Abstract:
A breathing mask arrangement includes a mask frame, a sealing device provided to the mask frame, a forehead support device movably mounted to the frame for adjustable movement with respect to the frame, and a rotatable adjustment knob operatively associated with the forehead support device such that rotative movement of the adjustment knob is adapted to cause relative movement between the forehead support device and the frame.
Abstract:
A mask system for delivering breathable gas to a patient includes a common frame provided without built-in or integral headgear attachment points and at least first and second headgear connectors adapted to be provided to the frame. Each of the at least first and second headgear connectors are adapted to attach headgear straps of headgear. The at least first and second headgear connectors are different from one another in at least one aspect.
Abstract:
A respiratory mask assembly includes a frame, a forehead support, and an adjustment mechanism including a single finger-operated push button to allow selective adjustment of the forehead support relative to the frame. The frame includes a support arm and a housing provided to a free end of the support arm. The housing includes a front side including a closed configuration, a rear side, and a receiving space extending from the rear side and structured to slidably receive a slider of the forehead support. The forehead support is slidably mounted for linear movement in a direction which is substantially perpendicular to a longitudinal axis of the support arm. The single finger-operated push button includes a portion that extends through an opening provided in a top side of the housing.
Abstract:
A forehead cushion for a forehead support of a breathing mask arrangement includes a cushion element including a contact surface adapted to contact a patient's forehead and provide a distribution of contact force and a coupling element provided to the cushion element. The coupling element is adapted to couple the cushion element to the forehead support. The cushion element is movable with respect to the coupling element to achieve different contact positions on the patient's forehead.
Abstract:
A mask assembly includes a mask with an inflatable bladder. The internal pressure of the inflatable bladder can be set to be higher than the delivered therapeutic pressure. The pressure offset may be constant, or it may vary over the range of therapeutic pressures. Thus, the force necessary to maintain a contact seal between the mask and the patient can be reduced, thereby providing a system that is more comfortable to the patient, which increases patient compliance.
Abstract:
A patient interface device (10, 10′, 62, 62′, 102, 152, 162, 172) is provided that includes a patient sealing assembly (12, 64, 104), such as a mask having a rigid shell and a cushion coupled to the rigid shell, a forehead support (26, 72, 118) coupled to the patient sealing assembly, and a hinge assembly (40, 40′, 84, 84′, 124, 154, 164, 174) provided between a top portion of the patient sealing assembly and the forehead support.
Abstract:
A respiratory mask has an adjustable forehead support member that is simple and inexpensive to manufacture. The forehead support member may be adjusted by rotating a forehead pad about an off-center bore or by bending an angular adjustment beam. The mask has a mask cushion with an accordionate membrane having at least two hinged portions. The mask may be constructed with a mask frame, the mask cushion, and the forehead support member molded as one piece.
Abstract:
A patient interface of the present invention includes a faceplate including a plurality of headgear attachment elements, a seal member operatively coupled to the faceplate; and an adjustment mechanism coupling the seal member to the faceplate. The adjustment mechanism controls the position of the seal member relative to the faceplate such that the seal member is moveable from a first position to a second position and is maintained in the second position during use of the patient interface after being moved to the second position.
Abstract:
A respiratory mask assembly includes a respiratory mask and a forehead support secured to the mask via a joining member. The forehead support includes a cushion frame pivotably mounted to the joining member so as to be pivotably movable relative to the mask when the cushion frame is secured to the mask. At least one cushion is mounted on the cushion frame. A finger-operated adjustment control member is provided to the cushion frame. The finger-operated adjustment control member is manually manipulable to adjust a position of the cushion frame relative to the joining member along a predetermined path generally towards and away from the patient's forehead.
Abstract:
A respiration mask assembly including: a mask body having a front part that defines a front opening adapted to communicate fluidly with a gas supply, and a rear part that defines a rear opening opposite to the front opening in a horizontal direction; a forehead support beam extending outwardly from and pivoted to the front part of the mask body so as to rotate relative to the mask body about a first axis transverse to the horizontal direction; and a worm pivoted to the front part of the mask body. The forehead support beam has a toothed pivot end engaging the worm such that rotation of the worm about a second axis transverse to the first axis results in rotation of the forehead support beam about the first axis.