Abstract:
An application device for a breathing mask arrangement includes a base portion, a holding portion structured to support a mask and pivotally mounted to the base portion for pivotal movement about a first pivcit axis, a right arm element pivotally mounted to the base portion for pivotal movement about a second pivot axis, and a left arm element pivotally mounted to the base portion for pivotal movement about a third pivot axis. The right and left arm elements are each provided with a contact portion for bearing against a right and a left forehead zone respectively of a mask user. The holding portion, the right arm element, and left arm element can be pivoted with respect to the base portion about the respective first, second, and third pivot axes.
Abstract:
The invention relates to an inhaler (1) and a sieve part (9) for an inhaler. The inhaler (1) and sieve part (9) of the invention are useful for administrating powdered substances such as medical substances. An exemplary inhaler (1) as depicted in FIG. 1 comprises a suction air channel (6) leading to a mouthpiece (4), further comprises a substance supply container (8) that is preferred to be moveable inside a receiving chamber (7) and a sieve part (9) disposed in the suction air channel (6) between the receiving chamber (7) and the mouthpiece (4), said sieve part comprising a retaining edge (10) and a sieve area contained in a cross sectional area within the retaining edge (10), wherein the sieve area has a protruding area (12) that protrudes to one side and has a flat portion (13).
Abstract:
A respiratory mask includes: a mask body including a mask shell, and a mask cushion connected to a rear side of the mask shell; a front cover disposed in front of and hinged to the mask shell, and having a support arm extending upwardly; a forehead support unit having a forehead frame connected to a top end of the support arm, and a forehead pad connected to a rear side of the forehead frame; and an adjustment unit connected to at least one of the mask shell and the front cover, and operable to produce relative movements of the mask shell and the front cover so that the mask body can abut against the user's nose with an appropriate abutment pressure.
Abstract:
A patient interface system (30) that includes a patient interface assembly (40) and a headgear assembly (70). The patient interface assembly (40) includes a frame (42), a patient circuit connector (44), a seal member (46), and a coupling assembly (50) extending from the frame. The coupling assembly (50) is directed toward the users forehead when worn. The headgear assembly (70) includes an elongated pad support (72), a headgear attachment element (78) disposed on the pad support (72), a headgear strap (80) coupled to the headgear attachment element (78), and an elongated headgear pad (74) coupled to the pad support (72). The pad support, pad, or both are configured so as to extend from the forehead of the user generally along a centerline of the head and terminate proximate to a top of a head. In addition, a coupling assembly attachment assembly (100) is operatively coupled to the pad support (72) to couple the coupling assembly (50) of the patient interface device to the headgear assembly (70).
Abstract:
A cushion pad for a mask worn by a patient, comprising a first side to contact skin of the patient, and a second side, opposite the first side, to contact or face the mask. The pad has a main body portion having a central portion shaped to cover a portion of the patient's nose extending from above the nose tip to the nasal bridge region without obstructing the patient's line of sight, and lateral side portions to extend downward and terminate along the sides of the nose or on the patient's cheeks. The main body is made of a breathable material, e.g., foam. The pad may include adhesive and/or an attached portion, e.g., a ring, to couple the pad to the patient and/or portion of the mask.
Abstract:
An adjustable mask apparatus for use in a breathing assistance system may include a housing, an adjustment arm, and a locking member. The housing may support a cushion configured to provide a seal against a patient's face. The adjustment arm may include a first end configured for attachment to a head gear, and a second end rotatably coupled to the housing to allow rotation of the adjustment arm to adjust a distance between the first end of the adjustment arm and the patient's head. The locking member may be coupled to the housing and may be configured to secure the adjustment arm in one of a plurality of predetermined rotational positions, each predetermined rotational position comprising a rotational position of the adjustment arm with respect to the housing.
Abstract:
A breathing mask is provided which prevents condensation in the interior space of the mask. The mask body (2) is provided in some sections with a material (8) that is waterproof but permeable to water vapor.
Abstract:
A system for securing a mask onto a subject's head is provided. The system may include a mask base, a mask latch, and a mask head strap. The mask base may be configured to support a gas delivery conduit for delivering gas to the subject. The mask latch may be pivotally coupled to the mask base about an axis extending generally laterally across the mask base. The mask head strap may be configured to be positioned around a subject's head and coupled to the mask latch such that rotation of the mask latch about the axis and relative to the mask base adjusts the mask head strap.
Abstract:
A system for securing a mask onto a subject's head is provided. The system may include a mask base, a mask latch, and a mask head strap. The mask base may be configured to support a gas delivery conduit for delivering gas to the subject. The mask latch may be pivotally coupled to the mask base about an axis extending generally laterally across the mask base. The mask head strap may be configured to be positioned around a subject's head and coupled to the mask latch such that rotation of the mask latch about the axis and relative to the mask base adjusts the mask head strap.
Abstract:
A patient interface gas delivery mask having a rolling diaphragm that connects a seal member forming a cushion which contacts the patient's face with a mask shell or that connects a conduit coupling member with the mask shell. The rolling diaphragm of the present invention allows the cushion to self align to the patient's face and allows relative movement between the seal member and the mask shell. This prevents torque acting of a conduit coupled to the mask shell from being translated to the seal member, which might otherwise dislodge the seal member creating unwanted gas leakage at the seal member-patient interface.