This technology platform integrates real-time heart rhythm sensing, adaptive output frequency modulation, and individualized energy consumption algorithms. It can dynamically adjust the frequency, intensity, and duration of stimulation pulses according to the patient's actual cardiac pacing needs, avoiding energy waste caused by traditional fixed output modes. It significantly extends the clinical service life of pacemakers, reduces the risk of secondary replacement surgery caused by premature depletion, improves patient comfort by reducing unnecessary electrical stimulation, and supports doctors in dynamically optimizing treatment parameters with remote monitoring data, achieving safer and more durable personalized pacing therapy.

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