the output port, an input pump (64) for pumping thermoregulation fluid in through the input port, and a pressure control system. The pressure control system is for selectively operating a pressurising element of a personal thermoregulation pack to apply a pressure independently of operation of the input (64) and output (52) pumps.