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This review presents the mechanistic underpinnings of corticospinal tract (CST) development, derived from animal models, and applies what has been learned to inform neural activity-based strategies for CST repair. We first discuss that, in normal development, early bilateral CST projections are later refined into a dense crossed CST projection, with maintenance of sparse ipsilateral projections. Using a novel mouse genetic model, we show that promoting the ipsilateral CST projection produces mirror movements, common in hemiplegic cerebral palsy (CP), suggesting that ipsilateral CST projections become maladaptive when they become abnormally dense and strong. We next discuss how animal studies support a developmental "competition rule" whereby more active/used connections are more competitive and overtake less active/used connections. Based on this rule, after unilateral injury the damaged CST is less able to compete for spinal synaptic connections than the uninjured CST. This can lead to a progressive loss of the injured hemisphere's contralateral projection and a reactive gain of the undamaged hemisphere's ipsilateral CST. Knowledge of the pathophysiology of the developing CST after injury informs interventional strategies. In an animal model of hemiplegic CP, promoting injured system activity or decreasing the uninjured system's activity immediately after the period of a developmental injury both increase the synaptic competitiveness of the damaged system, contributing to significant CST repair and motor recovery. However, delayed intervention, despite significant CST repair, fails to restore skilled movements, stressing the need to consider repair strategies for other neural systems, including the rubrospinal and spinal interneuronal systems. Our interventional approaches harness neural activity-dependent processes and are highly effective in restoring function. These approaches are minimally invasive and are poised for translation to the human.
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http://dx.doi.org/10.3389/fneur.2014.00229 | DOI Listing |
Eur J Nutr
September 2025
Department of Nutrition, Exercise and Sports, University of Copenhagen, Frederiksberg, Denmark.
Purpose: We developed a diet quality index based on the Planetary Health Diet (PHD) to assess healthy and sustainable diets. The index was applied alongside socio-demographic characteristics in five regions across Europe and North Africa.
Methods: The Sustainable Healthy Diet Index (SHDI) was designed using existing and validated healthy diet indexes.
J Appl Res Intellect Disabil
September 2025
University College Dublin School of Psychology, Dublin, Ireland.
Background: Most adults with Down syndrome develop Alzheimer's disease (AD) pathology in their 30s, yet research into cognitive health programmes for this group remains limited.
Method: A mixed-methods feasibility randomised control trial (RCT) evaluated an adapted, manualised group-based cognitive stimulation therapy (CST) programme for adults with Down syndrome (N = 12; M = 30) without dementia. Participants were randomly assigned to CST (n = 6) or control (services as usual; n = 6), with assessments at baseline, post-programme, and four-month follow-up by a blinded researcher.
Cancer Med
September 2025
Hospital Vírgen del Puerto, Extremadura, Spain.
Patients And Methods: In this multicenter longitudinal study, data from the Spanish Register in AS (AEU-PIEM/2014/0001) were reviewed. The study focused on a cohort of AS patients registered between 2014 and 2019, featuring open inclusion criteria and diverse follow-up strategies.
Results: A total of 3315 AS patients were recruited, with 2881 and 434 categorized into the low and intermediate risk groups based on NCCN grouping at inclusion.
Vet Anaesth Analg
July 2025
Department of Clinical Sciences, College of Veterinary Medicine, Cornell University, Ithaca, NY, USA.
Objective: To determine the use of Air-Test in ventilated, anaesthetized dogs for evaluating oxygen uptake and to determine its potential utility in guiding the decision to perform an alveolar recruitment manoeuvre (ARM).
Study Design: Retrospective cohort study.
Animals: A total of 25 client-owned dogs undergoing general anaesthesia.
J Neurooncol
September 2025
Department of Neurosurgery, Paracelsus Medical University, Breslauer Straße 201, 90471, Nuremberg, Bavaria, Germany.
Purpose: Resection of glioblastomas infiltrating the motor cortex and corticospinal tract (CST) is often linked to increased perioperative morbidity. Navigated transcranial magnetic stimulation (nTMS) motor mapping has been advocated to increase patient safety in these cases. The additional impact of patient frailty on overall outcome after resection of cases with increased risk for postoperative motor deficits as identified with nTMS needs to be investigated.
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