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5篇 您的检索式:作者名="L.Turner"
    题名 作者 年代 出处 被引量
1Botulinum toxin assessment, intervention and after‐care for upper limb hypertonicity in adults: international consensus statement显示文摘G.Sheean N. A.Lannin L.Turner‐Stokes B.Rawicki B. J.Snow 2010European Journal of Neurology2010,,:1
2PATENT DAMAGES AND SPATIAL COMPETITION显示文摘MATTHEW D.HENRY JOHN L.TURNER 2010The Journal of Industrial Economics2010,,2:1
3北大西洋区域的环境变化:SCANNET作为记载、认识和预测变化的合作途径显示文摘北大西洋周边区域(SCANNET区域)涵盖了广泛的气候区、自然环境和可用自然资源范围。除了最北部地区,至少自最后一次冰期结束以来,这里就有人和多种文化存在。然而,该区在大的地理尺度上也是非常重要的,因为它影响着全球气候并支撑着在北极地区和世界其它大陆之间迁徙的动物。这一区域的气候、环境和土地利用正在发生急剧变化,预测显示,全球变暖在这里的表现会更强,而土地利用的增加会使剩余的野地急剧减少。因为本区大部分地方人口稀疏(如果有人居住的话),过去环境变化及其影响方面的观测记录也都是很少而且时段很短的。然而,记录现在正在进行的变化、认识这些变化的驱动力和预测这些变化的后果变得非常重要了。为了促进认识全球变化对北大西洋区域陆地的影响的研究,同时也为了实时监测这种变化,2000年欧共体资助成立了一个研究站点网络及其下设机构,命名为SCANNET——斯堪的纳维亚(半岛)(瑞典、挪威、丹麦、冰岛的泛称)/北欧陆地野外基础网络。SCANNET目前包括9个核心站及当地网络里面的5个站,它们一起覆盖了该区当前气候和预测的变化的广泛区域。气候指标在网络内部是共同的,而每个站点都选择特殊的环境和生态主题进行精细观测。这既保证了主题覆盖面的多样性又保证了专门技术的多样性。我们总结了SCANNET到目前为止的发现,并概述其资料基础,以增加对北大西洋环境变化数据的了解。同时我们也总结我们在理解方面的重要缺陷以及SCANNET已经存在机构和行动在促进今后的研究、监测和野外实证行动方面的作用。Terry V.Callaghan M.Johansson O.W.Heal N.R.Slthun L.J.Barkved N.Bayfield O.Brandt R.Brooker H.H.Christiansen M.Forchhammer T.T.Hφye O.Humlum A.Jrvinen C.Jonasson J.Kohler B.Magnusson H.Meltofte L.Mortensen S.Neuvonen I.Pearce M.Rasch L.Turner B.Hasholt E.Huhta E.Leskinen N.Nielsen P.Siikamki 金博文 2004AMBIO-人类环境杂志2004,0,S1:0
4Near-infrared polarimetry of the GG Tauri A binary system显示文摘A high angular resolution near-infrared image that shows the intensity of polarization for the GG Tau A binary system was obtained with the Subaru Telescope.The image shows a circumbinary disk scattering the light from the central binary. The azimuthal profile of the intensity of polarization for the circumbinary disk is roughly reproduced by a simple disk model with the Henyey-Greenstein phase function and the Rayleigh function, indicating there are small dust grains at the surface of the disk.Combined with a previous observation of the circumbinary disk, our image indicates that the gap structure in the circumbinary disk orbits counterclockwise, but material in the disk orbits clockwise. We propose that there is a shadow caused by material located between the central binary and the circumbinary disk. The separations and position angles of the stellar components of the binary in the past 20 yr are consistent with the binary orbit with a = 33.4 AU and e = 0.34.Yoichi Itoh Yumiko Oasa Tomoyuki Kudo Nobuhiko Kusakabe Jun Hashimoto Lyu Abe Wolfgang Brandner Timothy D.Brandt Joseph C.Carson Sebastian Egner Markus Feldt Carol A.Grady Olivier Guyon Yutaka Hayano Masahiko Hayashi Saeko S.Hayashi Thomas Henning Klaus W.Hodapp Miki Ishii Masanori Iye Markus Janson Ryo Kandori Gillian R.Knapp Masayuki Kuzuhara Jungmi Kwon Taro Matsuo Michael W.McElwain Shoken Miyama Jun-Ichi Morino Amaya Moro-Martin Tetsuo Nishimura Tae-Soo Pyo Eugene Serabyn Takuya Suenaga Hiroshi Suto Ryuji Suzuki Yasuhiro H.Takahashi Naruhisa Takato Hiroshi Terada Christian Thalmann Daigo Tomono Edwin L.Turner Makoto Watanabe John Wisniewski Toru Yamada Satoshi Mayama Thayne Currie Hideki Takami Tomonori Usuda Motohide Tamura 2014Research in Astronomy and Astrophysics2014,14,11:0
5Motor adaptation and internal model formation in a robot-mediated forcefield显示文摘Background:Motor adaptation relies on error-based learning for accurate movements in changing environ-ments.However,the neurophysiological mechanisms driving individual differences in performance are unclear.Transcranial magnetic stimulation(TMS)-evoked potential can provide a direct measure of cortical excitability.Objective:To investigate cortical excitability as a predictor of motor learning and motor adaptation in a robot-mediated forcefield.Methods:A group of 15 right-handed healthy participants(mean age 23 years)performed a robot-mediated forcefield perturbation task.There were two conditions:unperturbed non-adaptation and perturbed adapta-tion.TMS was applied in the resting state at baseline and following motor adaptation over the contralateral primary motor cortex(left M1).Electroencephalographic(EEG)activity was continuously recorded,and cortical excitability was measured by TMS-evoked potential(TEP).Motor learning was quantified by the motor learning index.Results:Larger error-related negativity(ERN)in fronto-central regions was associated with improved motor per-formance as measured by a reduction in trajectory errors.Baseline TEP N100 peak amplitude predicted motor learning(P=0.005),which was significantly attenuated relative to baseline(P=0.0018)following motor adap-tation.Conclusions:ERN reflected the formation of a predictive internal model adapted to the forcefield perturbation.Attenuation in TEP N100 amplitude reflected an increase in cortical excitability with motor adaptation reflecting neuroplastic changes in the sensorimotor cortex.TEP N100 is a potential biomarker for predicting the outcome in robot-mediated therapy and a mechanism to investigate psychomotor abnormalities in depression.Myriam Taga Annacarmen Curci Sara Pizzamigglio Irene Lacal Duncan L.Turner Cynthia H.Y.Fu 2021Psychoradiology2021,1,2:0
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