يعرض 1 - 10 نتائج من 26 نتيجة بحث عن '"Subclavian"', وقت الاستعلام: 1.19s تنقيح النتائج
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    رسالة جامعية
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    رسالة جامعية
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    رسالة جامعية
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    رسالة جامعية
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    رسالة جامعية

    المؤلفون: Torres Di Zeo, Daniel Ricardo

    جغرافية الموضوع: Bucaramanga (Santander, Colombia)

    وصف الملف: application/pdf

    العلاقة: 1. AUBANIAC, R. Intraveinous Sous Clavicularic Advantages. Edit. Desis. Edic.1 E.E.U.U.; 2. Brenner P, G Bugedo, Calleja D, Del Valle G, Fica A, Gómez ME et al. Prevención de infecciones asociadas a catéteres vasculares centrales. Rev Chil Infect 2003; 20:51-69.; 3. Orestes MT. Michael RB. Jan S. Abordaje Venoso Central. Re. Cien. Est. Ciencias médicas de cuba [Internet]. 2008. [05-10-13]. Vol. 1 (1), p. 3.; 4 . Drake R, Vogl A, Mitchell A. 2010. Gray’s Anatomy for Students. 2nd Ed. Philadelphia: Churchill Livingstone Elsevier.; 5. Gray H. 1985. Anatomy of the Human Body. Philadelphia, PA: Lea & Febiger.; 6. Jana R. 2014. Unusual site of formation of brachiocephalic vein along with multiple venous anomalies in neck and its clinical importance. Nat J Clin Anat 3:93–95.; 7. Bergman R, Thompson S, Afifi A. Saadeh FA. 1988. Compendium of Human Anatomic Variation. Text, Atlas and World Literature. Baltimore, MD: Urban & Schwarzenberg.277.; 8. Arias J, Aller M, Miranda E, Arias J, Lorente L. ACCSESOS VASCULARES. En: Arias Pérez J y de editorial Tébar, S.L. editores. Propedéutica quirúrgica. Vol 1. Depósito legal: SE-1529- 2004 p. 272-277.; 9. Linares J, Sitges-Serra A, Garau J, Pérez JL, Martín R. Pathogénesis of catéter sepsis: a prospective study with quantitative and semiquantitative cultures of catéter hub and segment. J Clin Microbiol 1985; 21: 357-360.; 11 American Society of Anesthesiologists Task Force on Central Venous Access, Rupp SM, Apfelbaum JL, et al. Practice guidelines for central venous access: a report by the American Society of Anesthesiologists Task Force on Central Venous Access. Anesthesiology 2012; 116:539.; 12 Freel AC, Shiloach M, Weigelt JA, et al. American College of Surgeons Guidelines Program: a process for using existing guidelines to generate best practice recommendations for central venous access. J Am Coll Surg 2008; 207:676.; 13. van de Weerdt EK, Biemond BJ, Baake B, et al. Central venous catheter placement in coagulopathic patients: risk factors and incidence of bleeding complications. Transfusion 2017; 57:2512.; 14. Polderman KH, Girbes AJ. Central venous catheter use. Part 1: mechanical complications. Intensive Care Med 2002; 28:1.; 15. Mansfield PF, Hohn DC, Fornage BD, et al. Complications and failures of subclavian-vein catheterization. N Engl J Med 1994; 331:1735.; 16. The clinical anatomy of several invasive procedures. American Association of Clinical Anatomists, Educational Affairs Committee. Clin Anat 1999; 12:43.; 17. Merrer J, De Jonghe B, Golliot F, Lefrant JY, Raffy B, Barre E et al.: Complications of femoral and subclavian venous catheterization in critically ill patients: A randomized controlled trial. JAMA 2001;286:700 -7.; 18. McGee DC, Gould MK: Preventing complications of central venous catheterization. N Engl J Med 2003; 348:1123-33.; 19. Sznajder JI, Zveibil FR, Bitterman H, Weiner P, Bursztein S: Central vein catheterization: Failure and complication rates by three percutaneous approaches. Arch Intern Med 1986; 146:259-6.; 20. Ruesch S, Walder B, Tramèr MR. Complications of central venous catheters: internal jugular versus subclavian access a systematic review. Crit Care Med. 2002 Feb;30(2):454-60.; 21. Rodrigo Rivas T. Mechanical complications of central venous access. Departamento de Anestesiología. Clínica Las Condes. 15.04.2011; 22. Bayer O, Schummer C, Richter K, Fröber R, Schummer W. Implication of the anatomy of the pericardial reflection on positioning of central venous catheters. J Cardiothorac Vasc Anesth. 2006 Dec;20(6):777-80.; 23. Mirski M. A., Lele A.V., Fitzsimmons L., Toung T:Diagnosis and Treatment of Vascular Air Embolism. Anesthesiology 2007; 106:164 -77.; 24. Vesely TM :Air embolism during insertion of central venous catheters . Journal of Vascular and Interventional Radiology, 2001.; 25. Stuart RK, Shikora SA, Akerman P, et al: Incidence of arrhythmia with central venous catheter insertion and exchange. J Parent Ent Nutr 1990:14:152- 155.; 27. Eisen LA, Narasimhan M, Berger JS, Mayo PH, Rosen MJ, Schneider RF. Mechanical Complications of Central Venous Catheters. J Intensive Care Med. 2006 Jan-Feb; 21(1):51-3.; 28. Ambesh SP, Pandey JC, Dubey PK: Internal jugular vein occlusion test for rapid diagnosis of misplaced subclavian vein catheter into the internal jugular vein. Anesthesiology 2001; 95: 1377-79.; 29. Ruesch S, Walder B, Tramèr MR. Complications of central venous catheters: internal jugular versus subclavian access a systematic review. Crit Care Med. 2002 Feb;30(2):454-60.; 30. Jean-Jacques Parienti, MD, PhD; Damien du Cheyron, MD, PhD; Jean-François Timsit, MD, PhD; Ousmane Traoré, MD; Pierre Kalfon, MD; Olivier Mimoz, MD, PhD; Leonard A. Mermel, DO, ScM, AM (Hon). Meta-analysis of subclavian insertion and nontunneled central venous catheter-associated infection risk reduction in critically ill adults*. 2012 May;40(5):1627-34; 31. Arrighi DA, Farnell MB, Mucha P Jr, et al. Prospective, randomized trial of rapid venous access for patients in hypovolemic shock. Ann Emerg Med 1989; 18:927.; 32. Eisen LA, Narasimhan M, Berger JS, et al. Mechanical complications of central venous catheters. J Intensive Care Med 2006; 21:40.; 33. Kuhn GJ, White BC, Swetnam RE, et al. Peripheral vs central circulation times during CPR: a pilot study. Ann Emerg Med 1981; 10:417.; 34. Weigand K, Encke J, Meyer FJ, et al. Low levels of prothrombin time (INR) and platelets do not increase the risk of significant bleeding when placing central venous catheters. Med Klin (Munich) 2009; 104:331.; 35. Arvaniti K, Lathyris D, Blot S, et al. Cumulative Evidence of Randomized Controlled and Observational Studies on Catheter-Related Infection Risk of Central Venous Catheter Insertion Site in ICU Patients: A Pairwise and Network Meta-Analysis. Crit Care Med 2017; 45:e437.; 36. Parienti JJ, Mongardon N, Mégarbane B, et al. Intravascular Complications of Central Venous Catheterization by Insertion Site. N Engl J Med 2015; 373:1220.; 37. Biffi R, Orsi F, Pozzi S, et al. Best choice of central venous insertion site for the prevention of catheter-related complications in adult patients who need cancer therapy: a randomized trial. Ann Oncol 2009; 20:935.; 38. Reyes JM, Encinas CA, Da Rosa WG, Vallejos G. Consideraciones anatómicas sobre la venopunción subclavia. Rev Post VI Cat Med. 2007; 165: 1-5.; 39. Devia Jaramillo, G., Torres Castillo, J., Lozano, F., & Ramírez, A. (2018). Ultrasound-guided central venous catheter placement in the emergency department experience in a hospital in Bogotá, Colombia. Open Access Emergency Medicine, Volume 10, 61–65.; 40. Fortune, J. B. (2003). Effect of Patient Position on Size and Location of the Subclavian Vein for Percutaneous Puncture. Archives of Surgery, 138(9), 996. doi:10.1001/archsurg.138.9.996; 41. Ruesch, S., Walder, B., & Tramèr, M. R. (2002). Complications of central venous catheters: Internal jugular versus subclavian access—A systematic review. Critical Care Medicine, 30(2), 454–460. doi:10.1097/00003246-200202000-00031; Catheters; http://hdl.handle.net/20.500.12749/7229Test; instname:Universidad Autónoma de Bucaramanga - UNAB; reponame:Repositorio Institucional UNAB; repourl:https://repository.unab.edu.coTest

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    رسالة جامعية

    المساهمون: Gómez Lahiton, Edgar David, Lubinus Badillo, Federico Guillermo, Lubinus Badillo, Federico Guillermo 0001475552, Gómez Lahiton, Edgar David 0000-0002-3556-782X, Olarte Marín, Andrés Mauricio Andres-Olarte-2, Observatorio de Salud Pública de Santander, Grupo de Investigaciones Clínicas

    وصف الملف: application/pdf

    العلاقة: 1. Orsi F. Ultrasound guided versus direct vein puncture in central venous port placement. J Vasc Access. 2000 Apr-Jun;1(2):73-7.; 2. Lamperti M, Bodenham AR, Pittiruti M, Blaivas M, Augoustides JG, Elbarbary M, et al.International evidencebased recommendations on ultrasound- guided vascular access. Intensive Care Medicine 2012;38(7):1105–17.; 3. Frasca D, Dahyot-Fizelier C, Mimoz O. 2010. Prevention of central venous catheterrelated infection in the intensive care unit. Critical Care 14:212; 4. McGee DC, Gould MK. Preventing complications of central venous catheterization. N Engl J Med. 2003;348:1123–1133.; 5. Ultrasound-guided vascular access in adults and children: Beyond the internal jugular vein puncture. Acta Anaesthesiol Belg. 2008;59:157–166.; 6. The role of sonography in the placement and management of jugular and subclavian central venous catheters. AJR Am J Roentgenol. 1994;163:291–296.; 7. Practice Guidelines for Central Venous Access, American Society of Anesthesiologists Task Force on Central Venous Access. Anesthesiology 2012; 8. Duffy FD, Holmboe ES. What procedures should internists do? Ann Intern Med. 2007;146:392–3; 9. Pronovost P, An Intervention to Decrease Catheter-Related Bloodstream Infections in the ICU. N Engl J Med 2006; 355:2725-2732; 11. Paoletti F. Central venous catheters. Observations on the implantation technique and its complications. Minerva Anestesiol. 2005 Sep;71(9):555-60.; 12. Brass P, Ultrasound guidance versus anatomical landmarks for subclavian or femoral vein catheterization (Review). Cochrane Database Syst Rev. 2015 Jan 9;1:CD011447.; 13. Hoffman T, Ultrasound-guided central venous catheterization: A review of the relevant anatomy, technique, complications and anatomical variations. Clinical Anatomy doi:10.1002/ca.22768, Press pending 2017; 14. Caridi JG, Hawkins IF Jr, Wiechmann BN, Pevarski DJ, Tonkin JC. Sonographic guidance when using the right internal jugular vein for central vein access. American Journal of Roentgenology 1998;171(5):1259–63.; 15. Denys BG, Uretsky BF. Anatomical variations of internal jugular vein localisation: impact on central venous access. Critical Care Medicine 1991;42(3):218–23.; 16. Ferral H. US-guided puncture of the internal jugular vein: an unexpected anatomic relationship. Journal of Vascular and Interventional Radiology 1998;9(5):854–5; 17. McIntyre AS, Levison RA, Wood S, Phillips RK, LennardJones JE. Duplex Doppler ultrasound identifies veins suitable for insertion of central feeding catheters. Journal of Parenteral and Enteral Nutrition 1992;16(3):264–7.; 18. Merrer J, De Jonghe B, Golliot F, Lefrant JY, Raffy B, Barre E, Rigaud JP, Casciani D, Misset B, Bosquet C, Outin H, Brun-Buisson C, Nitenberg G. Complications of femoral and subclavian venous catheterization in critically ill patients: a randomized controlled trial. JAMA. 2001;286:700–7.; 19. Spencer, T. R., & Bardin-Spencer, A. J. (2019). Pre- and post-review of a standardized ultrasound-guided central venous catheterization curriculum evaluating procedural skills acquisition and clinician confidence. The Journal of Vascular Access, 2019-112972981988260. doi:10.1177/1129729819882602.; 20. Hoskote SS, Khouli H, Lanoix R, et al. Simulation-based training for emergency medicine residents in sterile technique during central venous catheterization: impact on performance, policy, and outcomes. Acad Emerg Med 2015; 22(1): 81–87.; 21. Latif RK, Bautista AF, Memon SB, et al. Teaching aseptic technique for central venous access under ultrasound guidance: a randomized trial comparing didactic training alone to didactic plus simulation-based training. Anesth Analg 2012; 114(3): 626–633.; 22. Barsuk JH, Cohen ER, Feinglass J, et al. Use of simulationbased education to reduce catheter-related bloodstream infections. Arch Intern Med 2009; 169(15): 1420–1423.; 23. Peltan ID, Shiga T, Gordon JA, et al. Simulation improves procedural protocol adherence during central venous catheter placement: a randomized-controlled trial. Simul Healthc 2015; 10(5): 270–276.; 24. Corvetto MA, Pedemonte JC, Varas D, et al. Simulationbased training program with deliberate practice for ultrasound-guided jugular central venous catheter placement. Acta Anaesthesiol Scand 2017; 61(9): 1184–1191.; 25. Ma IW, Brindle ME, Ronksley PE, et al. Use of simulationbased education to improve outcomes of central venous catheterization: a systematic review and meta-analysis. Acad Med 2011; 86(9): 1137–1147.; 26. Soni NJ, Reyes LF, Keyt H, et al. Use of ultrasound guidance for central venous catheterization: a national survey of intensivists and hospitalists. J Crit Care. 2016;36:277-283. https://doi.org/10.1016/j.jcrc.2016.07.014Test.; 27. Parienti JJ, Mongardon N, Mégarbane B, et al. Intravascular complications of central venous catheterization by insertion site. N Engl J Med. 2015;373(13):1220-1229. https://doi.org/10.1056/NEJMoa1500964Test.; 28. Maizel J, Bastide MA, Richecoeur J, et al. Practice of ultrasound-guided central venous catheter technique by the French intensivists: a survey from the BoReal study group. Ann Intensive Care. 2016;6(1):76. https://doiTest. org/10.1186/s13613-016-0177-x.; 29. Saugel bernd, Scheeren Thomas W. L. and Teboul Jean-Louis, Ultrasound-guided central venous catheter placement: a structured review and recommendations for clinical practice. Critical Care (2017) 21:225 DOI 10.1186/s13054-017-1814-y.; 30. Raad I, Darouiche R, Dupuis J, et al. Central venous catheters coated with minocycline and rifampin for the prevention of catheter-related colonization and bloodstream infections: a randomized, double-blind trial. Ann Intern Med 1997;127:267-274.; 31. Heard SO, Wagle M, Vijayakumar E, et al. Influence of triple-lumen central venous catheters coated with chlorhexidine and silver sulfadiazine on the incidence of catheter-related bacteremia. Arch Intern Med 1998;158:81-87.; 32. McKinley S, Mackenzie A, Finfer S, Ward R, Penfold J. Incidence and predictors of central venous catheter related infection in intensive care patients. Anaesth Intensive Care 1999;27:164-169.; 33. Raad II, Hohn DC, Gilbreath BJ, et al. Prevention of central venous catheter-related infections by using maximal sterile barrier precautions during insertion. Infect Control Hosp Epidemiol 1994;15:231-238.; 34. Flowers RH III, Schwenzer KJ, Kopel RF, Fisch MJ, Tucker SI, Farr BM. Efficacy of an attachable subcutaneous cuff for the prevention of intravascular catheter-related infection: a randomized, controlled trial. JAMA 1989;261:878-883.; 35. Zakrzewska-Bode A, Muytjens HL, Liem KD, Hoogkamp-Korstanje JA. Mupirocin resistance in coagulase-negative staphylococci, after topical prophylaxis for the reduction of colonization of central venous catheters. J Hosp Infect 1995;31:189-193.; 36. Vanholder R, Canaud B, Fluck R, Jadoul M, Labriola L, Marti-Monros A, Tordoir J, Van Biesen W. Diagnosis, prevention and treatment of haemodialysis catheter-related bloodstream infections (CRBSI): a position statement of European Renal Best Practice (ERBP). NDT Plus. 2010 Jun; 3(3):234-246.; 37. Salzman MB, Isenberg HD, Shapiro JF, Lipsitz PJ, Rubin LG. A prospective study of the catheter hub as the portal of entry for microorganisms causing catheter-related sepsis in neonates. J Infect Dis 1993;167:487-490; 38. Cook D, Randolph A, Kernerman P, et al. Central venous catheter replacement strategies: a systematic review of the literature. Crit Care Med 1997;25:1417-1424; 39. Bonawitz SC, Hammell EJ, Kirkpatrick JR. Prevention of central venous catheter sepsis: a prospective randomized trial. Am Surg 1991;57:618-623; 40. Collin GR. Decreasing catheter colonization through the use of an antiseptic-impregnated catheter: a continuous quality improvement project. Chest 1999;115:1632-1640.; 41. Mansfield PF, Hohn DC, Fornage BD, Gregurich MA, Ota DM. Complications and failures of subclavian-vein catheterization. N Engl J Med 1994;331:1735-1738.; 42. Martin C, Eon B, Auffray JP, Saux P, Gouin F. Axillary or internal jugular central venous catheterization. Crit Care Med 1990;18:400-402; 43. Durbec O, Viviand X, Potie F, Vialet R, Albanese J, Martin C. A prospective evaluation of the use of femoral venous catheters in critically ill adults. Crit Care Med 1997;25:1986-1989; 44. Timsit JF, Bruneel F, Cheval C, et al. Use of tunneled femoral catheters to prevent catheter-related infection: a randomized, controlled trial. Ann Intern Med 1999;130:729-735; 45. Teichgraber UK, Benter T, Gebel M, Manns MP. A sonographically guided technique for central venous access. AJR Am J Roentgenol 1997;169:731-733; 46. Pinelli F, Balsorano P. Catheter-related thrombosis natural history in adult patients: a tale of controversies, misconceptions, and fears. J Vasc Access. 2019 Oct 5:1129729819879818. doi:10.1177/1129729819879818.; 47. Miller,rady, Guidelines for the Prevention of Intravascular Catheter-Related Infections: Recommendations Relevant to Interventional Radiology for Venous Cathete. J Vasc Interv Radiol. 2012 August; 23(8): 997–1007. doi:10.1016/j.jvir.2012.04.023.r Placement and Maintenance.; 48. Rodriguez A et al, Variantes anatómicas vasculares halladas de manera incidental en estudios de tomografía computada. RAR - Volumen 77 - Número 1 - 2013.; 49. Reyes JM, Encinas CA, Da Rosa WG, Vallejos G. Consideraciones anatómicas sobre la venopunción subclavia. Rev Post VI Cat Med. 2007; 165: 1-5.; 50. Lin, B.-S., Kong, C.-W., Tarng, D.-C., Huang, T.-P., & Tang, G.-J. (1998). Anatomical variation of the internal jugular and Subclavian vein and its impact on temporary haemodialysis vascular access: an ultrasonographic survey in uraemic patients. Nephrology Dialysis Transplantation, 13(1), 134–138. doi:10.1093/ndt/13.1.134.; 51. Walther, N. D., & Auyong, D. B. (2012). Subclavian Artery and Vein Transposition Has Implications for Regional Anesthesia and Subclavian Vein Catheter Insertion. Anesthesia & Analgesia, 115(1), 211–212.; 52. Nishida, Y., Misawa, K., Hirano, R., Otagiri, N., & Tauchi, K. (2019). Rare anomaly of the right subclavian artery and vein transposition: A case report. The Journal of Vascular Access, 112972981882516.; 53. T Ueno et al. Arteriovenous Malformation Manifested After Subclavian Central Venous Catheterization. J Dermatol 45 (1), e13-e14. Jan 2018. PMID 28971507. - Case Reports; 54. EN Brountzos et al. Congenital Subclavian Artery-To-Subclavian Vein Fistula in an Adult: Treatment With Transcatheter Embolization. Cardiovasc Intervent Radiol 27 (6), 675-77. Nov-Dec 2004. PMID 15578145.; 55. Lavallée, C., Ayoub, C., Mansour, A., Lambert, J., Lebon, J.-S., Lalu, M. M., & Denault, A. (2017). Subclavian and axillary vessel anatomy: a prospective observational ultrasound study. Canadian Journal of Anesthesia/Journal Canadien D’anesthésie, 65(4), 350–359.; 56. Indicadores Básicos. Situación de Salud en Santander. Observatorio de salud pública de Santander. Ministerio de Salud y Protección Social. Sistema Integral de Información SISPRO, 2017.; 57. Rando K, Castelli J, Pratt J, Scavino M, Rey G, Rocca M, Zunini G. 2014. Ultrasoundguided internal jugular vein catheterization: A randomized controlled trial. Heart Lung Vessels 6:13-23.; 58. Bose N, Patel H, Kamat H. 2014. Evaluation of ultrasound for central venous Access in ICU by an inexperienced trainee. Indian J Crit Care Med 18:26-32; 59. Frasca D, Dahyot-Fizelier C, Mimoz O. 2010. Prevention of central venous catheterrelated infection in the intensive care unit. Critical Care 14:212.; 60. Peris et al. Implantation of 3951 Long-Term Central Venous Catheters: Performances, Risk Analysis, and Patient Comfort After Ultrasound-Guidance Introduction. (Anesth Analg 2010; 111:1194–201.; 61. Karakitsos et al. ultrasound-guided catheterisation of the internal jugular vein: a prospective comparison with the landmark technique in critical care Patients. Critical Care 2006, 10:R162.; 62. Merrer J, 2001. Complications of Femoral and Subclavian Venous Catheterization in critically Ill Patients: A Randomized Controlled Trial. J Amer Med Assoc 286:700-707; 63. Silva JD, Berna EA, Neutropenia Febril en pacientes adultos de un centro de referencia de Hemato-Oncología en Colombia: una descripción de los hallazgos clínicos y microbiológicos. II Congreso Medicina interna UNAB 2018.; http://hdl.handle.net/20.500.12749/7179Test; instname:Universidad Autónoma de Bucaramanga - UNAB; reponame:Repositorio Institucional UNAB; repourl:https://repository.unab.edu.coTest

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    رسالة جامعية
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    رسالة جامعية