PubMed Health⌕ Search

Biomedical subjects

Jeffrey M Gordon

Publications and source records attributed to Jeffrey M Gordon.

7 recordsLinked to original sources

Planar concentrators near the étendue limit.

Recently proposed aplanatic imaging designs are integrally combined with nonimaging flux boosters to produce an ultracompact planar glass-filled concentrator that performs near the étendue limit. Such optical devices are attractive for high-efficiency multijunction photovoltaics at high flux, with realistic power generation of 1 W from a 1 mm2 cell. When deployed in reverse, our designs provide collimation even for high-numerical-aperture light sources.

Journal Article↗

Optical performance at the thermodynamic limit with tailored imaging designs.

Ultracompact concentrators and illuminators that approach the thermodynamic limit to optical performance can be realized with purely imaging strategies. We explore two-stage reflector systems where each optical surface is tailored to eliminate one order of aberration--the so-called aplanatic designs. The contours are monotonic functions that can be expressed analytically, which are important for the facilitation of optimization studies and practical fabrication. The radiative performance of the devices presented is competitive with, and even superior to, that of high-flux nonimaging systems. Sample results of practical value in solar concentration and light collimation are presented for systems that cover a wide range of numerical aperture.

Journal Article↗

On appropriate pathology for photothermal surgery.

BACKGROUND AND OBJECTIVES: The standard hematoxylin and eosin (H&E) stain can yield dramatic underestimates of tissue death when pathology is performed immediately after radiative surgery. Our objectives were to identify an accurate, consistent histology, and to understand under what conditions the problem is manifested. STUDY DESIGN/MATERIALS AND METHODS: Photothermal surgery with highly concentrated sunlight was performed ex vivo on chicken livers, and in vivo on healthy live rats that were sacrificed at periods of 0, 24, 48, and 72 hours. Pathology with both H&E and an alternative NADH-diaphorase (NADH) stain were prepared. RESULTS: H&E pathology performed shortly after surgery errs by close to an order of magnitude in appraising lesion volume, but the shortfall is mitigated when histological examination is postponed for 24 hours. The biochemical signals missed by the H&E technique at short times can be captured by the NADH stain which reveals the cessation of enzymatic activity, albeit at greater expense and complexity. CONCLUSIONS: The significance lies in avoiding false positives in surgery, providing reliable estimates of photothermal surgical efficacy, and highlighting the relative merits of alternative histological practices with photothermal surgery.

Animals↗

Temperature-entropy formulation of thermoelectric thermodynamic cycles.

A temperature-entropy formulation is derived for thermoelectric devices. Thermoelectric chiller and generator cycles can then be cast in the same irreversible thermodynamics framework commonly applied to conventional large-scale cooling and power generation equipment, including a transparent identification of the principal energy flows and performance bottlenecks (dissipation). Distinct differences in chiller versus generator mode are highlighted and illustrated with data from commercial thermoelectric units.

Journal Article↗

Photothermally induced delayed tissue death.

We report pronounced delayed tissue death in photothermal surgery performed on the livers of live healthy rats with highly concentrated sunlight (ultrabright noncoherent light). Exposure times and power levels were selected to produce immediate necroses of the order of hundreds of cubic millimeters. Pathology reveals that lesion volumes increase by up to a factor of 5 within approximately 24 h after surgery, and then stabilize. Islands of viable cells can persist within damaged tissue, in the immediate vicinity of blood vessels, but also necrose within about 48 h.

Animals↗

Fiberoptic surgery by ultrabright lamp light.

We report the first realization of interstitial surgery by ultrabright lamp light, on the kidneys and livers of live animals. A high-flux optic concentrates lamp emissions into an optical fiber for power delivery inside the body. The trials reveal surgical efficacy comparable to corresponding laser fiber optic treatments, as well as pronounced delayed tissue death.

Animals↗