Objects
O'Connor, Niall, Sugrue, Michael, Shelat, Vishal G., Tebala, Giovanni D., De Simone, Belinda, Eid, Hani O., Chirica, Mircea, Fraga, Gustavo P., Di Saverio, Salomone, Picetti, Edoardo, Bonavina, Luigi, Ceresoli, Marco, Melly, Conor, Fette, Andreas, Sakakushe, B, Pikoulis, E, Coimbra, R, Ten Broek, R, Hecker, A, Leppaniemi, A, Litvin, A, Stahel, P, Tan, E, McGeehan, Gearoid, Koike, K, Catena, F, Pisano, M, Coccolini, F, Johnston, A, Bucholc, Magda, Crawford, Aileen, O'Connor, Paul, Abu-Zidan, Fikri, Wani, Imtiaz, Balogh, Zsolt J.. BioMed Central (BMC); 2022. It’s time for a minimum synoptic operation template in patients undergoing laparoscopic cholecystectomy: a systematic review.
Patsopoulos, Nikolaos A., de Bakker, Paul I. W., Kappos, Ludwig, Miller, David, Montalbán, Javier, Polman, Chris H., Freedman, Mark S., Hartung, Hans-Peter, Arnason, Barry G. W., Comi, Giancarlo, Cook, Stuart, Filippi, Massimo, Esposito, Federica, Goodin, Douglas S., Jeffery, Douglas, O'Connor, Paul, Ebers, George C., Langdon, Dawn, Reder, Anthony T., Traboulsee, Anthony, Zipp, Frauke, Schimrigk, Sebastian, Hillert, Jan, Reischl, Joachim, Bahlo, Melanie, Booth, David R., Broadley, Simon, Brown, Matthew A., Browning, Brian L., Browning, Sharon R., Butzkueven, Helmut, Carroll, William M., Chapman, Caron, Foote, Simon J., Lehr, Stephan, Griffiths, Lyn, Kermode, Allan G., Kilpatrick, Trevor J., Lechner-Scott, Jeannette, Marriott, Mark, Mason, Deborah, Moscato, Pablo, Heard, Robert N., Pender, Michael P., Perreau, Victoria M., Bauer, David, Perera, Devindri, Rubio, Justin P., Scott, Rodney J., Slee, Mark, Stankovich, Jim, Stewart, Graeme J., Taylor, Bruce V., Tubridy, Niall, Willoughby, Ernest, Wiley, James, Heubach, Jürgen, Matthews, Paul, Boneschi, Filippo M., Compston, Alastair, Haines, Jonathan, Hauser, Stephen L., McCauley, Jacob, Ivinson, Adrian, Oksenberg, Jorge R., Pericak-Vance, Margaret, Sawcer, Stephen J., Sandbrink, Rupert, De Jager, Philip L., Hafler, David A., Pohl, Christoph, Edan, Gilles. John Wiley & Sons; 2011. Genome-wide meta-analysis identifies novel multiple sclerosis susceptibility loci.