RobbinMLChamberlainNELockhartME, et al. Hemodialysis arteriovenous fistula maturity: US evaluation. Radiology2002; 225(1): 59–64.
2.
ManovJJMohanPPVazquez-PadronR.Arteriovenous fistulas for hemodialysis: brief review and current problems. J Vasc Access. Epub ahead of print 5 April 2021. DOI: 10.1177/11297298211007720.
3.
RamSJWorkJCalditoGC, et al. A randomized controlled trial of blood flow and stenosis surveillance of hemodialysis grafts. Kidney Int2003; 64(1): 272–280.
4.
NovakovaLKolinskyJAdamecJ, et al. Vascular stenosis asymmetry influences considerably pressure gradient and flow volume. Physiol Res2016; 65(1): 63–69.
5.
TessitoreNBedognaVPoliA, et al. Should current criteria for detecting and repairing arteriovenous fistula stenosis be reconsidered? Interim analysis of a randomized controlled trial. Nephrol Dial Transplant2014; 29(1): 179–187.
6.
VálekMLopotFDusilová-SulkováS, et al. Physiologic variability of vascular access blood flow for hemodialysis. Blood Purif2008; 26(5): 468–472.
7.
KudlickaJKavanJTukaV, et al. More precise diagnosis of access stenosis: ultrasonography versus angiography. J Vasc Access2012; 13(3): 310–314.
8.
TukaVSlavikovaMKrupickovaZ, et al. Short-term outcomes of borderline stenoses in vascular accesses with PTFE grafts. Nephrol Dial Transplant2009; 24(10): 3193–3197.
9.
FahrtashFKairaitisLGruenewaldS, et al. Defining a significant stenosis in an autologous radio-cephalic arteriovenous fistula for hemodialysis. Semin Dial2011; 24(2): 231–238.
10.
MalikJLomonteCMeolaM, et al. The role of Doppler ultrasonography in vascular access surveillance: controversies continue. J Vasc Access. Epub ahead of print 20 July 2021. DOI:10.1177/1129729820928174.