Vasoconstriction in isolated goat aorta does not increase mean aortic pressure
Gangadharan, N.; V, A.; Jebaraj, B.; Zachariah, S. M.; Devasahayam, S.; Saravana Kumar, G.; Subramani, S.
Show abstract
Vasoconstriction in small arteries and arterioles is known to increase resistance to flow, while vasoconstriction in large arteries and aorta is known to decrease their compliance. Besides this general understanding, there is no systematic documentation on what happens to small artery compliance and large artery resistance during vasoconstriction and the corresponding alterations in vascular pressure. The aim of the study is to assess the effect of adrenaline on goat aortae and small arteries in terms of resistance and compliance. Isolated goat aortae and small arteries were perfused with a pulsatile pump and lumen pressure was recorded before and after addition of adrenaline. In the aortae, systolic pressure increased, diastolic pressure decreased, pulse pressure increased (p = 0.018, WSR); but the mean pressure remained the same (p = 0.357, WSR). Small artery vasoconstriction caused an increase in systolic, diastolic and mean pressures (p = 0.028, WSR). Using length, radius, and thickness data from the tissues and the tubes of the experimental set-up, electrical models were simulated to understand the biological data. The simulations allow us to infer that vasoconstriction in aorta leads to a reduction in compliance, but an increase in resistance if any, is not sufficient to change the mean aortic pressure. On the other hand, vasoconstriction in small arteries increases resistance, but a decrease in compliance if any, does not affect any of the four pressure parameters measured. Vasoconstriction in aorta decreases compliance and therefore increases pulse pressure but does not change resistance significantly enough to alter mean pressure. Key Points SummaryO_LIThe main aim of the study is to understand where exactly resistance (R) and compliance (C) components of the vasculature occur. There is no definitive evidence for the effect of large artery vasoconstriction on resistance and hence the mean arterial pressure. C_LIO_LIThe manuscript presents biological experiments studying the pressure response of goat aorta and small arteries to adrenaline (invitro) and the interpretations using equivalent electrical models. C_LIO_LIThe study shows that in aorta and large arteries, vasoconstriction does not lead to a reduction in lumen diameter sufficient to cause a rise in resistance and mean pressure as compared to small arteries. C_LIO_LIKnowledge of exact location of R and C in the arterial tree enables re-assessment of the differential action of vasoactive drugs on resistance versus compliance vessels once we resolve beat-to-beat R and C changes in response to a drug. This way antihypertensive therapy can be tailored to address the specific cause of the type of hypertension. C_LI
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Predictive modeling of secondary pulmonary hypertension in left ventricular diastolic dysfunction 94%
- Feasibility of estimation of aortic wave intensity using non-invasive pressure recordings in the absence of flow velocity in man. 93%
- A compact multifunctional model of the rabbit atrioventricular node with dual pathways 93%
Similar papers in this journal
- Phenylephrine induces relaxation of longitudinal strips from small arteries of goat legs 96%
- A coupled atrioventricular-aortic setup for in-vitro hemodynamic study of the systemic circulation: Design, Fabrication, and Physiological relevancy 95%
- Estimating pulse wave velocity from the radial pressure wave using machine learning algorithms 95%
Similar papers in this journal
- Sex Differences in Middle Cerebral Artery Reactivity and Hemodynamics Independent from Changes in Systemic Arterial Stiffness in Adult Sprague-Dawley Rats 94%
- Positive Rate Dependent Action Potential Prolongation By Modulating Potassium Ion Channels 93%
- The assessment of cortical hemodynamical responses induced by tubuloglomerular feedback using in vivo imaging 93%
Similar papers in this journal
- A 1D Model Characterizing the Role of Spatiotemporal Contraction Distributions on Lymph Transport 95%
- Calculating the optimal hematocrit under the constraint of constant cardiac power 94%
- Understanding Embolus Transport And Source To Destination Mapping Of Thromboemboli In Hemodynamics Driven By Left Ventricular Assist Device 94%
Similar papers in this journal
- Genetic deletion of cytoglobin exacerbates cardiac hypertrophy and inhibits cardiac fibroblast activation independent of changes in blood pressure 92%
- The Impact of Age and Sex on Cerebral and Large Artery Stiffness and the Response to Pulse Pressure 91%
- Cardiac remodeling after six weeks of high-intensity interval training to exhaustion in endurance-trained males 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.