paper-with-me

Papers

Modelling the Role of Nitric Oxide in Cerebral Autoregulation

2015-12-30

Malfunction of the system which regulates the bloodflow in the brain is a major cause of stroke and dementia, costing many lives and many billions of pounds each year in the UK alone. This regulatory system, known as cerebral autoregulation, has been the subject of much experimental and mathematical investigation yet our understanding of it is still quite limited. One area in which our understanding is particularly lacking is that of the role of nitric oxide, understood to be a potent vasodilator. The interactions of nitric oxide with the better understood myogenic response remain un-modelled and poorly understood. In this thesis we present a novel model of the arteriolar control mechanism, comprising a mixture of well-established and new models of individual processes, brought together for the first time. We show that this model is capable of reproducing experimentally observed behaviour very closely and go on to investigate its stability in the context of the vasculature of the whole brain. In conclusion we find that nitric oxide, although it plays a central role in determining equilibrium vessel radius, is unimportant to the dynamics of the system and its responses to variation in arterial blood pressure. We also find that the stability of the system is very sensitive to the dynamics of Ca$^{2+}$ within the muscle cell, and that self-sustaining Ca$^{2+}$ waves are not necessary to cause whole-vessel radius oscillations consistent with vasomotion.

📄 PDF Abstract BibTeX arXiv:1512.09160

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Integration of Clinical, Biological, and Computational Perspectives to Support Cerebral Autoregulatory Informed Clinical Decision Making Decomposing Cerebral Autoregulation using Mechanistic Timescales to Support Clinical Decision-Making

2022-02-07 · J. K. Briggs, J. N. Stroh, T. D. Bennett, S. Park 외

Adequate brain perfusion is required for proper brain function and life. Maintaining optimal brain perfusion to avoid secondary brain injury is one of the main concerns of neurocritical care. Cerebral autoregulation is r…

Decision Making

Towards Assistive Diagnoses in m-Health: A Gray-box Neural Model for Cerebral Autoregulation Index

2020-11-17 · Jorge Cuevas, Claudio Henriquez, Francisco Cruz

The cerebral autoregulation system (CAS), is a mechanism which aims to regulate pressure variations occurring in the cerebral circulatory system. At present, there only exist invasive methods and, in turn, they are not u…

The effect of ambient air pollution on birth outcomes in Norway

2022-08-12 · Xiaoguang Ling

Ambient air pollution is harmful to the fetus even in countries with relatively low levels of pollution. In this paper, I examine the effects of ambient air pollution on birth outcomes in Norway. I find that prenatal exp…

Emergent dynamics in an astrocyte-neuronal network coupled via nitric oxide

2022-03-14 · Bhanu Sharma, Spandan Kumar, Subhendu Ghosh, Vikram Singh

In the brain, both neurons and glial cells work in conjunction with each other during information processing. Stimulation of neurons can cause calcium oscillations in astrocytes which in turn can affect neuronal calcium …

A new computational model for quantifying blood flow dynamics across myogenically-active cerebral arterial networks

2024-11-13 · Alberto Coccarelli, Ioannis Polydoros, Alex Drysdale, Osama F. Harraz 외

Cerebral autoregulation plays a key physiological role by limiting blood flow changes in the face of pressure fluctuations. Although the involved cellular processes are mechanically driven, the quantification of haemodyn…