Saturday, 12 June 2021

An 11 year old boy is brought to your clinic with occasional chest pains mainly left sided.

 An 11 year old boy is brought to your clinic with occasional chest pains mainly left sided.

You perform an ECG which is given below :




1 . Comment on R wave in this patient :

There is a tall R wave / Dominant R wave in V1.

2. What are the causes of Dominant R wave in V1?


Causes of Dominant R wave in V1
Normal in children and young adults
Right Ventricular Hypertrophy (RVH)
Pulmonary Embolus
Persistence of infantile pattern
Left to right shunt
Right Bundle Branch Block (RBBB)
Posterior Myocardial Infarction (ST elevation in Leads V7, V8, V9)
Wolff-Parkinson-White (WPW) Type A
Incorrect lead placement (e.g. V1 and V3 reversed)
Dextrocardia
Hypertrophic cardiomyopathy
Dystrophy
Myotonic dystrophy
Duchenne Muscular dystrophy

What is the Pathophysiology of this mechanism?

Pathophysiology

Tall R waves in V1 can be caused by abnormal electrical conduction (RBBB or left-sided VT, which slowly spreads across the right ventricle, or a left-sided accessory pathway), loss of posterior myocardium (old or acute posterior MI) or chronic anterior hypertrophy (HCM), chronic or acute RV strain (RVH, PE), congenital anomalies (dextrocardia or dystrophy), misplaced leads, or a normal variant (persisting juvenile pattern). This differential can be remembered by the mnemonic R-WAVED

RBBB (RsR’, QRS>120, wide S in V6, secondary repolarization abnormalities in anterior leads) or left-sided VT/ventricular ectopy

WPW left sided pathway: PR<120, QRS>110, delta wave, tall R in V1-2 with discordant ST/T wave changes.

Acute MI – posterior: tall R wave V1 or V2 and ST depression +/- inferior or lateral ST elevation +/- posterior ST elevation.

Ventricular hypertrophy: RVH (R/S >1 in V1 and <1 in V6, right axis deviation, secondary repolarization changes) or HCM.

Embolism: +/- sinus tach, RBBB, S1Q3T3, anterior/inferior TWI.

Dextrocardia (negative P wave, reversed R wave progression), dystrophy, or displaced leads (eg V1 and V3 switched)





You perform an ECG in a 45 year old woman that has presented to you with left sided chest pain.

 You perform an ECG in a 45 year old woman that has presented to you with left sided chest pain.

Her ECG Is given below :






1 . What are the findings in the ECG ?


There is a qR complex in lead V1.

There is "Appropriate discordance " which refers to abnormal depolarisation being followed by abnormal repolarisation, which appears discordant to the preceding QRS complex.

In RBBB, this manifests as ST depression and/or T-wave inversion in leads V1-3.


2 . What is the most likely diagnosis?

Right bundle branch block.

3 . What are the causes of this condition?

Causes of Right Bundle Branch Block :

Right ventricular hypertrophy / cor pulmonale
Pulmonary embolus
Ischaemic heart disease
Rheumatic heart disease
Congenital heart disease (e.g. atrial septal defect)
Myocarditis
Cardiomyopathy
Lenègre-Lev disease: primary degenerative disease (fibrosis) of the conducting system.

4. What is the pathiphysiology of this disease.

In normal cardiac conduction, impulses travel equally down the left and right bundles, with the septum activated from left to right and the formation of small Q waves in lateral leads

In RBBB, the left ventricle is activated normally, thus the early part of the QRS complex correlating to septal depolarisation is unchanged.

There is delayed activation of the right ventricle as depolarisation originates from the left ventricle across the septum. This produces a secondary R wave (R’) in the precordial leads, and a wide, slurred S wave in lateral leads.

Normal activation of the left ventricle means that cardiac axis remains normal in isolated RBBB

Thursday, 10 June 2021

A 56 year old female with known history of hypertension presents to your clinic with fainting spells over the last 3 months.

 A 56 year old female with known history of hypertension presents to your clinic with fainting spells over the last 3 months.

Her Blood pressure is 150/100 mmHg.

She does not take her antihypertensive medications regularly.

You ask for an ECG which is given below :




1 . What are the findings in the ECG?

2 . What is the most likely diagnosis ?

3 . What are the causes of this condition?

Answers given in comments section.

Copyrights reserved with Author.

Anonymized data and permission taken from patient for teaching purposes.


1 . What are the finding in the ECG :

The QRS complex in V1 is of QS morphology with no preceding R wave

There is “Appropriate discordance” in lead V1 with ST elevation and upright T wave

Appropriate discordance refers to the fact that abnormal depolarisation should be followed by abnormal repolarisation, which appears discordant to the preceding QRS complex.

Lateral leads with tall, broad R waves will often have associated ST-segment depression and T-wave inversion, and those with deep S waves can have an allowable amount of ST elevation that does not indicate ischaemia (generally viewed as < 25% of the size of the preceding S wave).


2 . What is the most likely diagnosis ?

Left Bundle Branch block most likely due to hypertension in this patient.


3 . What are the causes of this condition?

It is unusual for LBBB to exist in the absence of organic disease. Causes are varied and include:

Aortic stenosis

Ischaemic heart disease

Hypertension

Dilated cardiomyopathy

Anterior MI

Lenègre-Lev disease: primary degenerative disease (fibrosis) of the conducting system

Hyperkalaemia

Digoxin toxicity

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Wednesday, 9 June 2021

A 45 year old man comes to your OPD with complaints of frequently getting up at night due to shortness of breath.

 A 45 year old man comes to your OPD with complaints of frequently getting up at night due to shortness of breath.

His BP is 140 / 90 mmHg .

He has a BMI of 35.

You conduct routine examination including ECG and Baseline bloods.

His ECG is shown below :



1. What are the findings in his ECG.


2. What are the causes of this ECG Findings ?


3. What is the cause of this ECG finding in his case ?


Answers given in comments section.


Copyrights reserved with author.


1. What are the findings in his ECG.


A. low voltage QRS complexes


B. Regular Rhythm


C. Tachycardia : Heart rate upto 140 beats / minute.


2. What are the causes of this ECG Findings ?


Causes of Low Voltage QRS complexes include :


Obesity.


Chronic obstructive pulmonary disease, or COPD.


Pericardial effusion.


Severe hypothyroidism.


Subcutaneous emphysema.


Massive myocardial damage/infarction.


Infiltrative/restrictive diseases such as amyloid cardiomyopathy.


3. What is the cause of this ECG finding in his case ?


Raised BMI / Obesity.


Tuesday, 8 June 2021

A 55 year old woman presents to your OPD with complaints of dizziness on getting up and weakness.

 A 55 year old woman presents to your OPD with complaints of dizziness on getting up and weakness.


She has been having these symptoms from last 3 months .


She also complains of fatigue , shortness of breath & Chest pains.


She does not have any tinnitus and no recent history of fever , sore throat or any other illness.


On examination :


Her Blood pressure is 90/ 60 mmHg.


Temp : 37 C


Pulse 47 beats / minute


Chest Clear.


Normal neurological examination no cerebellar signs detected .


Rest of Respiratory ,Gastro Intestinal and Cardiovascular System examination are all normal.


No murmurs or added sound audile.


You perform an ECG which is given below





1. What are the findings in the ECG ?

2. What are the causes of this condition?

3. How will you manage this patient

4. What are the complications of this disease ?


Answers given in comments section.

Copyrights reserved with author.

Anonymized data , with consent taken for teaching purpose only.

Discussion :

1. What are the findings in the ECG ? 

This patient is having bradycardia with pulse of 47beats / minute .


2. What are the causes of this condition?


Bradycardia can be caused by:


Heart tissue damage related to aging


Damage to heart tissues from heart disease or heart attack


Heart disorder present at birth (congenital heart defect)


Infection of heart tissue (myocarditis)


A complication of heart surgery


Underactive thyroid gland (hypothyroidism)


Imbalance of chemicals in the blood, such as potassium or calcium


Repeated disruption of breathing during sleep (obstructive sleep apnea)


Inflammatory disease, such as rheumatic fever or lupus


Medications, including some drugs for other heart rhythm disorders, high blood pressure and psychosis.

3. How will you manage this patient :

Maintain patient Airway ,

If hypoxemic , oxygen should be given .

Iv access should be established and Cardiac monitor should be attached and BP monitoring should be done.

If patient has persistent bradycardia causing Hypotension , altered mental status , signs of shock or acute heart failure , Atropine should be given as 0.5 mg iv bolus repeated upto 3-5 minutes till maximum of 3 mg is given.

If atropine is ineffective , transcutaneous pacing or Dopamine infusion or Epinephrine infusion should be given. and an expert consultation with a view to pacemaker insertion should be sought in the long term management plan.


4. What are the complications of this disease ?

If bradycardia is left untreated , possible complications can include:

Frequent fainting spells

Inability of the heart to pump enough blood (heart failure)

Sudden cardiac arrest or sudden death.


Further Reading :

https://www.mayoclinic.org/diseases-conditions/bradycardia/symptoms-causes/syc-20355474

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Sunday, 6 June 2021

An 11 year old boy is brought to your OPD by his father at 11 o clock in the morning with left sided chest pain.

 An 11 year old boy is brought to your OPD by his father at 11 o clock in the morning.

According to his dad , he is having chest pain since 8 am.

On detailed history , his father tells that he gets attacks of chest pain that last upto 15 – 30 minutes and tend to go away.

Sometimes he wakes up from sleep and grabs left side of his chest with his hand in agony.

You examine the boy and he seems to be in distress.

On examination :

He has a lean built.

Blood pressure is 100/70 mmHg

Afebrile .

Pulse : 120 beats per minute , regular.

Oxygen saturation 92 %

Chest is clear.

You decide to send him for an ECG which is given below :




1. What are the findings on ECG ?

2. What further investigations would you like to perform?

3. What is the most likely Diagnosis ?

4. What are the symptoms of this disease?

5. What will be findings on auscultation of the heart ?

6. How will you manage this patient ?

7. What are the complications of this disease if left untreated?

Copyrights reserved with Author.

(Anonymized data used for teaching purpose only after consent from patient).


1. What are the findings on ECG :

Tachycardia ( Heart rate upto 130/ bpm).

RSR Pattern in Lead V 1 and T wave inversion (Discordant changes )suggestive of Right Bundle Branch Block.

T wave inversions in leand II , II , avF ( inferior leads ) and V1 ,V2 (septal ).


2. What further investigations would you like to perform?

A . Echocardiogram

To evaluate any problems with function of the heart including ejection fraction and septal defects or valvular abnormanlities.

B .Full Blood count to evaluate Haemoglobin levels and exclude Anemia as it can cause Tachycardia and Cardiac Iscahemia as well.


3. What is the most likely Diagnosis ?

Ostium secundum Atrial Septal Defect.

An ostium secundum ASD is a hole in the center of the atrial septum. Normally, the right side of the heart pumps oxygen-poor blood to the lungs, while the left side pumps oxygen-rich blood to the body. An ASD allows blood from both sides to mix, causing the heart to work less efficiently.

Secundum ASD occurs in the middle part of the atrial septum. Primum ASD occurs in the lower part of the atrial septum close to the tricuspid and mitral valves.

An ostium secundum defect can be identified on an echocardiogram in many ways. A subcostal 4 chamber view serves as the best plane to visualize the anatomy of the ostium secundum. Can be visualized by examination of the middle of the septum in the area of the fossa ovalis where it occurs.


4. What are the symptoms of this disease?

A larger hole can eventually cause symptoms such as shortness of breath, respiratory infections, fainting, irregular heart rhythms or fatigue after mild activity. Larger ASDs can also ultimately lead to pulmonary artery hypertension, right ventricular hypertrophy (enlargement); SVT, or heart failure.




5. What will be findings on auscultation of the heart ?

A soft midsystolic murmur at the upper left sternal border with wide and fixed splitting of the 2nd heart sound (S2) is common.


6. How will you manage this patient ?

The most common type of ASD may close on its own as the child grows. Once an ASD is diagnosed, the child's cardiologist will check your child to see if the defect is closing on its own. An ASD will usually be fixed if it has not closed by the time a child starts school.

An ASD that isn't treated in childhood can lead to health problems later, including an abnormal heart rhythm (an atrial arrhythmia) and problems in how well the heart pumps blood.

When treatment of an ASD is required, it involves catheter or surgical procedures to close the hole. Doctors often decide to close an ASD in children who still have medium to large holes by the time they're 2 to 5 years old.

In the past, atrial septal defect (ASD) closure required open-heart surgery through an incision in the chest using a heart-lung bypass machine. This procedure would require three to five days in the hospital for recovery. It is now possible to close ASDs without surgery.

This is done during a heart procedure called a cardiac catheterization using a "patch" or special septal repair device that is placed permanently in the heart to cover the hole.

A septal repair device consists of two connected patches that are permanently placed in the hole to cover both the left and right atrial sides. After placement, within the first three months, the lining of the heart wall grows over the patch and seals the hole completely. There are several devices currently available for closure. The type and size of device is chosen after X-ray and echocardiogram movie pictures determine the size and location of the hole. Sometimes more than one device is needed to completely close the hole.


7. What are the complications of this disease if left untreated?

ASD Complications :

If ostium secudum defect is not repaired by age of 24 years, Mitral regurgitation and Mitral valve prolapse are common.