Early radial band deflation after transradial access coronary catheterization reduces complications: a systematic review

World Health Organization. Cardiovascular diseases. Geneva: World Health Organization; 2024.

Lindstrom M, DeCleene N, Dorsey H, et al. Global burden of cardiovascular diseases and risks collaboration, 1990-2021. J Am Coll Cardiol 2022;80:2372–425. doi: 10.1016/j.jacc.2022.11.001.

Lopez EO, Ballard BD, Jan A. Cardiovascular disease. Treasure Island (FL): StatPearls Publishing; 2024.

Kementerian Kesehatan RI. Laporan Riset Kesehatan Dasar (Riskesdas) 2018. Jakarta: Badan Penelitian dan Pengembangan Kesehatan Kemenkes RI; 2019.

Kementerian Kesehatan RI. Penyakit jantung didominasi masyarakat kota. Jakarta: Biro Komunikasi dan Pelayanan Masyarakat; 2021.

Kementerian Kesehatan RI. Penyakit Jantung Penyebab Utama Kematian. Jakarta: Biro Komunikasi dan Pelayanan Masyarakat; 2022.

PERKI. Pedoman Tatalaksana Sindrom Koroner Akut. 4th ed. Jakarta: Centra Communications; 2018.

Abubakar M, Javed I, Rasool HF, et al. Advancements in percutaneous coronary intervention techniques: a comprehensive literature review of mixed studies and practice guidelines. Cureus 2023;15:e41311. doi: 10.7759/ cureus.41311.

Alexander JH, Smith PK. Coronary-artery bypass grafting. N Eng J Med 2016;375:e22. doi: 10.1056/NEJMra1406944.

Khan SQ, Ludman PF. Percutaneous coronary intervention. Medicine 2022;50:437–44.

Di Santo P, Simard T, Wells GA, et al. Transradial versus transfemoral access for percutaneous coronary intervention in ST-segment–elevation myocardial infarction. Circ Cardiovasc Interv 2021;14:e009994. doi: 10.1161/ CIRCINTERVENTIONS.120.009994.

Chhabra L, Zain MA, Siddiqui WJ. Coronary stents. Treasure Island: StatPearls Publishing; 2023.

Yee J, Kumar V, Li S, et al. Clinical factors associated with physician choice of femoral versus radial access: a real‐world experience from a single academic center. J Interv Cardiol 2018; 31:236–43. doi: 10.1111/joic.12479.

Bajaj A, Pancholy S, Sothwal A, Nawaz Y, Boruah P. Transradial versus transfemoral access for percutaneous coronary intervention of unprotected left main coronary artery stenosis: a systematic review and meta-analysis. Cardiovasc Revasc Med 2019;20:790–8. doi: 10.1016/ j.carrev.2018.10.025.

Valdes PJ, Akbar H, Kahloon R.A. Intracoronary stents. Treasure Island: StatPearls Publishing; 2023.

Panetta C, Rao S. Novel method for radial sheath removal using manual pressure over hemostatic pad combined with ulnar compression. Catheter Cardiovasc Interv 2018;92:322–4. doi: 10.1002/ ccd.27579.

Wang Y, Tang J, Ni J, Chen X, Zhang R. A comparative study of TR band and a new hemostatic compression device after transradial coronary catheterization. J Interv Med 2018;1: 221–8. doi: 10.19779/j.cnki.2096-3602.2018.04. 05.

Dorman SH, Obaid DR. Vascular access and closure for cardiovascular intervention. Heart 2019;105:1279–88. doi: 10.1136/heartjnl-2018-313049.

Martínez-Crespo J, Arroyo-Úcar E, Belda Cutillas JA, Benito Agüera I, González Ródenas L, Torres Saura F. TR band modification for distal transradial access hemostasis. REC Interv Cardiol 2020;2:157-60. doi: 10.24875/RECICE. M19000089.

Cong X, Huang Z, Wu J, et al. Randomized comparison of 3 hemostasis techniques after transradial coronary intervention. J Cardiovasc Nurs 2016;31:445–51. doi: 10.1097/JCN. 0000000000000268.

Córdova ESM, Santos LR, Toebe D, Moraes MAP, Souza EN. Incidence of hemorrhagic complications with use of a radial compression device: a cohort study. Revista da Escola de Enfermagem da USP 2018;52:e03410. English, Portuguese. doi: 10.1590/S1980-220X2017041003410.

dos Santos SM, Wainstein RV, Valle FH, et al. Two hemostasis methods after transradial catheterization - THEMATIC randomized clinical trial. J Cardiovasc Nurs 2020;35:217–22. doi: 10.1097/JCN.0000000000000639.

Roberts JS, Niu J, Pastor-Cervantes JA. Comparison of hemostasis times with a chitosan-based hemostatic pad (Clo-SurPlus RadialTM) vs mechanical compression (TR Band®) following transradial access: a pilot study. Cardiovasc Revasc Med 2019;20:871-4. doi: 10.1016/ j.carrev.2018.11.026.

Ahad S, Idrees S, Dhamani KA, Khan SF. Experiences of cardiac care nurses related to the management and delayed removal of trans-radial band of patients at a private tertiary care hospital, Islamabad. J Pak Med Assoc 2024;74:880–5. doi: 10.47391/JPMA.9048.

Bardooli F, Kumar D. Do we still need to assess post-procedural radial artery compression time and radial artery occlusion in patients who undergo transradial coronary intervention? Cureus 2023;15: e35129. doi: 10.7759/cureus. 35129.

LKPP Indonesia. Indonesian Government Goods and Services Procurement Policy Agency. Procurement Policy Agency E-Catalogue: Radiofocus Introducer II TR-Band. Jakarta: Indonesian Government Goods and Services; 2024.

Su S, Chang M, Wu M, Liao Y. Safety and efficacy of using vascular closure devices for hemostasis on sheath removal after a transfemoral artery percutaneous coronary intervention. Jpn J Nurs Sci 2019;16:172–83. doi: 10.1111/jjns. 12221.

Ul Haq MA, Rashid M, Kwok CS, Wong CW, Nolan J, Mamas MA. Hand dysfunction after transradial artery catheterization for coronary procedures. World J Cardiol 2017;9:609–19. doi: 10.4330/wjc.v9.i7.609.

Dharma S, Kedev S, Patel T, Gilchrist IC, Rao SV. The predictors of post-procedural arm pain after transradial approach in 1706 patients underwent transradial catheterization. Cardiovasc Revasc Med 2018;20:674–7. doi: 10.1016/j. carrev.2018.09.006.

Gul M, Acar B, Karabulut O, et al. Prevalence of post-procedural pain and associated factors experienced after transradial coronary angiography. Cor Vasa 2021;63:312–7. doi: 10.33678/cor.2020.099

Qureshi AI, Saleem MA, Naseem N, Wallery SS. Effectiveness of premedication protocol using intravenous fentanyl to reduce pain associated with femoral artery closure device placement. Clin Radiol 2019;74:166.e9-.e13. doi: 10.1016/j.crad.2018.10.016.

Hou Q, Zhou B, He J, Chen X, Zuo Y. Complications and related risk factors of transradial access cannulation for hemodynamic monitoring in general surgery: a prospective observational study. BMC Anesthesiol 2023;23:228. Doi: 10.1186/s12871-023-02168-z.

Garg N, Umamaheswar KL, Kapoor A, et al. Incidence and predictors of forearm hematoma during the transradial approach for percutaneous coronary interventions. Indian Heart J 2019;71:136–42. doi: 10.1016/j.ihj.2019.04.014.

Maqsood MH, Pancholy S, Tuozzo KA, Moskowitz N, Rao SV, Bangalore S. Optimal hemostatic band duration after transradial angiography or intervention: insights from a mixed treatment comparison meta-analysis of randomized trials. Circ Cardiovasc Interv 2023;16: e012781. doi: 10.1161/CIRCINTERVENTIONS.122.012781.

Barbeau GR, Arsenault F, Dugas L, Simard S, Larivière MM. Evaluation of the ulnopalmar arterial arches with pulse oximetry and plethysmography: comparison with the Allen’s test in 1010 patients. Am Heart J 2004;147:489–93. doi: 10.1016/j.ahj.2003.10.038.

Bertrand OF, Rao SV, Pancholy S, et al. Transradial approach for coronary angiography and interventions. JACC Cardiovasc Interv 2010;3:1022–31. doi: 10.1016/j.jcin.2010.07.013.

Page MJ, McKenzie JE, Bossuyt PM, et al. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ 2021;372: n71. doi: 10.1136/bmj.n71.

Barker TH, Stone JC, Sears K, et al. The revised JBI critical appraisal tool for the assessment of risk of bias for randomized controlled trials. JBI Evid Synth 2023;21:494-506. doi: 10.11124/ JBIES-22-00430.

Kheirabad MK, Mohebbi Z, Kalyani MN, Kojuri J. Vascular outcomes of early deflation of radial artery band following coronary angiography: a controlled clinical trial. J Vasc Nurs 2023;41:56–61. doi: 10.1016/j.jvn.2023.04.001.

Wu B, Zhang R, Liang C, Zhang C, Qin G. Study on the safety of the new radial artery hemostasis device. J Interv Cardiol 2022;1–8. doi: 10.1155/ 2022/2345584.

Kılıç R, Güzel T, Aktan A, et al. Comparison of pain levels of traditional radial, distal radial, and transfemoral coronary catheterization. Rev Assoc Med Bras 2023;69:e20230198. doi: 10.1590/ 1806-9282.20230198.

Ahmed TAN, Abbas E, Bakr AH, Demitry SR, Algowhary MI. Prevention of radial artery occlusion by simultaneous ulnar and radial compression (PRO-SURC): a randomized duplex ultrasound follow-up study. Int J Cardiol 2022; 363:23–9. doi: 10.1016/j.ijcard.2022.06.041.

Gupta M, Kumar V, Rahman MW, Srivastava S, Pandey U, Sinha SK. Comparison between distal trans-radial access and conventional trans-radial access for coronary angiography. Cureus 2023;15: e45081 doi: 10.7759/cureus.45081.

Chen T, Li L, Li F, et al. Comparison of long-term radial artery occlusion via distal vs. conventional transradial access (CONDITION): a randomized controlled trial. BMC Med 2024;22:62. doi: 10.1186/s12916-024-03281-7.

Barker TH, Habibi N, Aromataris E, et al. The revised JBI critical appraisal tool for the assessment of risk of bias for quasi-experimental studies. JBI Evid Synth 2024;22:378–88. doi: 10.11124/JBIES-23-00268.

Roberts J, Niu J. TR Band® “LIGHT” protocol with reduced compression and duration to reduce radial artery occlusion. J Am Coll Cardiol 2020; 75:1290. doi: 10.1016/S0735-1097(20)31917-3.

Barker TH, Hasanoff S, Aromataris E, et al. The revised JBI critical appraisal tool for the assessment of risk of bias for cohort studies. JBI Evid Synth 2024. doi: 10.11124/JBIES-24-00103.

Cheung ES, Zwaan EM, Schreuders TAR, et al. Treatment and management of upper extremity dysfunction following transradial percutaneous coronary intervention: a prospective cohort study. Hand (NY) 2024;19:154-62.. doi: 10.1177/ 15589447211073832.

Hashmi KA, Iqbal Z, Hashmi AA, et al. The frequency of radial artery occlusion following cardiac catheterization with the use of transradial pneumatic compression band. BMC Res Notes 2020;13:486. doi: 10.1186/s13104-020-05323-8.

Mason PJ, Shah B, Tamis-Holland JE, et al. An update on radial artery access and best practices for transradial coronary angiography and intervention in acute coronary syndrome: a scientific statement from the American Heart Association. Circ Cardiovasc Interv 2018;11: e000035. doi: 10.1161/HCV.0000000000000035.

Yang M, Jiang S, Wang Y, et al. Chinese expert consensus on transradial access in percutaneous peripheral interventions. J Interv Med 2023;6: 145-52. doi: 10.1016/j.jimed.2023.10.005.

Williams MS, Ng’alla LS. Heparin therapy leads to platelet activation and prolongation of PFA-100 closure time. J Cardiovasc Pharmacol Therapeut 2005;10:273–80.

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