641 research outputs found
COVID-19 Pandemic’s Effect on Occupational Therapy Students’ Time-Use and Occupational Engagement On Returning to In-Person Learning
The COVID-19 pandemic emotionally and physically impacted students in occupational therapy and occupational therapy assistant programs. College students lost autonomy and access to meaningful occupations and environments. As students returned to campus, they struggled to navigate and adapt to in-person occupations and how they use their time. This study uses a mixed method descriptive research design to understand how the pandemic affected occupational therapy students\u27 time-use and occupational engagement during the transition to in-person learning. Seventy-three students completed an online survey, while 12 of those students additionally participated in a follow-up time-use diary and interview. Eighty-three percent of the participants agreed or strongly agreed they learned more effectively in-person compared to online, while 65% agreed or strongly agreed to make time to participate in satisfying occupations. Three themes emerged after the thematic analysis of the qualitative data: time compression, lessons from adapting, and autonomy and choice. The findings provide perspectives on occupational therapy students\u27 ability to adapt and manage their time during this transition and offer insight into other transitions in their programs
Espaloma-0.3.0: Machine-learned molecular mechanics force field for the simulation of protein-ligand systems and beyond
Molecular mechanics (MM) force fields -- the models that characterize the
energy landscape of molecular systems via simple pairwise and polynomial terms
-- have traditionally relied on human expert-curated, inflexible, and poorly
extensible discrete chemical parameter assignment rules, namely atom or valence
types. Recently, there has been significant interest in using graph neural
networks to replace this process, while enabling the parametrization scheme to
be learned in an end-to-end differentiable manner directly from quantum
chemical calculations or condensed-phase data. In this paper, we extend the
Espaloma end-to-end differentiable force field construction approach by
incorporating both energy and force fitting directly to quantum chemical data
into the training process. Building on the OpenMM SPICE dataset, we curate a
dataset containing chemical spaces highly relevant to the broad interest of
biomolecular modeling, covering small molecules, proteins, and RNA. The
resulting force field, espaloma 0.3.0, self-consistently parametrizes these
diverse biomolecular species, accurately predicts quantum chemical energies and
forces, and maintains stable quantum chemical energy-minimized geometries.
Surprisingly, this simple approach produces highly accurate protein-ligand
binding free energies when self-consistently parametrizing protein and ligand.
This approach -- capable of fitting new force fields to large quantum chemical
datasets in one GPU-day -- shows significant promise as a path forward for
building systematically more accurate force fields that can be easily extended
to new chemical domains of interest
Mas-related G-protein–coupled receptors inhibit pathological pain in mice
An important objective of pain research is to identify novel drug targets for the treatment of pathological persistent pain states, such as inflammatory and neuropathic pain. Mas-related G-protein–coupled receptors (Mrgprs) represent a large family of orphan receptors specifically expressed in small-diameter nociceptive primary sensory neurons. To determine the roles of Mrgprs in persistent pathological pain states, we exploited a mouse line in which a chromosomal locus spanning 12 Mrgpr genes was deleted (KO). Initial studies indicated that these KO mice show prolonged mechanical- and thermal-pain hypersensitivity after hind-paw inflammation compared with wild-type littermates. Here, we show that this mutation also enhances the windup response of dorsal-horn wide dynamic-range neurons, an electrophysiological model for the triggering of central pain sensitization. Deletion of the Mrgpr cluster also blocked the analgesic effect of intrathecally applied bovine adrenal medulla peptide 8–22 (BAM 8–22), an MrgprC11 agonist, on both inflammatory heat hyperalgesia and neuropathic mechanical allodynia. Spinal application of bovine adrenal medulla peptide 8–22 also significantly attenuated windup in wild-type mice, an effect eliminated in KO mice. These data suggest that members of the Mrgpr family, in particular MrgprC11, may constitute an endogenous inhibitory mechanism for regulating persistent pain in mice. Agonists for these receptors may, therefore, represent a class of antihyperalgesics for treating persistent pain with minimal side effects because of the highly specific expression of their targets
The coexistence of peace and conflict in South America: toward a new conceptualization of types of peace
South America's predominant democratic regimes and its increasing interdependence on regional trade have not precluded the emergence of militarized crises between Colombia and Venezuela or the revival of boundary claims between Chile and Peru. This way, how can we characterize a zone that, in spite of its flourishing democracy and dense economic ties, remain involved in territorial disputes for whose resolution the use of force has not yet been discarded? This article contends that existing classifications of zones of peace are not adequate to explain this unusual coexistence. Thus, its main purpose is to develop a new analytical category of regional peace for assessing this phenomenon: the hybrid peace. It aims to research the evolution of security systems in South America during the previous century and build a new, threefold classification of peace zones: negative peace zones, hybrid peace zones, and positive peace zones
Mergers and Acquisitions in Latin America: Industrial Productivity and Corporate Governance
This paper examines the impact of industrial productivity on transnationals M&As from OECD countries towards Latin American countries in the period 1996 to 2010. It also analyzes the relationship between external mechanism of corporate governance and transnational M&As. For this purpose we use a gravitational model at the industry level. We find that industry productivity and higher standards of corporate governance in the country of origin promote transnational M&As activity. However, it is also found that higher levels of capital and technological productivity decreases transnational M&As activity
Holocene sea level fluctuations and coastal evolution in the central Algarve (southern Portugal)
In Armação de Pêra Bay, southern Portugal, environmental changes during the Holocene can be interpreted based on the morphological and sedimentological similarities between older geomorphic features (cemented beach and dune rocks) and present coastal features. Using knowledge of the present beach and dune processes, we propose a two-step model for the evolution of Armação de Pêra Bay. First, during the rapid sea level rise between about 8800 and 6600 yr cal BP, the bay changed from a positive to a negative budget littoral cell and transgressive dunes formed, favoured by drought conditions. At about 5000 yr cal BP, during a sea level maximum, beach width was less than the critical fetch and dunes stabilized and underwent cementation during
the wetter Atlantic climatic event. The second phase of dune accumulation started at about 3200 yr cal BP, due to a regression of sea level during which the bay changed back to a positive budget littoral cell in which beach width was greater than the critical fetch. Currently, the beach width is less than the critical fetch, dunes are inactive, and the sedimentary budget is negative due to sediment storage in local river systems.Fundação para a Ciência e a Tecnologia. FEDER, and OE (Project POCTI/CTA/34162/2000
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Model International Mobility Convention
While people are as mobile as they ever were in our globalized world, the movement of people across borders lacks global regulation. This leaves many refugees in protracted displacement and many migrants unprotected in irregular and dire situations. Meanwhile, some states have become concerned that their borders have become irrelevant. International mobility—the movement of individuals across borders for any length of time as visitors, students, tourists, labor migrants, entrepreneurs, long-term residents, asylum seekers, or refugees—has no common definition or legal framework. To address this key gap in international law, and the growing gaps in protection and responsibility that are leaving people vulnerable, the "Model International Mobility Convention" proposes a framework for mobility with the goals of reaffirming the existing rights afforded to mobile people (and the corresponding rights and responsibilities of states) as well as expanding those basic rights where warranted. In 213 articles divided over eight chapters, the Convention establishes both the minimum rights afforded to all people who cross state borders as visitors, and the special rights afforded to tourists, students, migrant workers, investors and residents, forced migrants, refugees, migrant victims of trafficking and migrants caught in countries in crisis. Some of these categories are covered by existing international legal regimes. However, in this Convention these groups are for the first time brought together under a single framework. An essential feature of the Convention is that it is cumulative. This means, for the most part, that the chapters build on and add rights to the set of rights afforded to categories of migrants covered by earlier chapters. The Convention contains not only provisions that afford rights to migrants and, to a lesser extent, States (such as the right to decide who can enter and remain in their territory). It also articulates the responsibilities of migrants vis-à -vis States and the rights and responsibilities of different institutions that do not directly respond to a right held by migrants
Phosphodiesterase Inhibition Increases CREB Phosphorylation and Restores Orientation Selectivity in a Model of Fetal Alcohol Spectrum Disorders
Background: Fetal alcohol spectrum disorders (FASD) are the leading cause of mental retardation in the western world and children with FASD present altered somatosensory, auditory and visual processing. There is growing evidence that some of these sensory processing problems may be related to altered cortical maps caused by impaired developmental neuronal plasticity. Methodology/Principal Findings: Here we show that the primary visual cortex of ferrets exposed to alcohol during the third trimester equivalent of human gestation have decreased CREB phosphorylation and poor orientation selectivity revealed by western blotting, optical imaging of intrinsic signals and single-unit extracellular recording techniques. Treating animals several days after the period of alcohol exposure with a phosphodiesterase type 1 inhibitor (Vinpocetine) increased CREB phosphorylation and restored orientation selectivity columns and neuronal orientation tuning. Conclusions/Significance: These findings suggest that CREB function is important for the maturation of orientation selectivity and that plasticity enhancement by vinpocetine may play a role in the treatment of sensory problems in FASD
Autism in Vietnam: The Case for the Development and Evaluation of an Information Book to be Distributed at the Time of Diagnosis
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