Abstract

Contemporary leadless pacemakers only feature single-chamber pacing capability. This study presents a prototype of a leadless dual-chamber pacemaker. Highly energy-efficient intrabody communication was implemented for wireless pacemaker synchronization. Optimal communication parameters were obtained by invivo and exvivo measurements in the heart and blood. The prototype successfully performed dual-chamber pacing invivo. The presented wireless communication method may in the future also enable leadless cardiac resynchronization therapy.

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