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1.
J Radiol Prot ; 44(2)2024 May 28.
Artigo em Inglês | MEDLINE | ID: mdl-38722296

RESUMO

The purpose of this study is to evaluate the occupational doses (eye lens, extremities and whole body) in paediatric cardiac interventional and diagnostic catheterization procedures performed in a paediatric reference hospital located in Recife, Pernambuco. For eye lens dosimetry, the results show that the left eye receives a higher dose than the right eye, and there is a small difference between the doses received during diagnostic (D) and therapeutic (T) procedures. The extrapolated annual values for the most exposed eye are close to the annual limit. For doses to the hands, it was observed that in a significant number of procedures (37 out of 45 therapeutic procedures, or 82%) at least one hand of the physician was exposed to the primary beam. During diagnostic procedures, the physician's hand was in the radiation field in 11 of the 17 catheterization procedures (65%). This resulted in a 10-fold increase in dose to the hands. The results underscore the need for optimization of radiation safety and continued efforts to engage staff in a radiation safety culture.


Assuntos
Exposição Ocupacional , Doses de Radiação , Humanos , Exposição Ocupacional/análise , Criança , Cateterismo Cardíaco , Proteção Radiológica , Cristalino/efeitos da radiação , Radiografia Intervencionista , Exposição à Radiação/análise
2.
J Radiol Prot ; 44(2)2024 Jun 25.
Artigo em Inglês | MEDLINE | ID: mdl-38834035

RESUMO

Nuclear medicine (NM) professionals are potentially exposed to high doses of ionising radiation, particularly in the skin of the hands. Ring dosimeters are used by the workers to ensure extremity doses are kept below the legal limits. However, ring dosimeters are often susceptible to large uncertainties, so it is difficult to ensure a correct measurement using the traditional occupational monitoring methods. An alternative solution is to calculate the absorbed dose by using Monte Carlo simulations. This method could reduce the uncertainty in dose calculation if the exact positions of the worker and the radiation source are represented in these simulations. In this study we present a set of computer vision and artificial intelligence algorithms that allow us to track the exact position of unshielded syringes and the hands of NM workers. We showcase a possible hardware configuration to acquire the necessary input data for the algorithms. And finally, we assess the tracking confidence of our software. The tracking accuracy achieved for the syringe detection was 57% and for the hand detection 98%.


Assuntos
Algoritmos , Medicina Nuclear , Exposição Ocupacional , Humanos , Exposição Ocupacional/análise , Mãos/efeitos da radiação , Método de Monte Carlo , Inteligência Artificial , Radiometria/métodos , Seringas
3.
J Radiol Prot ; 2017 Sep 22.
Artigo em Inglês | MEDLINE | ID: mdl-28936986

RESUMO

In this study we have characterized the learning curve of percutaneous nephrolithotomy procedures over 301 cases for six years. Different surrogate parameters of clinical expertise have been used, such as dose area product, total procedure time, fluoroscopy time and personal equivalent doses. In addition, two different endourologists have been monitored; one of whom was subjected to a specific Radiation Protection training (ICRP 85). Eye lens dose is estimated from thermoluminescent dosimeters. Significant differences are observed between both endourologists, especially in the fluoroscopy time. Finally, both entrance skin dose and effective doses of patients have been determined.

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