704 research outputs found

    Психологічне підгрунтя внутрішньої картини хвороби у хворих на розсіяний склероз

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    This is a conference abstract from the Scientific-practical conference "Psychosomatic medicine: science and practice". It is dedicated to the psychological background of the internal picture of illness in patients with multiple sclerosis. This internal picture is based on numerous psychological indicators, balance of interaction of conscious and unconscious processes. Unconscious processes are often understood as mechanisms of protection that influence on the adaptive capacity of patients. An internal picture of illness in patients with multiple sclerosis is formed by cognitive, mnemonic and emotional disorders. In this case, general fatigability, depressive and anxiety disorders, reduction of short-term memory are dominated, while fear is not characteristic. Maladaptive type of relation to the disease is dominated, this correlates with the magnitude and number of focuses of demyelination in the brain.Даний текст є тезами Науково-практичної конференції «Психосоматична медицина: наука і практика». Описане нижче присвячено психологічному підгрунтю внутрішньої картини хвороби у хворих на розсіяний склероз. Внутрішня картина хвороби базується на численних психологічних показниках, балансу взаємодії усвідомлених та неусвідомлюваних процесів. Несвідомі процеси розуміються часто як механізми захисту, що впливають на адаптивні можливості хворих. Внутрішня картина хвороби у хворих на розсіяний склероз обумовлена когнітивними, мнестичними та емоційними розладами. При цьому переважають загальна втомлюваність, депресивні та тривожні порушення,  зниження короткочасної пам’яті, в той час як відчуття страху не є характерним. Переважає дезадаптивний тип відношення до хвороби, який корелює з величиною і кількістю вогнищ демієлінізації у головному мозку

    Sam Hughes and Overcoming Recruiting Crisis of Canadian Army at Height of First World War (1915—1916)

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    The process of overcoming crisis phenomena during the recruitment of the Canadian volunteer army at the height of the First World War is analyzed in the context of the activities of the Minister of Militia and Defense Sam Hughes. The chronological framework is due to the beginning of the crisis in the recruitment of the Canadian volunteer army (October 1915) and the completion of S. Hughes’s activities as Minister of Militia and Defense (November 1916) in connection with the forced resignation. The relevance of the study is due to the fact that for the first time in Russian historiography, views are formulated and the mobilization activity of Minister S. Hughes is analyzed during the crisis in the recruitment of the Canadian volunteer army at the height of the First World War. The efforts of S. Hughes to overcome the recruitment crisis and stimulate recruitment into the ranks of the Canadian Volunteer Army are traced. The reaction of the press and the public to the mobilization activity of S. Hughes at the height of the war is studied. The reasons, circumstances and consequences of the resignation of S. Hughes from the post of minister are clarified. It is proved that during the leadership of the War Department, S. Hughes managed to achieve impressive results, however, due to his stormy temperament and personal ambitions, he often went beyond his powers, which ultimately predetermined his resignation

    Canada during the First World War: Conducting a Universal Registration of Labor Resources (based on the Canadian Press)

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    The article is devoted to the study of the Canadian government’s policy in the field of labor mobilization of the population during the First World War. The author limits the presentation of events to 1916, when the concept of compulsory labor service was developed and implemented. The article proved that the universal registration of labor in Canada was the first step towards introducing compulsory labor service and, as a result, became the basis for abandoning the voluntary system of recruitment into the army and the gradual transition to compulsory military service (conscription). The projects of conducting a universal census of labor resources, developed by supporters and opponents of conscription, are being studied. The process of institutionalizing the labor mobilization of the Canadian population is described on the example of the creation and activities of two state bodies: the government Council for labor service and the parliamentary Committee for labor service. The features of the mechanism for the inventory of labor resources, including the structure of registration cards, the conditions for filling them in, as well as the circumstances of its implementation, are investigated. The results of the general census of labor are summarized, the protest movement among Canadian workers who for various reasons refused to participate in the universal registration of labor resources is studied

    Silk Road Art and Archaeology, 8, (2002), 272 p.

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    Ce numéro de SRAA est une nouvelle fois largement consacré aux études iraniennes et centre-asiatiques : – A. V. Simonenko, « Sarmatian relics of the ‘Eastern Wave’ in the North Pontic Region », pp. 1-28, analyse le passage de la période sarmate précoce à la période sarmate moyenne au nord de la mer Noire en reprenant l’ensemble des données disponibles et notamment les caractères locaux ou intrusifs (« eastern wave ») présents sur les sites du 1er et 2e s. de n.è. – E. Errington, « Numismatic ..

    Measurement of the production and differential cross sections of W+W- bosons in association with jets in pp¯ collisions at ?s = 1.96TeV

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    Citation: Aaltonen, T., Amerio, S., Amidei, D., Anastassov, A., Annovi, A., Antos, J., . . . Zucchelli, S. (2015). Measurement of the production and differential cross sections of W+W- bosons in association with jets in pp¯ collisions at ?s = 1.96TeV. Physical Review D - Particles, Fields, Gravitation and Cosmology, 91(11). doi:10.1103/PhysRevD.91.111101We present a measurement of the W-boson-pair production cross section in pp¯ collisions at 1.96 TeV center-of-mass energy and the first measurement of the differential cross section as a function of jet multiplicity and leading-jet energy. The W+W- cross section is measured in the final state comprising two charged leptons and neutrinos, where either charged lepton can be an electron or a muon. Using data collected by the CDF experiment corresponding to 9.7fb-1 of integrated luminosity, a total of 3027 collision events consistent with W+W- production are observed with an estimated background contribution of 1790 ± 190 events. The measured total cross section is ?(pp¯ ? W+W-)= 14.0 ± 0.6 (stat)-1.0+1.2 (syst) ± 0.8 (lumi) pb, consistent with the standard model prediction. © 2015; American Physical Society. All righs reserved.Additional Authors: Badgett, W.;Bae, T.;Barbaro-Galtieri, A.;Barnes, V. E.;Barnett, B. A.;Barria, P.;Bartos, P.;Bauce, M.;Bedeschi, F.;Behari, S.;Bellettini, G.;Bellinger, J.;Benjamin, D.;Beretvas, A.;Bhatti, A.;Bland, K. R.;Blumenfeld, B.;Bocci, A.;Bodek, A.;Bortoletto, D.;Boudreau, J.;Boveia, A.;Brigliadori, L.;Bromberg, C.;Brucken, E.;Budagov, J.;Budd, H. S.;Burkett, K.;Busetto, G.;Bussey, P.;Butti, P.;Buzatu, A.;Calamba, A.;Camarda, S.;Campanelli, M.;Canelli, F.;Carls, B.;Carlsmith, D.;Carosi, R.;Carrillo, S.;Casal, B.;Casarsa, M.;Castro, A.;Catastini, P.;Cauz, D.;Cavaliere, V.;Cerri, A.;Cerrito, L.;Chen, Y. C.;Chertok, M.;Chiarelli, G.;Chlachidze, G.;Cho, K.;Chokheli, D.;Clark, A.;Clarke, C.;Convery, M. E.;Conway, J.;Corbo, M.;Cordelli, M.;Cox, C. A.;Cox, D. J.;Cremonesi, M.;Cruz, D.;Cuevas, J.;Culbertson, R.;D'Ascenzo, N.;Datta, M.;De Barbaro, P.;Demortier, L.;Deninno, M.;D'Errico, M.;Devoto, F.;Di Canto, A.;Di Ruzza, B.;Dittmann, J. R.;Donati, S.;D'Onofrio, M.;Dorigo, M.;Driutti, A.;Ebina, K.;Edgar, R.;Elagin, A.;Erbacher, R.;Errede, S.;Esham, B.;Farrington, S.;Fernández Ramos, J. P.;Field, R.;Flanagan, G.;Forrest, R.;Franklin, M.;Freeman, J. C.;Frisch, H.;Funakoshi, Y.;Galloni, C.;Garfinkel, A. F.;Garosi, P.;Gerberich, H.;Gerchtein, E.;Giagu, S.;Giakoumopoulou, V.;Gibson, K.;Ginsburg, C. M.;Giokaris, N.;Giromini, P.;Glagolev, V.;Glenzinski, D.;Gold, M.;Goldin, D.;Golossanov, A.;Gomez, G.;Gomez-Ceballos, G.;Goncharov, M.;González López, O.;Gorelov, I.;Goshaw, A. T.;Goulianos, K.;Gramellini, E.;Grosso-Pilcher, C.;Group, R. C.;Guimaraes Da Costa, J.;Hahn, S. R.;Han, J. Y.;Happacher, F.;Hara, K.;Hare, M.;Harr, R. F.;Harrington-Taber, T.;Hatakeyama, K.;Hays, C.;Heinrich, J.;Herndon, M.;Hocker, A.;Hong, Z.;Hopkins, W.;Hou, S.;Hughes, R. E.;Husemann, U.;Hussein, M.;Huston, J.;Introzzi, G.;Iori, M.;Ivanov, A.;James, E.;Jang, D.;Jayatilaka, B.;Jeon, E. J.;Jindariani, S.;Jones, M.;Joo, K. K.;Jun, S. Y.;Junk, T. R.;Kambeitz, M.;Kamon, T.;Karchin, P. E.;Kasmi, A.;Kato, Y.;Ketchum, W.;Keung, J.;Kilminster, B.;Kim, D. H.;Kim, H. S.;Kim, J. E.;Kim, M. J.;Kim, S. H.;Kim, S. B.;Kim, Y. J.;Kim, Y. K.;Kimura, N.;Kirby, M.;Knoepfel, K.;Kondo, K.;Kong, D. J.;Konigsberg, J.;Kotwal, A. V.;Kreps, M.;Kroll, J.;Kruse, M.;Kuhr, T.;Kurata, M.;Laasanen, A. T.;Lammel, S.;Lancaster, M.;Lannon, K.;Latino, G.;Lee, H. S.;Lee, J. S.;Leo, S.;Leone, S.;Lewis, J. D.;Limosani, A.;Lipeles, E.;Lister, A.;Liu, H.;Liu, Q.;Liu, T.;Lockwitz, S.;Loginov, A.;Lucchesi, D.;Lucà, A.;Lueck, J.;Lujan, P.;Lukens, P.;Lungu, G.;Lys, J.;Lysak, R.;Madrak, R.;Maestro, P.;Malik, S.;Manca, G.;Manousakis-Katsikakis, A.;Marchese, L.;Margaroli, F.;Marino, P.;Matera, K.;Mattson, M. E.;Mazzacane, A.;Mazzanti, P.;McNulty, R.;Mehta, A.;Mehtala, P.;Mesropian, C.;Miao, T.;Mietlicki, D.;Mitra, A.;Miyake, H.;Moed, S.;Moggi, N.;Moon, C. S.;Moore, R.;Morello, M. J.;Mukherjee, A.;Muller, Th;Murat, P.;Mussini, M.;Nachtman, J.;Nagai, Y.;Naganoma, J.;Nakano, I.;Napier, A.;Nett, J.;Neu, C.;Nigmanov, T.;Nodulman, L.;Noh, S. Y.;Norniella, O.;Oakes, L.;Oh, S. H.;Oh, Y. D.;Oksuzian, I.;Okusawa, T.;Orava, R.;Ortolan, L.;Pagliarone, C.;Palencia, E.;Palni, P.;Papadimitriou, V.;Parker, W.;Pauletta, G.;Paulini, M.;Paus, C.;Phillips, T. J.;Piacentino, G.;Pianori, E.;Pilot, J.;Pitts, K.;Plager, C.;Pondrom, L.;Poprocki, S.;Potamianos, K.;Pranko, A.;Prokoshin, F.;Ptohos, F.;Punzi, G.;Redondo Fernández, I.;Renton, P.;Rescigno, M.;Rimondi, F.;Ristori, L.;Robson, A.;Rodriguez, T.;Rolli, S.;Ronzani, M.;Roser, R.;Rosner, J. L.;Ruffini, F.;Ruiz, A.;Russ, J.;Rusu, V.;Sakumoto, W. K.;Sakurai, Y.;Santi, L.;Sato, K.;Saveliev, V.;Savoy-Navarro, A.;Schlabach, P.;Schmidt, E. E.;Schwarz, T.;Scodellaro, L.;Scuri, F.;Seidel, S.;Seiya, Y.;Semenov, A.;Sforza, F.;Shalhout, S. Z.;Shears, T.;Shepard, P. F.;Shimojima, M.;Shochet, M.;Shreyber-Tecker, I.;Simonenko, A.;Sliwa, K.;Smith, J. R.;Snider, F. D.;Song, H.;Sorin, V.;St. Denis, R.;Stancari, M.;Stentz, D.;Strologas, J.;Sudo, Y.;Sukhanov, A.;Suslov, I.;Takemasa, K.;Takeuchi, Y.;Tang, J.;Tecchio, M.;Teng, P. K.;Thom, J.;Thomson, E.;Thukral, V.;Toback, D.;Tokar, S.;Tollefson, K.;Tomura, T.;Tonelli, D.;Torre, S.;Torretta, D.;Totaro, P.;Trovato, M.;Ukegawa, F.;Uozumi, S.;Vázquez, F.;Velev, G.;Vellidis, C.;Vernieri, C.;Vidal, M.;Vilar, R.;Vizán, J.;Vogel, M.;Volpi, G.;Wagner, P.;Wallny, R.;Wang, S. M.;Waters, D.;Wester W.C, III;Whiteson, D.;Wicklund, A. B.;Wilbur, S.;Williams, H. H.;Wilson, J. S.;Wilson, P.;Winer, B. L.;Wittich, P.;Wolbers, S.;Wolfe, H.;Wright, T.;Wu, X.;Wu, Z.;Yamamoto, K.;Yamato, D.;Yang, T.;Yang, U. K.;Yang, Y. C.;Yao, W. M.;Yeh, G. P.;Yi, K.;Yoh, J.;Yorita, K.;Yoshida, T.;Yu, G. B.;Yu, I.;Zanetti, A. M.;Zeng, Y.;Zhou, C.;Zucchelli, S

    Naval Policy of Canada during First World War (1914—1918)

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    The activities of the Navy Ministry of Canada during the First World War are analyzed in the article. For the first time in Russian historiography, the main directions of Canada’s maritime policy are formulated within the framework of the government’s military course during the First World War. The sources for the study were the debates of the House of Commons of the Canadian Parliament, publications in the Canadian press, the military series of historical and statistical collections and journalism of those years. The state of Canadian naval bases and ports, as well as the features of the development of the shipbuilding industry of the dominion during the war years is characterized. It is proved that during the war years, Canada’s maritime policy was determined by the British Admiralty and developed in two directions: imperial and national. The development of the imperial direction of maritime policy was carried out in the interests of Great Britain. It provided for the recruitment of Canadian volunteers for service in the Royal Navy and the development of a shipbuilding industry for the needs of the British Navy. The national direction of maritime policy provided for the protection of Canadian coasts and territorial waters, for which the infrastructure of Canadian naval bases and ports was actively used. To perform patrol and escort functions, state and private vessels were involved not only for military, but also for civilian purposes

    Measurement of d sigma/dy of Drell-Yan e(+)e(-) pairs in the Z mass region from p(p)over-bar collisions at root s=1.96 TeV

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    We report on a CDF measurement of the total cross section and rapidity distribution, d sigma/dy, for gamma*/Z -\u3e e(+)e(-) events in the Z boson mass region (66 \u3c M-ee \u3c 116 GeV/c(2)) produced in p (p) over bar collisions at root s = 1.96 TeV with 2.1 fb(-1) of integrated luminosity. The measured cross section of 257 +/- 16 pb and d sigma/dy distribution are compared with Next-to-Leading-Order (NLO) and Next-to-Next-to-Leading-Order (NNLO) QCD theory predictions with CTEQ and MRST/MSTW parton distribution functions (PDFs). There is good agreement between the experimental total cross section and d sigma/dy measurements with theoretical calculations with the most recent NNLO PDFs. (C) 2010 Elsevier B.V. All rights reserved

    Hydrolysates of mare's milk proteins. Immunochemical and physico-chemical characteristics

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    In recent years, the attention of specialists has been attracted by a significant increase in allergic diseases, especially among children. Enzymatic hydrolysis with the participation of peptidases is considered the most effective measure to reduce the allergenicity of milk proteins. The study of the features of protein proteolysis by various enzymes, aimed at establishing optimal process parameters, is the subject of research in the production of hydrolysates with specified properties: a certain peptide and amino acid profile, reduced antigenic properties. At the same time, for a correct preclinical assessment of the safety and potential effectiveness of specialized food products, it is not enough only to determine the molecular weight distribution of peptide fractions in the composition. A necessary additional and informative indicator of reducing the potential allergenicity of the hydrolysate is the degree of preservation of the antigenic properties of the initial protein (residual antigenicity), determined by immunochemical methods. The preparation and subsequent comprehensive assessment of enzymatic hydrolysates of mare's milk proteins is of considerable interest, since, according to the results of clinical studies, it was suggested that upon allergy to cow's milk proteins mare's milk can be considered hypoallergenic. The purpose of this work was to obtain enzymatic hydrolysates of mare's milk proteins using domestic enzymes and their further physico-chemical and immunochemical characteristics. The object of the study was mare's milk protein obtained from skimmed mare's milk powder as a protein substrate. Two samples of enzymes from various manufacturers of the Russian Federation were used in the work. The results of the conducted studies show that the peptide profiles of hydrolysates vary greatly depending on the enzyme used, however, the multiplicity of antigenicity reduction practically does not depend on the nature of the enzyme, and does not depend on an increase in the enzyme/substrate ratio. The peptide profile and the multiplicity of reducing the antigenicity of hydrolysates of mare's milk proteins are influenced by ultrafiltration treatment of the obtained hydrolysates, which allows reducing the content of antigenic structures in the final product by several orders of magnitude
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