Publications by authors named "V Patton"

Purpose: The impact of a permanent stoma, such as post-abdominoperineal resection (APR), on quality of life (QoL) is well-documented. While stoma-related QoL tools exist, their relationship with stoma satisfaction is unclear. This study aimed to identify which aspects of QoL were most associated with stoma satisfaction.

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Point-of-view simulations involve participants engaging in simulation to experience what it might be like to live with a health condition or disability. These types of simulations have been used frequently in nurse education as a valuable pedagogical tool, as research has shown that student engagement with point-of-view simulations increases student empathy. However, point-of-view simulations have also been problematised by disability community members and scholars researching in the disability space, as ableist and culturally unsafe.

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Introduction: Hallucinations (hearing or seeing things that others do not) are a common feature of psychosis, causing significant distress and disability. Existing treatments such as cognitive-behavioural therapy for psychosis (CBTp) have modest benefits, and there is a lack of CBTp-trained staff. Shorter, targeted treatments that focus on specific symptoms delivered by a non-specialist workforce could substantially increase access to treatment.

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The mechanisms and consequences of genome evolution on viral fitness following host shifts are poorly understood. In addition, viral fitness -the ability of an organism to reproduce and survive- is multifactorial and thus difficult to quantify. Influenza A viruses (IAVs) circulate broadly among wild birds and have jumped into and become endemic in multiple mammalian hosts, including humans, pigs, dogs, seals, and horses.

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Systemic delivery of hydrophobic anti-cancer drugs with nanocarriers, particularly for drug-resistant and metastatic cancer, remain a challenge because of the difficulty to achieve high drug loading, while maintaining a small hydrodynamic size and colloid stability in blood to ensure delivery of an efficacious amount of drug to tumor cells. Here we introduce a new approach to address this challenge. In this approach, nanofibers of larger size with good drug loading capacity are first constructed by a self-assembly process, and upon intravascular injection and interacting with serum proteins in vivo, these nanofibers break down into ultra-fine nanoparticles of smaller size that inherit the drug loading property from their parent nanofibers.

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