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Curtis Caldwell

Publications and source records attributed to Curtis Caldwell.

2 recordsLinked to original sources

Contamination during a brachytherapy procedure.

This paper describes an unusual contamination incident that occurred during the treatment of a prostate cancer patient with seeds containing 125I. The incident became particularly interesting as the radiation safety procedures in place prior to the incident were, in fact, inappropriate for the type of incident that occurred, resulting in a series of response errors. Strands containing 108 125I seeds with a total activity of 1.61 GBq (43.6 mCi) were implanted into a patient's prostate and the patient was sent to the recovery room. A radiation survey detected radiation levels of up to 15 microR h(-1), 10 cm from the surface of the implantation needles. Multiple individuals entered the room and were potentially exposed to contamination. Contamination was detected in a sample of the patient's urine, indicating that one or more implanted seeds were leaking. Initial test results for staff showed that 12 of 15 had thyroid levels potentially above their corresponding minimum detectable activity levels, with calculated thyroid burdens ranging from 0.17 kBq to 0.94 kBq, but, subsequent measurements, using each staff member's thigh counts as background, suggested that no staff member had been contaminated. The patient showed high uptake of 125I in his neck 10 d following the incident, estimated to correspond to an initial thyroid burden of 58 kBq. The possibility of contamination was not immediately considered due to the suspicion of the more common problem of a misplaced source. The initial measurements suggesting thyroidal contamination in staff point to an error in our thyroid screening method.

Brachytherapy↗

Radiation exposure from diagnostic imaging in severely injured trauma patients.

BACKGROUND: Trauma patients often require multiple imaging tests, including computed tomography (CT) scans. CT scanning, however, is associated with high-radiation doses. The purpose of this study was to measure the radiation doses trauma patients receive from diagnostic imaging. METHODS: A prospective cohort study was conducted from June 1, 2004 to March 31, 2005 at a Level I trauma center in Toronto, Canada. All trauma patients who arrived directly from the scene of injury and who survived to discharge were included. Three dosimeters were placed on each patient (neck, chest, and groin) before radiologic examination. Dosimeters were removed before discharge. Surface doses in millisieverts (mSv) at the neck, chest, and groin were measured. Total effective dose, thyroid, breast, and red bone marrow organ doses were then calculated. RESULTS: Trauma patients received a mean effective dose of 22.7 mSv. The standard "linear no threshold" (LNT) model used to extrapolate from effects observed at higher dose levels suggests that this would result in approximately 190 additional cancer deaths in a population of 100,000 individuals so exposed. In addition, the thyroid received a mean dose of 58.5 mSv. Therefore, 4.4 additional fatal thyroid cancers would be expected per 100,000 persons. In all, 22% of all patients had a thyroid dose of over 100 mSv (mean, 156.3 mSv), meaning 11.7 additional fatal thyroid cancers per 100,000 persons would result in this subgroup. CONCLUSION: Trauma patients are exposed to significant radiation doses from diagnostic imaging, resulting in a small but measurable excess cancer risk. This small individual risk may become a greater public health issue as more CT examinations are performed. Unnecessary CT scans should be avoided.

Adult↗