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Mass spectrometry imaging (MSI) is an important analytical technique that simultaneously reports the spatial location and abundance of detected ions in biological, chemical, clinical, and pharmaceutical studies. As MSI grows in popularity, it has become evident that data reporting varies among different research groups and between techniques. The lack of consistency in data reporting inherently creates additional challenges in comparing intra- and inter-laboratory MSI data. In this tutorial, we propose a unified data reporting system, SMART, based on the common features shared between techniques. While there are limitations to any reporting system, SMART was decided upon after significant discussion to more easily understand and benchmark MSI data. SMART is not intended to be comprehensive but rather capture essential baseline information for a given MSI study; this could be within a study (e.g., effect of spot size on the measured ion signals) or between two studies (e.g., different MSI platform technologies applied to the same tissue type). This tutorial does not attempt to address the confidence with which annotations are made nor does it deny the importance of other parameters that are not included in the current SMART format. Ultimately, the goal of this tutorial is to discuss the necessity of establishing a uniform reporting system to communicate MSI data in publications and presentations in a simple format to readily interpret the parameters and baseline outcomes of the data.
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http://dx.doi.org/10.1002/jms.4904 | DOI Listing |
Nurs Crit Care
September 2025
School of Nursing and Midwifery, Monash University, Frankston, Victoria, Australia.
Background: Optimal oral care is essential in preventing non-ventilator hospital-associated pneumonia and enhancing patient comfort. However, nurses' clinical oral care practices for patients not on mechanical ventilation in the intensive care unit are both underreported and understudied.
Aim: To explore intensive care nurses' clinical oral care practices for patients not on mechanical ventilation in intensive care units.
J Adv Nurs
September 2025
Department of Sociology and Behavioral Sciences, De La Salle University, Manila, Philippines.
Aim: To explore the potential axiological shift in nursing, drawing upon a critical reading of the new definition of 'nursing' published by the International Council of Nurses (ICN) in June 2025, and to articulate its implications for research and doctoral education.
Design: Critical discussion paper.
Methods: Guided by critical inquiry and emancipatory nursing knowledge development approaches, this paper deploys retroductive analysis to interrogate the axiological commitments that inform and are generated by the 2025 ICN definition and how it relates to nursing research.
J Adv Nurs
September 2025
Department of Internal Medicine, Erasmus MC, University Medical Center Rotterdam, Rotterdam, the Netherlands.
Aims: To assess self-reported practices and knowledge of nurses and prescribers (i.e., physicians and nurse practitioners) on intravenous fluid therapy, and to evaluate how this is documented through a clinical documentation review.
View Article and Find Full Text PDFJ Adv Nurs
September 2025
Faculty of Psychology and Educational Sciences, KU Leuven, Leuven, Belgium.
Aim: To explore the identity and body experiences of emerging adults with congenital heart disease.
Design: Qualitative descriptive study.
Methods: Narratives from 152 emerging adults about living with congenital heart disease and its impact on their identity and body experiences were analysed using template analysis.
ACS Nano
September 2025
Department of Chemical Physics, Key Laboratory of Precision and Intelligent Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, China.
The coupling between transition metal dichalcogenides (TMDCs) and SrTiO has recently emerged as a fertile platform for discovering interfacial phenomena, where particle interactions, lattice coupling, and dielectric screening give rise to interesting physical effects. These hybrid systems hold significant promise for two-dimensional (2D) electronics, ferroelectric state control, and metastable phase engineering. However, effective modulation of the interfacial electronic structure remains a critical challenge.
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