98%
921
2 minutes
20
Animal movement is a key mechanism for shaping population dynamics. The effect of interactions between competing animals on a population's survival has been studied for many decades. However, interactions also affect an animal's subsequent movement decisions. Despite this, the indirect effect of these decisions on animal survival is much less well-understood. Here, we incorporate movement responses to foreign animals into a model of two competing populations, where inter-specific competition is greater than intra-specific competition. When movement is diffusive, the travelling wave moves from the stronger population to the weaker. However, by incorporating behaviourally induced directed movement towards the stronger population, the weaker one can slow the travelling wave down, even reversing its direction. Hence movement responses can switch the predictions of traditional mechanistic models. Furthermore, when environmental heterogeneity is combined with aggressive movement strategies, it is possible for spatially segregated co-existence to emerge. In this situation, the spatial patterns of the competing populations have the unusual feature that they are slightly out-of-phase with the environmental patterns. Finally, incorporating dynamic movement responses can also enable stable co-existence in a homogeneous environment, giving a new mechanism for spatially segregated co-existence.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.jtbi.2017.03.011 | DOI Listing |
Clin Orthop Relat Res
September 2025
Leni & Peter W. May Department of Orthopaedic Surgery, Icahn School of Medicine at Mount Sinai, New York, NY, USA.
Background: Peripheral nerve injury commonly results in pain and long-term disability for patients. Recovery after in-continuity stretch or crush injury remains inherently unpredictable. However, surgical intervention yields the most favorable outcomes when performed shortly after injury.
View Article and Find Full Text PDFJ Cell Mol Med
September 2025
Shandong Provincial Precision Medicine Laboratory for Chronic Non-Communicable Diseases, Institute of Precision Medicine, Jining Medical University, Jining, China.
The involvement of Choline Dehydrogenase (CHDH) in metabolic disorders and tumour progression has garnered significant scholarly interest. However, the specific role of CHDH in the metastasis and progression of breast cancer (BC) has been less thoroughly investigated. Our research indicates that CHDH protein expression is markedly elevated in breast cancer tissues compared to normal tissues, and this expression is positively correlated with the tumour node metastasis (TNM) stage of breast cancer.
View Article and Find Full Text PDFJ Cachexia Sarcopenia Muscle
October 2025
Department of Sports Science, College of Natural Science, Jeonbuk National University, Jeonju, Republic of Korea.
Background: Fine particulate matter has developmental toxicity, and midgestation is an important period for the development of foetal skeletal muscle. The ability of exercise to modulate skeletal muscle damage in mice exposed to PM during gestation remains unclear.
Methods: Pregnant C57BL/6 mice were exposed to 50 μg/m PM for 2 h on five consecutive days starting at embryonic day 12.
Ann Neurol
September 2025
Spinal Cord Injury Center, Balgrist University Hospital, University of Zurich, Zurich, Switzerland.
Objective: Impaired ability to induce stepping after incomplete spinal cord injury (SCI) can limit the efficacy of locomotor training, often leaving patients wheelchair-bound. The cuneiform nucleus (CNF), a key mesencephalic locomotor control center, modulates the activity of spinal locomotor centers via the reticulospinal tract. Even with severe corticospinal damage, the widely distributed reticulospinal fibers frequently cross the lesion, and lumbosacral spinal locomotor centers remain responsive.
View Article and Find Full Text PDFEur J Case Rep Intern Med
August 2025
Department of General Medicine, Chiba University Hospital, Chiba, Japan.
Introduction: Restless legs syndrome (RLS) is a common sensorimotor disorder that primarily affects the lower extremities. This condition is characterized by unpleasant sensations and an irresistible urge to move the affected body regions, typically during periods of rest or at night. While RLS most commonly involves the legs, atypical variants affecting other body parts, including the arms, abdomen, face, and even the head, have increasingly been reported.
View Article and Find Full Text PDF