The movement of a particle described by Brownian motion is quantified by a single parameter, D, the diffusion constant. The estimation of D from a discrete sequence of noisy observations is a fundamental problem in biological single-particle tracking experiments since it can provide information on the environment and/or the state of the particle itself via the hydrodynamic radius. Here, we present a method to estimate D that takes into account several effects that occur in practice, important for the correct estimation of D, and that have hitherto not been combined together for an estimation of D. These effects are motion blur from the finite integration time of the camera, intermittent trajectories, and time-dependent localization uncertainty. Our estimation procedure, a maximum-likelihood estimation with an information-based confidence interval, follows directly from the likelihood expression for a discretely observed Brownian trajectory that explicitly includes these effects. We begin with the formulation of the likelihood expression and then present three methods to find the exact solution. Each method has its own advantages in either computational robustness, theoretical insight, or the estimation of hidden variables. The Fisher information for this likelihood distribution is calculated and analyzed to show that localization uncertainties impose a lower bound on the estimation of D. Confidence intervals are established and then used to evaluate our estimator on simulated data with experimentally relevant camera effects to demonstrate the benefit of incorporating variable localization errors.
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http://dx.doi.org/10.1103/PhysRevE.93.042401 | DOI Listing |
J Sports Med Phys Fitness
January 2025
Department of Biomedical Sciences, University of Sassari, Sassari, Italy.
Background: To gain optimal positioning to make sure the game laws are applied in uniform way, the performance of field referee must be periodically evaluated to have constantly adequate training during a match and during the competitive season. Considering that field Yo-Yo Intermittent Recovery Test-Level 1 is frequently employed in elite team sport players to estimate maximal oxygen uptake (VO
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J Sports Med Phys Fitness
January 2025
Research Unit on Youth, Physical Activity, Sports and Health (J-AP2S), University of Toulon, Toulon, France.
Background: Understanding the dietary intake of elite adolescent athletes and its adequacy with sport nutrition recommendation is a key issue for health and player development, as well as performance and recovery. Energy availability needs to be considered to ensure optimal health and performance in young athletes. The present study aimed to quantify energy availability, energy expenditure and macronutrient intake in young male rugby union players competing at national level.
View Article and Find Full Text PDFNephrol Nurs J
January 2025
Professor of Medicine, Department of Internal Medicine, Division of Nephrology, School of Medicine, Virginia Commonwealth University.
Chronic kidney disease (CKD) affects 10% of the global population, with increasing prevalence driven by diabetes, hypertension, and aging populations. CKD often progresses asymptomatically, frequently undetected until advanced stages, and may require costly treatments, such as dialysis or transplantation. CKD imposes a substantial financial burden on health care systems, with management costs rising sharply as the disease progresses, underscoring the need for early, cost-effective interventions.
View Article and Find Full Text PDFPostgrad Med
January 2025
Orthopaedic Department, Peking University First Hospital, Beijing, China.
Aim: This study aims to clarify hematological parameters, transfusion requirements, and adverse events of preoperative intravenous (IVIS) versus oral iron supplementation (OIS) in elective surgery patients.
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Microbiol Spectr
January 2025
Rickettsial Zoonoses Branch, Centers for Disease Control and Prevention, U.S. Department of Health and Human Services, Atlanta, Georgia, USA.
Mycoplasma (Class: Mollicutes) contamination in cell cultures is a universal concern for research laboratories. Some estimates report contamination in up to 35% of continuous cell lines. Various commercial antibiotic treatments can successfully decontaminate clean cell lines ; however, decontamination of bacterial cultures remains challenging.
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