Fluid Bolus Confirmation

Fluid bolus confirmation is the process of verifying that a defined volume of fluid has been delivered through an infusion or injection system, an important quality-control step in cancer research. It combines measurement of the intended dose with checks of line patency, flow, delivery completion, and, when appropriate, the subject’s immediate response to distinguish successful administration from leakage, blockage, or incomplete dosing. Reliable confirmation supports consistent delivery of chemotherapeutic agents, contrast media, hydration fluids, and experimental compounds, reducing variability between animals or patients. This improves the reproducibility of pharmacokinetic studies, imaging experiments, treatment evaluations, and other investigations that depend on accurate fluid administration.

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JoVE Core - Social Psychology

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The confirmation bias is the tendency to focus on information that confirms our existing beliefs and ignore information that is inconsistent with our expectations. For example, if you think that your professor is not very nice, you notice all of the instances of rude behavior exhibited by the professor while ignoring the countless pleasant interactions he is involved in on a daily basis. Have you ever fallen prey to the confirmation bias, either as the source or target of such bias? Another...

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All animal procedures described here must be conducted in accordance with institutional animal ethics guidelines and approved by IACUC. All procedures must follow the principles of the 3Rs—Replacement, Reduction, and Refinement—and must be performed by trained personnel. Humane endpoints in rodents are predefined clinical, behavioral, or physiological indicators that signal an animal is experiencing significant pain, distress, or declining health. When these signs are observed, timely...

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The two-compartment model for intravenous (IV) bolus administration illustrates drug distribution in the body, subdividing it into central and peripheral compartments. This model operates on the concept of two-compartment kinetics. The drug's plasma concentration shows a bi-exponential decline following IV bolus administration, signaling the presence of two disposition processes: distribution and elimination. The disparity between drug input and the sum of drug transfer rates between...

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In pharmacokinetics, the elimination rate of a drug following a capacity-limited model is primarily controlled by two parameters: Vmax and KM. These parameters are crucial in how the drug behaves inside the body after administration. Following the administration of a single intravenous (IV) bolus injection, we can determine the concentration of the drug in the plasma at any given time. This calculation is achieved using a specific equation that integrates the values of Vmax and KM. We can also...

One-Compartment Open Model for IV Bolus Administration: General Considerations

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The one-compartment model is a pharmacokinetic tool that models the body as a single, uniform compartment, facilitating the understanding of drug distribution and elimination. This model is particularly beneficial for intravenous (IV) bolus administration, where the drug rapidly circulates throughout the body. The drug's presence in the body is defined by an equation representing the difference between the rates of drug entry and exit. Key parameters—elimination rate constant, half-life,...

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