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ECG
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ECG stands for Electrocardiography
the record of electrical signal of the heart Can be used to analyze the mechanical activity of the heart
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The intrinsic conduction system
Components: SA node (highest rate of discharge, sets the rate of depolarization for the heart; aka pacemaker) atria AV node atrial contraction (delayed until complete) AV bundle (Bundle of His) Right & left bundle branches Purkinje fibers ventricular contraction Repolarization of the SA node is spread throughout the atria while the ventricles depolarize. Then the ventricles repolarize ventricular diastole
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Components of the ECG Isoelectric line- a straight line
P wave- atrial depolarization ~ atrial contraction QRS complex- ventricular depolarization ~ ventricular contraction T wave- ventricular repolarization ~ ventricular relaxation Segments- period of time from the end of one wave to the beginning of the next wave ex. ST segment Intervals- one wave + a segment of the isoelectric line between waves ex. PR interval
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Isoelectric line & P Wave
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QRS Complex
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T wave
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PR (PQ) Interval
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ST segment
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Question? Is it normal for athletes to have low resting heart beat ~ 50 BPM & left ventricular hypertrophy? What about same condition seen in sedentary individuals? YES NO
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Mean electrical axis tells us the net direction the depolarization or repolarization is heading (-ve to +ve) Einthoven’s Triangle: configuration of 3 leads = standard bipolar limb lead Einthoven’s Law: Lead I + Lead II = Lead III (QRS) Q + R + S = net QRS complex
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Algebra
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p188 Find the Net QRS amplitude for lead I (0.1mv gradations). Draw a perpendicular line to lead I. (Note +ve or –ve direction) Find the Net QRS amplitude for lead III. Draw a perpendicular line to lead III. (Note +ve or –ve direction) Determine the point of intersection of these 2 perpendicular lines. Draw a new vector from the center point (0,0) to the point of intersection. Approximate mean electrical axis (5º gradations)
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Ex. Lead I = +13.5
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Lead III = +9
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Mean electrical axis = 58º
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