In a previous study (Gomm et al., 1991) people with a variety of respiratory diseases were tested and criteria defined for assessing their ability to provide samples for Breath Alcohol Testing Instruments. This study investigated the possible problems which may be encountered by healthy people of small stature--5ft 5in (166cm) or less--who do not suffer from a respiratory disease. This study followed the same pattern as the earlier work in that lung function (Forced Expiration Volume in One Second (FEV1) and Forced Vital Capacity (FVC)) was measured by spirometry, and Peak Expiration Flow Rate (PEFR) was measured using a Wright peak flow meter. Following the lung function measurements the subjects were requested to provide samples for Breath Alcohol Testing Instruments used by the Police in Great Britain. As with the previously reported work (Gomm et al., 1991), this study found that the FEV1 and FVC gave the most reliable indication of a person's capability of satisfying the sampling requirements of Breath Alcohol Testing Instruments, but on this occasion the PEFR also provided a good confirmatory indication. Because there were no subjects with interstitial lung diseases the values determined by this study on 48 healthy adults indicate that a healthy person of small stature should be capable of supplying a suitable breath sample if their FEV1, FVC and PEFR are greater than 2.31, 2.61 and 330 l/min respectively.
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http://dx.doi.org/10.1177/002580249303300408 | DOI Listing |
Vet Res Commun
January 2025
Department of Clinical Sciences and Translational Medicine, Faculty of Medicine, University of Rome "Tor Vergata", Via Montpellier 1, Rome, 001 33, Italy.
In our study, fancy southern platyfish Xiphophorus maculatus (Cyprinodontiformes, Poeciliidae) were examined due to breathing disorders and mortality. Fish came from Vietnam farm and were redistributed by international wholesaler. In fish, loss of appetite and gasping near the water surface was observed.
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December 2024
Department of Clinical Pharmacy, College of Pharmacy, King Saud University, Riyadh 12371, Saudi Arabia.
Methanol is a widely used industrial and household alcohol that poses significant health risks upon exposure. Despite its extensive use, methanol poisoning remains a critical public health concern globally, often resulting from accidental or intentional ingestion and outbreaks linked to contaminated beverages. Methanol toxicity stems from its metabolic conversion to formaldehyde and formic acid, leading to severe metabolic acidosis and multiorgan damage, including profound CNS effects and visual impairments.
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December 2024
UR 3072, "Mitochondria, Oxidative Stress and Muscle Plasticity", Biomedicine Research Center of Strasbourg (CRBS), Faculty of Medicine, University of Strasbourg, 67000 Strasbourg, France.
The anti-inflammatory and analgesic properties of cannabis might be useful to treat muscle diseases, including those linked or not to alcohol. Nevertheless, delta 9 tetrahydrocannabinol (THC) and ethanol (EtOH), often used concomitantly, can have deleterious effects on cardiac mitochondria. We therefore determined whether EtOH, alone and associated with THC, impairs skeletal muscle mitochondrial respiration.
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January 2025
From the Division of Gastrointestinal, Trauma, and Endocrine Surgery, Department of Surgery (A.P., K.M.M., A.C.Q., E.J.K., J.-P.I.), Division of Burn Research (E.J.K.), and Division of Alcohol Research (E.J.K.), Department of Immunology and Microbiology, University of Colorado, Aurora, Colorado.
Background: Burn injuries trigger a systemic hyperinflammatory response, leading to multiple organ dysfunction, including significant hepatic damage. The liver plays a crucial role in regulating immune responses and metabolism after burn injuries, making it critical to develop strategies to mitigate hepatic impairment. This study investigates the role of methylation-controlled J protein (MCJ), an inner mitochondrial protein that represses complex I in burn-induced oxidative stress and mitochondrial dysfunction, using an in vitro Alpha Mouse Liver 12 cell model.
View Article and Find Full Text PDFACS Sens
January 2025
Dipartimento di Chimica, Università degli Studi di Milano, Golgi 19, 20133 Milan, Italy.
Accurate methods for detecting volatile organic compounds (VOCs) are essential for noninvasive disease diagnosis, with breath analysis providing a simpler, user-friendly alternative to traditional diagnostic tools. However, challenges remain in low-temperature VOC solid-state sensors, especially concerning their selectivity and functionality at room temperature. Herein, we present key insights into optimizing multiwalled carbon nanotubes (MWCNTs)/polyaniline (PANI) and ZnO nanocomposites for efficient, light-free selective acetone sensing.
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