Ulrich, Leuthold, and Sommer (1998) suggested that movement preparation at the level of the motor cortex, as indexed by the lateralized readiness potential (LRP), proceeds in a strongly hierarchical fashion, where parameters other than response hand are prepared only if all the movement parameters are known. These conclusions were based on an experiment where a precue provided information about response hand, direction of finger movement, and movement force. To assess the generality of these findings, we replaced the force parameter with response finger. LRP indicated that preparation of the required finger is possible even when preliminary information is incomplete. Therefore, movement preparation appears to follow different rules when anatomical relationships (hand and finger) are concerned as compared to functional parameters like movement direction. On the other hand, at a limb-unspecific level, as indicated by the contingent negative variation, we confirmed evidence for parallel programming of all movement parameters.
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http://dx.doi.org/10.1111/1469-8986.00002 | DOI Listing |
Adv Mater
January 2025
Macromolecular Engineering Laboratory, Department of Mechanical and Process Engineering, ETH Zurich, Zurich, 8092, Switzerland.
3D scaffolds enable biological investigations with a more natural cell conformation. However, the porosity of synthetic hydrogels is often limited to the nanometer scale, which confines the movement of 3D encapsulated cells and restricts dynamic cell processes. Precise control of hydrogel porosity across length scales remains a challenge and the development of porous materials that allow cell infiltration, spreading, and migration in a manner more similar to natural ECM environments is desirable.
View Article and Find Full Text PDFAnn Med
December 2025
Faculty of Physical Culture, Palacký University Olomouc, Olomouc, Czech Republic.
Background: The current negative trend in the physical behavior and lifestyle of the population therefore requires adequate changes in the professional training of physiotherapists.
Objectives: This study aimed to determine the structure and differences in the weekly physical activity (PA) of Czech physiotherapy students, the use of wearables in physiotherapy professional training, and the attitude of physiotherapy students toward PA and the use of wearables in physiotherapy practice.
Methods: Between 2013 and 2022, 412 physiotherapy students participated in a PA-monitoring study using questonnaires International Physical Activity Questionnaire-long form, Motives for Physical Activity Measure-Revise, pedometers, Garmin Vívofit and Axivity AX3 accelerometers.
Small
January 2025
Fujian Provincial Key Laboratory of Quantum Manipulation and New Energy Materials, College of Physics and Energy, Fujian Normal University, Fuzhou, 350117, China.
Soft robots based on actuators that can work in both on-ground and on-water situations are environmentally adaptable and can accomplish tasks in complex environments. However, most current amphibious actuators need external stimuli to move on water and require complex preparation processes. Herein, amphibious Ink-paper/polyethylene programmable actuators and robots are proposed, which are fabricated by rapidly brushing Chinese ink on paper.
View Article and Find Full Text PDFNeurol Ther
December 2024
Patient-Reported Outcomes and Health Economics Research, Deutsches Zentrum für Neurodegenerative Erkrankungen/German Center for Neurodegenerative Diseases (DZNE), Site Rostock/Greifswald, Ellernholzstrasse 1-2, 17489, Greifswald, Germany.
Introduction: Friedreich Ataxia (FA) is a multisystem neurodegenerative disease. Affected individuals rely on mobility assistive technologies (MAT) (e.g.
View Article and Find Full Text PDFSmall Methods
December 2024
Faculty of Materials Science and Engineering, Kunming University of Science and Technology, No. 68 Wenchang Road, Kunming, 650093, China.
Controllably modulating the structure of transition-metal chalcogenides (TMCs) from 2D to 1D and tuning their electronic properties has drawn particular attention currently due to their remarkable properties and potential applications. In this work, by precisely controlling the chemical concentration of Te atoms, the transformation from the 2D honeycomb AgTe monolayer to high-quality and well-defined 1D AgTe nanowires on the Ag(111) substrate has been successfully achieved. The combination of scanning tunneling microscopy measurements and first-principles calculations has confirmed that the mechanism underlying the entire dimensional transformation lies in the directional movement of Ag atoms in the 2D AgTe monolayer regulated by the concentration of Te atoms.
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