Tracy L. Thurman
Clinical Research Finance Manager
Also affiliated: University of North Carolina at Chapel Hill (2011); Arkansas Children's Hospital (2000–2012); United States Department of Veterans Affairs (2012); University of Arkansas Medical Center (2016); John L. McClellan Memorial Veterans Hospital (2012)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Tracy L. Thurman's research has focused on understanding the mechanisms of inflammatory bowel disease (IBD). Their work has investigated the role of specific molecular pathways in the development and progression of IBD, particularly in relation to immune responses and cellular signaling. This research aims to identify potential therapeutic targets for IBD treatment.
Metrics
- h-index: 8
- Publications: 32
- Citations: 234
Positions
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Clinical Research Finance Manager publications 2000–2020University of Arkansas for Medical Sciences Institution web page
Selected Publications
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Effect of Nitric Oxide Delivery Device on Tidal Volume Accuracy During Mechanical Ventilation at Small Tidal Volumes (2020)
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Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs (2018)
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Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs (2018)
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Comparison of Work of Breathing Between Noninvasive Ventilation and Neurally Adjusted Ventilatory Assist in a Healthy and a Lung-Injured Piglet Model (2018)
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Effect of ventilator mode on patient‐ventilator synchrony and work of breathing in neonatal pigs (2017)
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Accuracy of displayed volume with three airway sensors in an animal model (2015)
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Accuracy of small tidal volume measurement comparing two ventilator airway sensors (2015)
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Validation of volume delivery with the use of heliox in mechanical ventilation (2015)
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Application of Mid-Frequency Ventilation in an Animal Model of Lung Injury: A Pilot Study (2014)
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206 (2013)
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437 (2012)
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Neurally triggered breaths have reduced response time, work of breathing, and asynchrony compared with pneumatically triggered breaths in a recovering animal model of lung injury (2011)
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Neurally triggered breaths reduce trigger delay and improve ventilator response times in ventilated infants with bronchiolitis (2011)
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Reliability of displayed tidal volume in infants and children during dual-controlled ventilation (2009)
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REPEATED MEASUREMENTS OF RESPIRATORY MECHANICS IN DEVELOPING RATS UTILIZING A FORCED OSCILLATION TECHNIQUE (2008)
Collaboration Network
Top Collaborators
- Neurally triggered breaths reduce trigger delay and improve ventilator response times in ventilated infants with bronchiolitis
- Reliability of displayed tidal volume in infants and children during dual-controlled ventilation
- Neurally triggered breaths have reduced response time, work of breathing, and asynchrony compared with pneumatically triggered breaths in a recovering animal model of lung injury
- Reliability of measured tidal volume in mechanically ventilated young pigs with normal lungs
- Effect of ventilator mode on patient‐ventilator synchrony and work of breathing in neonatal pigs
Showing 5 of 23 shared publications
- Neurally triggered breaths reduce trigger delay and improve ventilator response times in ventilated infants with bronchiolitis
- Reliability of displayed tidal volume in infants and children during dual-controlled ventilation
- Neurally triggered breaths have reduced response time, work of breathing, and asynchrony compared with pneumatically triggered breaths in a recovering animal model of lung injury
- Reliability of measured tidal volume in mechanically ventilated young pigs with normal lungs
- Effect of ventilator mode on patient‐ventilator synchrony and work of breathing in neonatal pigs
Showing 5 of 20 shared publications
- Reliability of measured tidal volume in mechanically ventilated young pigs with normal lungs
- Effects of Continuous Positive Airway Pressure/Positive End-Expiratory Pressure and Pressure-Support Ventilation on Work of Breathing, Using an Animal Model
- Validation of a noninvasive blood pressure monitoring device in normotensive and hypertensive pediatric intensive care patients
- Validation of a noninvasive blood pressure monitoring device in pediatric intensive care patients
- Reliability of displayed tidal volume in infants and children during dual-controlled ventilation
- Reliability of measured tidal volume in mechanically ventilated young pigs with normal lungs
- Validation of a noninvasive blood pressure monitoring device in normotensive and hypertensive pediatric intensive care patients
- REPEATED MEASUREMENTS OF RESPIRATORY MECHANICS IN DEVELOPING RATS UTILIZING A FORCED OSCILLATION TECHNIQUE
- Effect of ventilator mode on patient‐ventilator synchrony and work of breathing in neonatal pigs
- Comparison of Work of Breathing Between Noninvasive Ventilation and Neurally Adjusted Ventilatory Assist in a Healthy and a Lung-Injured Piglet Model
- Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs
- Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs
- Effect of ventilator mode on patient‐ventilator synchrony and work of breathing in neonatal pigs
- Comparison of Work of Breathing Between Noninvasive Ventilation and Neurally Adjusted Ventilatory Assist in a Healthy and a Lung-Injured Piglet Model
- Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs
- Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs
- Work of breathing associated with pressure support ventilation in two different ventilators*†
- An Evaluation of Automode, a Computer-Controlled Ventilator Mode, with the Siemens Servo 300A Ventilator, Using a Porcine Model
- Comparison of work of breathing between two neonatal ventilators utilizing a neonatal pig model
- Neurally triggered breaths reduce trigger delay and improve ventilator response times in ventilated infants with bronchiolitis
- Neurally triggered breaths have reduced response time, work of breathing, and asynchrony compared with pneumatically triggered breaths in a recovering animal model of lung injury
- Validation of volume delivery with the use of heliox in mechanical ventilation
- Validation of volume delivery with the use of heliox in mechanical ventilation
- Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs
- Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs
- Reliability of measured tidal volume in mechanically ventilated young pigs with normal lungs
- REPEATED MEASUREMENTS OF RESPIRATORY MECHANICS IN DEVELOPING RATS UTILIZING A FORCED OSCILLATION TECHNIQUE
- ACCURACY OF SMALL TIDAL VOLUME MEASUREMENT COMPARING TWO AIRWAY SENSORS.
- Comparison of Work of Breathing Between Noninvasive Ventilation and Neurally Adjusted Ventilatory Assist in a Healthy and a Lung-Injured Piglet Model
- Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs
- Evaluation of Work of Breathing Utilizing Non-invasive Ventilation (niv) and Neurally Adjusted Ventilator Assist (nava) in a Neonatal Animal Model with Both Healthy and Injured Lungs
- Validation of a noninvasive blood pressure monitoring device in normotensive and hypertensive pediatric intensive care patients
- Validation of a noninvasive blood pressure monitoring device in pediatric intensive care patients
- Effect of Nitric Oxide Delivery Device on Tidal Volume Accuracy During Mechanical Ventilation at Small Tidal Volumes
- 437
- Application of Mid-Frequency Ventilation in an Animal Model of Lung Injury: A Pilot Study
- 437
- Validation of volume delivery with the use of heliox in mechanical ventilation
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