Publications
Recent Publications
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2025
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2024
Over 100 publications - 20% of the research output of The Prince Charles Hospital
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2023
90 publications published by the CCRG research team.
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2022
63 publications published by the CCRG research team.
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2021
79 publications published by the CCRG research team.
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2020
74 publications published by the CCRG research team.
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2019
53 publications published by the CCRG research team.
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2018
63 publications published by the CCRG research team.
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2017
31 publications published by the CCRG research team.
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2016
38 publications published by the CCRG research team.
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2015
38 publications published by the CCRG research team.
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2014
48 publications published by the CCRG research team.
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2013
35 publications published by the CCRG research team.
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2012
38 publications published by the CCRG research team.
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2011
25 publications published by the CCRG research team.
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2010
24 publications published by the CCRG research team.
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2009
12 publications published by the CCRG research team.
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2008
4 publications published by the CCRG research team.
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2007
5 publications published by the CCRG research team.
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2006
5 publications published by the CCRG research team.
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2005
1 publication published by the CCRG research team.
Search
A Compact Mock Circulation Loop …
Timms, D. L., et al. (2011). "A Compact Mock Circulation Loop for the In Vitro Testing of Cardiovascular Devices." Artificial Organs 35(4): 384-391.
Assessment of Right Pump Outflow Banding …
Timms, D., et al. (2011). "Assessment of Right Pump Outflow Banding and Speed Changes on Pulmonary Hemodynamics During Biventricular Support With Two Rotary Left Ventricular Assist Devices." Artificial Organs 35(8): 807-832.
Atrial Versus Ventricular Cannulation for …
Timms, D., et al. (2010). "Atrial Versus Ventricular Cannulation for a Rotary Ventricular Assist Device." Artificial Organs 34(9): 714-720.
The BiVACOR Rotary Biventricular Assist …
Timms, D., et al. (2008). "The BiVACOR Rotary Biventricular Assist Device: Concept and In Vitro Investigation." Artificial Organs 32(10): 816-U811.
A review of clinical ventricular assist devices.
Timms, D. (2011). "A review of clinical ventricular assist devices." Medical Engineering & Physics 33(9): 1041-1047.
Extracorporeal membrane oxygenation in …
Szentgyorgyi, L., et al. (2018). "Extracorporeal membrane oxygenation in severe respiratory failure resulting from burns and smoke inhalation injury." Burns 44(5): 1091-1099.
Earlier tracheostomy is associated with an earlier return to walking, talking, and eating.
Sutt, A. L., et al. (2020). "Earlier tracheostomy is associated with an earlier return to walking, talking, and eating." Australian Critical Care 33(3): 213-218.
Sedatives, analgesics and antipsychotics in …
Sutt, A. L., et al. (2020). "Sedatives, analgesics and antipsychotics in tracheostomised ICU patients - Is less more?" Australian Critical Care 33(5): 407-411.
The use of tracheostomy speaking valves in …
Sutt, A. L., et al. (2015). "The use of tracheostomy speaking valves in mechanically ventilated patients results in improved communication and does not prolong ventilation time in cardiothoracic intensive care unit patients." Journal of Critical Care 30(3): 491-494.
Speaking valves in tracheostomised ICU …
Sutt, A. L., et al. (2016). "Speaking valves in tracheostomised ICU patients weaning off mechanical ventilation - do they facilitate lung recruitment?" Critical Care 20: 9.
Ventilation distribution and lung recruitment with …
Sutt, A. L., et al. (2017). "Ventilation distribution and lung recruitment with speaking valve use in tracheostomised patient weaning from mechanical ventilation in intensive care." Journal of Critical Care 40: 164-170.
Physiological Control of Dual Rotary Pumps …
Stevens, M. C., et al. (2014). "Physiological Control of Dual Rotary Pumps as a Biventricular Assist Device Using a Master/Slave Approach." Artificial Organs 38(9): 766-774.
In Vitro and In Vivo Characterization of ...
Stevens, M. C., et al. (2014). "In Vitro and In Vivo Characterization of Three Different Modes of Pump Operation When Using a Left Ventricular Assist Device as a Right Ventricular Assist Device." Artificial Organs 38(11): 931-939.
Frank-Starling Control of a Left Ventricular Assist …
Stevens, M. C., et al. (2011). Frank-Starling Control of a Left Ventricular Assist Device. 33rd Annual International Conference of the IEEE Engineering-in-Medicine-and-Biology-Society (EMBS), Boston, MA, Ieee.
In Vitro Evaluation of an Immediate Response …
Stephens, A. F., et al. (2017). "In Vitro Evaluation of an Immediate Response Starling-Like Controller for Dual Rotary Blood Pumps." Artificial Organs 41(10): 911-922.
HeartWare HVAD Flow Estimator Accuracy …
Stephens, A. F., et al. (2021). "HeartWare HVAD Flow Estimator Accuracy for Left and Right Ventricular Support." Asaio Journal 67(4): 416-422.
The Importance of Venous Return in …
Stephens, A. F., et al. (2019). "The Importance of Venous Return in Starling-Like Control of Rotary Ventricular Assist Devices." Artificial Organs 43(3): E16-E27.
A novel fibre Bragg grating pressure sensor …
Stephens, A. F., et al. (2019). "A novel fibre Bragg grating pressure sensor for rotary ventricular assist devices." Sensors and Actuators a-Physical 295: 474-482.
In vitro evaluation of an adaptive Starling-like …
Stephens, A., et al. (2019). "In vitro evaluation of an adaptive Starling-like controller for dual rotary ventricular assist devices." Artificial Organs 43(11): E294-E307.
Head-of-Bed Elevation Improves End-Expiratory Lung Volumes in Mechanically Ventilated Subjects: A Prospective Observational Study
Spooner, A. J., et al. (2014). "Head-of-Bed Elevation Improves End-Expiratory Lung Volumes in Mechanically Ventilated Subjects: A Prospective Observational Study." Respiratory Care 59(10): 1583-1589.