1. Carrion-Penagos J, Thind S, Coleman E, Brorson J, McKoy C, Mendelson S, et al. Endovascular therapy delay for acute large vessel occlusion (LVO) is associated with worse functional outcome and increased mortality - quantified (P13-10.004). Neurology. 2022; May. 98(18_supplement):
Article
2. Kaplan DJ, Patel JN, Liporace FA, Yoon RS. Intraoperative radiation safety in orthopaedics: A review of the ALARA (As low as reasonably achievable) principle. Patient Saf Surg. 2016; Dec. 10:27.
Article
3. Mooney RB, McKinstry CS, Kamel HA. Absorbed dose and deterministic effects to patients from interventional neuroradiology. Br J Radiol. 2000; Jul. 73(871):745–51.
Article
4. Morris PP, Geer CP, Singh J, Brinjikji W, Carter RE. Radiation dose reduction during neuroendovascular procedures. J Neurointerv Surg. 2018; May. 10(5):481–6.
5. Peterson EC, Kanal KM, Dickinson RL, Stewart BK, Kim LJ. Radiation-induced complications in endovascular neurosurgery: Incidence of skin effects and the feasibility of estimating risk of future tumor formation. Neurosurgery. 2013; Apr. 72(4):566–72.
6. Schneider T, Wyse E, Pearl MS. Analysis of radiation doses incurred during diagnostic cerebral angiography after the implementation of dose reduction strategies. J Neurointerv Surg. 2017; Apr. 9(4):384–8.
Article
7. Thierry-Chef I, Simon SL, Land CE, Miller DL. Radiation dose to the brain and subsequent risk of developing brain tumors in pediatric patients undergoing interventional neuroradiology procedures. Radiat Res. 2008; Nov. 170(5):553–65.
Article
8. Wali AR, Pathuri S, Brandel MG, Sindewald RW, Hirshman BR, Bravo JA, et al. Reducing frame rate and pulse rate for routine diagnostic cerebral angiography: ALARA principles in practice. J Cerebrovasc Endovasc Neurosurg. 2024; Mar. 26(1):46–50.
Article