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Biomedical subjects

Michael Zucker

Publications and source records attributed to Michael Zucker.

3 recordsLinked to original sources

Active correction of thermal lensing through external radiative thermal actuation.

Absorption of laser beam power in optical elements induces thermal gradients that may cause unwanted phase aberrations. In precision measurement applications, such as laser interferometric gravitational-wave detection, corrective measures that require mechanical contact with or attachments to the optics are precluded by noise considerations. We describe a radiative thermal corrector that can counteract thermal lensing and (or) thermoelastic deformation induced by coating and substrate absorption of collimated Gaussian beams. This radiative system can correct anticipated distortions to a high accuracy, at the cost of an increase in the average temperature of the optic. A quantitative analysis and parameter optimization is supported by results from a simplified proof-of-principle experiment, demonstrating the method's feasibility for our intended application.

Journal Article↗

Solid-state laser intensity stabilization at the 10(-8) level.

A high-power, low-noise photodetector, in conjunction with a current shunt actuator, is used in an ac-coupled servo to stabilize the intensity of a 10-W cw Nd:YAG laser. A relative intensity noise of 1 x 10(-8) Hz(-1/2) at 10 Hz is achieved.

Journal Article↗

Supervision of residents by faculty radiologists using home workstations.

Our purpose was to determine if a home-based faculty radiologist equipped with a high-resolution workstation could add new information to residents' readings on overnight computed chest images that was equivalent to the new information generated by faculty reviewers inside the hospital. Teleconferencing software was installed on home workstations for online supervision of residents by faculty on chest images from a cardiothoracic intensive care unit. Critical observations that could affect patient care were recorded by first-year radiology residents before and after teleconferencing with the home-based radiologist. The amount of information added was compared with that which was added on the same 50 images through direct consultations with faculty inside the medical center. The amount of critical information that was added by teleconferencing with a chest radiologist at home was equivalent statistically to the information added through direct supervision of residents by faculty inside the hospital. Teleconferencing resulted in 149 changes in critical image findings as reported initially by the residents, out of 800 possible findings on 50 chest images, as opposed to 142 changes in residents' readings by faculty inside the medical center. Faculty subspecialists can supervise radiology residents effectively from their homes after hours, using high-resolution workstations and special teleconferencing software.

Journal Article↗