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Dive into the research topics where Joseph A. Gardecki is active.

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Featured researches published by Joseph A. Gardecki.


Diagnostic and Therapeutic Applications of Light in Cardiology 2018 | 2018

Cellular-resolution, extended depth of focus optical coherence tomography catheter toward in vivo cardiovascular imaging (Conference Presentation)

Biwei Yin; Zhonglie Piao; Kensuke Nishimiya; Joseph A. Gardecki; Guillermo J. Tearney; Chulho Hyun

Optical coherence tomography (OCT) has been a useful clinical tool for diagnosing coronary artery disease through a flexible catheter, but its full promise relies on resolving cellular and sub-cellular structures in vivo. Previously, visualizing cellular structures through an imaging catheter is not possible due to limited depth of focus (DOF) of a tightly focused Gaussian beam: typically, a Gaussian beam with 2-3 μm resolution has a DOF within 100 μm, which is not sufficient for in vivo catheter imaging. Therefore, we developed a self-imaging wavefront division optical system that generates a coaxially-focused multimode (CAFM) beam with a DOF that is approximately one order of magnitude longer than that of a Gaussian beam. In this study, we present a high-resolution, extended DOF catheter based on self-imaging wavefront division optics. The catheter generates a CAFM beam with a lateral resolution of 3 μm and a DOF close to 2 mm. To correct the aberration introduced by catheter sheath, we incorporated a cylindrical prism to compensate the sheath astigmatism. When the catheter is incorporated into a micro-resolution OCT (μOCT) system with rotational scanning mechanics, cellular-resolution cross-sectional images of the coronary artery wall can be obtained. The device serves as an important step toward characterizing cellular and sub-cellular structures in vivo for coronary artery disease diagnosis.


Archive | 2011

SYSTEMS, METHODS AND COMPUTER-ACCESSIBLE MEDIUM WHICH PROVIDE MICROSCOPIC IMAGES OF AT LEAST ONE ANATOMICAL STRUCTURE AT A PARTICULAR RESOLUTION

Guillermo J. Tearney; Brett Eugene Bouma; Joseph A. Gardecki; Linbo Liu


Archive | 2011

Systems, devices, methods, apparatus and computer-accessible media for providing optical imaging of structures and compositions

Guillermo J. Tearney; B. E. Bouma; Hongki Yoo; Milen Shishkov; Joseph A. Gardecki; Roman Shubochkin; Theodore F. Morse; Farouc Amin Jaffer


Archive | 2011

Apparatus, systems and methods for measuring blood pressure within at least one vessel

C. Warger Ii William; Simon C. Schlachter; Joseph A. Gardecki; Brett Eugene Bouma; Guillermo J. Tearney


Archive | 2011

APPARATUS, SYSTEMS, METHODS AND COMPUTER-ACCESSIBLE MEDIUM FOR SPECTRAL ANALYSIS OF OPTICAL COHERENCE TOMOGRAPHY IMAGES

Christine Fleming; Brett Eugene Bouma; Joseph A. Gardecki; Guillermo J. Tearney


Archive | 2008

APPARATUS, COMPUTER-ACCESSIBLE MEDIUM AND METHOD FOR MEASURING CHEMICAL AND/OR MOLECULAR COMPOSITIONS OF CORONARY ATHEROSCLEROTIC PLAQUES IN ANATOMICAL STRUCTURES

Guillermo J. Tearney; Brett Eugene Bouma; Jason T. Motz; Joseph A. Gardecki; Alexandra H. Chau


Archive | 2015

APPARATUS, DEVICES AND METHODS FOR IN VIVO IMAGING AND DIAGNOSIS

Hao Wang; Joseph A. Gardecki; Guillermo J. Tearney


Archive | 2016

Apparatus, method and computer-accessible medium for obtaining tissue samples

Guillermo J. Tearney; Joseph A. Gardecki; Chia-Pin Liang


Archive | 2014

APPARATUS AND METHOD FOR FACILITATING MESOSCOPIC SPECTRALLY ENCODED TOMOGRAPHY CO-REGISTERED WITH OPTICAL FREQUENCY DOMAIN IMAGING AND/OR SPECTRALLY ENCODED CONFOCAL MICROSCOPY

Paulino Vacas Jacques; Joseph A. Gardecki; Guillermo J. Tearney


Archive | 2014

APPARATUS AND METHOD WHICH CAN INCLUDE CENTER-WAVELENGTH SELECTABLE, BANDWIDTH ADJUSTABLE, SPECTRUM CUSTOMIZABLE, AND/OR MULTIPLEXABLE SWEPT-SOURCE LASER ARRANGEMENT

Guillermo J. Tearney; Joseph A. Gardecki; Paulino Vacas Jacques

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Guillermo J. Tearney

Brigham and Women's Hospital

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Linbo Liu

Nanyang Technological University

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Alexandra H. Chau

Massachusetts Institute of Technology

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