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ECG Machine – Single Channel NSL iE101 Biocare (China)

Features:

• compact and portable design
• about 1.3kg , light in weight
• 5.0-inch high resolution lcd screen
• built-in rechargeable lithium battery for 2h ontinuous work
• peripheral ports: usb, lan port

accuracy and reliability in ecg interpretation

• biocare cardioprotm ecg analysis program, proven by cseahamit database
• 12-lead simultaneous acquisition
• complete digital filters and self-adapting filtering
• up to 300 seconds of rhythm analysis for easier in arrhythmia locating
• applied the latest minnesota code

streamlined workflow, new operating experience

• “one-touch” functional shortcut keys
• onscreen operation guide to check the ecg procedure
• multi language voice reminder and visual alarming for lead-off, low battery and no paper
• support general settings according to different situations for physicians and patients
• 3 report formats: simple report, median beat report and manual report

data management solutions

• massive local storage capacity up to 1500 files
• ecg management software (optional).

ECG Machine is used for recording the electrical activity of the heart over a period of time using electrodes placed on the skin. These electrodes detect the tiny electrical changes on the skin that arise from the heart muscle‘s electrophysiologic pattern of depolarizing and repolarizing during each heartbeat. It is very commonly performed to detect any cardiac problems.

In a conventional 12-lead ECG, ten electrodes are placed on the patient’s limbs and on the surface of the chest. The overall magnitude of the heart’s electrical potential is then measured from twelve different angles (“leads”) and is recorded over a period of time (usually ten seconds). In this way, the overall magnitude and direction of the heart’s electrical depolarization is captured at each moment throughout the cardiac cycle.[4] The graph of voltage versus time produced by this noninvasive medical procedure is an electrocardiogram.

During each heartbeat, a healthy heart has an orderly progression of depolarization that starts with pacemaker cells in the sinoatrial node, spreads out through the atrium, passes through the atrioventricular node down into the bundle of His and into the Purkinje fibers, spreading down and to the left throughout the ventricles. This orderly pattern of depolarization gives rise to the characteristic ECG tracing.

To the trained clinician, an ECG conveys a large amount of information about the structure of the heart and the function of its electrical conduction system.[5] Among other things, an ECG can be used to measure the rate and rhythm of heartbeats, the size and position of the heart chambers, the presence of any damage to the heart’s muscle cells or conduction system, the effects of cardiac drugs, and the function of implanted pacemakers.

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