Mask and components thereof
A comfortable low-leak mask assembly for use with Non-Invasive Positive Pressure Ventilation (NIPPV) is provided to improve patient compliance and/or treatment. The mask system may include headgear having straps that are substantially inextensible and/or micro-adjustable; and/or a mask and/or cushion that includes various structures to allow enhanced/tailored sealing and/or fit at selected locations on the patient's face.
1. A patient interface assembly for non-invasive positive pressure ventilation of a patient by application of breathable gas at positive pressure to the airway of the patient wearing the patient interface assembly, the patient interface assembly comprising:
a patient interface frame;
a patient interface body assembly coupled to the patient interface frame; and
headgear constructed and arranged to be connected to the patient interface frame, the headgear including a controllable active tensioning element in force-transmitting relation therewith, the active tensioning element being configured to expand or contract when an electric current is applied to the active tensioning element to automatically adjust headgear tension while the patient interface assembly is engaged with the face of the patient; and
wherein the active tensioning element is a servo motor.
2. A patient interface assembly according to claim 1 , wherein the active tensioning element is electrically controllable.
3. A patient interface assembly according to claim 1 , wherein the adjustment of the headgear tension is dependent on a pressure of the breathable gas being supplied to the patient via the patient interface assembly.
4. A patient interface assembly according to claim 1 , wherein the adjustment of the headgear tension is dependent on a leakage of gas from the patient interface assembly.
5. A patient interface assembly according to claim 1 , wherein the controllable active tensioning element includes a plurality of controllable active tensioning elements in force-transmitting relation to the headgear.