User experience for infusion pumps
Infusion pump interfaces providing simple and intuitive user experiences. A controller display subsystem for implementing infusion pump interfaces includes a processor, a memory, display logic, keypad I/O, and screen I/O. Display logic can command the processor via the memory to implement desirable displays on screen I/O.
1. A system for controlling an infusion pump display, the infusion pump including a processor, memory operably coupled to the processor, and display logic comprising instructions that, when executed, cause the processor to:
display a first subset of infusion parameters on a first running screen of the infusion pump;
display a second subset of infusion parameters on a second running screen of the infusion pump, wherein the first subset of infusion parameters is greater than the second subset of infusion parameters and the display of the first subset of infusion parameters is in a smaller presentation size than the display of the second subset of infusion parameters;
evaluate a condition related to the infusion pump; and
based on the evaluation of the condition and use of a predictive algorithm, automatically and without user intervention, display a specialized screen related to a current status of the system,
wherein the predictive algorithm is based on previously recorded transitions between screens and data associated with the transitions.
2. The system of claim 1 , wherein the specialized screen comprises at least one of data, a programming field, a parameter, or a graph related to the condition.
3. The system of claim 1 , wherein the system further comprises a sensor configured to provide a measurement related to the infusion pump, wherein the display logic instructions causing the processor to evaluate the condition related to the infusion pump includes evaluating the measurement, and wherein the specialized screen is based on the measurement.
4. The system of claim 3 , wherein the sensor is a flow sensor and the specialized screen comprises a graph of the flow detected by the flow sensor.
5. The system of claim 1 , wherein the condition is an alarm condition and the display logic further comprises instructions to, automatically and without user intervention, re-display the first running screen.
6. The system of claim 1 , wherein the display logic further comprises instructions to evaluate a second condition related to the infusion pump and based on the evaluation of the second condition, automatically and without user intervention, re-display the second running screen.
7. The system of claim 1 , wherein the display logic instructions causing the processor to evaluate the condition related to the infusion pump includes at least one of a predictive algorithm determination, a near-field communication component determination, a peripheral device connection determination, or a signature determination.
8. The system of claim 1 , wherein the predictive algorithm is further based on trend lines to determine a most desired or most often entered screen for a particular set of infusion pump or system characteristics.