Targeted Therapeutic Mild Hypercapnia After Resuscitated Cardiac Arrest: A Phase III Multi-Centre Randomised Controlled Trial (The TAME Cardiac Arrest Trial)
Funder
National Health and Medical Research Council
Funding Amount
$2,069,878.00
Summary
The TAME Cardiac Arrest trial will study the ability of higher carbon dioxide (CO2) levels to reduce brain damage, comparing giving patients ‘normal’ to ‘slightly higher than normal’ blood CO2 levels and assessing their ability to return to normal life-tasks. It will be the largest trial ever conducted in heart attack patients in the ICU. This therapy is cost free and, if shown to be effective, will improve thousands of Australian lives, transform clinical practice, and yield major savings.
Optimising Lung Protective Ventilation At Birth Using The Volumetric Response Of The Lung In A Preterm Lamb Model
Funder
National Health and Medical Research Council
Funding Amount
$611,021.00
Summary
Prematurity is a common problem which constitutes a major health-care burden. The preterm lung often cannot function independently at birth but is very fragile and susceptible to damage from the very first breathes of life. Life-saving mechanical ventilatory support must protect the lung from injury as well aid lung function. This project aims to improve ventilation strategies for supporting and protecting the preterm lung using novel approaches and innovative technologies.
Rapidly giving intravenous fluid to prevent or treat shock (fluid resuscitation) is one of the commonest treatments given to critically ill patients. Current guidelines recommend crystalloid solutions but it is unknown whether any particular crystalloid is better than others. This trial will determine whether the use of one of two crystalloid fluids, saline or PlasmaLyte, reduces the risk of organ injuries, such as kidney failure, and improves patients chances of surviving critically illness.
Understanding Tissue Responses To Fluid Resuscitation And Blood Transfusion During Ovine Sepsis To Improve Outcomes
Funder
National Health and Medical Research Council
Funding Amount
$980,810.00
Summary
Annually, sepsis affects up to 30 million patients, killing more patients than the combined totals of breast, prostate and lung cancer. Fluid resuscitation is a cornerstone of sepsis therapy, aimed at improving oxygen delivery to key organs. Data now indicates that blood and non-blood fluids may worsen mortality. This study will investigate the mechanism of sepsis and the effect of blood and non-blood fluids, to provide data to clinicians which may reduce the vast global burden of this disease.
Reduction Of Oxygen After Cardiac Arrest: The EXACT Trial
Funder
National Health and Medical Research Council
Funding Amount
$1,891,021.00
Summary
We aim to conduct a Phase 3 multi-centre, randomised, controlled trial to determine whether reducing oxygen administration to target a normal level as soon as possible following successful resuscitation from out-of-hospital cardiac arrest, compared to current practice of maintaining 100% oxygen, improves patient survival at hospital discharge.
TORPIDO2- Targeted Oxygen For Resuscitation Of Preterm Infants Effects On Developmental Outcomes 2
Funder
National Health and Medical Research Council
Funding Amount
$2,293,459.00
Summary
Either too much or too little oxygen (O2) causes prolonged harm and death, even if this imbalance is for a few minutes, as at birth. Nowhere is this balance more critical than in the care of the extremely preterm infant (below 28 weeks gestation) with lung immaturity (requiring O2) and antioxidant deficiency. The Torpido 2 study will randomize 1350 infants below 28 weeks gestation to determine long-term neurodevelopmental outcomes and survival after resuscitation with either 21% O2 (room air) or
Nasal Highflow For Paediatric Acute Hypoxic Respiratory Failure
Funder
National Health and Medical Research Council
Funding Amount
$2,627,819.00
Summary
The burden of respiratory disease in children requiring intensive care admission is increasing despite better quality care in hospitals. This study investigates a new method, called nasal high flow, to support the breathing of children, that can be provided in regular children's wards in regional and metropolitan hospitals. The study anticipates to demonstrate that early intervention with nasal high flow reduces the need for intensive care admission.
A Cluster Randomised Controlled Trial Of Selective Decontamination Of The Digestive Tract In Critically Ill Patients
Funder
National Health and Medical Research Council
Funding Amount
$4,113,393.00
Summary
Sepsis is the most common cause of death in intensive care patients. Selective Decontamination of the Digestive Tract (SDD) is a treatment to reduce the risk of infection and improve survival for these patients. Many trials suggest SDD works but there has not been widespread uptake due to concerns that SDD will increase antibiotic resistance.rates. This trial will provide a definitive answer. If SDD reduces mortality without increasing antibiotic resistance, the study will have a global impact.
Regional Mechanisms Of Ventilator Induced Lung Injury: Insights From Dynamic Lung Imaging
Funder
National Health and Medical Research Council
Funding Amount
$623,323.00
Summary
Mortality rates due to acute respiratory distress syndrome (ARDS) are high (>30%). While ARDS requires mechanical ventilation as a lifesaving intervention, it is clear that mechanical ventilation itself can contribute to the high mortality rates. We will use a new lung imaging technology (CTXV) to visualize the damage that occurs to the lung as a result of mechanical ventilation in order to design better ventilation strategies and reduce mortality rates in these critically ill patients.
A Multi-centre RCT Of An Open Lung Strategy Including Permissive Hypercapnia, Alveloar Recruitment, And Low Airway Pressure In Patients With ARDS
Funder
National Health and Medical Research Council
Funding Amount
$1,041,070.00
Summary
Acute respiratory distress syndrome (ARDS) is a severe inflammatory condition of the lungs that complicates many critical illnesses and is associated with high mortality. Inappropriate settings of the mechanical ventilator can lead to a worsening outcome. The aim of this Phase II study is to compare the clinical efficiency of a novel ventilation strategy to reduce the duration of mechanical ventilation in survivors, including several lung protective settings, to that of current standard care.