PubMed HealthSearch

Biomedical subjects

B D Breitenstein

Publications and source records attributed to B D Breitenstein.

9 recordsLinked to original sources

Postmortem tissue contents of 241Am in a person with a massive acute exposure.

241Am was determined radiochemically in the tissues of USTUR Case 246, a 76-y-old man who died of cardiovascular disease 11 y after massive percutaneous exposure following a chemical explosion in a glove box. This worker was treated extensively with a chelation drug, DTPA, for over 4 y after exposure. The estimated 241Am deposition at the time of death was 540 kBq, of which 90% was in the skeleton, 5.1% in the liver, and 3.5% in muscle and fat. Among the soft tissues, the highest concentrations were observed in liver (22 Bq g-1), certain cartilaginous structures such as the larynx (15 Bq g-1) and the red marrow (9.7 Bq g-1), as compared with the mean soft tissue concentration of approximately 1 Bq g-1. Concentration in muscle was approximately that of the soft tissue average, while concentrations in the pancreas, a hilar lymph node and fat were less than the average. Concentrations in bone ash were inversely related to the ratio of ash weight to wet weight, a surrogate for bone volume-to-surface ratio. The distribution of activity in this case is reasonably consistent with that observed in another human case, when allowance is made for chelation therapy, and also tends to support more recent models of 241Am metabolism.

Aged

The probability that a specific cancer and a specified radiation exposure are causally related.

It is fundamental that a given cancer case cannot be attributed with absolute certainty to a prior ionizing radiation exposure, whatever the level of exposure. It is possible to estimate the probability of a causal relationship based on data and models that have been inferred from group statistics. Two types of information are needed to make these probability calculations: natural cancer incidence rates and risks of cancer induction from ionizing radiation. Cancer incidence rates for the United States are available in the report of the Surveillance, Epidemiology and End Results (SEER) program of the National Cancer Institute. Estimates of the risk of cancer induction from ionizing radiation have been published by the Advisory Committee on the Biological Effects of Ionizing Radiation (BEIR) of the National Academy of Sciences, the United Nations Scientific Committee on the Effects of Atomic Radiation (UNSCEAR), and the International Commission on Radiological Protection (ICRP). Using the parameters discussed above, the probability of causation formulation estimates the probability that a person who develops a particular cancer after a known quantifiable radiation exposure has the cancer as a result of the exposure. In 1985, the National Institutes of Health, responding to a U.S. Congressional mandate, published radioepidemiologic tables using the probability-of-causation method.

Humans

The U.S. Transuranium Registry report on the 241Am content of a whole body. Part I: Introduction and history of the case.

The first whole-body analysis of the U.S. Transuranium Registry was initiated in 1979. The donor was a 49-yr-old male Caucasian radiochemist who died of metastatic malignant melanoma. The donor had a recognized, longstanding 241Am internal deposition first identified in a routine urine sample in 1958. A summary of the clinical and postmortem findings is presented with the chronologic sequence of the procedures.

Americium

The U.S. Uranium Registry tissue program.

The U.S. Uranium Registry tissue program was established in December 1980. It is patterned after the U.S. Transuranium Registry program. Both are funded by DOE. The objectives of the program are to: (1) detect the presence and distribution of uranium, if any, in human tissue in occupationally exposed workers, (2) compare bioassay and in vivo measurements for exposed individuals with the results of analysis of tissue obtained at autopsy, (3) seek evidence of histopathological changes related to any uranium deposition found, (4) conduct analyses of whole bodies, when available, to obtain more precise data on the uranium burdens, if any, in the body and organs, and especially the distribution in parts of the body, such as most of the skeleton, that are not usually accessible for sampling. The program will include (1) participants who have been permissibly exposed, (2) participants who were exposed at a time when current limits did not exist and (3) reference individuals without exposure. The program will develop data that will assist in evaluating (1) the accuracy of current in vivo measurement techniques, (2) the propriety of existing regulations and (3) the adequacy of current protection programs. Enrollment in the program is voluntary.

Autopsy

1976 Hanford americium exposure incident: external decontamination procedures.

An accident resulted in the deposition on an injured workman's skin surfaces, in acid-burned areas and in lacerations, of something in excess of 6 mCi 241Am. This paper describes the external decontamination procedures used, the change in americium content of the skin during the course of treatment, and some of the unusual problems encountered from the extrusion of foreign material and flaking of skin and scar tissue.

Accidents, Occupational

1976 Hanford americium exposure incident: decontamination and treatment facility.

An injured worker, contaminated with more than 6 mCi of 241Am required special treatment and housing for 4 months. This paper is a description of the design and management of the facility in which most of the treatment and housing occurred. The problems associated with contamination control, waste handling, supplies and radiological concerns during the two-stage transfer of the patient from a controlled situation to his normal living environment are discussed in detail.

Accidents, Occupational

1976 Hanford americium exposure incident: hematologic effects.

Hematologic evaluation of an individual with an initial systemic body burden of approximately 200 mu Ci 241Am revealed a significant (P less than 0.01) reduction of total leukocytes, neutrophils and lymphocytes. This effect on total leukocytes and neutrophils was evident approximately 30 days after exposure, appeared to stabilize at about 3 months after exposure, and remained at this lower level through a 52-month observation period. The effect on lymphocytes was apparent by 3 days after exposure, stabilizing at approximately 50% of pre-exposure values for about 7 months, with a return to pre-exposure levels in the following 4 yr. There was a progressive and significant (P less than 0.001) decline in platelet counts during the 52-month post-exposure period. The pattern of response in erythrocyte parameters was complex. Immediately after the accident, these values were less than the pre-exposure mean level; they gradually increased (P less than 0.001) for approximately 2 yr and then began a progressive decline (P less than 0.001).

Accidents, Occupational