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Biomedical subjects

A E Burgess

Publications and source records attributed to A E Burgess.

11 recordsLinked to original sources

Spinal bone loss and ovulatory disturbances.

BACKGROUND: Osteoporosis develops in women with estrogen deficiency and amenorrhea who lose bone at an accelerated rate. It is not known to what extent bone loss differs between ovulatory women with regular menstrual cycles who are training intensely and those who are sedentary. METHODS: We measured the density of cancellous spinal bone from the 12th thoracic vertebra to the 3rd lumbar vertebra by quantitative computed tomography on two occasions one year apart in 66 premenopausal women 21 to 42 years of age. All the women had two consecutive ovulatory cycles immediately before entering the study. Twenty-one women were training for a marathon, 22 ran regularly but less intensively, and 23 had normal levels of activity. The lengths of the women's menstrual cycles and luteal phases, diet, exercise levels, and hormonal levels were also determined. We defined ovulatory disturbances as anovulatory cycles and cycles with short luteal phases. RESULTS: The mean (+/- SD) spinal bone density in the 66 women decreased 3.0 +/- 4.8 mg per cubic centimeter per year (2.0 percent per year) (P less than 0.001). Amenorrhea did not develop in any woman during the year of observation (only 2.7 percent of the cycles were greater than 36 days long). Ovulatory disturbances occurred in 29 percent of all cycles, however. Bone loss was strongly associated with these disturbances (r = 0.54, 24 percent of the variance). The 13 women who had anovulatory cycles lost bone mineral at a rate of 6.4 +/- 3.8 mg per cubic centimeter per year (4.2 percent per year). The women training for a marathon had menstrual cycles similar to those of the women in the other two groups. CONCLUSION: Decreases in spinal bone density among women with differing exercise habits correlated with asymptomatic disturbances of ovulation (without amenorrhea) and not with physical activity.

Adult

A curvilinear relationship between alcoholic withdrawal tremor and personality.

Many studies cite no more than 80% incidence of hand tremor during withdrawal in known alcoholics, although this symptom is one of the diagnostic signs of addiction. We found that of 48 patients tested, hand tremor increased in 29 Ss after the application of a passive relaxation technique while it decreased in 28. It was found that MMPI data obtained for both groups fitted the inverted U curve in that the most distressed Ss tremored as little as did the least distressed originally, while the tremor increased in the high stress group after relaxation therapy while it decreased in the least stressed group. Implications for alcoholism research and theory were discussed, and the possible superiority of the CES to drug therapy for withdrawal was noted.

Acute Disease

Densitometry of single-emulsion film.

The measured optical density of single-emulsion films depends on the film orientation. The orientation of the emulsion influences the amount of scattered light entering the detector. It is suggested that this measurement be done with the emulsion side facing the light detector.

Absorptiometry, Photon

Reducing the operating temperatures of thin viewboxes.

Several manufacturers' thin viewboxes operate at excessively high temperatures. The measured equilibrium ballast temperature was 95 degrees C in a 25 degrees C room. Canadian standards limit ballast surface temperatures to 90 degrees C. The ballast cover plate reaches 47 degrees C. Temperatures were reduced to 67 degrees and 37 degrees C by substituting a more efficient ballast and painting the outer surface of the polished metab cover plate.

Hot Temperature

Focal spots: I. MTF separability.

Focal spot models have been based on the implicit assumption that the two dimensional MTF is mathematically separable in the form P(u, v) = P(u)P(v). Experimental results for nine foci are presented. It is concluded that the assumption of separability can be used without introducing a large error. As a consequence of this property, considerable simplification is brought to the measurement and mathematical description of the two dimensional focal distribution.

Technology, Radiologic

Focal spots: II. Models.

A new "smeared filament image" focal spot model is suggested. This model and previous models are compared to experimental results. It is found that the proposed model fits the experimental data in a self consistent and accurate manner. The rectangular model also gives satisfactory results in situations where the focus MTF does not dominate the system MTF.

Models, Structural

Focal spots: III. Field characteristics.

Experimental results for focal spot field characteristics are presented. These results do not agree completely with results published by Moores and Roeck but are in agreement with Doi's theory as applied to separable focal spots. A new image plane origin called the principal ray is proposed. The variation of the star test pattern image for separable, symmetric focal spots is described. The equation for the field variation of the RMS equivalent rectangle is presented.

Technology, Radiologic

Effect of asymmetric focal spots in angiography.

The effect of asymmetric focal spots in blood vessel imaging is investigated by computer simulation. Phase distortion effects are studied in isolation from MTF effects. Calculations are done for a number of symmetric and asymmetric foci with identical standard deviations. It is concluded that blood vessel image degradation due to focus asymmetry per se is small and that the LSF standard deviation is a useful size parameter for both symmetric and asymmetric foci.

Angiography

Interpretation of star test pattern images.

The star test pattern image contains a large amount of information about the focus OTF which is not presently used. A mathematical analysis of these images for the special case of separable and symmetrical focal spots is presented. Circular blur loci are identified and their changes over the imaging field are described. Harmonic distortion and its application are described. Sources of measurement error are discussed.

Models, Theoretical

An empirical equation for screen MTFs.

An empirical equation is described which accurately fits intensifying-screen MFT data within the accuracy of the MTF measurements. The equation is S (u) = 0.5 erfc[alpha1n(u/u0)]. The equation was fitted to data for 27 intensifying screens. Graphical and numerical results are presented. The maximum standard error was 0.02 and typical standard error was 0.01. Comparisons between results for three experimenters are also presented.

Radiographic Image Enhancement