Abstract:
An apparatus and methods for dispensing a sanitized saline solution for rinsing the nasal passages and sinuses. The disclosure includes methods for bulk storage of granular sodium salt mixtures (pH balanced sodium chloride and sodium bicarbonate), bulk storage of water, heating and sensing elements, filtering elements, and dispensing elements. The apparatus provides controls for customizing the concentration and temperature of the dispensed saline solution, and provides for dispensing the solution into a delivery device, with a water catch basin and area for drying a delivery device after use.
Abstract:
The invention relates to a device for and method of monitoring compressions in a cardiac massage on a person in a medical emergency situation. The device is equipped with a flow tube (2, 202), which exhibits a continuous flow channel for air, with at least one flow sensor (10) for determining mass or volumetric flow arranged in the flow channel of the flow tube (2, 202), and/or with a vital signs sensor arranged on the flow tube, by means of which a proportion of oxygen and carbon dioxide can be determined, with a processor that produces a characteristic output signal for penetration depth from the mass or volumetric flow determined and/or from the proportion of oxygen or carbon dioxide detected, andwith an output device (124, 224) that issues the output signal.
Abstract:
Systems for auto-calibrating a pneumatic compression system may include one or more manifolds from an inflation fluid source and one or more individually inflatable cells. One or more pressure sensors may be associated with the one or more manifolds and/or each of the individually inflatable cells. Each of the pressure sensors may provide either dynamic or static pressure data to a controller. A method for auto-calibrating the compression system may include introducing a portion of inflation fluid into a cell while measuring a dynamic cell pressure, stopping the introduction of fluid, measuring a static cell pressure, and comparing, by the computing device, the dynamic cell pressure and the static cell pressure. The comparison between dynamic and static cell pressures may be used to calculate a dynamic target cell pressure equivalent to a desired static target cell pressure.
Abstract:
A pool or spa control system includes, a main control panel housing a motherboard, relay bank, and local terminal. The motherboard includes a processor in two-way communication with a relay bank socket via an internal bus. The relay bank is connectable to the relay bank socket and includes a processor, memory, plurality of relays, connector, and an internal bus establishing two-way communication between the relay bank processor and the motherboard processor when the relay bank is connected to the relay bank socket. The local terminal includes a control processor, user interface, and memory, and is in two-way communication with the motherboard processor for allowing user control of the system. The control processor automatically discovers and assigns the relay bank a network address upon connection of the relay bank to the motherboard relay bank socket, and the relay bank returns relay bank parameter information, which the local terminal stores in memory.
Abstract:
A method of integrating a relay bank for use with a pool or spa control system includes, establishing an electrical connection between the relay bank and a control panel, discovering the relay bank by a control panel processor, and assigning the relay bank a network address upon discovery thereof. A method of integrating a smart component for use with a pool or spa control system includes, establishing an electrical connection between the smart component and a control panel, discovering the smart component by a control panel processor, and assigning the smart component a network address upon discovery thereof. A method of integrating an expansion panel for use with a pool or spa control system includes, establishing an electrical connection between the expansion panel and a control panel, discovering the expansion panel by a control panel processor, and configuring the expansion panel upon discovery thereof.
Abstract:
Disclosed is a system for controlling pool/spa components. More particularly, disclosed is a system for controlling pool/spa components including a display screen and one or more processors presenting a control user interface for display on the display screen, wherein the control user interface includes a home screen comprising a first portion containing a first plurality of buttons and/or controls for controlling a first group of the plurality of pool/spa components associated with a first body of water, and a second portion containing a second plurality of buttons and/or controls for controlling a second group of the plurality of pool/spa components associated with a second body of water.
Abstract:
A spa includes a housing forming a vessel, an opening formed in the vessel, a valve fluidly coupled to the opening, a liquid sensor configured to measure an amount of liquid in the vessel, and a controller operatively connected to the valve and the liquid sensor. The controller operates the valve to drain liquid the vessel through the opening, and operates the valve to fill the vessel with liquid from a liquid source when a predetermined amount of liquid has drained from the vessel.
Abstract:
A portable, self-contained compression device is wearable by a person for applying intermittent compression on a limb of the person. The compression device comprises a sleeve having a longitudinal axis and adapted for placement on the limb. The device includes an actuator assembly on the sleeve comprising a flexible shaft operably connected to the sleeve and extending generally parallel to the longitudinal axis of the sleeve. The shaft is flexible to allow for conformance of the shaft to the limb when the sleeve is on the limb. The actuator assembly also comprises an actuator for rotating the flexible shaft in a first direction to constrict the sleeve to apply compression on the limb and for rotating the flexible shaft or allowing the flexible shaft to rotate in a second direction to relax constriction of the sleeve to relieve compression on the limb. Springs or elastic sections may be used to impart sequential, gradient compression on the limb.
Abstract:
By providing an envelope body (101) enveloping at least a part of body surface, a supply unit (61) supplying carbon dioxide gas into the envelope body (101), and a pressurizing unit (102) pressurizing the carbon dioxide gas supplied into the envelope body (101) to make the gas to be absorbed into an absorbent material, it is possible to further improve an efficiency for making the carbon dioxide gas to be absorbed from the body surface.
Abstract:
A portable, self-contained compression device is wearable by a person for applying intermittent compression on a limb of the person. The compression device comprises a sleeve having a longitudinal axis and adapted for placement on the limb. The device includes an actuator assembly on the sleeve comprising a flexible shaft operably connected to the sleeve and extending generally parallel to the longitudinal axis of the sleeve. The shaft is flexible to allow for conformance of the shaft to the limb when the sleeve is on the limb. The actuator assembly also comprises an actuator for rotating the flexible shaft in a first direction to constrict the sleeve to apply compression on the limb and for rotating the flexible shaft or allowing the flexible shaft to rotate in a second direction to relax constriction of the sleeve to relieve compression on the limb. Springs or elastic sections may be used to impart sequential, gradient compression on the limb.