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1.
J Cancer Educ ; 37(1): 163-168, 2022 02.
Article in English | MEDLINE | ID: mdl-32564252

ABSTRACT

The purpose of this study was to evaluate the impact of implementing community-based prostate health education programs in rural communities. Prostate cancer (PrCA) remains one of the most common cancers among men, and a growing body of literature demonstrates that large interracial differences in PrCA incidence and mortality rates consistently disfavor African Americans in comparison to European Americans. It also is evident, despite the overall decrease in cancer death rates in the USA in recent decades, rural areas are experiencing a reduction in death rates much more slowly. In this study, education session content focused on PrCA risk factors, symptoms, screening, healthy diet and exercise, treatment options, and provider communication strategies. Forty individuals participated and completed pre/post-education program surveys to assess changes in PrCA knowledge and cancer decision-making. Participants showed improvements in education and awareness following the session, and overall impressions of the program were consistently positive as exhibited by participants' answers on a satisfaction survey. The findings demonstrate the real need both in terms of research to understand the underlying problem and to provide practical solutions that can be implemented to reverse the current situation. The results obtained support community-based education programs as an effective means of delivering PrCA prevention, screening, and treatment information to rural communities.


Subject(s)
Program Evaluation , Prostatic Neoplasms , Rural Population , Black or African American , Health Education , Humans , Male , Prostatic Neoplasms/diagnosis , Prostatic Neoplasms/prevention & control , South Carolina
2.
Med Phys ; 42(4): 1606-13, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25832051

ABSTRACT

PURPOSE: To measure radiation dose in a water-equivalent medium from very high-energy electron (VHEE) beams and make comparisons to Monte Carlo (MC) simulation results. METHODS: Dose in a polystyrene phantom delivered by an experimental VHEE beam line was measured with Gafchromic films for three 50 MeV and two 70 MeV Gaussian beams of 4.0-6.9 mm FWHM and compared to corresponding MC-simulated dose distributions. MC dose in the polystyrene phantom was calculated with the EGSnrc/BEAMnrc and DOSXYZnrc codes based on the experimental setup. Additionally, the effect of 2% beam energy measurement uncertainty and possible non-zero beam angular spread on MC dose distributions was evaluated. RESULTS: MC simulated percentage depth dose (PDD) curves agreed with measurements within 4% for all beam sizes at both 50 and 70 MeV VHEE beams. Central axis PDD at 8 cm depth ranged from 14% to 19% for the 5.4-6.9 mm 50 MeV beams and it ranged from 14% to 18% for the 4.0-4.5 mm 70 MeV beams. MC simulated relative beam profiles of regularly shaped Gaussian beams evaluated at depths of 0.64 to 7.46 cm agreed with measurements to within 5%. A 2% beam energy uncertainty and 0.286° beam angular spread corresponded to a maximum 3.0% and 3.8% difference in depth dose curves of the 50 and 70 MeV electron beams, respectively. Absolute dose differences between MC simulations and film measurements of regularly shaped Gaussian beams were between 10% and 42%. CONCLUSIONS: The authors demonstrate that relative dose distributions for VHEE beams of 50-70 MeV can be measured with Gafchromic films and modeled with Monte Carlo simulations to an accuracy of 5%. The reported absolute dose differences likely caused by imperfect beam steering and subsequent charge loss revealed the importance of accurate VHEE beam control and diagnostics.


Subject(s)
Computer Simulation , Electrons , Film Dosimetry , Monte Carlo Method , Phantoms, Imaging , Radiation Dosage , Polystyrenes , Uncertainty , Water
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