Continuous Infusion

Continuous infusion is a drug-delivery method that administers medication at a constant or controlled rate over an extended period, helping maintain therapeutic concentrations in the body. In pharmacology, an infusion pump delivers the drug into the bloodstream while factors such as clearance, distribution, and elimination half-life determine how quickly plasma concentrations approach steady state; a loading dose may achieve target levels sooner. This approach supports precise dosing for medicines with short half-lives or narrow therapeutic windows, reduces concentration fluctuations, and allows treatment to be adjusted according to therapeutic response, toxicity, or changing patient needs.

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JoVE EoE - Rodent Models

Continuous Drug Infusion System in Mouse Model: A Surgical Procedure to Implant Micro-osmotic Pump Infusion System in the Mouse Brain for Continuous Drug Delivery

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2025

In this video, we demonstrate the assembly of a micro-osmotic pump brain infusion system followed by its surgical implantation in the mouse skull. This system enables continuous delivery of potential drugs and facilitates the study of their effects on the brain and brain tissue.

Evaluating the Effect of Continuous Drug Infusion into the Mouse Brain on Peripheral Glucose Levels

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2025

This video demonstrates the effect of continuous drug infusion into the mouse brain on blood glucose levels. Glucose metabolism is assessed by collecting blood from a fasted mouse's tail and measuring glucose levels before and after oral glucose administration. Insulin tolerance is evaluated by injecting insulin in the mouse, with glucose levels recorded at specific intervals.

A Porcine Model of Acute Respiratory Failure with a Continuous Infusion of Oleic Acid

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Cited by 1 •

2024

Infusing oleic acid continuously into the pulmonary artery of an anesthetized adult pig induces acute respiratory failure, enabling controlled experimentation during acute respiratory decompensation.

Continuous IV Infusion is the Choice Treatment Route for Arginine-vasopressin Receptor Blocker Conivaptan in Mice to Study Stroke-evoked Brain Edema

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Cited by 4 •

2016

Our studies have revealed that the beneficial effects of conivaptan are dependent on the method of delivery after experimental stroke in mice. We have developed a research protocol for delivery of the receptor blocker via IV catheter on stroke-evoked brain edema formation in mice.

A Model of Chronic Nutrient Infusion in the Rat

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Cited by 1 •

2013

A protocol for chronic infusions of glucose and Intralipid in rats is described. This model can be used to study the impact of nutrient excess on organ function and physiological parameters.

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