Abstract:
The invention relates to a dispense interface for use with a drug delivery device with an inner body and with a lockout element, wherein the lockout element is coupled to the inner body, wherein the lockout element is movable from a receptive condition to a locked condition, wherein in the receptive condition the dispense interface is attachable to the drug delivery device, wherein in the locked condition the dispense interface is not-attachable to the drug delivery device and wherein the lockout element is configured to move from the receptive condition to the locked condition when said dispense interface is attached to and detached from said drug delivery device. The invention solves the technical problem of reducing the risk of reuse of a dispense interface, after it has already been used with a drug delivery device.
Abstract:
A drug delivery device comprising; a housing; a cylindrical member configured to be rotatably supported inside the housing, wherein the outer surface of the cylindrical member is provided with at least first and second tracks together forming an encoder, each track comprising conductive segments and non-conductive segments; and at least first and second groups of contacts configured to engage the first and second tracks respectively at predetermined intervals along the length of the track.
Abstract:
A dose setting mechanism comprises a drug delivery device housing and a dual state track provided within the housing that is axially and rotationally fixed with respect to the housing. A dose dial component is positioned in the housing and rotatable during dose setting and dose delivery. A clutch is rotatable during dose setting and non-rotatable during dose delivery. A clutch plate is rotationally fixed relative to the housing; and a clutch blocker is in threaded engagement with the clutch plate and has a radial key engaged with the dual state track. The mechanism may comprise a biasing member positioned between the clutch blocker and clutch plate.
Abstract:
Techniques for increasing the efficacy of an affiliate marketing program are described herein. These techniques may allow participants of the affiliate marketing program to easily create links to content that a content site offers. To do so, the content site may determine whether a user that requests content from the site is a participant of the program or a non-participant. Based at least in part on determining that the requesting user is a participant, the content site may serve the requested content in addition to a mechanism for creating links to the content. Furthermore, the mechanism may also illustrate or otherwise include content that is customized based on the content that the participant requests and/or based on an identity of the participant.
Abstract:
A medical delivery device may include at least one electronic sensor and a decoding module. The at least one electronic sensor and the decoding module are configured to (i) identify a coding feature of a drug reservoir inserted in the medical delivery device and (ii) determine information related to the drug reservoir based on the identified coding feature.
Abstract:
According to one general aspect, a method of regulating the system resource consumption of an apparatus may include monitoring one or more system resources of the apparatus. The method may also include receiving a request to display, via the apparatus, a requested multi-element document. The method may include retrieving by the apparatus, at least in part, the requested multi-element document. The method may include dynamically editing the requested multi-element document based, at least in part, upon the monitored system resources. The method may also include displaying the dynamically edited multi-element document.
Abstract:
A drug delivery device comprising; a housing; a cylindrical member configured to be rotatably supported inside the housing, wherein the outer surface of the cylindrical member is provided with at least first and second tracks together forming an encoder, each track comprising conductive segments and non-conductive segments; and at least first and second groups of contacts configured to engage the first and second tracks respectively at predetermined intervals along the length of the track.
Abstract:
The invention relates to a dispense interface for use with a drug delivery device with an inner body and with a lockout element, wherein the lockout element is coupled to the inner body, wherein the lockout element is movable from a receptive condition to a locked condition, wherein in the receptive condition the dispense interface is attachable to the drug delivery device, wherein in the locked condition the dispense interface is not-attachable to the drug delivery device and wherein the lockout element is configured to move from the receptive condition to the locked condition when said dispense interface is attached to and detached from said drug delivery device. The invention solves the technical problem of reducing the risk of reuse of a dispense interface, after it has already been used with a drug delivery device.
Abstract:
The invention relates to a dispense interface for use with a drug delivery device with an inner body and with a lockout element, wherein the lockout element is coupled to the inner body, wherein the lockout element is movable from a receptive condition to a locked condition, wherein in the receptive condition the dispense interface is attachable to the drug delivery device, wherein in the locked condition the dispense interface is not-attachable to the drug delivery device and wherein the lockout element is configured to move from the receptive condition to the locked condition when said dispense interface is attached to and detached from said drug delivery device. The invention solves the technical problem of reducing the risk of reuse of a dispense interface, after it has already been used with a drug delivery device.
Abstract:
Imaging systems, methods, sensor pods, and vehicles having imaging systems. An imaging system can be coupled to a vehicle and can comprise: a plurality of imaging sensors with multiple spectrums; and a processing unit configured to generate an image model in substantially real-time by: warping, fusing, and stitching images; and two or more displays coupled to the processing unit such that the two or more displays can simultaneously each show a different portion of the image model, and such that a user can manually calibrate via the processing unit at least one of the warping, fusing, or stitching. In some imaging systems, imaging sensors are coupled at different elevations relative to a ground vehicle. The present sensor pods can comprise a housing; two or more first imaging sensors having a first spectrum; and two or more second imaging sensors having a second spectrum that is different than the first spectrum.