📚 What's Inside the Anaesthesia Master Program?
Here's a glimpse of what you'll get:
✅ Anaesthesia Machine & Delivery System
✅ Airway Management
✅ Regional Anaesthesia
✅ General Anaesthesia
✅ Anaesthesia Pharmacology
✅ Monitoring
✅ ICU & Ventilator Basics
✅ Fluids & Blood Transfusion
✅ Emergency Drugs
✅ MCQ Booklets
...and many more topics.
💬 Want the complete curriculum?
Send "MASTER" on WhatsApp or Telegram.
Here's a glimpse of what you'll get:
✅ Anaesthesia Machine & Delivery System
✅ Airway Management
✅ Regional Anaesthesia
✅ General Anaesthesia
✅ Anaesthesia Pharmacology
✅ Monitoring
✅ ICU & Ventilator Basics
✅ Fluids & Blood Transfusion
✅ Emergency Drugs
✅ MCQ Booklets
...and many more topics.
💬 Want the complete curriculum?
Send "MASTER" on WhatsApp or Telegram.
⏳ Enrollment Open
The Anaesthesia Master Program is now open.
Start today. Stay ahead.
📩 WhatsApp:
https://wa.me/918987617157
💬 Send "MASTER"
The Anaesthesia Master Program is now open.
Start today. Stay ahead.
📩 WhatsApp:
https://wa.me/918987617157
💬 Send "MASTER"
⚠️ Last Reminder
Don't wait until your exams are near.
Start your preparation today with the Anaesthesia Master Program.
💬 Send "MASTER" to join.
Don't wait until your exams are near.
Start your preparation today with the Anaesthesia Master Program.
💬 Send "MASTER" to join.
A patient under general anaesthesia suddenly develops:
📉 Falling EtCO₂ 📉 Hypotension 📉 SpO₂ starts dropping
📉 Falling EtCO₂ 📉 Hypotension 📉 SpO₂ starts dropping
Anonymous Quiz
16%
A️) Bronchospasm
11%
B️) Circuit Leak
63%
C️) Pulmonary Embolism
10%
D️) Endobronchial Intubation
Anaesthesia Notes Hub
A patient under general anaesthesia suddenly develops:
📉 Falling EtCO₂ 📉 Hypotension 📉 SpO₂ starts dropping
📉 Falling EtCO₂ 📉 Hypotension 📉 SpO₂ starts dropping
✅ Answer: Pulmonary Embolism
A pulmonary embolism suddenly reduces blood flow to the lungs, leading to a rapid fall in EtCO₂, followed by hypotension and decreasing SpO₂ due to impaired gas exchange.
📌 Clinical Pearl:
A sudden drop in EtCO₂ with hypotension during general anaesthesia should always raise suspicion of pulmonary embolism until proven otherwise.
A pulmonary embolism suddenly reduces blood flow to the lungs, leading to a rapid fall in EtCO₂, followed by hypotension and decreasing SpO₂ due to impaired gas exchange.
📌 Clinical Pearl:
A sudden drop in EtCO₂ with hypotension during general anaesthesia should always raise suspicion of pulmonary embolism until proven otherwise.
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🚀 One Complete Bundle. One Smarter Way to Study Anaesthesia.
Stop wasting time searching through random PDFs.
Get everything you need in one structured, exam-focused resource.
📚 Bundle Includes:
✅ 50+ Anaesthesia Topics
✅ Complete Pharmacology Notes (15 Chapters)
✅ Topic-wise MCQ Booklets
✅ Concept-Based Learning
✅ Quick Revision Notes
✅ Exam-Oriented Content
✅ Regular Updates
✅ 700+ Pages of High-Yield Content (replace with your actual page count if different)
✅ 1000+ Topic-wise MCQs (replace with your actual MCQ count if different)
🎯 Ideal for: • Anaesthesia Students • OT Technicians • Interns & Residents • CRNA • Prometric / DHA / HAAD / MOH • NEET SS Anaesthesia
💰 Price
🇮🇳 India: ₹1,499
🌍 International: $99
📩 WhatsApp: https://wa.me/918987617157�
📢 Telegram: @AkshayAnaesthesia
💬 Message "NOTES" to get started.
Stop wasting time searching through random PDFs.
Get everything you need in one structured, exam-focused resource.
📚 Bundle Includes:
✅ 50+ Anaesthesia Topics
✅ Complete Pharmacology Notes (15 Chapters)
✅ Topic-wise MCQ Booklets
✅ Concept-Based Learning
✅ Quick Revision Notes
✅ Exam-Oriented Content
✅ Regular Updates
✅ 700+ Pages of High-Yield Content (replace with your actual page count if different)
✅ 1000+ Topic-wise MCQs (replace with your actual MCQ count if different)
🎯 Ideal for: • Anaesthesia Students • OT Technicians • Interns & Residents • CRNA • Prometric / DHA / HAAD / MOH • NEET SS Anaesthesia
💰 Price
🇮🇳 India: ₹1,499
🌍 International: $99
📩 WhatsApp: https://wa.me/918987617157�
📢 Telegram: @AkshayAnaesthesia
💬 Message "NOTES" to get started.
❤1👍1
🚨 Limited-Time Offer
If you've been planning to get the Complete Anaesthesia Bundle, now is the best time.
✅ 50+ Anaesthesia Topics
✅ Complete Pharmacology Notes
✅ Topic-wise MCQ Booklets
✅ 700+ Pages of High-Yield Content
Don't keep postponing your preparation.
📩 Message "NOTES" to enroll today.
If you've been planning to get the Complete Anaesthesia Bundle, now is the best time.
✅ 50+ Anaesthesia Topics
✅ Complete Pharmacology Notes
✅ Topic-wise MCQ Booklets
✅ 700+ Pages of High-Yield Content
Don't keep postponing your preparation.
📩 Message "NOTES" to enroll today.
❤3👍2
🙏 Thank you for your support!
Thank you to everyone who has purchased the Complete Anaesthesia Bundle and shared your valuable feedback.
Your support means a lot and motivates me to keep improving.
📩 Message "NOTES" to enroll.
Thank you to everyone who has purchased the Complete Anaesthesia Bundle and shared your valuable feedback.
Your support means a lot and motivates me to keep improving.
📩 Message "NOTES" to enroll.
A patient under General Anaesthesia suddenly develops:
• EtCO₂: 38 → 60 mmHg • HR: 140/min • Temperature: 39.8°C • Generalized muscle rigidity
• EtCO₂: 38 → 60 mmHg • HR: 140/min • Temperature: 39.8°C • Generalized muscle rigidity
Anonymous Quiz
4%
A. Increase tidal volume only
90%
B. Stop volatile agent & administer Dantrolene
1%
C. Give Atropine
5%
D. Start Sodium Bicarbonate immediately
Anaesthesia Notes Hub
A patient under General Anaesthesia suddenly develops:
• EtCO₂: 38 → 60 mmHg • HR: 140/min • Temperature: 39.8°C • Generalized muscle rigidity
• EtCO₂: 38 → 60 mmHg • HR: 140/min • Temperature: 39.8°C • Generalized muscle rigidity
✅ Correct Answer: B. Stop the volatile anaesthetic immediately and administer Dantrolene.
Explanation:
• Ye Malignant Hyperthermia ke classic signs hain.
• Immediate management:
° Stop all triggering agents (volatile anaesthetics and succinylcholine).
° Administer Dantrolene as soon as possible.
° Hyperventilate with 100% oxygen.
° Start active cooling and treat hyperkalemia/acidosis if present.
Explanation:
• Ye Malignant Hyperthermia ke classic signs hain.
• Immediate management:
° Stop all triggering agents (volatile anaesthetics and succinylcholine).
° Administer Dantrolene as soon as possible.
° Hyperventilate with 100% oxygen.
° Start active cooling and treat hyperkalemia/acidosis if present.
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ABG Results:
• pH: 7.28 • PaCO₂: 58 mmHg • HCO₃⁻: 26 mEq/L
• pH: 7.28 • PaCO₂: 58 mmHg • HCO₃⁻: 26 mEq/L
Anonymous Quiz
13%
A. Metabolic Acidosis
75%
B. Respiratory Acidosis
4%
C. Metabolic Alkalosis
9%
D. Respiratory Alkalosis
Anaesthesia Notes Hub
ABG Results:
• pH: 7.28 • PaCO₂: 58 mmHg • HCO₃⁻: 26 mEq/L
• pH: 7.28 • PaCO₂: 58 mmHg • HCO₃⁻: 26 mEq/L
✅ Correct Answer: B. Respiratory Acidosis
Why?
• pH ↓ = Acidemia
• PaCO₂ ↑ = Respiratory cause
• HCO₃⁻ normal = Acute (uncompensated) respiratory acidosis
Clinical pearl: Think "CO₂ high = respiratory problem" before looking at compensation.
Why?
• pH ↓ = Acidemia
• PaCO₂ ↑ = Respiratory cause
• HCO₃⁻ normal = Acute (uncompensated) respiratory acidosis
Clinical pearl: Think "CO₂ high = respiratory problem" before looking at compensation.
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A 65-year-old patient under General Anaesthesia suddenly develops:
•BP: 70/40 mmHg •HR: 45/min •SpO₂: 99% •EtCO₂: 35 mmHg
•BP: 70/40 mmHg •HR: 45/min •SpO₂: 99% •EtCO₂: 35 mmHg
Anonymous Quiz
31%
A. Give Atropine
61%
B. Give Ephedrine
4%
C. Start Chest Compressions
4%
D. Deepen Anaesthesia
Anaesthesia Notes Hub
A 65-year-old patient under General Anaesthesia suddenly develops:
•BP: 70/40 mmHg •HR: 45/min •SpO₂: 99% •EtCO₂: 35 mmHg
•BP: 70/40 mmHg •HR: 45/min •SpO₂: 99% •EtCO₂: 35 mmHg
✅ Correct Answer B. Ephedrine
(if hypotension with bradycardia after spinal/GA and perfusion is compromised, ephedrine is a common first-line choice in many OT settings; management still depends on the cause and clinical context.)
(if hypotension with bradycardia after spinal/GA and perfusion is compromised, ephedrine is a common first-line choice in many OT settings; management still depends on the cause and clinical context.)
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What is the most likely type of shock?
Anonymous Quiz
21%
A) Hypovolemic shock
9%
B) Distributive shock
57%
C) Cardiogenic shock
13%
D) Obstructive shock
Anaesthesia Notes Hub
What is the most likely type of shock?
✅ Correct Answer: C) Cardiogenic Shock
Explanation:
This hemodynamic pattern strongly suggests pump failure:
🔹 ↓ Cardiac Output → impaired ventricular pumping
🔹 ↑ CVP → elevated right-sided filling pressure/venous congestion
🔹 ↑ SVR → compensatory peripheral vasoconstriction to maintain BP
🔹 ↓ MAP → inadequate forward flow despite compensation
🔹 Basal crepitations → pulmonary congestion, supporting cardiac dysfunction
Cardiogenic shock = ↓ CO + ↑ filling pressures + ↑ SVR.
This pattern helps differentiate it from hypovolemic shock, where filling pressures are usually low, and distributive shock, where SVR is typically reduced.
Explanation:
This hemodynamic pattern strongly suggests pump failure:
🔹 ↓ Cardiac Output → impaired ventricular pumping
🔹 ↑ CVP → elevated right-sided filling pressure/venous congestion
🔹 ↑ SVR → compensatory peripheral vasoconstriction to maintain BP
🔹 ↓ MAP → inadequate forward flow despite compensation
🔹 Basal crepitations → pulmonary congestion, supporting cardiac dysfunction
Cardiogenic shock = ↓ CO + ↑ filling pressures + ↑ SVR.
This pattern helps differentiate it from hypovolemic shock, where filling pressures are usually low, and distributive shock, where SVR is typically reduced.
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What is the MOST likely diagnosis?
Anonymous Quiz
5%
A️) Hypocalcaemia
78%
B) Hyperkalaemi
15%
C) Hypokalaemia
2%
D) Hypermagnesaemia
❤2
What is the primary acid-base disorder?
Anonymous Quiz
52%
A) Acute Respiratory Alkalosis
18%
B) Chronic Respiratory Alkalosis
23%
C) Metabolic Alkalosis
6%
D) Mixed Disorder
❤4
Anaesthesia Notes Hub
What is the primary acid-base disorder?
✅ Correct Answer: A) Acute Respiratory Alkalosis
Explanation:
•pH is high → alkalemia.
•PaCO₂ is low → respiratory cause.
•HCO₃⁻ is normal → no significant renal compensation, indicating an acute process.
High pH + Low PaCO₂ + Normal HCO₃⁻ = Acute Respiratory Alkalosis.
Explanation:
•pH is high → alkalemia.
•PaCO₂ is low → respiratory cause.
•HCO₃⁻ is normal → no significant renal compensation, indicating an acute process.
High pH + Low PaCO₂ + Normal HCO₃⁻ = Acute Respiratory Alkalosis.
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