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At least 19 recordsLinked to original sources

Radiolabeling brachytherapy sources with Re-188 through chelating microfilms: stents.

Rhenium-188 (Re-188, T(1/2) = 17 h) emits beta particles (E(max) = 2. 12 MeV) having an ideal range for intravascular brachytherapy and certain cancer brachytherapies. Re-188 was attached to metal wafers and stents via a chelating microfilm, and these brachytherapy sources characterized in vitro and in vivo. To prepare the sources, a siloxane film containing reactive amines was plasma deposited on the metal, a chelating microfilm conjugated to the amines, and the chelating microfilm used to attach Re-188. Re-188 was selectively bound to materials coated with the chelating microfilm. Binding correlated with the amount of radionuclide used. Wafers (1 cm(2)) bound up to 62.9 MBq (1.7 mCi) of Re-188 with yields generally near 30%. Stents bound up to 26.6 MBq (720 microCi). Typically, stents were labeled to bind 4-12 MBq and deposit 10-30 Gy at 2 mm in the arterial wall. In phantom studies, the longer nitinol stents deposited doses of 2.3 Gy/MBq (0.085 Gy/microCi), while shorter stainless steel stents deposited 4.62 Gy/MBq (0.171 Gy/microCi). After placement in arteries of pigs, only the Re-188-stents were detected by scintigraphy at times up to 24 h. Scintigraphy did not detect activity in other organs. Blood sampling (0.1-24 h) detected maximum radioactivity (up to 388 cpm/mL/100micro Ci) at 6 h. We conclude that on-demand radiolabeling of stents and other brachytherapy sources with Re-188 can be performed routinely.

Biocompatible Materials↗

Rapid access to blood bank records on microfilm.

A rapid data retrieval system for blood banks is described based on a computer service generated index to microfilm records. Use of microfilm for the index and a reader/printer for the microfilm permits "hard copy" of old records within minutes. This approach has resulted in more rapid and efficient access to back records with a substantial decrease in space requirements, and without computer hardware costs.

Blood Banks↗

[Quality assurance in the microfilming of x-ray pictures].

Microfilming of X-ray films has become more topical owing to the amendment of the X-ray regulations. The storage of X-rays as reproductions on an image or data carrier is expressly envisaged as a possibility in the text of the regulation. The quality of transfer must be insured and the copies must be legible. In microfilming, the latitude and the resolution capacity of the microfilm and remagnification are appropriate as parameters of image quality. Testing of seven filming systems shows a major range of variation of both parameters; in some cases, the results led to reexamination of the camera adjustment and developer chemistry. A test of constancy of filming analogous to direct radiography appears necessary. A corresponding norm does not exist at present.

Germany, West↗

[Electrophotographic microfilming for archiving roentgenograms and electroroentgenograms].

A method of electrophotographic microfilming was proposed for keeping radiograms and electroradiograms in archives. Some experimental studies on microfilming positive and negative electroradiograms of phantom materials and various body tissues were carried out using the Soviet AE-1524 camera. An attempt was made to set up a scientific archive of electroradiograms and radiograms on electrographic microreels. Obvious advantages of the method of electrographic microfilming in setting up compact and convenient archives of X-ray images were shown.

Hospital Information Systems↗

[X-ray archivation with microfilm].

The LogEtronics X-Ray Microfilms system, which is used in our clinic as well as in two other Berufsgenossenschaftliche Unfallkliniken for archiving of x-ray films, has enabled us to microfilm all x-rays of 4 years within 14 months. The conception of the microfilm system has also stood the test from the point of view of fulfilling all legal requirements.

Archives↗

Microfilm storage of fetal monitoring records: a practical solution.

Microfilming of fetal monitoring records has, at our institution, been found to be a practical method for storage of recording papers from fetal monitoring. This system permits a reduction of the records by a factor of 20:1 and up to 7.64 hours of fetal monitroing records will fit into a 4 x 6 inch film jacket. This microfilm record can easily be placed into a patient's chart and can thus easily be retrieved.

Fetal Monitoring↗

Conversion of the periodical collection in a teaching hospital library to microfilm format.

The Martland Hospital Library converted many of its periodical backfiles to 16 mm microfilm cartridges. Some details of program implementation, user reactions, costs, and problems are discussed. In a teaching hospital library microfilm in cartridge format has been well accepted by patrons, in part because the need to read from a projection screen has been minimized by granting liberal printing privileges.

Costs and Cost Analysis↗

Reversible subacute ethylene glycol monomethyl ether toxicity associated with microfilm production: a case report.

The first reported case of a possible toxic effect of ethylene glycol monomethyl ether (EGME) exposure in the microfilm manufacturing industry is described. Reversible subjective central nervous system complaints and asymptomatic hematopoietic effects occurred following inhalation and skin exposure to EGME. Hematopoietic changes occurred at airborne levels which have been associated with reproductive and teratogenic effects in other studies. This finding leads to a recommendation for further research to determine whether or not hematopoietic medical surveillance can provide an indication of not only EGME hematopoietic effects but also an indication of sufficient EGME exposure to affect human reproduction and fetal development.

Adult↗

[Microfilm documentation in follow-up of melanocytic tumors].

Microfilm photography allows documentation of naevi in a map-like fashion. The localization of multiple naevi is no longer a problem, as one can scan the film. Comparison of the magnified film with the patient can be done in day-light. Magnification up to 48 times is possible. Detection of early changes of the naevi, during the horizontal growth phase, should increase the 5-year survival rate.

Cell Transformation, Neoplastic↗

Eye discomfort when reading microfilm in different enlargers.

At a large banking firm, the lighting conditions under which middle-aged women employees read microfilms in different enlargers were studied. Complaints from the staff were analyzed and compared with the results obtained. Discomfort glare, due to heavy contrasts between the dark documents on the screens and other light surfaces in the visual fields, was the main cause of the complaints. It was recommended that individual near-work spectacles might decrease or eliminate some of the disturbing factors which had led to the subjective complaints. Suggestions were made for improving the enlargers.

Journal Article↗