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N Rohrig

Publications and source records attributed to N Rohrig.

7 recordsLinked to original sources

Intercomparison of dosimetry measurements at the alternating gradient synchrotron from 1986-1988.

The responses of several types of high-energy personnel neutron dosimeters were studied in the operational radiation fields at the Alternating Gradient Synchrotron. Included in the study are intercomparisons of polycarbonate, type A neutron track emulsion, allyl diglycol carbonate, electrochemical etch allyl diglycol carbonate, TLD-600, and TLD-700. Some of the passive measurements were compared with active tissue-equivalent instruments. The trend for many but not all of the measurements was for type A neutron track emulsion to report the highest neutron dose equivalent. The polycarbonate returned intermediate values while allyl diglycol carbonate usually reported the smallest values. Quality assurance data from calibration sources through 1990 are also provided.

Neutrons↗

A study of cell survival in mammalian cells exposed to spatially correlated triads of protons.

Cellular survival results for late-S Chinese hamster V79 cells exposed to triads of protons of variable mean separations are reported. The data are analyzed within the framework of the Theory of Dual Radiation Action [8]. This analysis provides a new estimation of the function gamma (chi) representing the probability of two energy transfers separated by the distance chi to produce a lesion. In agreement with an earlier study [6] involving pairs of deuterons, it is concluded that: a) the process of lesion formation depends strongly on the relative separation of energy deposition events, and b) intratrack and intertrack lesions correspond to substantially different separations of pairwise energy transfers.

Animals↗

The sequential irradiation of mammalian cells with X rays and charged particles of high LET.

Chinese hamster V79 cells, synchronized in late-S phase, were irradiated with high-LET charged particles or X rays, or exposed sequentially to a single dose of charged particles followed by graded doses of X rays. The charged-particle irradiations consisted of deuterons (LET, 50 keV/microns) or 3He ions (96 or 160 keV/microns). The survival data obtained following the sequential irradiations show a synergistic effect compared with exposure to the low-LET radiation. An enhancement ratio is defined in order to quantify this effect. On the basis of this concept the present data show an enhanced interaction effect as the LET of the primary dose is increased or the size of this dose is increased. The data are also discussed in terms of a recent theoretical formulation which predicts synergism as a result of the interaction between the sublethal damage produced by the two radiations.

Animals↗

On the mechanics of chromosomal aberrations: a study with single and multiple spatially-associated protons.

A unique radiation configuration, triads of protons, where mean separation between protons was controlled to be about 0.2 microns, has been used to irradiate Chinese hamster V79 cells. These triads of accelerated particles were more effective at producing chromosomal aberrations than randomly incident particles. Cells were irradiated with either single or three associated protons, with each proton depositing energy intracellularly at an LET of about 30 keV per micron. The associated protons were produced from accelerated molecular ions (H3+) that dissociated into atomic ions in a 6 mu Mylar foil on which the cells were growing, becoming triads of particles separated by a mean of about 0.2 microns in the cell nuclei. Chromosomal aberrations were scored from cells accumulated with colcemid over hourly intervals after irradiation. Those cells closest to mitosis (late G2) were the most sensitive to radiation, while overall "triple" protons were 52% more effective than single protons in producing aberrations. Only 10% of particles incident in nuclei resulted in an effect for the most sensitive period (late G2) dropping to 2% for the least sensitive period (early S--late G1). The frequencies of chromatid deletions declined dramatically with time post-irradiation, with isochromatid deletions less so and the frequencies of chromatid interchanges comparatively unchanged. Chromatid deletions and isochromatid deletions were often subtantially increased after "triple" proton irradiation, with the frequencies of chromatid interchanges less effected. This implies that both chromatid and isochromatid deletions can readily result from interactions between pairs of induced lesions about 0.2 microns apart. Achromatic lesions (gaps) were numerically equivalent after both irradiations implying a single lesion production mode. Results are compatible with there being a substantial short range component of interaction (less than 0.1 microns) between damaged sites, with a long range component of interaction extending to a few tenths of a micrometer.

Animals↗