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Research Topic : Upper airway collapse during sleep
Scheme : NHMRC Project Grants
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  • Funded Activity

    Mechanisms Of Pharyngeal Collapse In Obstructive Sleep Apnoea Defined By Optical Coherence Tomography

    Funder
    National Health and Medical Research Council
    Funding Amount
    $476,764.00
    Summary
    Obstructive sleep apnoea is characterised by intermittent collapse of the upper airway (throat) resulting in episodes of decreased blood oxygen levels, increased blood pressure and sleep disruption. Obstructive sleep apnoea is common, affecting 5% of middle-aged adults, and is associated with worsening health, increased motor vehicle accidents and increased risk of heart disease. However the mechanisms responsible for obstructive sleep apnoea are not well understood. One reason for this lack of .... Obstructive sleep apnoea is characterised by intermittent collapse of the upper airway (throat) resulting in episodes of decreased blood oxygen levels, increased blood pressure and sleep disruption. Obstructive sleep apnoea is common, affecting 5% of middle-aged adults, and is associated with worsening health, increased motor vehicle accidents and increased risk of heart disease. However the mechanisms responsible for obstructive sleep apnoea are not well understood. One reason for this lack of understanding is that current diagnostic techniques can not accurately measure changes in the size and shape of the upper airway during sleep. Such information is vital for the accurate diagnosis and treatment of obstructive sleep apnoea. This project proposes to use a technique called endoscopic optical coherence tomography (eOCT), recently developed by ourselves, to measure the changes in upper airway size and shape in patients with obstructive sleep apnoea during wakefulness and, importantly, during sleep. A prototype of the system has been developed. Preliminary in vivo studies have been performed in the human upper airway and the results from these preliminary trials have been published. To our knowledge, world-wide, this is the only such system capable of making these measurements. The studies proposed in this application will provide a better understanding of the mechanisms underlying obstructive sleep apnoea and may lead to the development of greatly improved and more specific treatments that are tailored to the exact needs of the individual patient.
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    Funded Activity

    Pressures Exerted On Upper Airway Walls By Surrounding Tissue Structures

    Funder
    National Health and Medical Research Council
    Funding Amount
    $426,500.00
    Summary
    The obstructive sleep apnoea syndrome (OSA) refers to a condition in which throat blockage occurs during sleep leading to breathing difficulties, including cessation of breathing for short periods of time. OSA effects both men and women but is amongst the commonest of chronic disorders of adult males, occurring in 5% of men over the age of 45 years. In the proposed studies we will examine the effect of the pressure in the tissues surrounding the throat on the ability of the throat to stay open a .... The obstructive sleep apnoea syndrome (OSA) refers to a condition in which throat blockage occurs during sleep leading to breathing difficulties, including cessation of breathing for short periods of time. OSA effects both men and women but is amongst the commonest of chronic disorders of adult males, occurring in 5% of men over the age of 45 years. In the proposed studies we will examine the effect of the pressure in the tissues surrounding the throat on the ability of the throat to stay open and allow breathing. The major outcome of the animal studies is increased knowledge concerning mechanisms whereby collapsing forces are applied to the upper airway. This will give insights into potential factors influencing upper airway collapse during sleep in OSA patients. Of particular importance will be our studies on the effects of jaw position on the pressure exerted on the walls of the throat since the use of an intra-oral device to hold the jaw forward during sleep is one of the treatments used to prevent throat blockage during sleep. The studies in humans will examine, for the first time, the notion that the mass (weight) of the neck has a direct effect on the severity of sleep disordered breathing. If neck mass has a substantive influence on sleep disordered breathing then strategies aimed at reducing neck mass (fat) may provide a new therapeutic approach to the management of OSA patients.
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    Funded Activity

    Factors Determining Collapsibility Of The Human Upper Airway During Sleep And General Anaesthesia

    Funder
    National Health and Medical Research Council
    Funding Amount
    $259,625.00
    Summary
    Obstructive sleep apnoea (OSA) is common, affecting between 2-4% of middle-aged adults. It is characterised by repetitive partial or complete collapse of the upper airway during sleep. Each episode is accompanied by transient hypoxemia, hypertension and arousal. The repetitive arousals disrupt sleep resulting in excessive daytime tiredness and lethargy, which have major consequences for social well-being and productivity in our community. OSA is an independent risk factor for vascular disease. C .... Obstructive sleep apnoea (OSA) is common, affecting between 2-4% of middle-aged adults. It is characterised by repetitive partial or complete collapse of the upper airway during sleep. Each episode is accompanied by transient hypoxemia, hypertension and arousal. The repetitive arousals disrupt sleep resulting in excessive daytime tiredness and lethargy, which have major consequences for social well-being and productivity in our community. OSA is an independent risk factor for vascular disease. Central to understanding OSA is knowledge of the mechanisms responsible for vulnerability to upper airway collapse. It remains unclear to what extent this vulnerability relates to abnormalities in the underlying structure and passive physical characteristics of the upper airway, versus abnormalities in activity of upper airway muscles. Making this distinction has been problematic because current methods of testing upper airway collapsibility in sleeping humans tend to result in changes in muscle activity and-or sleep state, affecting the measurements. It is, however, possible to suppress upper airway muscle activity and eliminate measurement-related changes in muscle activity and state with general anaesthesia, while maintaining normal spontaneous breathing. We have developed and refined this method and propose to use it in novel investigations to (a) relate the behaviour of the flaccid airway (no muscle activity) under anaesthesia to its behaviour during sleep (when muscle activity is variable but quantifiable), and (b) determine the effect of changes in body habitus (posture and lung volume) on airway collapsibility. These studies will allow examination of the exciting possibility that measurements made under brief general anaesthesia could be used to define propensity to obstruction during sleep. They will also allow examination of the contribution of common changes in body habitus toward vulnerability to upper airway collapse.
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    Funded Activity

    Surface Tension Of Upper Airway Lining Liquid: Role In Obstructive Sleep Apnoea Hyponoea Syndrome

    Funder
    National Health and Medical Research Council
    Funding Amount
    $494,833.00
    Summary
    The obstructive sleep apnoea hypopnoea syndrome (OSAHS) refers to a condition in which throat blockage occurs during sleep leading to breathing difficulties, including cessation of breathing for short periods of time. OSAHS affects both men and women but is amongst the commonest of chronic disorders of adult males, occurring in 5% of men over the age of 45 years. In the proposed studies we will examine the effect that the liquid layer that lines the throat, has on the ability of the airway to st .... The obstructive sleep apnoea hypopnoea syndrome (OSAHS) refers to a condition in which throat blockage occurs during sleep leading to breathing difficulties, including cessation of breathing for short periods of time. OSAHS affects both men and women but is amongst the commonest of chronic disorders of adult males, occurring in 5% of men over the age of 45 years. In the proposed studies we will examine the effect that the liquid layer that lines the throat, has on the ability of the airway to stay open during sleep. In particular we will examine whether coating the throat with a substance that decreases stickiness will help to prevent the occurrence of episodes of throat blockage during sleep in persons with OSAHS. We will also explore the role of saliva production and swallowing during sleep in maintaining a low stickiness of the throat and whether this liquid lining is abnormal in OSAHS patients. These studies will establish the potential usefulness of decreasing the stickiness of the liquid lining the throat as a treatment for OSAHS.
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    Funded Activity

    Hydrostatic Pressure Distributions In Peri-pharyngeal Tissues : Impact On Upper Airway Patency

    Funder
    National Health and Medical Research Council
    Funding Amount
    $508,935.00
    Summary
    The obstructive sleep apnoea hypopnoea syndrome (OSAHS) refers to a condition in which throat blockage occurs during sleep leading to breathing difficulties, including cessation of breathing for short periods of time. OSAHS affects both men and women but is amongst the commonest of chronic disorders of adult males, occurring in ~4% of men over the age of 45 years. In the proposed studies we will develop a computer model of the function of the throat during breathing. A particular focus of our mo .... The obstructive sleep apnoea hypopnoea syndrome (OSAHS) refers to a condition in which throat blockage occurs during sleep leading to breathing difficulties, including cessation of breathing for short periods of time. OSAHS affects both men and women but is amongst the commonest of chronic disorders of adult males, occurring in ~4% of men over the age of 45 years. In the proposed studies we will develop a computer model of the function of the throat during breathing. A particular focus of our model will be the influence of the properties of the tissue that form the walls of the throat. Our goal is to construct a computer model that will be useful in identifying specific features of throat function that make people susceptble to the development of OSAHS. In this manner we hope to provide a tool that can be used to develop new approaches to the treatment and prevention of OSAHS.
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    Funded Activity

    The Role Of Snoring Vibrations In The Pathogenesis Of Early Carotid Artery Atherosclerosis

    Funder
    National Health and Medical Research Council
    Funding Amount
    $593,833.00
    Summary
    Habitual snoring is a very common problem in the adult population, with a prevalence of between 20-40%. Increasingly it is now recognised that snoring may be an independent risk factor for the development of stroke. In this proposal, we will explore the hypothesis that chronic snoring transmits a pressure wave through the tissues of the neck to the carotid artery which may damage the artery wall and subsequently lead to stroke. This may lead to new strategies to treat habitual snoring.
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    Funded Activity

    Mechanisms And Treatment Of Upper Airway Collapse In Obstructive Sleep Apnoea

    Funder
    National Health and Medical Research Council
    Funding Amount
    $328,668.00
    Summary
    Obstructive sleep apnoea (OSA) is characterized by intermittent closure of the upper airway (throat) resulting in episodes of decreased blood oxygen levels, increased blood pressure and disturbed sleep. Repetitive overnight arousals from sleep cause excessive daytime tiredness and lethargy, which have major consequences for social well-being and productivity in our community. OSA is a common condition, affecting as many as 2 to 4% of middle aged adults, and is associated with an increased cardio .... Obstructive sleep apnoea (OSA) is characterized by intermittent closure of the upper airway (throat) resulting in episodes of decreased blood oxygen levels, increased blood pressure and disturbed sleep. Repetitive overnight arousals from sleep cause excessive daytime tiredness and lethargy, which have major consequences for social well-being and productivity in our community. OSA is a common condition, affecting as many as 2 to 4% of middle aged adults, and is associated with an increased cardiovascular risk, however the mechanisms underlying the increased upper airway collapsibility in individuals with OSA are not well understood. The proposed studies represent a series of investigations into fundamental mechanisms of neural and mechanical control of upper airway patency, how these mechanisms act to stabilize the upper airway, and whether these reflex control mechanisms can be manipulated to provide a novel treatment for OSA.
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    Funded Activity

    Novel Neuromechanical Measurements Of The Human Upper Airway In Health And Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $543,728.00
    Summary
    Obstructive sleep apnea (OSA) is a common condition, in which the upper airway repeatedly collapses during sleep, causing the oxygen concentration in the blood to drop, carbon dioxide to rise, and the person to arouse in order to re-establish adequate oxygen supply. Consequences of OSA include increased daytime sleepiness, increased risk of accidents, and increased risk of cardiovascular diseases. It most commonly affects middle-aged males, but is also seen in the broader population. OSA is asso .... Obstructive sleep apnea (OSA) is a common condition, in which the upper airway repeatedly collapses during sleep, causing the oxygen concentration in the blood to drop, carbon dioxide to rise, and the person to arouse in order to re-establish adequate oxygen supply. Consequences of OSA include increased daytime sleepiness, increased risk of accidents, and increased risk of cardiovascular diseases. It most commonly affects middle-aged males, but is also seen in the broader population. OSA is associated with obesity and specific shapes of the upper airway and facial structure. These anatomical factors can be compensated for while awake but inadequate activity of the muscles surrounding the upper airway during sleep contributes to an increased predisposition of the airway to collapse. Airway collapse occurs when the muscles are unable to withstand the low pressures in the airway and collapse, obstructing the airway. This project will measure the stiffness and motion of the muscles surrounding the airway, in healthy people and those with OSA, to determine how these influence airway collapsibility. We will use two novel non-invasive Magnetic Resonance Imaging (MRI) techniques, MR Elastography, and MR tagging which will allow us to quantify the airway stiffness, or elasticity, and its motion (deformation). These will be the first direct measurements of the upper airway elasticity and deformation in humans. We will also measure how various treatments, such as CPAP therapy and mandibular advancement affect airway elasticity and deformation, so that their mechanisms can be better understood. This may also explain why some patients do not benefit from these therapies. These studies may lead to new diagnostic and treatment modalities, as well as gaining important insights into the basic mechanisms of airway collapse in humans.
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    Funded Activity

    Regulatory Control Of The Upper Airway Muscle Genioglossus During Sleep

    Funder
    National Health and Medical Research Council
    Funding Amount
    $329,855.00
    Summary
    Difficulty breathing during sleep is a major health problem. Obstructive Sleep Apnoea (OSA) is the most frequently occurring of these disorders, being found in approximately 4% of males and 2% of females. In OSA the upper airway (UA) collapses during sleep preventing airflow and causing a fall in oxygen levels in the blood. The airway collapses because during sleep muscles in the UA are unable to offset the negative pressure generated within the airway by the effort of inspiring. If the negative .... Difficulty breathing during sleep is a major health problem. Obstructive Sleep Apnoea (OSA) is the most frequently occurring of these disorders, being found in approximately 4% of males and 2% of females. In OSA the upper airway (UA) collapses during sleep preventing airflow and causing a fall in oxygen levels in the blood. The airway collapses because during sleep muscles in the UA are unable to offset the negative pressure generated within the airway by the effort of inspiring. If the negative pressure is too great and the airway collapses the person has to wake up to reopen the airway. As the UA collapses again on the return of sleep, the cycle becomes repetitive, causing sleep disruption. OSA is a significant health risk causing heart disorders, increased mortality, daytime sleepiness, reduced daytime performance and increased risk of accidents. OSA is due to two interacting factors. First, people with a narrow airway have to generate a greater negative pressure during inspiration. Second, and critically, sleep reduces activity in the UA muscles. The importance of this sleep effect is indicated by the observation that OSA patients do not obstruct while awake. Thus, a respiratory abnormality during sleep is a necessary component of the disorder. However, progress in understanding motor control of UA muscles has been slow. We argue that this is in part because research has concentrated on analysing the activity of the UA muscles, rather than measuring the individual motor units that make up the muscles. In this project we propose to investigate the sleep related activity of individual motor units in the UA muscle, genioglossus (GG). GG plays a critical role in the UA as it keeps the tongue from collapsing backwards into the airway. We anticipate that this approach will provide insights into motor control of the tongue and the role of GG in the development of OSA.
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    Funded Activity

    THE BAROREFLEX IN SNORING AND THE OBSTRUCTIVE SLEEP APNOEA HYPOPNOEA SYNDROME

    Funder
    National Health and Medical Research Council
    Funding Amount
    $436,261.00
    Summary
    The obstructive sleep apnoea hypopnoea syndrome (OSAHS) refers to a condition in which throat blockage occurs during sleep leading to breathing difficulties, including snoring and cessation of breathing for short periods of time. OSAHS is amongst the commonest of chronic disorders of adult males, occuring in 5% of men over the age of 45 years. It is now recognised that one of the major complications of OSAHS is the development of high blood pressure and heart disease. In the proposed studies, we .... The obstructive sleep apnoea hypopnoea syndrome (OSAHS) refers to a condition in which throat blockage occurs during sleep leading to breathing difficulties, including snoring and cessation of breathing for short periods of time. OSAHS is amongst the commonest of chronic disorders of adult males, occuring in 5% of men over the age of 45 years. It is now recognised that one of the major complications of OSAHS is the development of high blood pressure and heart disease. In the proposed studies, we will examine the proposal that snoring alone, without significant associated OSAHS, can also lead to high blood pressure in habitual snorers both awake and asleep. In particular, we will explore the hypothesis that chronic snoring transmits a pressure wave through the tissues of the neck to the carotid artery which is the main blood supply to the brain. We propose that the chronic vibration of this artery can alter pressure sensors in the artery wall, which then results in the persistance of high blood pressure. Our studies will help to prove that this is a mechanism whereby both snoring and OSAHS may contribute to the development of high blood pressure. The recognition of snoring as an independent risk factor for high blood pressure will clearly have important and wide ranging implications for the future management of snoring in the prevention of high blood pressure.
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