Quantitative radiography of the skeleton in living systems
Quantitative radiography of bone mass and density measured by X-rays
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Quantitative radiography of bone mass and density measured by X-rays
Design of soft X-ray absorption mode gas density measuring system
Densitometer for measurement of mass density of gas in localized volume element with application to density measurements in high temperature gas streams
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Densitometer for the measurement of mass density of a gas in a localized volume element with application to density measurements in high temperature gas streams
High altitude atmospheric density measurements using X-ray or gamma ray backscatter and rocket sounding techniques
Electron density and temperature, Lyman beta radiation, and X-ray band measurements during solar eclipse
Collimator with wide fields of view detectors designed for extraterrestrial X-ray source measurements
The effects of weightlessness and decreased activity on the astronaut's musculoskeletal system during prolonged space flight, missions are of concern to NASA. This problem was anticipated from the knowledge that human subjects lose significant quantities of calcium from the skeleton during periods of bedrest, immobilization, and water immersion. An accurate method of measurement of the changes in mineral content of the skeleton is required not only in the space program but also in the biological, medical, and dental fields for mineral metabolism studies and for studying various pathological conditions of the skeleton and teeth. This method is a difficult one requiring the coordinated efforts of physiologists, biophysicists, radiologists, and clinicians. The densitometry methods reported in this conference which have been used or are being developed include X-ray, beta excited X-rays, radioisotopes, sonic vibration, and neutron activation analysis Studies in the Gemini, Biosatellite, and Apollo flights use the X-ray bone densitometry method which requires making X-rays before and after the flights. An in-flight method of bone densitometry would be valuable, and use of radioisotope sources has been suggested. Many advances in bone densitometry have been made in the last five years, and the urgency of the requirement makes this working conference timely and valuable. In such a rapidly developing field with investigators working independently in a variety of scientific disciplines, a working conference is of great value in exchanging information and ideas, critically evaluating approaches and methods, and pointing out new research pathways.
Feasibility study and flight test for X-ray backscatter air density sensor
Soft X-ray-radiation for bone densitometry using gamma radioisotope source in precision X-ray tube
Radioisotope and radiation techniques for terrestrial and planetary gas and solid measurements
X-rays from Coma cluster of galaxies, investigating origin by applying virial theorem
Cortical bone volume and lumbar spine density related to aging in women - X-ray measurements of relative vertebral density
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Electron momentum density in diamond, graphite and carbon black from Compton profile measurement by X ray scattering vector
Upper limits to hard X-ray flux from quiet sun analyzed by balloon-borne scintillation detector measuring celestial sources