Noninvasive approaches to measuring cerebral circulation and metabolism are crucial to furthering our understanding of brain function. These approaches also have considerable potential for clinical use "at the bedside". However, a highly nontrivial task and precondition if such methods are to be used routinely is the robust physiological interpretation of the data. In this paper, we explore the ability of a previously developed model of brain circulation and metabolism to explain and predict quantitatively the responses of physiological signals. The five signals all noninvasively-measured during hypoxemia in healthy volunteers include four signals measured using near-infrared spectroscopy along with middle cerebral artery blood flow measure...
Near-infrared spectroscopy (NIRS) is a non-invasive optical imaging technique that has rapidly been ...
In recent years there has been widespread use of near infrared spectroscopy (NIRS) to monitor the br...
Patients with neurological diseases are vulnerable to cerebral ischemia, which can lead to brain inj...
Noninvasive approaches to measuring cerebral circulation and metabolism are crucial to furthering ou...
Noninvasive approaches to measuring cerebral circulation and metabolism are crucial to furthering ou...
Noninvasive approaches to measuring cerebral circulation and metabolism are crucial to furthering ou...
We construct a model of brain circulation and energy metabolism. The model is designed to explain ex...
We construct a model of brain circulation and energy metabolism. The model is designed to explain ex...
The use of a mathematical model of cerebral physiology and metabolism may aid the interpretation of ...
Multimodal monitoring of brain state is important both for the investigation of healthy cerebral phy...
This thesis describes studies of cerebral oxygenation, autoregulation and metabolism carried out on ...
Understanding changes in cerebral oxygenation, haemodynamics and metabolism holds the key to individ...
Near-infrared spectroscopy (NIRS) is a non-invasive optical imaging technique that has rapidly been ...
Abstract: A new hemodynamic model relates tissue hemoglobin concentration to blood volume, flow, and...
A novel hemodynamic model has been recently introduced, which provides analytical relation-ships bet...
Near-infrared spectroscopy (NIRS) is a non-invasive optical imaging technique that has rapidly been ...
In recent years there has been widespread use of near infrared spectroscopy (NIRS) to monitor the br...
Patients with neurological diseases are vulnerable to cerebral ischemia, which can lead to brain inj...
Noninvasive approaches to measuring cerebral circulation and metabolism are crucial to furthering ou...
Noninvasive approaches to measuring cerebral circulation and metabolism are crucial to furthering ou...
Noninvasive approaches to measuring cerebral circulation and metabolism are crucial to furthering ou...
We construct a model of brain circulation and energy metabolism. The model is designed to explain ex...
We construct a model of brain circulation and energy metabolism. The model is designed to explain ex...
The use of a mathematical model of cerebral physiology and metabolism may aid the interpretation of ...
Multimodal monitoring of brain state is important both for the investigation of healthy cerebral phy...
This thesis describes studies of cerebral oxygenation, autoregulation and metabolism carried out on ...
Understanding changes in cerebral oxygenation, haemodynamics and metabolism holds the key to individ...
Near-infrared spectroscopy (NIRS) is a non-invasive optical imaging technique that has rapidly been ...
Abstract: A new hemodynamic model relates tissue hemoglobin concentration to blood volume, flow, and...
A novel hemodynamic model has been recently introduced, which provides analytical relation-ships bet...
Near-infrared spectroscopy (NIRS) is a non-invasive optical imaging technique that has rapidly been ...
In recent years there has been widespread use of near infrared spectroscopy (NIRS) to monitor the br...
Patients with neurological diseases are vulnerable to cerebral ischemia, which can lead to brain inj...