Lyssens, Aurélie ; Université de Liège - ULiège > Fundamental and Applied Research for Animals and Health (FARAH) > FARAH: Médecine vétérinaire comparée
Language :
Dutch
Title :
Development of surgical site infections despite perioperative antimicrobial therapy in two dogs
Aiken, M.J., Hughes, T.K., Abercromby, R.H., Holmes, M.A., Anderson, A.A. (2015). Prospective, randomized comparison of the effect of two antimicrobial regimes on surgical site infection rate in dogs undergoing orthopedic implant surgery. Veterinary Surgery 44, 661-667.
Barbieri, R.L. (2018). Tactics for reducing the rate of surgical site infection following cesarean delivery. OBG Management 30 (4), 7-10.
Barie, P.S. (2002). Surgical site infections: Epidemiology and prevention. Surgical Infections 3, S9-S21.
Boothe, D.M., Boothe, H.W. (2015). Antimicrobial consi-derations in the perioperative patient. Veterinary Clinics of North America: Small Animal Practice 45, 585-608.
Bratzler, D.W., Houck, P.M. (2005). Antimicrobial prophylaxis for surgery: An advisory statement from the National Surgical Infection Prevention Project. The American Journal of Surgery 189, 395-404.
Bratzler, D.W., Dellinger, E.P., Olsen, K.M., Perl, T.M., Auwaerter, P.G., Bolon, M.K., Fish, D.M., Napolitano, L.M., Sawyer, R.G., Slain, D., Steinberg, J.P., Weinstein, R.A. (2013). Clinical practice guidelines for antimicrobial prophylaxis in surgery. Surgical Infections 14 (1), 73-156.
Burke, J.P. (2001). Maximizing appropriate antibiotic prophylaxis for surgical patients: An update from LDS Hospital, Salt Lake City. Clinical Infectious Diseases 33 (2), S78-S83.
Dellinger, E.P., Gross, P.A., Barrett, T.L., Krause, P.J., Martone, W.J., McGowan, J.E., Sweet, R.L., Wenzel, R.P. (1994). Quality standard for antimicrobial prophylaxis in surgical procedures. Clinical Infectious Diseases 18, 422-427.
Eugster, S., Schawalder, P., Gaschen, F., Boerlin, P. (2004). A prospective study of postoperative surgical site infections in dogs and cats. Veterinary Surgery 33, 542-550.
Gonzalez, O.J., Renberg, W.C., Roush, J.K., KuKanich, B., Warner, M. (2017). Pharmacokinetics of cefazolin for prophylactic administration to dogs. American Journal of Veterinary Research 78, 695-701.
Hayes, G., Singh, A., Gibson, T., Moens, N., Oblak, M., Ogilvie, A., Reynolds, D. (2017). Influence of orthopedic reinforced gloves versus double standard gloves on contamination events during small animal orthopedic surgery. Veterinary Surgery 46, 981-985.
Hooper, L.V., (2004). Bacterial contributions to mammalian gut development. Trends in microbiology 12, 129-134.
Howe, L.M., Boothe, H.W. (2006). Antimicrobial use in the surgical patient. Veterinary Clinics of North America: Small Animal Practice 36, 1049-1060.
Kurz, A., Sessler, D., Lenhardt, R. (1996). Perioperative normothermia to reduce the incidence of surgical wound infection and shorten hospitalization. The New England Journal of Medicine 334, 1209-1215.
Magee, C., Rodeheaver, G.T., Golden, G.T., Fox, J., Edgerton, M.T., Edlich, R.F. (1976). Potentiation of wound infection by surgical drains. The American Journal of Surgery 131, 547-549.
Mishriki, S.F., Law, D.J.W., Jeffery, P.J. (1990). Factors affecting the incidence of postoperative wound infection. Journal of Hospital Infection 16, 223-230.
Nelson, L.L. (2011). Surgical site infections in small animal surgery. Veterinary Clinics of North America: Small Animal Practice 41, 1041-1056.
Nicoll, C., Singh, A., Weese, J.S. (2014). Economic impact of tibial plateau leveling osteotomy surgical site infections in dogs. Veterinary Surgery 43, 899-902.
Ohge, H., Takesue, Y., Yokoyama, T., Murakami, Y., Hiyama, E., Yokoyama, Y., Kanehiro, T., Itaha, H., Matsuura, Y. (1999). An additional dose of cefazolin for intraoperative prophylaxis. The Japanese Journal of Surgery 29, 1233-1236.
Polk, H.C., Christmas, A.B. (2000). Prophylactic antibio-tics in surgery and surgical wound infections. The American Surgeon 66, 105-111.
Pratesi, A., Moores, A.P., Downes, C., Grierson, J., Maddox, T.W. (2015). Efficacy of postoperative antimicrobial use for clean orthopedic implant surgery in dogs: A prospective randomized study in 100 consecutive cases. Veterinary Surgery 44, 653-660.
Prospero, E., Barbadoro, P., Marigliano, A., Martini, E., D'errico, M.M. (2011). Perioperative antibiotic prophylaxis: Improved compliance and impact on infection rates. Epidemiology and Infection 139, 1326-1331.
Remedies, A., (1999). Complications of wound healing. In: Fowler, D., Williams, J.M. (editors). Manual of Canine and Feline Wound Management and Reconstruction. First edition, BSAVA, Cheltenham, United Kingdom, pp. 137.
Rosenberg, A.D., Wambold, D., Kraemer, L., Begley- Keyes, M., Zuckerman, S.L., Singh, N., Cohen, M.M., Bennett, M.V. (2008). Ensuring appropriate timing of anti-microbial prophylaxis. The Journal of Bone and Joint Surgery 90, 226-232.
Salkind, A.R., Rao, K.C. (2011). Antibiotic prophylaxis to prevent surgical site infections. American Family Physician 83, 587-590.
Stull, J.W., Weese, J.S. (2015). Hospital-associated infections in small animal practice. Veterinary Clinics of North America: Small Animal Practice 45, 217-233.
Tourmousoglou, C.E., Yiannakopoulou, E.C., Kalapothaki, V., Bramis, J., Papadopoulos, J.S. (2008). Adherence to guidelines for antibiotic prophylaxis in general surgery: A critical appraisal. Journal of Antimicrobial Chemotherapy 61, 214-218.
Turk, R., Singh, A., Weese, J.S. (2015). Prospective surgical site infection surveillance. Veterinary Surgery 44, 2-8.
Vasseur, P.B., Levy, J., Dowd, E., Eliot, J. (1988). Surgical wound infection rates in dogs and cats. Veterinary Surgery 17, 60-64.
Verwilghen, D., Singh, A. (2015). Fighting surgical site infections in small animals: Are we getting anywhere? Veterinary Clinics of North America: Small Animal Practice 45, 243-276.
Vince, K.J., Lascelles, B.D.X., Mathews, K.G., Altier, C., Roe, S.C. (2008). Evaluation of wraps covering the distal aspect of pelvic limbs for prevention of bacterial strike-through in an ex vivo canine model. Veterinary Surgery 37, 406-411.
Waddell, T.K., Rotstein, O.D. (1994). Antimicrobial prophylaxis in surgery. Canadian Medical Association Journal 151, 925-931.
Walker, M., Singh, A., Nazarali, A., Gibson, T.W.G., Rousseau, J., Weese, J.S. (2016). Evaluation of the impact of methicillin-resistant Staphylococcus pseudintermedius biofilm formation on antimicrobial susceptibility. Veterinary Surgery 45, 968-971.
Weber, W.P., Marti, W.R., Zwahlen, M., Misteli, H., Rosenthal, R., Reck, S., Fueglistaler, P., Bolli, M., Trampuz, A., Oertli, D. Widmer, A.F. (2008). The timing of surgical antimicrobial prophylaxis. Annals of Surgery 247, 918- 926.
Weed, H.G. (2003). Antimicrobial prophylaxis in the surgical patient. The Medical Clinics of North America 87, 59-75.
Willard, M.D., Schulz, K.S. (2012). Surgical infections and antibiotic selection. In: Fossum, T.W. (editor). Small Animal Surgery. Fourth edition, Elsevier, St. Louis, MO, USA, pp. 84-94.
Wong-Beringer, A., Corelli, R.L., Schrock, T.R., Guglielmo, J. (1995). Influence of timing of antibiotic admini-stration on tissue concentrations during surgery. The American Journal of Surgery 169, 379-381.
Yap, F.W., Calvo, I., Smith, K.D., Parkin, T. (2015). Perioperative risk factors for surgical site infection in tibial tuberosity advancement: 224 stifles. Veterinary and Comparative Orthopaedics and Traumatology 3, 199-206.
Zanetti, G., Giardina, R., Platt, R. (2001). Intraoperative re-dosing of cefazolin and risk for surgical site infection in cardiac surgery. Emerging Infectious Diseases 7, 828-831.
Zelenitsky, S.A., Ariano, R.E., Harding, G.K.M., Silvermann, R.E. (2002). Antibiotic pharmacodynamics in surgical prophylaxis: An association between intraoperative antibiotic concentrations and efficacy. Antimicrobial Agents and Chemotherapy 46, 3026-3030.