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We propose a new route to accelerate molecular dynamics through the use of velocity jump processes allowing for an adaptive time step specific to each atom-atom pair (two-body) interactions. We start by introducing the formalism of the new velocity jump molecular dynamics, ergodic with respect to the canonical measure. We then introduce the new BOUNCE integrator that allows for long-range forces to be evaluated at random and optimal time steps, leading to strong savings in direct space. The accuracy and computational performances of a first BOUNCE implementation dedicated to classical (non-polarizable) force fields are tested in the cases of pure direct-space droplet-like simulations and of periodic boundary conditions (PBC) simulations using Smooth Particle Mesh Ewald method. An analysis of the capability of BOUNCE to reproduce several condensed-phase properties is provided. Since electrostatics and van der Waals two-body contributions are evaluated much less often than with standard integrators using a 1 fs time step, up to a 400% direct-space acceleration is observed. Applying the reversible reference system propagator algorithms [RESPA(1)] to reciprocal-space (many-body) interactions allows BOUNCE-RESPA(1) to maintain large speedups in PBC while maintaining precision. Overall, we show that replacing the BAOAB standard Langevin integrator by the BOUNCE adaptive framework preserves a similar accuracy and leads to significant computational savings.
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http://dx.doi.org/10.1063/5.0005060 | DOI Listing |
Front Sports Act Living
August 2025
Sport Training Laboratory, University of Castilla-La Mancha, Toledo, Spain.
Introduction: This study examined the beliefs and practices of Spanish national swimming coaches regarding season planning, aiming to gain a deeper understanding of how they organize training throughout the year.
Methods: A total of 18 coaches participated and were classified based on the performance level of their swimmers: World Class (27.8%), Elite (11.
Int J Exerc Sci
September 2025
School of Health, Science, and Technology, Cornerstone University, Grand Rapids, MI, USA.
Although acutely donning compression garments improves several markers of athletic performance, the effects of training in compression garments remains largely unexplored. Thus, this study aimed to determine the effects of exercise training while donning a novel full-body compression garment on multiple measures of anaerobic performance. Sixteen sedentary males (age: 21±3 y; BMI: 25±3 kg/m) completed 4 weeks of training with (CG; n=8) or without (CON; n=8) a novel full-body compression garment.
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August 2025
Sports Performance Research Institute New Zealand, AUT University, Auckland, New Zealand.
The main objective of this study was to investigate how different horizontal jump exercises relate to sprint performance in female athletes, and whether these relationships differ between sprinters and team sport athletes. Twelve female sprinters (age 18.9 ± 3.
View Article and Find Full Text PDFNature
September 2025
Institute for Geophysics, Jackson School of Geosciences, University of Texas at Austin, Austin, TX, USA.
For rocky planets, the presence of a solid inner core has notable implications on the composition and thermal evolution of the core and on the magnetic history of the planet. On Mars, geophysical observations have confirmed that the core is at least partially liquid, but it is unknown whether any part of the core is solid. Here we present an analysis of seismic data acquired by the InSight mission, demonstrating that Mars has a solid inner core.
View Article and Find Full Text PDFPLoS One
September 2025
Institute of Physical Education, Keio University, Yokohama, Japan.
This study aimed to compare the intra-session reliability of force-velocity-power variables obtained from a horizontal dynamic leg press device (HDLPD) and vertical jump tests. Nineteen male field hockey players performed maximal leg extension movements in HDLPD under a wide range of available load conditions (100, 120, 140, 160, 180, and 200% body weight [BW]), followed by squat jumps (SJ) and countermovement jumps (CMJ) under unloaded (0 kg), moderate- (22.0 ± 4.
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