[1] BASH J,HECHT S,BAYNE A,et al. Hypertonic saline-induced urolithiasis presenting as acute renalfailure in a child with traumatic brain injury: a case report[J]. Urol Case Rep,2020,34:101452
[2] MEDOW J E,SANGHVI S R,HOFMANN R M. Use of high-flow continuous renal replacement therapy with citrate anticoagulation to control intracranial pressure by maintaining hypernatremia in a patient with acute brain injury and renal failure[J]. Clin Med Res,2015,13(2):89
[3] MORRISSEY K,FAIRBROTHER H. Severe traumatic brain injury in children:an evidence-based review of emergency department management[J]. Pediatr Emerg Med Pract,2016,13(10):1
[4] CHEN H,SONG Z,DENNIS J A. Hypertonic saline versus other intracranial pressure-lowering agents for people with acute traumatic brain injury[J]. Cochrane Database Syst Rev,2019,12(12):CD010904
[5] G?譈IZA F,DEPREITERE B,PIPER I,et al. Visualizing the pressure and time burden of intracranial hypertension in adult and paediatric traumatic brain injury[J]. Intensive Care Med,2015,41(6):1067
[6] FINK M E. Osmotherapy for intracranial hypertension: mannitol versus hypertonic saline[J]. Continuum(Minneap Minn),2012,18(3):640
[7] KHANNA S,DAVIS D,PETERSON B,et al. Use of hypertonic saline in the treatment of severe refractory posttraumatic intracranial hypertension in pediatric traumatic braininjury[J]. Crit Care Med,2000,28(4):1144
[8] FROELICH M,NI Q,WESS C,et al. Continuous hypertonic saline therapy and the occurrence of complications in neurocritically ill patients[J]. Crit Care Med,2009,37(4):1433
[9] PARK C Y,CHOI H Y,YOU N K,et al. Continuous renal replacement therapy for acute renal failure in patients with traumatic brain injury[J]. J Neurotrauma,2016,12(2):89