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1.
Diab Vasc Dis Res ; 19(3): 14791641221094321, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-35637577

RESUMEN

Obesity is linked to increased arterial size, carotid intima-media thickness and arterial stiffness. The effects of obesity and body composition on muscular artery intima-media and adventitia thickness has previously not been established. The aim of this study was to explore associations between carotid and muscular artery wall layer thickness with body composition and cardiovascular risk factors in early middle-aged women. This is a cross-sectional study including 199 women aged 40±4 years. Arterial lumen (LD), intima-media (IMT) and adventitia thickness (AT) were measured from carotid, brachial and radial arteries using ultra-high frequency ultrasound (22-71 MHz). Women with obesity had increased IMT in carotid (0.47 vs 0.45 mm), brachial (0.19 vs 0.17 mm) and radial arteries (0.16 vs 0.15 mm) and increased brachial AT (0.14 vs 0.13 mm). In multiple regression models all arterial LD (ß-range 0.02-0.03 mm/kg/m2), IMT (ß-range 0.91-3.37 µm/kg/m2), AT (ß-range 0.73-1.38 µm/kg/m2) were significantly associated with BMI. The IMT of all arteries were significantly associated with systolic blood pressure (ß-range 0.36-0.85 µm/mmHg), attenuating the association between IMT and BMI (ß-range 0.18-2.24 µm/kg/m2). Obese early middle-aged women have increased arterial intima media thickness and brachial artery adventitia thickness compared to non-obese counterparts. The association between BMI and intima-media thickness is partly mediated through blood pressure levels.


Asunto(s)
Adventicia , Grosor Intima-Media Carotídeo , Adventicia/diagnóstico por imagen , Arterias Carótidas/diagnóstico por imagen , Estudios Transversales , Femenino , Humanos , Persona de Mediana Edad , Obesidad/complicaciones , Obesidad/diagnóstico , Factores de Riesgo
2.
Undersea Hyperb Med ; 46(4): 429-435, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-31509899

RESUMEN

INTRODUCTION: It is vital to protect divers from the cold, particularly in Arctic conditions. The insulating gas layer within the drysuit is crucial for reducing heat loss. The technical diving community has long claimed the superiority of argon over air as an insulating gas. Although argon is widely used, previous studies have shown no significant differences between the two gases. Owing to its lower heat conductivity, argon should be a better thermal insulating gas than air. METHODS: The study aimed to determine whether argon is beneficial for reducing heat loss in divers during development of military drysuit diving equipment in Arctic water temperatures. Four divers completed 14 dives, each lasting 45 minutes: seven dives used air insulation and seven used argon insulation. Rectal and eight skin temperatures were measured from which changes in calculated mean body temperature (MBT) were assessed. RESULTS: There was a significant reduction in area weighted skin temperature over time (0-45 minute) on air dives (ΔTskin = -4.16°C, SE = 0.445, P ⟨ 0.001). On argon dives the reduction was significantly smaller compared to air dives (difference between groups = 2.26°C, SE = 0.358, P ⟨ 0.001). There were no significant changes in rectal temperatures, nor was a significant difference seen between groups. CONCLUSION: Compared to air, argon may be superior as a drysuit insulating gas in Arctic water temperatures for some divers. Argon used as insulating gas can make diving safer and may diminish the risks of fatal diving accidents and occupational hazard risks in professional diving.


Asunto(s)
Aire , Argón , Buceo , Ropa de Protección , Temperatura Cutánea , Conductividad Térmica , Adulto , Regiones Árticas , Regulación de la Temperatura Corporal , Frío , Diseño de Equipo/métodos , Finlandia , Humanos , Masculino , Persona de Mediana Edad , Personal Militar , Estudios Retrospectivos
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