This work is licensed under the Creative Commons Attribution 4.0 International License.
Glauser F, Kivrak S, Righini M. Peripherally inserted central catheters : indications, contraindications, complications. Rev Med Suisse. 2018;14:2211- 2213 (in French).GlauserFKivrakSRighiniM.Peripherally inserted central catheters : indications, contraindications, complications. Rev Med Suisse. 2018;14:2211-2213 (in French).Search in Google Scholar
Milford K, von Delft D, Majola N, Cox S. Long-term vascular access in differently resourced settings: a review of indications, devices, techniques, and complications. Pediatr Surg Int. 2020;36:551-562.MilfordKvon DelftDMajolaNCoxS.Long-term vascular access in differently resourced settings: a review of indications, devices, techniques, and complications. Pediatr Surg Int. 2020;36:551-562.Search in Google Scholar
Clare CS. Selection and management of central venous access devices. Nurs Stand. 2020;35:68-75.ClareCS.Selection and management of central venous access devices. Nurs Stand. 2020;35:68-75.Search in Google Scholar
Krein SL, Saint S, Trautner BW, et al. Patient-reported complications related to peripherally inserted central catheters: a multicentre prospective cohort study. BMJ Qual Saf. 2019;28:574-581.KreinSLSaintSTrautnerBWPatient-reported complications related to peripherally inserted central catheters: a multicentre prospective cohort study. BMJ Qual Saf. 2019;28:574-581.Search in Google Scholar
Mielke D, Wittig A, Teichgräber U. Peripherally inserted central venous catheter (PICC) in outpatient and inpatient oncological treatment. Support Care Cancer. 2020;28:4753-4760.MielkeDWittigATeichgräberU.Peripherally inserted central venous catheter (PICC) in outpatient and inpatient oncological treatment. Support Care Cancer. 2020;28:4753-4760.Search in Google Scholar
Kang J, Chen W, Sun W, et al. Peripherally inserted central catheter-related complications in cancer patients: a prospective study of over 50,000 catheter days. J Vasc Access. 2017;18:153-157.KangJChenWSunWPeripherally inserted central catheter-related complications in cancer patients: a prospective study of over 50,000 catheter days. J Vasc Access. 2017;18:153-157.Search in Google Scholar
Kleidon TM, Horowitz J, Rickard CM, et al. Peripherally inserted central catheter thrombosis after placement via electrocardiography vs traditional methods. Am J Med. 2021;134:e79-e88.KleidonTMHorowitzJRickardCMPeripherally inserted central catheter thrombosis after placement via electrocardiography vs traditional methods. Am J Med. 2021;134:e79-e88.Search in Google Scholar
Ullman AJ, Cooke ML, Mitchell M, et al. Dressing and securement for central venous access devices (CVADs): a Cochrane systematic review. Int J Nurs Stud. 2016;59:177-196.UllmanAJCookeMLMitchellMDressing and securement for central venous access devices (CVADs): a Cochrane systematic review. Int J Nurs Stud. 2016;59:177-196.Search in Google Scholar
Guido A, Zhang S, Yang C, Pook L. An innovative cyanoacrylate device developed to improve the current standard of care for intravascular catheter securement. J Vasc Access. 2020;21:293-299.GuidoAZhangSYangCPookL.An innovative cyanoacrylate device developed to improve the current standard of care for intravascular catheter securement. J Vasc Access. 2020;21:293-299.Search in Google Scholar
Brescia F, Pittiruti M, Roveredo L, et al. Subcutaneously anchored securement for peripherally inserted central catheters: immediate, early, and late complications. J Vasc Access. 2023;24:82-86.BresciaFPittirutiMRoveredoLSubcutaneously anchored securement for peripherally inserted central catheters: immediate, early, and late complications. J Vasc Access. 2023;24:82-86.Search in Google Scholar
Gorski LA, Hadaway L, Hagle ME, et al. Infusion therapy standards of practice, 8th edition. J Infus Nurs. 2021;44(1S suppl 1):S1-S224.GorskiLAHadawayLHagleMEInfusion therapy standards of practice, 8th edition. J Infus Nurs. 2021;44(1S suppl 1):S1-S224.Search in Google Scholar
Selby J, Cohn DJ, Koenig G. Peripherally inserted tunnelled catheters: a new option for venous access. Minim Invasive Ther Allied Technol. 2001;10:231-234.SelbyJCohnDJKoenigG.Peripherally inserted tunnelled catheters: a new option for venous access. Minim Invasive Ther Allied Technol. 2001;10:231-234.Search in Google Scholar
Xiao MF, Xiao CQ, Li J, et al. Subcutaneous tunneling technique to improve outcomes for patients undergoing chemotherapy with peripherally inserted central catheters: a randomized controlled trial. J Int Med Res. 2021;49:3000605211004517.XiaoMFXiaoCQLiJSubcutaneous tunneling technique to improve outcomes for patients undergoing chemotherapy with peripherally inserted central catheters: a randomized controlled trial. J Int Med Res. 2021;49:3000605211004517.Search in Google Scholar
Dai C, Li J, Li QM, Guo X, Fan YY, Qin HY. Effect of tunneled and nontunneled peripherally inserted central catheter placement: a randomized controlled trial. J Vasc Access. 2020;21:511-519.DaiCLiJLiQMGuoXFanYYQinHY.Effect of tunneled and nontunneled peripherally inserted central catheter placement: a randomized controlled trial. J Vasc Access. 2020;21:511-519.Search in Google Scholar
Kim IJ, Shim DJ, Lee JH, et al. Impact of subcutaneous tunnels on peripherally inserted catheter placement: a multicenter retrospective study. Eur Radiol. 2019;29:2716-2723.KimIJShimDJLeeJHImpact of subcutaneous tunnels on peripherally inserted catheter placement: a multicenter retrospective study. Eur Radiol. 2019;29:2716-2723.Search in Google Scholar
Pan PP, Engstrom BI, Lungren MP, Seaman DM, Lessne ML, Kim CY. Impact of phase of respiration on central venous catheter tip position. J Vasc Access. 2013;14:383-387.PanPPEngstromBILungrenMPSeamanDMLessneMLKimCY.Impact of phase of respiration on central venous catheter tip position. J Vasc Access. 2013;14:383-387.Search in Google Scholar
Zhu SS, Zhao J, Zhou XY, et al. Influence of arm position change from adduction to abduction on intracavitary electrocardiogram. J Vasc Access. 2021;22:292-298.ZhuSSZhaoJZhouXYInfluence of arm position change from adduction to abduction on intracavitary electrocardiogram. J Vasc Access. 2021;22:292-298.Search in Google Scholar
Schulz KF, Altman DG, Moher D, CONSORT Group. CONSORT 2010 statement: updated guidelines for reporting parallel group randomized trials. Ann Intern Med. 2010;152:726-732.SchulzKFAltmanDGMoherDCONSORTGroup.CONSORT 2010 statement: updated guidelines for reporting parallel group randomized trials. Ann Intern Med. 2010;152:726-732.Search in Google Scholar
Paw HG. Tunnelling in the opposite direction. Anaesthesia. 1996;51:407-408.PawHG.Tunnelling in the opposite direction. Anaesthesia. 1996;51:407-408.Search in Google Scholar
Emoli A, Cappuccio S, Marche B, et al. The ISP (Safe Insertion of PICCs) protocol: a bundle of 8 recommendations to minimize the complications related to the peripherally inserted central venous catheters (PICC). Assist Inferm Ric. 2014;33:82-89 (in Intalian).EmoliACappuccioSMarcheBThe ISP (Safe Insertion of PICCs) protocol: a bundle of 8 recommendations to minimize the complications related to the peripherally inserted central venous catheters (PICC). Assist Inferm Ric. 2014;33:82-89 (in Intalian).Search in Google Scholar
Paje D, Conlon A, Kaatz S, et al. Patterns and predictors of short-term peripherally inserted central catheter use: a multicenter prospective cohort study. J Hosp Med. 2018;13:76-82.PajeDConlonAKaatzSPatterns and predictors of short-term peripherally inserted central catheter use: a multicenter prospective cohort study. J Hosp Med. 2018;13:76-82.Search in Google Scholar
Pittiruti M. The GAVeCeLT Manual of PICC and Midline. 2nd ed. Milan: Edra; 2017.PittirutiM.The GAVeCeLT Manual of PICC and Midline. 2nd ed. Milan: Edra; 2017.Search in Google Scholar
Network (NHSN). Protocol for Definition of Central-Line Associated Bloodstream Infection. 2018. http://www.cdc.gov/nhsn/PDFs/pscManual/4PSC_CLABScurrent.pdf. Accessed July 10, 2018.Network (NHSN). Protocol for Definition of Central-Line Associated Bloodstream Infection. 2018. http://www.cdc.gov/nhsn/PDFs/pscManual/4PSC_CLABScurrent.pdf. Accessed July 10, 2018.Search in Google Scholar
Song X, Lu H, Chen F, et al. A longitudinal observational retrospective study on risk factors and predictive model of PICC associated thrombosis in cancer patients. Sci Rep. 2020;10:10090.SongXLuHChenFA longitudinal observational retrospective study on risk factors and predictive model of PICC associated thrombosis in cancer patients. Sci Rep. 2020;10:10090.Search in Google Scholar
Ostroff MD, Moureau NL. Report of modification for peripherally inserted central catheter placement: subcutaneous needle tunnel for high upper arm placement. J Infus Nurs. 2017;40:232-237.OstroffMDMoureauNL.Report of modification for peripherally inserted central catheter placement: subcutaneous needle tunnel for high upper arm placement. J Infus Nurs. 2017;40:232-237.Search in Google Scholar
Vijaynanthan A, Nawawi O, Abdullah BJJ. Tunnelled peripherally inserted central catheter-how we do them. J Health Transl Med. 2017;20:8-12.VijaynanthanANawawiOAbdullahBJJ.Tunnelled peripherally inserted central catheter-how we do them. J Health Transl Med. 2017;20:8-12.Search in Google Scholar
Maria K, Theodoros K, Maria B, Panagiotis K, Emmanouil S, Evangelos KA. Implementation of tunneled versus not tunneled peripherally inserted central catheters. J Vasc Nurs. 2019;37:132-134.MariaKTheodorosKMariaBPanagiotisKEmmanouilSEvangelosKA.Implementation of tunneled versus not tunneled peripherally inserted central catheters. J Vasc Nurs. 2019;37:132-134.Search in Google Scholar
Toh LM, Mavili E, Moineddin R, et al. Are cuffed peripherally inserted central catheters superior to uncuffed peripherally inserted central catheters? A retrospective review in a tertiary pediatric center. J Vasc Interv Radiol. 2013;24:1316-1322.TohLMMaviliEMoineddinRAre cuffed peripherally inserted central catheters superior to uncuffed peripherally inserted central catheters? A retrospective review in a tertiary pediatric center. J Vasc Interv Radiol. 2013;24:1316-1322.Search in Google Scholar
Sze Yong T, Vijayanathan AA, Chung E, Ng WL, Yaakup NA, Sulaiman N. Comparing catheter related bloodstream infection rate between cuffed tunnelled and non-cuffed tunnelled peripherally inserted central catheter. J Vasc Access. 2022;23:225-231.Sze YongTVijayanathanAAChungENgWLYaakupNASulaimanN.Comparing catheter related bloodstream infection rate between cuffed tunnelled and non-cuffed tunnelled peripherally inserted central catheter. J Vasc Access. 2022;23:225-231.Search in Google Scholar
Kagan E, Salgado CD, Banks AL, Marculescu CE, Cantey JR. Peripherally inserted central catheter-associated bloodstream infection: risk factors and the role of antibiotic-impregnated catheters for prevention. Am J Infect Control. 2019;47:191-195.KaganESalgadoCDBanksALMarculescuCECanteyJR.Peripherally inserted central catheter-associated bloodstream infection: risk factors and the role of antibiotic-impregnated catheters for prevention. Am J Infect Control. 2019;47:191-195.Search in Google Scholar
Rupp ME, Karnatak R. Intravascular catheter-related bloodstream infections. Infect Dis Clin North Am. 2018;32:765-787.RuppMEKarnatakR.Intravascular catheter-related bloodstream infections. Infect Dis Clin North Am. 2018;32:765-787.Search in Google Scholar
Chan RJ, Northfield S, Larsen E, et al. Central venous access device SeCurement and dressing effectiveness for peripherally inserted central catheters in adult acute hospital patients (CASCADE): a pilot randomised controlled trial. Trials. 2017;18:458.ChanRJNorthfieldSLarsenECentral venous access device SeCurement and dressing effectiveness for peripherally inserted central catheters in adult acute hospital patients (CASCADE): a pilot randomised controlled trial. Trials. 2017;18:458.Search in Google Scholar
Oleti T, Jeeva Sankar M, Thukral A, et al. Does ultrasound guidance for peripherally inserted central catheter (PICC) insertion reduce the incidence of tip malposition? - A randomized trial. J Perinatol. 2019;39:95-101.OletiTJeeva SankarMThukralADoes ultrasound guidance for peripherally inserted central catheter (PICC) insertion reduce the incidence of tip malposition? - A randomized trial. J Perinatol. 2019;39:95-101.Search in Google Scholar
Huang C, Wu Z, Huang W, et al. Identifying the impact of the Zone Insertion Method (TM) (ZIM (TM)): a randomized controlled trial. J VascAccess. 2023;24:729-738.HuangCWuZHuangWIdentifying the impact of the Zone Insertion Method (TM) (ZIM (TM)): a randomized controlled trial. J VascAccess. 2023;24:729-738.Search in Google Scholar
Dawson RB. PICC zone insertion method TM (ZIM TM): a systematic approach to determine the ideal insertion site for PICCs in the upper arm. J Assoc Vasc Access. 2011;16:156-165.DawsonRB.PICC zone insertion method TM (ZIM TM): a systematic approach to determine the ideal insertion site for PICCs in the upper arm. J Assoc Vasc Access. 2011;16:156-165.Search in Google Scholar