This inventor holds 3 USPTO granted patents. Top assignee: Cornell University. Active years: 2003-2007.
Company Filing History:
Years Active: 2003-2007
Title: David Jon Christini: Innovator in Cardiac Electrophysiology
Introduction
David Jon Christini is a notable inventor based in Brooklyn, NY (US). He has made significant contributions to the field of cardiac electrophysiology, holding a total of 3 patents. His work focuses on innovative techniques for detecting and stabilizing physiological rhythms, particularly in cardiac and neuronal tissues.
Latest Patents
Christini's latest patents include groundbreaking methods for adaptive diastolic interval control of action potential duration alternans. This real-time detection technique offers a model-independent control method for identifying and stabilizing pathological physiological rhythms. Unlike traditional control methods, which require multiple beats to locate the period-1 fixed point, Christini's technique achieves this almost instantaneously. This rapid identification effectively eliminates any higher-period or aperiodic rhythms. Another significant patent is related to intracardiac detection and control of repolarization alternans. This method utilizes nonlinear-dynamical control, also known as chaos control, to modulate human cardiac electrophysiological dynamics by stabilizing an unstable target rhythm.
Career Highlights
David Jon Christini is affiliated with Cornell University, where he continues to advance research in cardiac health and technology. His innovative approaches have the potential to transform how medical professionals monitor and treat cardiac conditions.
Collaborations
Christini has collaborated with esteemed colleagues such as Jay M Edelberg and Kenneth M Stein, contributing to the advancement of knowledge in his field.
Conclusion
David Jon Christini's work exemplifies the intersection of innovation and healthcare, particularly in cardiac electrophysiology. His patents reflect a commitment to improving patient outcomes through advanced detection and control techniques.
