Publications by authors named "B K Sanjay"

Currently, there is unavailability of disease-modifying medication for Alzheimer's disease (AD), a debilitating neurological disorder. The pathogenesis of AD appears to be complex and could be influenced by the glymphatic system present in the central nervous system (CNS). Amyloid-beta (Aβ) and other metabolic wastes are eliminated from the brain interstitium by the glymphatic system, which encompasses perivascular channels and astroglial cells.

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 Early detection of type 2 diabetes mellitus (T2DM) is imperative to prevent the complications associated with the disease. Current guidelines for diagnosis rely on the assessment of serum glucose (fasting and post-prandial) and glycosylated hemoglobin (HbA1c) levels. Insulin resistance, a phenomenon associated with T2DM, has been observed before the changes in these metrics.

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Background: Dynamic visual acuity (DVA) is a complex visual function that requires the observer to detect a moving target, to visually acquire it by eye movements, and to resolve critical details contained in it, in a relatively brief time exposure. Dynamic contrast sensitivity (DCS) functions are determined over a range of angular velocities to complement the traditional contrast sensitivity (CS) functions (obtained with stationary targets).

Methodology: A new chart is constructed to assess DCS by chosen 5×5 grid and Sloan letters (D, H, N, U, V, R, Z, S, K, O, C).

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Article Synopsis
  • - The study presents a new 2D GNR-CoB composite used for electrochemical sensing and degrading malachite green (MG), with strong analytical performance shown through various imaging and testing methods.
  • - The modified pencil graphite electrode with the composite achieved an impressive limit of detection (LOD) of 1.92 nM and demonstrated a high sensitivity, allowing effective detection of MG in real samples like green peas and lady's fingers.
  • - Additionally, the 2D GNR-CoB composite exhibited excellent photocatalytic degradation of MG, achieving a 91.28% efficiency by generating reactive radicals under visible light, with a proposed mechanism for this degradation process being discussed.
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