Postoperative Orthopedic Surgical Site Infection Antibiogram of dr. Soebandi Hospital, Jember in 2019
Abstract
Keywords
Full Text:
PDFReferences
Akualing, J.S. and Rejeki, I.P.S. (2018). Antibiogram. Indonesian Journal Of Clinical Pathology And Medical Laboratory, 23(1): pp.90.
Agustina, D. Nadyatara, K.,Mufida, D.C.,Elfiah, U.,Shodikin, M.A.,and Suswati, E. (2019). Faktor Virulensi Outer Membrane Protein 20 kDa Klebsiella pneumoniae sebagai Protein Hemaglutinin dan Adhesin. eJournal Kedokteran Indonesia (eJKI), 7(3): pp.200–204.
Al-Mulhim, F.A.,Baragbah, M.A.,Sadat-Ali, M.,Alomran, A.S.,and Azam, M.Q. (2014). Prevalence of Surgical Site Infection in Orthopedic Surgery: A 5-year Analysis. International Surgery, 99(3): pp.264–268.
Amaradeep,Shiva Prakah,and Manjappa (2017). Surgical site infections in orthopedic implant surgery and its risk factors: A prospective study in teaching hospital. International Journal of Orthopaedics Sciences, 3(3c): pp.169–172.
Banerjee, A.,Ghosh, M.,Karak, K.,Basu, S.,Mukhopadhyay, B.B.,Mallik, S.,and Saha, B. (2016). Lower respiratory tract infection in two tertiary hospitals of Kolkata and carbapenem resistance. International Journal of Infectious Diseases, 45: pp.114.
Campoccia, D.,Montanaro, L.,Visai, L.,Corazzari, T.,Poggio, C.,Pegreffi, F.,Maso, A.,Pirini, V.,Ravaioli, S.,Cangini, I.,Speziale, P.,and Arciola, C.R. (2010). Characterization of 26 Staphylococcus warneri isolates from orthopedic infections. The International Journal of Artificial Organs, 33(9): pp.575–581.
Estiningsih, D.,Puspitasari, I.,and Nuryastuti, T. (2016). Identifikasi Infeksi Multidrug-Resistant Organisms (MDRO) Pada Pasien Yang Dirawat Di Bangsal Neonatal Intensive Care Unit (Nicu) Rumah Sakit. , 6: pp.6.
Iredell, J.,Brown, J.,and Tagg, K. (2016). Antibiotic resistance in Enterobacteriaceae: mechanisms and clinical implications. BMJ: pp.6420.
Kostakioti, M.,Hadjifrangiskou, M.,and Hultgren, S.J. (2013). Bacterial Biofilms: Development, Dispersal, and Therapeutic Strategies in the Dawn of the Postantibiotic Era. Cold Spring Harbor Perspectives in Medicine, 3(4): pp.010306–010306.
Li, G.,Guo, F.,Ou, Y.,Dong, G.,and Zhou, W. (2013). Epidemiology and outcomes of surgical site infections following orthopedic surgery. American Journal of Infection Control, 41(12): pp.1268–1271.
Negi, V. (2015). Bacteriological Profile of Surgical Site Infections and Their Antibiogram: A Study From Resource Constrained Rural Setting of Uttarakhand State, India. Journal Of Clinical And Diagnostic Research.
Pal, S.,Sayana, A.,Joshi, A.,and Juyal, D. (2019). Staphylococcus aureus: A predominant cause of surgical site infections in a rural healthcare setup of Uttarakhand. Journal of Family Medicine and Primary Care, 8(11): pp.3600.
Roy, S.,Elgharably, H.,Sinha, M.,Ganesh, K.,Chaney, S.,Mann, E.,Miller, C.,Khanna, S.,Bergdall, V.K.,Powell, H.M.,Cook, C.H.,Gordillo, G.M.,Wozniak, D.J.,and Sen, C.K. (2014). Mixed-species biofilm compromises wound healing by disrupting epidermal barrier function: Preclinical burn wound biofilm infection. The Journal of Pathology, 233(4): pp.331–343.
Syahputra, R.R.,Agustina, D.,and Wahyudi, S.S. (2018). Pola Kepekaan Bakteri terhadap Antibiotik pada Pasien Infeksi Saluran Kemih di RSD DR. Soebandi Jember. Journal of Agromedicine and Medical Sciences, 4(3): pp.171–177.
Takizawa, T.,Tsutsumimoto, T.,Yui, M.,and Misawa, H. (2017). Surgical Site Infections Caused by Methicillin-resistant Staphylococcus epidermidis After Spinal Instrumentation Surgery: SPINE, 42(7): pp.525–530.
Tomaszewska-Kowalska, M.,Kołomecki, K.,and Wieloch-Torzecka, M. (2016). Prevalence and Characteristics of Surgical Site Infections Caused by Gram-negative Rod-shaped Bacteria from the Family Enterobacteriacae and Gram-positive Cocci from the Genus Staphylococcus in Patients who Underwent Surgical Procedures on Selected Surgical Wards. Polish Journal of Surgery, 88(5). 10.15.
Refbacks
- There are currently no refbacks.