The value of conventional eyeglasses for x-ray protection.
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Biomedical subjects
Publications and source records attributed to H E Crooks.
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The penetrameter cassette, when used with suitable filters and calibrated against the same average wave form, can detect changes of less than 1 kV in the range 20-50 kV, 1 kV from 50-100 and from 1-4 Kv from 100-400 kV. Problems of calibration are discussed together with the necessity to use a suitable shutter with equipment which has a significant build-up and decay time during which the radiation quality may be varying. Extra-focal radiation does not normally present a significant problem in the measurement of kV, but when the penetrameter is used to measure inherent or total filtration extra-focal radiation can be a problem and may be similar in degree to the effects of varying target angles. When used to determine filtration, the generator used for calibration of the penetrameter and the one being measured should be adjusted to have the same target angle and similar degrees of extra-focal radiation by altering the size of the tube aperture as close to the focal spot as practicable. The results presented confirm the accuracy and convenience of the penetrameter for the measurement of kV and filtration over the extended range of energies.
Variation in X-ray output and quality during a diagnostic exposure can be undesirable and may result in unnecessary dose to the patient. When significant build-up or decay periods are present errors will arise if factors obtained under steady-state conditions are employed to estimate the exposure. These parameters must be taken into account when calibrating X-ray generators. A variable speed spinning film device and a spectrometry system have been used to measure the variations under fluoroscopic and radiographic conditions for a number of generators. Variations in output due to filament heating, voltage supply and rectification, cable capacity and target pitting have been demonstrated. At low fluoroscopic currents, large surges and long decays have been observed; the significance of these effects is considered.
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The relative merits of tungsten and molybdenum targets for mammography have been the subject of much discussion. Therefore the spectra and outputs (at constant potential) from molybdenum and tungsten targets, interchangeable in the same tube, have been measured with a Ge(Li) detector and ion chamber respectively. All conditions apart from the target material were unaltered. The spectra have been corrected for the distortions produced by the detector. The effects of filtration on spectra and exposure rates have been calculated and are in agreement with measured values. The spectra and outputs from molybdenum and tungsten targets filtered by aluminium and molybdenum have been investigated and the results are discussed with reference to mammography and the radiography of specimens.
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