Abstract:
A lancet cartridge has a U-shaped support with a pair of anchor portions, a base portion, and a pair of deformable leg portions connecting the anchor portions to the base portion. The pair of deformable leg portions change shape from an initial shape to an extended shape in response to an external applied force and recover to a retracted shape upon removal of the force. The lancet cartridge also has a lancet having a tip end, an opposing base end, and an axis extending between the tip end and the base end. A portion of the lancet is disposed between the pair of deformable leg portions of the U-shaped support. The lancet is movable between a starting position, an extended puncturing position, and an ending position along the axis of the lancet in a path defined by the U-shaped support. When the lancet is in the starting position, the tip end of the lancet is disposed at least partially through the base portion of the U-shaped support, and the U-shaped support is in the initial shape. When the lancet is in the extended puncturing position, the tip end of the lancet is extended through the base of the U-shaped support, and the U-shaped support is in the extended shape. When the U-shaped support recovers to its retracted shape upon removal of the force, the lancet is retracted to the end position.
Abstract:
A test strip vial has a container, a test strip magazine disposed within the container, and a lid. The magazine has a plurality of test strip slots radially disposed about an axis of the magazine and extending through the first end of the magazine. The lid is rotatably attached about the open end of the container and has a test strip aperture defined therein that is sequentially aligned with each of the test strip slots as the lid is rotated. The vial also has an incremental rotation mechanism associated therewith that permits incremental rotation of the lid relative to the magazine to sequentially align the aperture with each of the slots. Test strips are individually disposed within the slots.
Abstract:
The present invention provides a method of transferring data between a diagnostic measurement device and a portable consumer electronic device (CED). The method includes a step of communicatively coupling the diagnostic measurement device and the CED through an audio port located on the CED. The method also includes the step of transferring data from the diagnostic measurement device to the CED through the audio port of the consumer electronic device.
Abstract:
In one embodiment the present invention provides a blood analyte meter that is user-friendly and easy to use. In accordance with an embodiment of the present invention an analyte measurement device, for use with a test strip for determining the amount of an analyte in a sample, displays a hierarchy of information or options to a user. The hierarchy of information or options may include, among other information or options, subroutines that are performable by the processor of the device, stored data related to past tests performed by the user, and alarm features of the device. A user scrolls through and selects individual options or pieces of information by rotating and translating a rotatable user interface around and along an axis of rotation.
Abstract:
A storage container for storing used diagnostic test strips has a base wall, a top wall, and a side wall that define an enclosed container space. The container has formed therein a test strip opening that connects the outside environment with the enclosed container space. The test strip opening is sized to receive a test strip and allow its passage from the outside environment to the enclosed container space. The test strip opening is disposed on the container in a position to restrain a test strip disposed in the container space from falling out of the container through the test strip opening, or the test strip opening is shaped to restrain a test strip disposed in the container space from falling out of the container through the test strip opening, or both.
Abstract:
A diagnostic test strip vial has a container, a lid, and a plurality of diagnostic test strips. The container has a generally annular wall terminating at a base and at an open mouth. The lid has a top and a lifting tray connected to the top by a connector that is sufficiently long that the distance between the top and the lifting tray is at least as long as the length of a diagnostic test strip and sufficiently short that the top may engage the open mouth of the container to close the vial when the lifting tray is engaged with the inner side of the annular wall of the container. The test strips are disposed on the lifting tray which is sized to slidably engage the inner side of the annular wall of the container.
Abstract:
A lancing device is used with a lancet for lancing body tissue to result in a wound for bleeding. The lancing device has a cantilevered priming arm having a first arm portion that is generally parallel to an internal channel of the device and a second arm portion that is generally perpendicular to the internal channel. The second arm portion is connected to a lancet carrier and movement of the first arm portion toward the internal channel draws the lancet carrier to a primed position and stores energy in a lancet driver.
Abstract:
In one embodiment the present invention provides a blood analyte meter that is user-friendly and easy to use. In accordance with an embodiment of the present invention an analyte measurement device, for use with a test strip for determining the amount of an analyte in a sample, displays a hierarchy of information or options to a user. The hierarchy of information or options may include, among other information or options, subroutines that are performable by the processor of the device, stored data related to past tests performed by the user, and alarm features of the device. A user scrolls through and selects individual options or pieces of information by rotating and translating a rotatable user interface around and along an axis of rotation.