Publications by authors named "N M Robinson"

Anomalous pulmonary vein drainage is a rare but clinically relevant variant of the cardiovascular anatomy. We present a case report of a 22-year-old male who was incidentally found to have anomalous pulmonary vein drainage into the innominate vein. The patient had a known history of seizures and was brought to the emergency department following a simple tonic-clonic seizure.

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Background: While benefits of involving consumers in research are well established, bereaved parents face unique challenges, and descriptions of their experiences with co-designed stillbirth research are lacking. The collective experience of 'Project Engage' involved co-designing resources to support bereaved parents' involvement in research.

Methods: This study aimed to describe and evaluate the involvement of bereaved parents as co-investigators of a stillbirth research project.

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Shengmai San (SMS) is a traditional Chinese medicine formula used for supplementing and and can mitigate symptoms related to malignant arrhythmia and heart failure. This systematic review aimed at exploring the effectiveness and safety of SMS for viral myocarditis (VMC). Eight databases from their inception to June 2023 were searched to identified randomized controlled trials (RCTs) focusing on SMS for VMC.

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The use of animal-borne devices (= biologgers) has revolutionized the study of marine megafauna, yet there remains a paucity of data concerning the behavioral and physiological impacts of biologger attachment and retention. Here, we used animal-borne cameras to characterize the behavior and dive duration of juvenile green turtles () in The Bahamas for up to 210 min after biologger deployment ( = 58). For a "control," we used unoccupied aerial vehicles (UAVs) to collect comparable data from nonhandled green turtles ( = 25) in the same habitats.

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Single nucleus RNA sequencing (snRNA-seq) technology offers unprecedented resolution for studying cell type-specific gene expression patterns. However, snRNA-seq poses high costs and technical limitations, often requiring the pooling of independent biological samples and loss of individual sample-level data. Deconvolution of sample identity using inherent features would enable the incorporation of pooled barcoding and sequencing protocols, thereby increasing data throughput and analytical sample size without requiring increases in experimental sample size and sequencing costs.

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