Abstract:
An infusion pump includes a pumping mechanism having at least one sensor and a pump motor and a pump control subsystem configured to control operation of the pumping mechanism, the pump control subsystem including a processor, a memory, and a startup module configured to drive the pump motor at a first rate, receive input from the at least one sensor, and drive the pump motor at a second rate based on the input received from the at least one sensor. Startup algorithms command an infusion pump to reach a targeted delivery rate or steady state in minimal time without requiring priming of the pump line or otherwise engaging in known methods of pump startup analysis.
Abstract:
An overload protection method and apparatus for a medicament syringe pump force sensor. A dome switch is employed with force sensor components of a medicament pump. The dome switch collapses at overload pressures, isolating the force sensor from pump driving forces that exceed the force sensor limit. An alarm signal can be triggered by the overload, and initiate pump shut down.
Abstract:
Embodiments relate generally to drug delivery infusion profiles that can be transferred and executed on infusion pumps without the need for loading new firmware. Particularly, embodiments relate to integrating and/or editing delivery profiles for execution infusion systems. Such systems can include target-controlled infusion systems. Advantages of such embodiments include enabling healthcare providers and medical device companies to respond quickly to changes in infusion pump technology, drug development, and pharmacokinetics by providing the ability to create, edit, integrate, and store delivery profiles to accommodate these changes.
Abstract:
Embodiments include an infusion pump providing safe and reliable touchless control. The infusion pump includes a pump housing, a pumping mechanism coupled to the pump housing that selectively delivers medicament to a patient, a pump control system including a processor and a memory programmable to control operation of the pumping mechanism, and a touchless control module for relaying commands to the pump control system. The touchless control module includes a first touchless user interface configured to receive a touchless programming command for the infusion pump from a user and a second touchless user interface configured to confirm the touchless programming command by receipt of a touchless confirmation command from the user.