第 2 章,共 4 章28% 占考试比重

EKG Acquisition, Lead Placement, and Troubleshooting

About 28% of the exam covers the mechanics of actually obtaining a tracing: where each electrode goes, how the machine is calibrated, how the patient is prepared and positioned, and how to recognize and fix the artifacts that make a tracing unreadable. This is the domain where an inch of misplacement changes what the physician sees, so the anatomic landmarks are worth memorizing exactly. Everything here assumes the standard settings of 25 mm/sec paper speed and 10 mm/mV standardization unless a deliberate, documented change is made.

The 12-Lead: Ten Electrodes, Twelve Views

A 12-lead EKG uses ten electrodes: four on the limbs and six on the chest. The four limb electrodes generate the six frontal-plane leads, which are the bipolar leads I, II, and III and the augmented leads aVR, aVL, and aVF. The six chest electrodes generate the precordial leads V1 through V6, which look at the heart in the horizontal plane. The chest positions are found by locating the sternal angle, sliding laterally to the second rib, and counting down the intercostal spaces. Place V1, V2, and V4 by counting spaces, then fill in V3 as the midpoint between V2 and V4, then place V5 and V6 horizontally in line with V4 rather than by counting ribs, because the chest wall curves downward as you move laterally.

V1 and V2
V1: fourth intercostal space, right sternal border. V2: fourth intercostal space, left sternal border.
V3 and V4
V4 is placed first, in the fifth intercostal space at the left midclavicular line. V3 then goes midway between V2 and V4.
V5 and V6
V5: left anterior axillary line, level with V4. V6: left midaxillary line, level with V4 and V5. Both are aligned horizontally, not by rib space.
Limb electrodes
Place on flat, fleshy, non-muscular areas of both arms and both lower legs, positioned symmetrically left to right. Avoid bony prominences and muscle bellies.
Special placements
For large breast tissue, place chest electrodes under the breast on the chest wall at the true landmark. For an amputated limb, move that electrode to the nearest torso site and mirror the opposite side. Document every deviation on the tracing.

Continuous Monitoring: 3-Lead and 5-Lead Systems

Continuous monitoring answers a different question than a diagnostic 12-lead. It watches rhythm over time rather than capturing a detailed one-time picture, so it uses fewer electrodes placed on the torso where they will not be dislodged by movement. A 3-lead system uses white, black, and red electrodes on the right shoulder, left shoulder, and left lower chest, producing leads I, II, and III; lead II is usually chosen for display because it shows P waves clearly. A 5-lead system adds a green ground and a brown chest electrode, allowing all six limb leads plus one modified chest lead. Telemetry sends the same signal by radio to a central station so an ambulatory patient can be watched continuously.

Color convention
White on the right, smoke (black) over fire (red), clouds (white and black) over grass (green and red). Brown is the chest electrode in a 5-lead system.
Torso placement is intentional
Monitoring electrodes go on bone or flat torso surfaces to reduce muscle artifact, not on the limbs, and monitoring tracings are not used for diagnostic measurement.
Lead II for rhythm
Lead II runs roughly parallel to the heart's normal conduction axis, producing the most upright and visible P waves, which is why it is the default rhythm lead.
Change electrodes at least daily
Gel dries out over hours and is the leading cause of false alarms. Rotate sites slightly to protect the skin and document skin condition.

Machine Settings, Calibration, and the Standardization Mark

The rectangular mark printed at the start of a tracing is the standardization mark, and at normal sensitivity it is 10 millimeters tall, meaning 1 millivolt produces a 10 millimeter deflection. This is what allows a tracing taken in one facility to be compared with one taken years earlier somewhere else. The horizontal axis is time at 25 mm/sec, so a small box is 0.04 second, a large box is 0.20 second, five large boxes are one second, and 1500 small boxes pass in a minute. Both settings can be deliberately changed, and both changes must be documented, because an undocumented change causes an interpretation error rather than a technical one.

Standard calibration: 10 mm/mV
The standardization mark should measure exactly two large boxes tall. Verify it on every tracing before handing the strip off.
Standard paper speed: 25 mm/sec
This is what makes one small box equal 0.04 second. Always confirm it before measuring any interval.
Half standardization (5 mm/mV)
Use when complexes are so tall they overlap adjacent leads. Mark the tracing clearly, because amplitudes will read half their true value.
Double paper speed (50 mm/sec)
Use to spread out very fast rhythms. Each small box then represents 0.02 second, so intervals must be recalculated on the new scale.
Never adjust settings to make a tracing look better
Settings are changed for legibility, never to make a tracing resemble a previous one or to hide an abnormality.

Skin Preparation, Positioning, and Patient Comfort

Most bad tracings are made before the machine is ever switched on. Good contact requires clean, dry, oil-free skin: clip excess hair at the electrode site only, wipe with alcohol, let it dry completely, and lightly abrade with dry gauze to lower skin resistance. Do not apply lotion, do not place an electrode over broken skin, a wound, a scar, or a bony ridge, and do not use electrodes whose gel has dried. The standard position for a resting 12-lead is supine with arms relaxed at the sides and legs flat and uncrossed. If a patient cannot lie flat, raise the head of the bed to a tolerable position and document it, because position affects amplitude and axis. Explaining the procedure in plain language is a technical step as much as a courtesy, since a tense patient generates tremor artifact.

Clip, cleanse, dry, abrade
Clip hair only where an electrode will sit; cleanse with alcohol and let it dry; gently abrade with dry gauze. Never apply electrodes to wet skin.
Supine, arms at the sides, legs uncrossed
Crossed legs and folded arms bridge electrodes and generate muscle artifact. Support the limbs on the bed so they can fully relax.
Document any non-standard position
Semi-Fowler, upright, or lateral positioning changes the tracing, so the position used must be written on the strip for the interpreting physician.
Provide privacy and draping
Expose only the area needed for placement, drape the patient, and explain each step before touching. This is both a professional and a practical requirement for cooperation.
Discard dried or expired electrodes
Dried conductive gel cannot be revived with water or alcohol. Open a fresh, in-date package.

Artifact and Troubleshooting

Three artifacts account for most unreadable tracings, and each has a distinctive appearance that points directly to its cause. A wandering baseline drifts slowly up and down and comes from poor electrode contact, lotion or oil on the skin, cable tension, or deep respiration. Somatic tremor is irregular jagged spiking from muscle movement, shivering, tension, or a movement disorder. Sixty-cycle AC interference is a uniform fuzzy thickening of the baseline caused by nearby alternating current. A fourth pattern, artifact confined to a single lead, points to one loose electrode or one damaged lead wire, since each lead uses a different combination of electrodes. Lead reversal is a separate category: it produces a clean but wrong tracing, which is why it is the most dangerous of all, and the classic sign is global inversion of P wave, QRS, and T wave in lead I from a right arm and left arm swap.

Wandering baseline
Slow up-and-down drift. Reapply fresh electrodes to clean dry skin, secure the cables so they are not pulling, and coach normal quiet breathing.
Somatic tremor
Irregular jagged spikes. Warm the patient, support the arms and legs, reduce anxiety with explanation, and move limb electrodes closer to the torso only if necessary and documented.
Sixty-cycle AC interference
Uniform fuzzy band at 60 hertz. Unplug or move nearby electrical equipment, separate the patient cable from power cords, verify the ground electrode, and keep the patient from touching metal bed rails.
Artifact in one lead only
Suspect that lead's electrode or wire. Replace the electrode and reseat the connector rather than restarting the whole setup.
Suspect lead reversal when a tracing is clean but wrong
Inverted P, QRS, and T in lead I with normal chest leads indicates right arm and left arm reversal. Correct the electrodes and repeat the tracing rather than sending it as is.
Remove damaged equipment from service
A frayed cable with exposed conductor is both an artifact source and an electrical hazard. Tag it and take it out of use.
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Last updated: July 2026

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