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Calculate the dosages as indicated. Use the labels where provided. Order: Dobutrex \(250 \mathrm{mg}\) in \(500 \mathrm{~mL}\) of \(\mathrm{D} 5 \mathrm{~W}\) at \(3 \mathrm{mcg} / \mathrm{kg} / \mathrm{min}\). The client weighs \(80 \mathrm{~kg}\). What dosage in \(\mathrm{mcg} / \mathrm{min}\) should the client receive?

Short Answer

Expert verified
The client should receive 240 mcg/min.

Step by step solution

01

Understand the Order

The order specifies that the drug Dobutrex is to be delivered at a rate of \(3 \text{ mcg/kg/min}\). The only variable we need to determine is the total dosage per minute for the specific client's weight.
02

Calculate Patient's Total Dosage Per Minute

First, note that the client weighs \(80 \text{ kg}\). The dosage required is \(3 \text{ mcg per kg per minute}\). Thus, calculate: \[80 \text{ kg} \times 3 \frac{\text{mcg}}{\text{kg}\cdot \text{min}} = 240 \frac{\text{mcg}}{\text{min}}\]
03

Confirm Appropriateness of Dosage

With the weight-specific calculation complete, reconfirm that the resulting total dosage of \(240 \text{ mcg/min}\) aligns with expected dosages for patient safety and therapeutic efficacy.

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Key Concepts

These are the key concepts you need to understand to accurately answer the question.

Medication Dosage
Medication dosage is critical in ensuring the effectiveness of treatment while minimizing potential side effects. Dosage refers to the amount of medication to be delivered. In medical settings, it is essential to follow prescribed doses carefully as they are often calculated based on various patient-specific variables. This helps in achieving the desired therapeutic effect.
To determine the appropriate dosage, healthcare providers consider:
  • The type of medication - Different drugs have different potencies.
  • The route of administration - Oral, intravenous, and other methods affect absorption and efficacy.
  • The specific condition being treated - Some illnesses require more aggressive treatment than others.
Accurate dosage calculations ensure that patients receive enough of the drug to be effective, without reaching toxic levels. Mistakes in dosage can lead to under-treatment or overdose, both of which can have significant consequences.
Patient Weight
Patient weight is a vital factor in determining the appropriate dosage of many medications. The weight of a patient directly impacts how the body processes and assimilates a drug, affecting its efficacy.
Weight-based dosing is particularly important for medications with narrow therapeutic windows or those with significant side effects. This means that even small deviations from the correct dosage could lead to under- or over-medication.
  • Why weight matters: Larger individuals may require more of a drug to achieve the same effect as someone lighter.
  • How it's calculated: Dosage is often expressed in terms of milligrams (mg) or micrograms (mcg) per kilogram (kg) of body weight.
  • Correction factors: Sometimes, doses need adjustment for body surface area or lean body mass, not just total weight.
Considering patient weight allows for a personalized approach to treatment, which is essential for safety and effectiveness.
mg/kg/min
The notation 'mg/kg/min' or 'mcg/kg/min' describes medicinal dosage with specific criteria:
  • \( \text{mg} \) or \( \text{mcg} \) is the measure of drug weight.
  • \( \text{kg} \) tracks the patient's weight.
  • \( \text{min} \) indicates the duration per unit time.
It is particularly common in continuous medication administration like an infusion, where precision and consistency are crucial.
Such expression ensures precise tailoring of drug delivery according to individual needs. Ultimately, these calculations involve multiplying the patient's weight by the drug concentration and adjusting for the rate of administration. This process ensures safe and effective medication use. In our example, the dosage was given as \( 3 \text{ mcg/kg/min} \), and we calculated the total needed per minute based on a specific weight (\( 80 \text{ kg} \)). This yielded a final dosage of 240 mcg/min.
Dobutrex Administration
Dobutrex (Dobutamine) is commonly used in medical settings to improve heart function. It works by stimulating the heart muscle, increasing blood flow and managing heart-related conditions. Proper administration is crucial, involving careful determination of dose and monitoring.
When calculating the appropriate administration dosage, healthcare professionals consider its specific orders. Key points during Dobutrex administration include:
  • Weight-based dosing ensures safety and effectiveness, crucial for potent medications like Dobutrex.
  • Continuous monitoring of heart rate and blood pressure is necessary, as the drug affects cardiac performance.
  • Adjusting dosage according to patient response and adjusting for weight and tolerance levels.
Ensuring the correct preparation and delivery can significantly enhance treatment outcomes and mitigate risks associated with cardiac therapy.

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Most popular questions from this chapter

Calculate the dosages as indicated. Use the labels where provided. Order: Dopamine \(400 \mathrm{mg}\) in \(500 \mathrm{~mL} 0.9 \% \mathrm{NS}\) to infuse at \(200 \mathrm{mcg} / \mathrm{min} .\) A volumetric pump is being used. Calculate the rate in \(\mathrm{mL} / \mathrm{hr}\).

Calculate the dosages as indicated. Use the labels where provided. Client is receiving epinephrine at \(40 \mathrm{~mL} / \mathrm{hr}\). The solution available is \(4 \mathrm{mg}\) of epinephrine in \(500 \mathrm{~mL}\) D5W. Calculate the following: a. \(\mathrm{mg} / \mathrm{hr}\) b. \(\mathrm{mcg} / \mathrm{hr}\) c. \(\mathrm{mcg} / \mathrm{min}\)

Calculate the dosages as indicated. Use the labels where provided. Dopamine is ordered at a rate of \(3 \mathrm{mcg} / \mathrm{kg} / \mathrm{min}\) for a client weighing \(95.9 \mathrm{~kg}\). The solution strength is \(400 \mathrm{mg}\) dopamine in \(250 \mathrm{~mL} \mathrm{D}_{5} \mathrm{~W}\). Determine the flow rate for IV pump. Pump capable of delivering in tenths of a mL.

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