Background: Defective baroreflex function has been suggested as a potential mechanism accounting for the development of syncopal episodes. The present study was therefore aimed at assessing the non-invasive, indirect hemodynamic profile and baroreflex function by means of tilting, which is a natural stimulation crucial to physiological baroreflex activity, in syncopal patients and healthy controls.
Material/methods: Seventeen consecutive patients with a positive response to head-up tilting and fourteen healthy subjects as controls underwent continuous and non-invasive beat-to-beat heart rate and arterial pressure measurements in order to evaluate systolic, diastolic, and dicrotic pressures, as well as heart rate. Baroreflex function was calculated as the slope of the linear regression line relating systolic arterial pressure to RR interval changes during upward and downward phases of tilting, respectively.
Results: When compared to healthy subjects, vasodepressive patients showed a significantly weaker correlation between systolic pressure and RR interval changes both in upward tilting, (r = 0.68 vs r = 0.91, p<0.05) and downward tilting (r = 0.48 vs r = 0.93, p<0.01).
Conclusions: Our results show that an impairment in baroreflex-mediated adjustment to postural challenge can be detected in syncopal patients also during upward tilting, that is, in the early phase of the test. Moreover, our investigation emphases the utility of a noninvasive, complete hemodynamic evaluation of the early phase of tilting in order to detect peculiar behaviours of pulse wave contour and related parameters.
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J Exp Biol
January 2025
Laboratory of Physiology, Atmosphere and Ocean Research Institute, University of Tokyo, 5-1-5, Kashiwanoha, Kashiwa, Chiba, 277-8564, Japan.
In general, ghrelin is known as one of the orexigenic hormones in mammals. On the other hand, it has been shown that ghrelin inhibits water intake, which appear to be inconsistent with its role in the feeding response. In this study, the effect of ghrelin on water intake was comprehensively addressed using conscious seawater-acclimated eels known as an experimental model for water drinking behaviour.
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Jamia Hamdard School of Chemical & Life Sciences Department of Biotechnology New Delhi India Department of Biotechnology, School of Chemical & Life Sciences, Jamia Hamdard, New Delhi.
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Auton Neurosci
January 2025
Departments of Applied Clinical Research, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA. Electronic address:
During exercise circulatory adjustments to meet oxygen demands are mediated by multiple autonomic mechanisms, the skeletal muscle exercise pressor reflex (EPR), the baroreflex (BR), and by feedforward signals from central command neurons in higher brain centers. Insulin resistance in peripheral tissues includes sensitization of skeletal muscle afferents by hyperinsulinemia which is in part responsible for the abnormally heightened EPR function observed in diabetic animal models and patients. However, the role of insulin signaling within the central nervous system (CNS) is receiving increased attention as a potential therapeutic intervention in diseases with underlying insulin resistance.
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January 2025
Department of Internal and Family Medicine, Lesya Ukrainka Volyn National University, Lutsk, Ukraine.
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J Clin Med
January 2025
Operative Unit of Vascular Surgery, IRCCS Policlinico San Donato, 20097 San Donato Milanese, Italy.
: Carotid artery stenosis (CAS) is one of the main causes of stroke, and the vulnerability of plaque has been proved to be a determinant. A joint analysis of shear wave elastography, a radiofrequency echo-based wall tracking technique for arterial stiffness evaluation, and of autonomic and baroreflex function is proposed to noninvasively, preoperatively assess plaque vulnerability in asymptomatic CAS patients scheduled for carotid endarterectomy. : Elastographic markers of arterial stiffness were derived preoperatively in 78 CAS patients (age: 74.
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