Now showing items 1-5 of 5

  • The distribution of quick phase interval durations in human optokinetic nystagmus. 

    Waddington, J; Harris, CM (Germany, 2013-01-01)
    There is an interesting dichotomy between models that predict the quick phase interval durations (QPIDs) of human optokinetic nystagmus (OKN). Accumulator models describe a stochastic signal in a neural network that ...
  • Genomic Dissection of Bipolar Disorder and Schizophrenia, Including 28 Subphenotypes 

    Ruderfer, DM; Ripke, S; McQuillin, A; Boocock, J; Stahl, EA; Pavlides, JMW; Mullins, N; Charney, AW; Ori, APS; Loohuis, LMO; Domenici, E; Di Florio, A; Papiol, S; Kalman, JL; Trubetskoy, V; Adolfsson, R; Agartz, I; Agerbo, E; Akil, H; Albani, D; Albus, M; Alda, M; Alexander, M; Alliey-Rodriguez, N; Als, TD; Amin, F; Anjorin, A; Arranz, MJ; Awasthi, S; Bacanu, SA; Badner, JA; Baekvad-Hansen, M; Bakker, S; Band, G; Barchas, JD; Barroso, I; Bass, N; Bauer, M; Baune, BT; Begemann, M; Bellenguez, C; Belliveau, RA; Bellivier, F; Bender, S; Bene, J; Bergen, SE; Berrettini, WH; Bevilacqua, E; Biernacka, JM; Bigdeli, TB; Black, DW; Blackburn, H; Blackwell, JM; Blackwood, DHR; Pedersen, CB; Boehnke, M; Boks, M; Borglum, AD; Bramon, E; Breen, G; Brown, MA; Bruggeman, R; Buccola, NG; Buckner, RL; Budde, M; Bulik-Sullivan, B; Bumpstead, SJ; Bunney, W; Burmeister, M; Buxbaum, JD; Bybjerg-Grauholm, J; Byerley, W; Cahn, W; Cai, G; Cairns, MJ; Campion, D; Cantor, RM; Carr, VJ; Carrera, N; Casas, JP; Casas, M; Catts, SV; Cervantes, P; Chambert, KD; Chan, RCK; Chen, EYH; Chen, RYL; Cheng, W; Cheung, EFC; Chong, SA; Clarke, T-K; Cloninger, CR; Cohen, D; Cohen, N; Coleman, JRI; Collier, DA; Cormican, P; Coryell, W; Craddock, N; Craig, DW; Crespo-Facorro, B; Crowley, JJ; Cruceanu, C; Curtis, D; Czerski, PM; Dale, AM; Daly, MJ; Dannlowski, U; Darvasi, A; Davidson, M; Davis, KL; de Leeuw, CA; Degenhardt, F; Del Favero, J; DeLisi, LE; Deloukas, P; Demontis, D; DePaulo, JR; di Forti, M; Dikeos, D; Dinan, T; Djurovic, S; Dobbyn, AL; Donnelly, P; Donohoe, G; Drapeau, E; Dronov, S; Duan, J; Dudbridge, F; Duncanson, A; Edenberg, H; Edkins, S; Ehrenreich, H; Eichhammer, P; Elvsashagen, T; Eriksson, J; Escott-Price, V; Esko, T; Essioux, L; Etain, B; Fan, CC; Farh, K-H; Farrell, MS; Flickinger, M; Foroud, TM; Forty, L; Frank, J; Franke, L; Fraser, C; Freedman, R; Freeman, C; Freimer, NB; Friedman, JI; Fromer, M; Frye, MA; Fullerton, JM; Gade, K; Garnham, J; Gaspar, HA; Gejman, PV; Genovese, G; Georgieva, L; Giambartolomei, C; Giannoulatou, E; Giegling, I; Gill, M; Gillman, M; Pedersen, MG; Giusti-Rodriguez, P; Godard, S; Goes, F; Goldstein, JI; Gopal, S; Gordon, SD; Gordon-Smith, K; Gratten, J; Gray, E; Green, EK; Green, MJ; Greenwood, TA; Grigoroiu-Serbanescu, M; Grove, J; Guan, W; Gurling, H; Parra, JG; Gwilliam, R; de Haan, L; Hall, J; Hall, M-H; Hammer, C; Hammond, N; Hamshere, ML; Hansen, M; Hansen, T; Haroutunian, V; Hartmann, AM; Hauser, J; Hautzinger, M; Heilbronner, U; Hellenthal, G; Henskens, FA; Herms, S; Hipolito, M; Hirschhorn, JN; Hoffmann, P; Hollegaard, MV; Hougaard, DM; Huang, H; Huckins, L; Hultman, CM; Hunt, SE; Ikeda, M; Iwata, N; Iyegbe, C; Jablensky, AV; Jamain, S; Jankowski, J; Jayakumar, A; Joa, I; Jones, I; Jones, LA; Jonsson, EG; Julia, A; Jureus, A; Kahler, AK; Kahn, RS; Kalaydjieva, L; Kandaswamy, R; Karachanak-Yankova, S; Karjalainen, J; Karlsson, R; Kavanagh, D; Keller, MC; Kelly, BJ; Kelsoe, J; Kennedy, JL; Khrunin, A; Kim, Y; Kirov, G; Kittel-Schneider, S; Klovins, J; Knight, J; Knott, SV; Knowles, JA; Kogevinas, M; Konte, B; Kravariti, E; Kucinskas, V; Kucinskiene, ZA; Kupka, R; Kuzelova-Ptackova, H; Landen, M; Langford, C; Laurent, C; Lawrence, J; Lawrie, S; Lawson, WB; Leber, M; Leboyer, M; Lee, PH; Keong, JLC; Legge, SE; Lencz, T; Lerer, B; Levinson, DF; Levy, SE; Lewis, CM; Li, JZ; Li, M; Li, QS; Li, T; Liang, K-Y; Liddle, J; Lieberman, J; Limborska, S; Lin, K; Linszen, DH; Lissowska, J; Liu, C; Liu, J; Lonnqvist, J; Loughland, CM; Lubinski, J; Lucae, S; Macek, M; MacIntyre, DJ; Magnusson, PKE; Maher, BS; Mahon, PB; Maier, W; Malhotra, AK; Mallet, J; Malt, UF; Markus, HS; Marsal, S; Martin, NG; Mata, I; Mathew, CG; Mattheisen, M; Mattingsdal, M; Mayoral, F; McCann, OT; McCarley, RW; McCarroll, SA; McCarthy, MI; McDonald, C; McElroy, SL; McGuffin, P; McInnis, MG; McIntosh, AM; McKay, JD; McMahon, FJ; Medeiros, H; Medland, SE; Meier, S; Meijer, CJ; Melegh, B; Melle, I; Meng, F; Mesholam-Gately, RI; Metspalu, A; Michie, PT; Milani, L; Milanova, V; Mitchell, PB; Mokrab, Y; Montgomery, GW; Moran, JL; Morken, G; Morris, DW; Mors, O; Mortensen, PB; Mowry, BJ; Mühleisen, TW; Müller-Myhsok, B; Murphy, KC; Murray, RM; Myers, RM; Myin-Germeys, I; Neale, BM; Nelis, M; Nenadic, I; Nertney, DA; Nestadt, G; Nicodemus, KK; Nievergelt, CM; Nikitina-Zake, L; Nimgaonkar, V; Nisenbaum, L; Nordentoft, M; Nordin, A; Nöthen, MM; Nwulia, EA; O’Callaghan, E; O’Donovan, C; O’Dushlaine, C; O’Neill, FA; Oedegaard, KJ; Oh, S-Y; Olincy, A; Olsen, L; Oruc, L; Van Os, J; Owen, MJ; Paciga, SA; Palmer, CNA; Palotie, A; Pantelis, C; Papadimitriou, GN; Parkhomenko, E; Pato, C; Pato, MT; Paunio, T; Pearson, R; Perkins, DO; Perlis, RH; Perry, A; Pers, TH; Petryshen, TL; Pfennig, A; Picchioni, M; Pietilainen, O; Pimm, J; Pirinen, M; Plomin, R; Pocklington, AJ; Posthuma, D; Potash, JB; Potter, SC; Powell, J; Price, A; Pulver, AE; Purcell, SM; Quested, D; Ramos-Quiroga, JA; Rasmussen, HB; Rautanen, A; Ravindrarajah, R; Regeer, EJ; Reichenberg, A; Reif, A; Reimers, MA; Ribases, M; Rice, JP; Richards, AL; Ricketts, M; Riley, BP; Rivas, F; Rivera, M; Roffman, JL; Rouleau, GA; Roussos, P; Rujescu, D; Salomaa, V; Sanchez-Mora, C; Sanders, AR; Sawcer, SJ; Schall, U; Schatzberg, AF; Scheftner, WA; Schofield, PR; Schork, NJ; Schwab, SG; Scolnick, EM; Scott, LJ; Scott, RJ; Seidman, LJ; Serretti, A; Sham, PC; Weickert, CS; Shehktman, T; Shi, J; Shilling, PD; Sigurdsson, E; Silverman, JM; Sim, K; Slaney, C; Slominsky, P; Smeland, OB; Smoller, JW; So, H-C; Sobell, JL; Soderman, E; Hansen, CS; Spencer, CCA; Spijker, AT; St Clair, D; Stefansson, H; Stefansson, K; Steinberg, S; Stogmann, E; Stordal, E; Strange, A; Straub, RE; Strauss, JS; Streit, F; Strengman, E; Strohmaier, J; Stroup, TS; Su, Z; Subramaniam, M; Suvisaari, J; Svrakic, DM; Szatkiewicz, JP; Szelinger, S; Tashakkori-Ghanbaria, A; Thirumalai, S; Thompson, RC; Thorgeirsson, TE; Toncheva, D; Tooney, PA; Tosato, S; Toulopoulou, T; Trembath, RC; Treutlein, J; Trubetskoy, V; Turecki, G; Vaaler, AE; Vedder, H; Vieta, E; Vincent, J; Visscher, PM; Viswanathan, AC; Vukcevic, D; Waddington, J; Waller, M; Walsh, D; Walshe, M; Walters, JTR; Wang, D; Wang, Q; Wang, W; Wang, Y; Watson, SJ; Webb, BT; Weickert, TW; Weinberger, DR; Weisbrod, M; Weiser, M; Werge, T; Weston, P; Whittaker, P; Widaa, S; Wiersma, D; Wildenauer, DB; Williams, NM; Williams, S; Witt, SH; Wolen, AR; Wong, EHM; Wood, NW; Wormley, BK; Wu, JQ; Xi, S; Xu, W; Young, AH; Zai, CC; Zandi, P; Zhang, P; Zheng, X; Zimprich, F; Zollner, S; Corvin, A; Fanous, AH; Cichon, S; Rietschel, M; Gershon, ES; Schulze, TG; Cuellar-Barboza, AB; Forstner, AJ; Holmans, PA; Nurnberger, JI; Andreassen, OA; Lee, SH; O’Donovan, MC; Sullivan, PF; Ophoff, RA; Wray, NR; Sklar, P; Kendler, KS (Elsevier (Cell Press), 2018-06-14)
  • Human optokinetic nystagmus and spatial frequency. 

    Waddington, J; Harris, CM (United States, 2015)
    Optokinetic nystagmus (OKN) is a fundamental oculomotor response to retinal slip generated during natural movement through the environment. The timing and amplitude of the compensatory slow phases (SPs) alternating with ...
  • Human optokinetic nystagmus: a stochastic analysis. 

    Waddington, J; Harris, CM (United States, 2012-10-07)
    Optokinetic nystagmus (OKN) is a fundamental gaze-stabilizing response found in almost all vertebrates, in which eye movements attempt to compensate for the optic flow caused by self-motion. It is an alternating sequence ...
  • Manual choice reaction times in the rate-domain. 

    Harris, CM; Waddington, J; Biscione, V; Manzi, S (Switzerland, 2014)
    Over the last 150 years, human manual reaction times (RTs) have been recorded countless times. Yet, our understanding of them remains remarkably poor. RTs are highly variable with positively skewed frequency distributions, ...

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