يعرض 1 - 8 نتائج من 8 نتيجة بحث عن '"Kinder mit Krebserkrankung"', وقت الاستعلام: 0.46s تنقيح النتائج
  1. 1
    Academic Journal

    المصدر: GMS Hygiene and Infection Control; VOL: 16; DOC10 /20210305/

    Relation: Alias H, Mohd Nazi NA, Lau Sie Chong D. Participation in Physical Activity and Physical Education in School Among Children With Acute Lymphoblastic Leukemia After Intensive Chemotherapy. Front Pediatr. 2019;7:73. DOI:10.3389/fped.2019.00073; af Sandeberg M, Wettergren L, Björk O, Arvidson J, Johansson E. Does school attendance during initial cancer treatment in childhood increase the risk of infection? Pediatr Blood Cancer. 2013 Aug;60(8):1307-12. DOI:10.1002/pbc.24510; Bass JK, Liu W, Banerjee P, Brinkman TM, Mulrooney DA, Gajjar A, Pappo AS, Merchant TE, Armstrong GT, Srivastava D, Robison LL, Hudson MM, Krull KR. Association of Hearing Impairment With Neurocognition in Survivors of Childhood Cancer. JAMA Oncol. 2020 Sep;6(9):1363-71. DOI:10.1001/jamaoncol.2020.2822; Bochennek K, Luckowitsch M, Lehrnbecher T. Recent advances and future directions in the management of the immunocompromised host. Semin Oncol. 2020 Feb;47(1):40-7. DOI:10.1053/j.seminoncol.2020.02.005; Boulad F, Kamboj M, Bouvier N, Mauguen A, Kung AL. COVID-19 in Children With Cancer in New York City. JAMA Oncol. 2020 Sep;6(9):1459-60. DOI:10.1001/jamaoncol.2020.2028; Brinkman TM, Krasin MJ, Liu W, Armstrong GT, Ojha RP, Sadighi ZS, Gupta P, Kimberg C, Srivastava D, Merchant TE, Gajjar A, Robison LL, Hudson MM, Krull KR. Long-Term Neurocognitive Functioning and Social Attainment in Adult Survivors of Pediatric CNS Tumors: Results From the St Jude Lifetime Cohort Study. J Clin Oncol. 2016 Apr;34(12):1358-67. DOI:10.1200/JCO.2015.62.2589; Choquette A, Rennick JE, Lee V. Back to School After Cancer Treatment: Making Sense of the Adolescent Experience. Cancer Nurs. 2016 Sep-Oct;39(5):393-401. DOI:10.1097/NCC.0000000000000301; Darlington AE, Morgan JE, Wagland R, Sodergren SC, Culliford D, Gamble A, Phillips B. COVID-19 and children with cancer: Parents' experiences, anxieties, and support needs [Preprint]. medRxiv. 2020. DOI:10.1101/2020.06.11.20128603; Deutsche Gesellschaft für Pädiatrische Onkologie und Hämatologie (GPOH); Deutsche Gesellschaft für Pädiatrische Infektiologie (DGPI). Stellungnahme der Gesellschaft für Pädiatrische Onkologie und Hämatologie (GPOH) und der Deutschen Gesellschaft für Pädiatrische Infektiologie (DGPI): Kinder mit hämatologisch-onkologischen Erkrankungen und COVID-19 Infektionen. Berlin: DGPI; 2020 [accessed 2020 Oct 18]. Available from: https://dgpi.de/stellungnahme-der-gpoh-und-der-dgpi-zu-kindern-mit-haematologisch-onkologischen-erkrankungen-zu-covid-19-infektionen/; Ellis SJ, Drew D, Wakefield CE, Saikal SL, Punch D, Cohn RJ. Results of a nurse-led intervention: connecting pediatric cancer patients from the hospital to the school using videoconferencing technologies. J Pediatr Oncol Nurs. 2013 Nov-Dec;30(6):333-41. DOI:10.1177/1043454213514633; Ferrari A, Zecca M, Rizzari C, Porta F, Provenzi M, Marinoni M, Schumacher RF, Luksch R, Terenziani M, Casanova M, Spreafico F, Chiaravalli S, Compagno F, Bruni F, Piccolo C, Bettini L, D'Angiò M, Ferrari GM, Biondi A, Massimino M, Balduzzi A. Children with cancer in the time of COVID-19: An 8-week report from the six pediatric onco-hematology centers in Lombardia, Italy. Pediatr Blood Cancer. 2020 Aug;67(8):e28410. DOI:10.1002/pbc.28410; Health Policy team of the Royal College of Paediatrics and Child Health (RCPCH). COVID-19 - guidance on clinically extremely vulnerable children and young people. London: RCPCH; 2020 Jul 10 . Available from: https://www.rcpch.ac.uk/resources/covid-19-guidance-clinically-extremely-vulnerable-children-young-people; Howard J, Huang A, Li Z, Tufekci Z, Zdimal V, van der Westhuizen HM, von Delft A, Price A, Fridman L, Tang LH, Tang V, Watson GL, Bax CE, Shaikh R, Questier F, Hernandez D, Chu LF, Ramirez CM, Rimoin AW. Face Masks Against COVID-19 An Evidence Review [Preprint]. preprints. 2020. DOI:10.20944/preprints202004.0203.v1; Irwin MK, Elam MP, Merianos AL. Coordination of care between health and education systems for patients with a hematologic or oncologic diagnosis: a time study analysis. J Pediatr Nurs. 2015 Jan-Feb;30(1):244-53. DOI:10.1016/j.pedn.2014.07.003; Jacola LM, Edelstein K, Liu W, Pui CH, Hayashi R, Kadan-Lottick NS, Srivastava D, Henderson T, Leisenring W, Robison LL, Armstrong GT, Krull KR. Cognitive, behaviour, and academic functioning in adolescent and young adult survivors of childhood acute lymphoblastic leukaemia: a report from the Childhood Cancer Survivor Study. Lancet Psychiatry. 2016 Oct;3(10):965-72. DOI:10.1016/S2215-0366(16)30283-8; Kandula T, Farrar MA, Cohn RJ, Mizrahi D, Carey K, Johnston K, Kiernan MC, Krishnan AV, Park SB. Chemotherapy-Induced Peripheral Neuropathy in Long-term Survivors of Childhood Cancer: Clinical, Neurophysiological, Functional, and Patient-Reported Outcomes. JAMA Neurol. 2018 08;75(8):980-8. DOI:10.1001/jamaneurol.2018.0963; Keiser T, Gaser D, Peters C, Oberhoffer-Fritz R, Kesting S, von Luettichau I. Short-Term Consequences of Pediatric Anti-cancer Treatment Regarding Blood Pressure, Motor Performance, Physical Activity and Reintegration Into Sports Structures. Front Pediatr. 2020;8:463. DOI:10.3389/fped.2020.00463; Long KA, Lehmann V, Gerhardt CA, Carpenter AL, Marsland AL, Alderfer MA. Psychosocial functioning and risk factors among siblings of children with cancer: An updated systematic review. Psychooncology. 2018 Jun;27(6):1467-79. DOI:10.1002/pon.4669; Mintz J, Palaiologou I, Carroll C. A review of educational provision for children unable to attend school for medical reasons. London: UCL; 2018. Available from: https://www.hhe.nottingham.sch.uk/wp-content/uploads/2019/10/A-review-of-educational-provision-hospital-and-home-education-services-UCL-2018.pdf; No isolation. Impact of AV1 on children with long-term illness and school absence. Oslo: No Isolation; 2020 [accessed 2020 Oct 11]. Available from: https://www.noisolation.com/global/research/the-impact-of-av1-on-children-with-long-term-illness-and-absence/; Offenbacher R, Fabish L, Baker A, Chou AJ, Loeb DM. Respiratory Failure in a Child With Pulmonary Metastatic Osteosarcoma and COVID-19. J Pediatr Hematol Oncol. 2020 Aug. DOI:10.1097/MPH.0000000000001897; Prather KA, Wang CC, Schooley RT. Reducing transmission of SARS-CoV-2. Science. 2020 Jun;368(6498):1422-4. DOI:10.1126/science.abc6197; Ruble K, Paré-Blagoev J, Cooper S, Jacobson LA. Pediatric oncology provider perspectives and practices: Supporting patients and families in schooling after cancer diagnosis. Pediatr Blood Cancer. 2020 04;67(4):e28166. DOI:10.1002/pbc.28166; Scheler M, Lehrnbecher T, Groll AH, Volland R, Laws HJ, Ammann RA, Agyeman P, Attarbaschi A, Lux M, Simon A. Management of children with fever and neutropenia: results of a survey in 51 pediatric cancer centers in Germany, Austria, and Switzerland. Infection. 2020 Aug;48(4):607-18. DOI:10.1007/s15010-020-01462-z; Simon A, Huebner J, Berner R, Munro APS, Exner M, Huppertz HI, Walger P. Measures to maintain regular operations and prevent outbreaks of SARS-CoV-2 in childcare facilities or schools under pandemic conditions and co-circulation of other respiratory pathogens. GMS Hyg Infect Control. 2020 Sep 15;15:Doc22. DOI:10.3205/dgkh000357; Sjoberg I, Pole JD, Cassidy M, Boilard C, Costantini S, Johnston DL. The Impact of School Visits on Siblings of Children With Cancer. J Pediatr Oncol Nurs. 2018 Mar-Apr;35(2):110-7. DOI:10.1177/1043454217735897; Terenziani M, Massimino M, Biassoni V, Casanova M, Chiaravalli S, Ferrari A, Luksch R, Meazza C, Podda M, Schiavello E, Spreafico F. SARS-CoV-2 disease and children under treatment for cancer. Pediatr Blood Cancer. 2020 Sep;67(9):e28346. DOI:10.1002/pbc.28346; Thompson AL, Christiansen HL, Elam M, Hoag J, Irwin MK, Pao M, Voll M, Noll RB, Kelly KP. Academic Continuity and School Reentry Support as a Standard of Care in Pediatric Oncology. Pediatr Blood Cancer. 2015 Dec;62(Suppl 5):S805-17. DOI:10.1002/pbc.25760; Tramsen L, Salzmann-Manrique E, Bochennek K, Klingebiel T, Reinhardt D, Creutzig U, Sung L, Lehrnbecher T. Lack of Effectiveness of Neutropenic Diet and Social Restrictions as Anti-Infective Measures in Children With Acute Myeloid Leukemia: An Analysis of the AML-BFM 2004 Trial. J Clin Oncol. 2016 Aug;34(23):2776-83. DOI:10.1200/JCO.2016.66.7881; Tsimicalis A, Genest L, Stevens B, Ungar WJ, Barr R. The Impact of a Childhood Cancer Diagnosis on the Children and Siblings' School Attendance, Performance, and Activities: A Qualitative Descriptive Study. J Pediatr Oncol Nurs. 2018 Mar-Apr;35(2):118-31. DOI:10.1177/1043454217741875; Yilmaz MC, Sari HY, Cetingul N, Kantar M, Erermis S, Aksoylar S. Determination of school-related problems in children treated for cancer. J Sch Nurs. 2014 Oct;30(5):376-84. DOI:10.1177/1059840513506942; http://dx.doi.org/10.3205/dgkh000381; http://nbn-resolving.de/urn:nbn:de:0183-dgkh0003812; http://www.egms.de/en/journals/dgkh/2021-16/dgkh000381.shtml

  2. 2
    Academic Journal

    المؤلفون: Simon, A, Fahrendorf, W, Hitschmann, G

    المصدر: GMS Hygiene and Infection Control; VOL: 16; DOC20 /20210531/

    Relation: Ammann RA, Laws HJ, Schrey D, Ehlert K, Moser O, Dilloo D, Bode U, Wawer A, Schrauder A, Cario G, Laengler A, Graf N, Furtwängler R, Simon A. Bloodstream infection in paediatric cancer centres--leukaemia and relapsed malignancies are independent risk factors. Eur J Pediatr. 2015 May;174(5):675-86. DOI:10.1007/s00431-015-2525-5; Prävention von Infektionen, die von Gefäßkathetern ausgehen: Teil 1 - Nichtgetunnelte zentralvenöse Katheter Empfehlung der Kommission für Krankenhaushygiene und Infektionsprävention (KRINKO) beim Robert Koch-Institut. Bundesgesundheitsblatt Gesundheitsforschung Gesundheitsschutz. 2017 Feb;60(2):171-206. DOI:10.1007/s00103-016-2487-4; Broviac JW, Cole JJ, Scribner BH. A silicone rubber atrial catheter for prolonged parenteral alimentation. Surg Gynecol Obstet. 1973;136(4):602-6.; Buchman AL, Spapperi J, Leopold P. A new central venous catheter cap: decreased microbial growth and risk for catheter-related bloodstream infection. J Vasc Access. 2009 Jan-Mar;10(1):11-21. DOI:10.1177/112972980901000103; Cellini M, Bergadano A, Crocoli A, Badino C, Carraro F, Sidro L, Botta D, Pancaldi A, Rossetti F, Pitta F, Cesaro S. Guidelines of the Italian Association of Pediatric Hematology and Oncology for the management of the central venous access devices in pediatric patients with onco-hematological disease. J Vasc Access. 2020 Nov. DOI:10.1177/1129729820969309; Chittick P, Sherertz RJ. Recognition and prevention of nosocomial vascular device and related bloodstream infections in the intensive care unit. Crit Care Med. 2010 Aug;38(8 Suppl):S363-72. DOI:10.1097/CCM.0b013e3181e6cdca; Engelhart S, Exner M, Simon A. In vitro study on the disinfectability of two split-septum needle-free connection devices using different disinfection procedures. GMS Hyg Infect Control. 2015 Dec 9;10:Doc17. DOI:10.3205/dgkh000260; Furtwängler R, Laux C, Graf N, Simon A. Impact of a modified Broviac maintenance care bundle on bloodstream infections in paediatric cancer patients. GMS Hyg Infect Control. 2015 Nov 16;10:Doc15. DOI:10.3205/dgkh000258; Hickman RO, Buckner CD, Clift RA, Sanders JE, Stewart P, Thomas ED. A modified right atrial catheter for access to the venous system in marrow transplant recipients. Surg Gynecol Obstet. 1979 Jun;148(6):871-5.; Holroyd JL, Vasilopoulos T, Rice MJ, Rand KH, Fahy BG. Incidence of central venous catheter hub contamination. J Crit Care. 2017 06;39:162-8. DOI:10.1016/j.jcrc.2017.02.035; Holroyd JL, Paulus DA, Rand KH, Enneking FK, Morey TE, Rice MJ. Universal intravenous access cleaning device fails to sterilize stopcocks. Anesth Analg. 2014 Feb;118(2):333-43. DOI:10.1213/ANE.0000000000000059; Horvath B, Norville R, Lee D, Hyde A, Gregurich M, Hockenberry M. Reducing central venous catheter-related bloodstream infections in children with cancer. Oncol Nurs Forum. 2009 Mar;36(2):232-8. DOI:10.1188/09.ONF.232-238; Maki DG. In vitro studies of a novel antimicrobial luer-activated needleless connector for prevention of catheter-related bloodstream infection. Clin Infect Dis. 2010 Jun;50(12):1580-7. DOI:10.1086/652764; Menyhay SZ, Maki DG. Disinfection of needleless catheter connectors and access ports with alcohol may not prevent microbial entry: the promise of a novel antiseptic-barrier cap. Infect Control Hosp Epidemiol. 2006 Jan;27(1):23-7. DOI:10.1086/500280; Menyhay SZ, Maki DG. Preventing central venous catheter-associated bloodstream infections: development of an antiseptic barrier cap for needleless connectors. Am J Infect Control. 2008 Dec;36(10):S174.e1-5. DOI:10.1016/j.ajic.2008.10.006; Merrill KC, Sumner S, Linford L, Taylor C, Macintosh C. Impact of universal disinfectant cap implementation on central line-associated bloodstream infections. Am J Infect Control. 2014 Dec;42(12):1274-7. DOI:10.1016/j.ajic.2014.09.008; Moureau NL, Flynn J. Disinfection of Needleless Connector Hubs: Clinical Evidence Systematic Review. Nurs Res Pract. 2015;2015:796762. DOI:10.1155/2015/796762; O'Grady NP, Alexander M, Burns LA, Dellinger EP, Garland J, Heard SO, Lipsett PA, Masur H, Mermel LA, Pearson ML, Raad II, Randolph AG, Rupp ME, Saint S; Healthcare Infection Control Practices Advisory Committee. Guidelines for the prevention of intravascular catheter-related infections. Am J Infect Control. 2011 May;39(4 Suppl 1):S1-34. DOI:10.1016/j.ajic.2011.01.003; Ramirez C, Lee A, Welch K. Central Venous Catheter Protective Connector Caps Reduce Intraluminal Catheter-Related Infection. Journal of Vascular Access. 2012;17(4):210-3. DOI:10.1016/j.java.2012.10.002; Simmons S, Bryson C, Porter S. "Scrub the hub": cleaning duration and reduction in bacterial load on central venous catheters. Crit Care Nurs Q. 2011 Jan-Mar;34(1):31-5. DOI:10.1097/CNQ.0b013e3182048073; Simon A, Furtwängler R, Graf N, Laws HJ, Voigt S, Piening B, Geffers C, Agyeman P, Ammann RA. Surveillance of bloodstream infections in pediatric cancer centers - what have we learned and how do we move on? GMS Hyg Infect Control. 2016 May 12;11:Doc11. DOI:10.3205/dgkh000271; Simon A, Furtwängler R, Laws HJ, Greiner J, Lehrnbecher T, Ammann R, Schilling AF, Graf N. Evidenz-basierte Empfehlungen zur Anwendung dauerhaft implantierter, zentralvenöser Zugänge in der pädiatrischen Onkologie. 5. Auflage. Wiesbaden: mhp-Verlag; 2017.; Soothill JS, Bravery K, Ho A, Macqueen S, Collins J, Lock P. A fall in bloodstream infections followed a change to 2% chlorhexidine in 70% isopropanol for catheter connection antisepsis: a pediatric single center before/after study on a hemopoietic stem cell transplant ward. Am J Infect Control. 2009 Oct;37(8):626-30. DOI:10.1016/j.ajic.2009.03.014; Sweet MA, Cumpston A, Briggs F, Craig M, Hamadani M. Impact of alcohol-impregnated port protectors and needleless neutral pressure connectors on central line-associated bloodstream infections and contamination of blood cultures in an inpatient oncology unit. Am J Infect Control. 2012 Dec;40(10):931-4. DOI:10.1016/j.ajic.2012.01.025; Voor In 't Holt AF, Helder OK, Vos MC, Schafthuizen L, Sülz S, van den Hoogen A, Ista E. Antiseptic barrier cap effective in reducing central line-associated bloodstream infections: A systematic review and meta-analysis. Int J Nurs Stud. 2017 Apr;69:34-40. DOI:10.1016/j.ijnurstu.2017.01.007; Wright MO, Tropp J, Schora DM, Dillon-Grant M, Peterson K, Boehm S, Robicsek A, Peterson LR. Continuous passive disinfection of catheter hubs prevents contamination and bloodstream infection. Am J Infect Control. 2013 Jan;41(1):33-8. DOI:10.1016/j.ajic.2012.05.030; http://dx.doi.org/10.3205/dgkh000391; http://nbn-resolving.de/urn:nbn:de:0183-dgkh0003911; http://www.egms.de/en/journals/dgkh/2021-16/dgkh000391.shtml

  3. 3
  4. 4
    Academic Journal

    المؤلفون: Furtwängler, R, Laux, C, Graf, N, Simon, A

    المصدر: GMS Hygiene and Infection Control; VOL: 10; DOC15 /20151116/

    Relation: Adamkiewicz TV, Lorenzana A, Doyle J, Richardson S. Peripheral vs. central blood cultures in patients admitted to a pediatric oncology ward. Pediatr Infect Dis J. 1999 Jun;18(6):556-8. DOI:10.1097/00006454-199906000-00018; Adams D, Karpanen T, Worthington T, Lambert P, Elliott TS. Infection risk associated with a closed luer access device. J Hosp Infect. 2006 Mar;62(3):353-7. DOI:10.1016/j.jhin.2005.09.016; Adler A, Yaniv I, Steinberg R, Solter E, Samra Z, Stein J, Levy I. Infectious complications of implantable ports and Hickman catheters in paediatric haematology-oncology patients. J Hosp Infect. 2006 Mar;62(3):358-65. DOI:10.1016/j.jhin.2005.08.019; Allen RC, Holdsworth MT, Johnson CA, Chavez CM, Heideman RL, Overturf G, Lemon D, Hunt WC, Winter SS. Risk determinants for catheter-associated blood stream infections in children and young adults with cancer. Pediatr Blood Cancer. 2008 Jul;51(1):53-8. DOI:10.1002/pbc.21497; Ammann RA, Laws HJ, Schrey D, Ehlert K, Moser O, Dilloo D, Bode U, Wawer A, Schrauder A, Cario G, Laengler A, Graf N, Furtwängler R, Simon A. Bloodstream infection in paediatric cancer centres - leukaemia and relapsed malignancies are independent risk factors. Eur J Pediatr. 2015 May;174(5):675-86. DOI:10.1007/s00431-015-2525-5; Austin PD, Elia M. A systematic review and meta-analysis of the risk of microbial contamination of aseptically prepared doses in different environments. J Pharm Pharm Sci. 2009;12(2):233-42.; Barrell C, Covington L, Bhatia M, Robison J, Patel S, Jacobson JS, Buet A, Graham PL, Saiman L. Preventive strategies for central line-associated bloodstream infections in pediatric hematopoietic stem cell transplant recipients. Am J Infect Control. 2012 Jun;40(5):434-9. DOI:10.1016/j.ajic.2011.06.002; Berrueco R, Rives S, Català A, Toll T, Gene A, Ruiz A, Badosa R, Claramonte MA, Estella J, Urrea M. Prospective surveillance study of blood stream infections associated with central venous access devices (port-type) in children with acute leukemia: an intervention program. J Pediatr Hematol Oncol. 2013 Jul;35(5):e194-9. DOI:10.1097/MPH.0b013e318290c24f; Bertoglio S, Rezzo R, Merlo FD, Solari N, Palombo D, Vassallo F, Beltramini S, DeMaria A. Pre-filled normal saline syringes to reduce totally implantable venous access device-associated bloodstream infection: a single institution pilot study. J Hosp Infect. 2013 May;84(1):85-8. DOI:10.1016/j.jhin.2013.02.008; Beutel K, Simon A. Diagnostik und Therapie Katheter-assoziierter Infektionen in der pädiatrischen Onkologie [Diagnostics and management of central venous line infections in pediatric cancer patients]. Klin Padiatr. 2005 Nov;217 Suppl 1:S91-100. DOI:10.1055/s-2005-872503; Biwersi C, Hepping N, Bode U, Fleischhack G, von Renesse A, Exner M, Engelhart S, Gieselmann B, Simon A. Bloodstream infections in a German paediatric oncology unit: prolongation of inpatient treatment and additional costs. Int J Hyg Environ Health. 2009 Sep;212(5):541-6. DOI:10.1016/j.ijheh.2009.01.003; Carraro F, Cicalese MP, Cesaro S, De Santis R, Zanazzo G, Tornesello A, Giordano P, Bergadano A, Giacchino M. Guidelines for the use of long-term central venous catheter in children with hemato-oncological disorders. On behalf of supportive therapy working group of Italian Association of Pediatric Hematology and Oncology (AIEOP). Ann Hematol. 2013 Oct;92(10):1405-12. DOI:10.1007/s00277-013-1794-1; Choi SW, Chang L, Hanauer DA, Shaffer-Hartman J, Teitelbaum D, Lewis I, Blackwood A, Akcasu N, Steel J, Christensen J, Niedner MF. Rapid reduction of central line infections in hospitalized pediatric oncology patients through simple quality improvement methods. Pediatr Blood Cancer. 2013 Feb;60(2):262-9. DOI:10.1002/pbc.24187; Dannenberg C, Bierbach U, Rothe A, Beer J, Körholz D. Ethanol-lock technique in the treatment of bloodstream infections in pediatric oncology patients with broviac catheter. J Pediatr Hematol Oncol. 2003 Aug;25(8):616-21. DOI:10.1097/00043426-200308000-00006; Dettenkofer M, Wilson C, Gratwohl A, Schmoor C, Bertz H, Frei R, Heim D, Luft D, Schulz S, Widmer AF. Skin disinfection with octenidine dihydrochloride for central venous catheter site care: a double-blind, randomized, controlled trial. Clin Microbiol Infect. 2010 Jun;16(6):600-6. DOI:10.1111/j.1469-0691.2009.02917.x; Dettenkofer M, Jonas D, Wiechmann C, Rossner R, Frank U, Zentner J, Daschner FD. Effect of skin disinfection with octenidine dihydrochloride on insertion site colonization of intravascular catheters. Infection. 2002 Oct;30(5):282-5. DOI:10.1007/s15010-002-2182-2; Dümichen MJ, Seeger K, Lode HN, Kühl JS, Ebell W, Degenhardt P, Singer M, Geffers C, Querfeld U. Randomized controlled trial of taurolidine citrate versus heparin as catheter lock solution in paediatric patients with haematological malignancies. J Hosp Infect. 2012 Apr;80(4):304-9. DOI:10.1016/j.jhin.2012.01.003; Franklin JA, Gaur AH, Shenep JL, Hu XJ, Flynn PM. In situ diagnosis of central venous catheter-related bloodstream infection without peripheral blood culture. Pediatr Infect Dis J. 2004 Jul;23(7):614-8. DOI:10.1097/01.inf.0000128779.34716.ee; Fratino G, Molinari AC, Parodi S, Longo S, Saracco P, Castagnola E, Haupt R. Central venous catheter-related complications in children with oncological/hematological diseases: an observational study of 418 devices. Ann Oncol. 2005 Apr;16(4):648-54. DOI:10.1093/annonc/mdi111; Gapany C, Tercier S, Diezi M, Clement C, Lemay K, Joseph JM. Frequent accesses to totally implanted vascular ports in pediatric oncology patients are associated with higher infection rates. J Vasc Access. 2011 Jul-Sep;12(3):207-10.; Gastmeier P, Sohr D, Geffers C, Nassauer A, Daschner F, Rüden H. Are nosocomial infection rates in intensive care units useful benchmark parameters? Infection. 2000 Nov-Dec;28(6):346-50. DOI:10.1007/s150100070003; Gaur AH, Flynn PM, Giannini MA, Shenep JL, Hayden RT. Difference in time to detection: a simple method to differentiate catheter-related from non-catheter-related bloodstream infection in immunocompromised pediatric patients. Clin Infect Dis. 2003 Aug;37(4):469-75. DOI:10.1086/376904; Goldstein B, Giroir B, Randolph A; International Consensus Conference on Pediatric Sepsis. International pediatric sepsis consensus conference: definitions for sepsis and organ dysfunction in pediatrics. Pediatr Crit Care Med. 2005 Jan;6(1):2-8. DOI:10.1097/01.PCC.0000149131.72248.E6; Handrup MM, Møller JK, Frydenberg M, Schrøder H. Placing of tunneled central venous catheters prior to induction chemotherapy in children with acute lymphoblastic leukemia. Pediatr Blood Cancer. 2010 Aug;55(2):309-13. DOI:10.1002/pbc.22530; Handrup MM, Møller JK, Rutkjaer C, Schrøder H. Importance of blood cultures from peripheral veins in pediatric patients with cancer and a central venous line. Pediatr Blood Cancer. 2015 Jan;62(1):99-102. DOI:10.1002/pbc.25171; Horvath B, Norville R, Lee D, Hyde A, Gregurich M, Hockenberry M. Reducing central venous catheter-related bloodstream infections in children with cancer. Oncol Nurs Forum. 2009 Mar;36(2):232-8. DOI:10.1188/09.ONF.232-238; Hübner NO, Siebert J, Kramer A. Octenidine dihydrochloride, a modern antiseptic for skin, mucous membranes and wounds. Skin Pharmacol Physiol. 2010;23(5):244-58. DOI:10.1159/000314699; Isenberg H. Clinical microbiology procedures handbook. 2nd ed. Washington, DC: ASM Press; 2004.; Kelly M, Conway M, Wirth K, Potter-Bynoe G, Billett AL, Sandora TJ. Moving CLABSI prevention beyond the intensive care unit: risk factors in pediatric oncology patients. Infect Control Hosp Epidemiol. 2011 Nov;32(11):1079-85. DOI:10.1086/662376; Koburger T, Hübner NO, Braun M, Siebert J, Kramer A. Standardized comparison of antiseptic efficacy of triclosan, PVP-iodine, octenidine dihydrochloride, polyhexanide and chlorhexidine digluconate. J Antimicrob Chemother. 2010 Aug;65(8):1712-9. DOI:10.1093/jac/dkq212; Krenn T, Fleischhack G, Moser O, Dilloo D, Bode U, Gräber S, Furtwängler R, Graf N, Simon A. Bloodstream infections in paediatric cancer patients. Prospective comparative study in 2 university hospitals. Klin Padiatr. 2011 Nov;223(6):335-40. DOI:10.1055/s-0031-1287838; Laws HJ, Ammann RA, Lehrnbecher T. Fieber unklarer Genese (FUO) bei Kindern und Jugendlichen mit onkologischen Erkrankungen [Diagnostic procedures and management of Fever in pediatric cancer patients]. Klin Padiatr. 2005 Nov;217 Suppl 1:S9-16. 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    Electronic Resource

    Additional Titles: Präklinische Bewertung von passiven Desinfektionskappen mit einem Langzeitkatheter zur Prävention von katheterbedingten Blutstrominfektionen bei pädiatrischen Krebspatienten

    المؤلفون: Simon, A, Fahrendorf, W, Hitschmann, G

    المصدر: GMS Hygiene and Infection Control; VOL: 16; DOC20 /20210531/

    URL: http://nbn-resolving.de/urn:nbn:de:0183-dgkh0003911
    http://www.egms.de/en/journals/dgkh/2021-16/dgkh000391.shtml
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    Prävention von Infektionen, die von Gefäßkathetern ausgehen: Teil 1 - Nichtgetunnelte zentralvenöse Katheter Empfehlung der Kommission für Krankenhaushygiene und Infektionsprävention (KRINKO) beim Robert Koch-Institut. Bundesgesundheitsblatt Gesundheitsforschung Gesundheitsschutz. 2017 Feb;60(2):171-206. DOI: 10.1007/s00103-016-2487-4
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    Simon A, Furtwängler R, Graf N, Laws HJ, Voigt S, Piening B, Geffers C, Agyeman P, Ammann RA. Surveillance of bloodstream infections in pediatric cancer centers - what have we learned and how do we move on? GMS Hyg Infect Control. 2016 May 12;11:Doc11. DOI: 10.3205/dgkh000271
    Simon A, Furtwängler R, Laws HJ, Greiner J, Lehrnbecher T, Ammann R, Schilling AF, Graf N. Evidenz-basierte Empfehlungen zur Anwendung dauerhaft implantierter, zentralvenöser Zugänge in der pädiatrischen Onkologie. 5. Auflage. Wiesbaden: mhp-Verlag; 2017.
    Soothill JS, Bravery K, Ho A, Macqueen S, Collins J, Lock P. A fall in bloodstream infections followed a change to 2% chlorhexidine in 70% isopropanol for catheter connection antisepsis: a pediatric single center before/after study on a hemopoietic stem cell transplant ward. Am J Infect Control. 2009 Oct;37(8):626-30. DOI: 10.1016/j.ajic.2009.03.014
    Sweet MA, Cumpston A, Briggs F, Craig M, Hamadani M. Impact of alcohol-impregnated port protectors and needleless neutral pressure connectors on central line-associated bloodstream infections and contamination of blood cultures in an inpatient oncology unit. Am J Infect Control. 2012 Dec;40(10):931-4. DOI: 10.1016/j.ajic.2012.01.025
    Voor In 't Holt AF, Helder OK, Vos MC, Schafthuizen L, Sülz S, van den Hoogen A, Ista E. Antiseptic barrier cap effective in reducing central line-associated bloodstream infections: A systematic review and meta-analysis. Int J Nurs Stud. 2017 Apr;69:34-40. DOI: 10.1016/j.ijnurstu.2017.01.007
    Wright MO, Tropp J, Schora DM, Dillon-Grant M, Peterson K, Boehm S, Robicsek A, Peterson LR. Continuous passive disinfection of catheter hubs prevents contamination and bloodstream infection. Am J Infect Control. 2013 Jan;41(1):33-8. DOI: 10.1016/j.ajic.2012.05.030

  7. 7
    Electronic Resource

    Additional Titles: Schul- und Kindergartenbesuch und Heimunterricht bei Kindern mit Krebserkrankungen vor und während der SARS-CoV-2 Pandemie: Survey der Deutschen Gesellschaft für Pädiatrische Onkologie und Hämatologie

    المصدر: GMS Hygiene and Infection Control; VOL: 16; DOC10 /20210305/

    URL: http://nbn-resolving.de/urn:nbn:de:0183-dgkh0003812
    http://www.egms.de/en/journals/dgkh/2021-16/dgkh000381.shtml
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  8. 8
    Electronic Resource

    Additional Titles: Einfluss eines modifizierten Präventionsbündels auf Broviac-assoziierte Blutstrominfektionen bei kinderonkologischen Patienten

    المؤلفون: Furtwängler, R, Laux, C, Graf, N, Simon, A

    المصدر: GMS Hygiene and Infection Control; VOL: 10; DOC15 /20151116/

    URL: http://nbn-resolving.de/urn:nbn:de:0183-dgkh0002581
    http://www.egms.de/en/journals/dgkh/2015-10/dgkh000258.shtml
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