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41.
Dimitri Anastasopoulos Nausica Ziavra Mark Hollands Adolfo Bronstein 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》2009,193(3):323-336
Displacements of the visual axis and multi-segmental (eye-to-foot) coordination in the yaw plane were studied in ten human
subjects (Ss) during voluntary reorientations to illuminated targets of eccentricities up to 180°. We also investigated how
knowledge of target location modifies the movement pattern. Eccentric targets (outbound trials) elicited eye, head, trunk
and foot movements at latencies ca. 0.5, 0.6, 0.7 and 1.1 s, respectively. Knowledge of target location (return trials) reduced
latencies for foot and trunk (but not eye and head) thus eye, head and trunk moved more en bloc. In most trials, the initial
gaze shift fell short of the target and more than 50% of the visual angle was covered by the sum of vestibular nystagmic fast
phases and head-in-space displacement, until target fixation. This indicates that during large gaze shifts the ‘anticompensatory’
role of the vestibulo-ocular reflex in target acquisition is prominent. During some predictable trials Ss acquired targets
with a single large gaze shift, shortening target acquisition time by more than 200 ms. In these, gaze velocity (trunk-in-space + head-on-trunk + eye-in-orbit)
remained often fairly constant for durations of up to 500 ms, suggesting that gaze velocity is a controlled parameter. Such
pattern occurred during trunk mobilization, thus eye velocity co-varied with head-in-space rather than head-on-trunk velocity.
Foot rotations were stereotyped and of constant frequency, suggesting they are generated by locomotor pattern generators.
However, knowledge of target location reduced foot latencies indicating that local and supraspinal mechanisms interact for
foot control. We propose that a single controller is responsible for the coupling of the multiple body segments and gaze velocity
control during gaze shifts. 相似文献
42.
Natalia Doubina Michelina Stoddard Hugo A. Bronstein Alex K.‐Y. Jen Christine K. Luscombe 《Macromolecular chemistry and physics.》2009,210(22):1966-1972
The effects of binding ligand variation on the externally initiated Ni catalyzed polymerization of P3HT were investigated using a novel methodology allowing facile screening of ligands. P3HT was synthesized with >80% initiator incorporation for both mono‐ and bidentate phosphine ligands. Variation of the initiating aryl group demonstrated vastly superior results for o‐tolyl over p‐tolyl substituents.
43.
Induced Microphase Separation in Hybrid Composite Polymer Electrolytes Based on Poly(acrylonitrile‐r‐butadienes) and Ionic Liquids 下载免费PDF全文
Michael Wirey Marcus Hunt Tyler Blensdorf Barry D. Stein Ulrike Werner‐Zwanziger Margaret A. Hanson Waleed E. Mahmoud Ahmed A. Al‐Ghamdi John Carini Lyudmila M. Bronstein 《Macromolecular chemistry and physics.》2016,217(6):794-803
Novel hybrid, composite polymer electrolytes (HCPEs) based on poly(acrylonitrile‐r‐butadiene) (PAN‐r‐PB), CN‐modified silica nanoparticles (CN‐MSNs), Li triflate, and ionic liquids (ILs) are synthesized. Using a combination of methods, it is demonstrated that these materials segregate into PAN‐rich and PB‐rich phases, the behavior of which changes depending on the IL type. The incorporation of ILs containing hexyl and octyl substituents at the imidazolium rings leads to a higher mobility of the PB‐rich phase and a decrease of the density of the neighboring PAN‐rich phase, allowing an improvement of the Li ion conductivity. However, with an increase of the substituent length from decyl to dodecyl, ordering of the hydrophobic tails in the PB‐rich phase leads to both stiffening of the latter and corresponding ordering of the ionic pairs of ILs, resulting in a decreased conductivity. The results of this work are broadly applicable for controlling the structure and properties of polymeric materials exhibiting microphase segregation.
44.
Thilo KV Guerraz M Bronstein AM Gresty MA 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》2002,145(2):215-221
Large-field motion of the visual environment is a powerful stimulus to induce the perception of contra-directional self-motion in a stationary observer. We investigated the interrelations between horizontal optokinetic nystagmus and subjective states of motion perception under variation of subjects' orientation with respect to gravity. Subjects were tested sitting upright and lying supine, and signalled transitions between object- and self-motion perception whilst viewing an optokinetic stimulus rotating about the subjects' longitudinal axis at a range of angular velocities. Optokinetic stimulation in the supine condition resulted in subjects perceiving a graviceptive conflict and the illusory perception of whole body tilt in a direction opposite to optokinetic stimulus rotation, whereas during upright viewing the axis of stimulus rotation was aligned with the direction of gravity and thus did not result in a conflict or perception of tilt. In both postures, self-motion perception coincided with an increased deviation of mean horizontal gaze position in the perceived direction of heading with a concurrent reduction in optokinetic nystagmus slow-phase gain. Slow-phase gain was also significantly reduced in the supine position as well as at increasing stimulus velocities. The results demonstrate that spontaneous transitions between the perception of object-motion and that of self-motion consistently coincide with spatial attentional and orientational strategies, shifting from passive monitoring to active oculomotor exploration and anticipation. 相似文献
45.
Eye movements induced by lateral acceleration steps
Effect of visual context and acceleration levels
C. C. Gianna Michael A. Gresty Adolfo M. Bronstein 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》1997,114(1):124-129
Eye movement responses were obtained from six normal subjects exposed to randomly ordered rightwards/leftwards linear acceleration
steps of 0.05 g, 0.1 g or 0.24 g amplitude and 650 ms duration along the inter-aural axis. With the instruction to gaze passively into the darkness, compensatory nystagmus was evoked with slow-phase velocity sensitivity of 49° s−1
g
−1. When subjects viewed earth-fixed targets at 30 cm, 60 cm or 280 cm, eye movements at 130 ms from motion onset were proportional to acceleration and inversely proportional
to target distance, before the onset of visually guided eye movements. Our results show that a modulation with viewing distances
of the earliest human otolith-ocular reflexes occurs in the presence of pure linear acceleration. However, full compensation
was not attained for the nearer targets and higher accelerations.
Received: 31 January 1996 / Accepted: 30 September 1996 相似文献
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47.
Guillain-Barr啨综合征(GBS)和Miller Fisher综合征(MFS)的诊断标准随着临床研究的深入在不断演变。2011年1月,《疫苗》杂志发表了国际疫苗安全性监测Brighton合作组关于GBS/MFS的诊断定义和研究资料收集规范。此文献中未采用"诊断标准"而采用"诊断定义"是因为其主要目的为评价疫苗安全性而制定,而非用于神经科的GBS/ 相似文献
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