Principles of Mechanical Ventilation [EXPLAINED]

Описание к видео Principles of Mechanical Ventilation [EXPLAINED]

This video breaks down the basic principles of mechanical ventilation in a way that's easy to learn and understand. Watch the video to learn more!
💥Principles of Mechanical Ventilation [Full Guide] ➜ ➜ ➜ https://bit.ly/2zSX8As

➡️ What are the Principles of Mechanical Ventilation?
Respiratory therapists and those who work in critical care must learn and understand the principles of mechanical ventilation. This includes:
- Ventilation
- Oxygenation
- Lung compliance
- Airway resistance
- Deadspace ventilation
- Respiratory failure

➡️ Ventilation
Ventilation is the physiological process of moving air in and out of the lungs during a breathing cycle. It is an essential component of respiration, which helps ensure that oxygen-rich air enters the lungs while carbon dioxide is removed.

➡️ Oxygenation
Oxygenation is the physiological process of absorbing oxygen into the bloodstream. During inhalation, air enters the lungs and delivers oxygen molecules to the alveoli, where they diffuse across the alveolar-capillary membrane and into the blood.

➡️ Lung Compliance
Lung compliance is a measurement of the lung’s ability to expand and contract. It is calculated by dividing the change in volume by the change in pressure. High lung compliance means that the lungs can expand more easily, while low lung compliance indicates lung stiffness. There are two primary types of lung compliance:
- Static
- Dynamic

➡️ Static Compliance
Static compliance is a measure of the lung’s ability to expand when there is no airflow. It is determined by the amount of pressure required to inflate the lungs at a given volume.

➡️ Dynamic Compliance
Dynamic compliance is a measure of the lung’s ability to expand when airflow is present. It is determined by the amount of pressure required to produce a given flow rate.

➡️ Airway Resistance
Airway resistance is a measurement of impedance to the movement of air through the respiratory tract during inspiration and expiration. It is determined by the pressure difference between the alveoli and the atmosphere.

➡️ Factors that can affect airway resistance include:
- Retained secretions
- Bronchoconstriction
- Foreign body aspiration
- Endotracheal tube
- Condensation in the ventilator circuit
- Neoplasm of the bronchial muscle structure
- Tumors compressing the airway
- Upper airway infection

➡️ Deadspace Ventilation
Deadspace ventilation is defined as the volume of ventilated air that does not participate in gas exchange.
Therefore, in this case, plenty of air reaches the alveoli, but there is a lack of perfusion available for gas exchange to occur.

➡️ There are three types of deadspace:
- Anatomic
- Alveolar
- Physiologic

➡️ Anatomic Deadspace
Anatomic deadspace is the volume of air in the conducting airways that does not participate in gas exchange. It is estimated to be approximately 1 mL/lb of ideal body weight.

💥Principles of Mechanical Ventilation [Full Guide] ➜ ➜ ➜ https://bit.ly/2zSX8As

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🚑MEDICAL DISCLAIMER
This content is for educational and informational purposes only. It is not intended to be a substitute for professional medical advice, diagnosis, or treatment. Please consult with a physician with any questions that you may have regarding a medical condition. Never disregard professional medical advice or delay in seeking it because of something you watch in this video. We strive for 100% accuracy, but errors may occur, and medications, protocols, and treatment methods may change over time.

💡AFFILIATE DISCLAIMER
This description contains affiliate links. If you decide to purchase a product through one of them, we receive a small commission at no cost to you.

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⏰TIMESTAMPS
0:00 - Intro
027 - Principles of MV
058 - Ventilation
130 - Oxygenation
200 - Lung Compliance
228 - Static Compliance
240 - Dynamic Compliance
255 - Airway Resistance
307 - Factors
339 - Deadspace Ventilation
400 - Types of Deadspace
406 - Anatomic Deadspace
419 - Alveolar Deadspace
435 - Physiologic Deadspace
450 - Respiratory Failure
505 - Ventilatory Failure
533 - Oxygenation Failure

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🖼CREDIT FOR MUSIC AND GRAPHICS:
▪ Music licensed from Audiojungle.net/
▪ Graphics: Canva.com, Freevector.com, Vecteezy.com, and Pngtree.com

#RespiratoryTherapy #RespiratoryTherapist #mechanicalventilation

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