Publications by authors named "K Aravind Menon"

Paediatric critical care units are designed for children at a vulnerable stage of development, yet the evidence base for practice and policy in paediatric critical care remains scarce. In this Health Policy, we present a roadmap providing strategic guidance for international paediatric critical care trials. We convened a multidisciplinary group of 32 paediatric critical care experts from six continents representing paediatric critical care research networks and groups.

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Background: During the Covid-19 pandemic cancer surgery was severely affected due to relocation of healthcare resources and the resulting restructuring of cancer pathways. Although this potentially affected rapidly progressing malignancies like pancreatic cancer the most, little is known about long-term outcomes following pancreatectomy.

Materials And Methods: Survival data from two pancreatic surgery centres in the UK was analysed with patients being compared across pre-pandemic (C19-) and intra-pandemic (C19+) groups.

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This study investigates the factors contributing to the recurrence of severe genetic conditions in multiple children of the same couple, focusing on a cohort of 26 families who had more than one child affected by the same genetic disorder. Conducted at a genetic clinic in India, the study employed a qualitative methodology guided by COREQ guidelines, using semi-structured interviews to explore the interplay of individual beliefs, healthcare provider practices, and systemic healthcare inefficiencies. The interviews were transcribed and analyzed using a combination of content analysis and grounded theory, which allowed for the identification of recurrent themes and emerging ideas.

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Sarcopenia is a muscle disease that occur across a lifetime. It is commonly described in the aging population but can occur earlier in life in patients with cancer. Previous studies demonstrated sarcopenia is highly prevalent in patients with gastroenteropancreatic neuroendocrine tumours (GEP-NETs).

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Nontoxic, stable, and experimentally realized lead-free halide double perovskites, CsAgBiX (X = Br, Cl), attracted much attention for solar cell applications. However, their reduced electronic dimensionality and indirect (wide) bandgap, limiting solar energy absorption efficiency, are not mostly suitable. To address such issues, we employ the computationally efficient DFT-1/2 + SOC method to study the electronic structure of cation-ordered and cation-disordered materials comparatively.

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