Zhiyoong Foo1, Grant Kruger1, Hakan Oral2, Omer Berenfeld2, Zhengya Zhang1, David Blaauw1, Dennis Sylvester1 University of Michigan, Ann Arbor, MI, University of Michigan Health System, Ann Arbor, MI 1 2 Electrocardiography (ECG) is a critical source of information for a number of heart disorders. In arrhythmia studies and treatment, long-term observation is critical to determine the nature of the abnormality and its severity. However, even small body-wearable systems can impact a patient’s everyday life and signals captured using such systems are prone to noise from sources such as 60Hz power and body movement. In contrast, implanted devices are less susceptible to these noise sources and, while having closer-spaced electrodes, can obtain similar quality ECG signals due to their proximity to the heart [1]. In addition, implanted devices enable continuous monitoring without affecting patient quality of life. As in other implantable systems, low power consumption
Dongsuk Jeon1, Yen-Po Chen1, Yoonmyung Lee1, Yejoong Kim1,