Open Access Open Access  Restricted Access Subscription Access

Development of a Syringe Infusion Pump

Biswajit Mallick, Harish Chandra Mohanta

Abstract


The primary objective of this work is to develop an advanced syringe infusion pump that improves precision, safety, and convenience in medical fluid delivery systems. The proposed pump incorporates state-of-the-art technology to overcome the constraints of current models, offering accurate and dependable delivery of medications and fluids in healthcare environments. The work commences by conducting a thorough analysis of the existing syringe infusion pumps, aiming to identify their inherent strengths, weaknesses, and potential areas that can be enhanced. Following that, the design phase utilizes cutting-edge engineering principles to create a sturdy, easy-to-use, and flexible infusion pump. The development process entails thorough testing in simulated clinical scenarios to verify functionality, reliability, and adherence to safety standards. The primary objective of this work is to introduce a cutting-edge syringe infusion pump that not only fulfills but exceeds the established benchmarks in the industry. This will bring about a significant transformation in the administration of medication and patient care, while also contributing to advancements in medical technology.


Full Text:

PDF

References


Neff, T. A., et al. "Infusion pump performance with vertical displacement: effect of syringe pump and assembly type." Intensive care medicine 27 (2001): 287-291.

Kim, Dong Won, and David J. Steward. "The effect of syringe size on the performance of an infusion pump." Pediatric Anesthesia 9.4 (1999): 335-337.

Baeckert, Martina, et al. "Performance of modern syringe infusion pump assemblies at low infusion rates in the perioperative setting." British journal of anaesthesia 124.2 (2020): 173-182.

Prasad, L.; Mohanta, H.C.; Vinay, K.P. Wide Band Conformal Coplanar Benz Shaped Circular Ring Antenna for C and X Band Applications. In Proceedings of the 2022 International Conference on Computing, Communication and Power Technology (IC3P), Visakhapatnam, India, 7–8 January 2022; pp. 44–47.

Sahu, Shikha, and Harish Chandra Mohanta. "A Pine Shaped Dual-Band Frequency Reconfigurable Antenna." Journal of Engineering Research and Reports 20.12 (2021): 42-52.

Mohanta, G., and Mohanta, Harish Chandra., 2019. Image compression using different vector quantization algorithms and its comparison, IJITEE journal, vol. 8, issue 9.


Refbacks

  • There are currently no refbacks.