Acute Hemodynamic Responses to Ventilator Hyperinflation Technique in Critical Traumatic Patients With Pulmonary Complications
Trial Snapshot
- Phase
- Not Applicable
- Status
- Completed
- Sponsor
- Khon Kaen University
- Enrollment
- 15
- Locations
- 1
- Primary Endpoint
- Mean arterial pressure (MAP)
Study Overview
Brief Summary
The purpose of this study is to explore acute hemodynamic responses to VHI technique in critical traumatic patients with pulmonary complications in the intensive care unit.
Detailed Description
The World Health Organization reported that Thailand ranked third for number of road fatalities at 38.1 per 100,000 inhabitants in 2010. Most of these cases were admitted to the intensive care unit (ICU) for respiratory interventions such as intubation and mechanical ventilation that can lead to a common problem of pulmonary complications such as pneumonia and atelectasis.
Evidence supports the effectiveness of chest physical therapy technique (CPT) to improve alveolar collapse and remove pulmonary secretion. A previous study has shown that the positive airway pressure technique reduced work of breathing (WOB) and re-inflated lung atelectasis. The use of positive pressure devices has been part of physiotherapy intervention since intermittent positive pressure breathing was introduced in clinical practice. In intensive care settings, the use of positive pressure by physiotherapists includes manual hyperinflation (bagging or bag squeezing), which has been shown to increase oxygenation and mobilize excessive bronchial secretions, and to re-inflate collapsed areas.
Manual hyperinflation technique (MHI) is provided for use in patients with lung atelectasis. Several studies demonstrated the short-term effects of increased oxygenation and pulmonary compliance, improved lung collapse, and removed pulmonary secretions. To apply MHI technique, patients were disconnected from the ventilator which lead to the adverse effect of losing positive end expiratory pressure (PEEP) corresponding to loss of functional residual capacity, decreased oxygenation, and shear stress of distal lung units.
An alternative method of performing pulmonary hyperinflation uses the mechanical ventilator. Although there is evidence that positive pressure interventions such as continuous positive airway pressure (CPAP) and intermittent positive pressure breathing IPPB) can improve lung expansion and mobilize secretions in the airway, there are few studies examining ventilator-induced hyperinflation as a physiotherapy intervention in intensive care.
A previous study showed that the ventilator hyperinflation technique (VHI) was as effective as MHI to improve pulmonary complications such as secretion retention and lung atelectasis. Especially, VHI technique using applied by the mechanical ventilator, patient was not disconnected from the ventilator and therefore did not result in loss of PEEP and its adverse effect.
Study Design
- Study Type
- Interventional
- Allocation
- Randomized
- Intervention Model
- Crossover
- Primary Purpose
- Treatment
- Masking
- Single (Participant)
Eligibility Criteria
- Ages
- 18 Years to 60 Years (Adult)
- Sex
- All
- Accepts Healthy Volunteers
- No
Inclusion Criteria
- •1. Mechanical ventilator dependence
Exclusion Criteria
- •acute respiratory distress syndrome (ARDS)
- •acute lung injury (ALI)
- •pulmonary contusion
- •undrained pneumothorax, hemothoarax, and hemopneumothorax
- •bronchospasm
- •pulmonary bullae/blebs
- •lung tumors
- •lung abscess
- •haemoptysis
- •mean arterial pressure (MAP) <70 mmHg
- •positive end expiratory pressure (PEEP) >6 cm H2O
- •heart rate (HR) > 140 beats/min
- •blood pressure (BP) <90/60 or >180/100 mmHg
- •restlessness
- •oxygen saturation (SpO2) < 90 %
- •spontaneous respiratory rate (RR) > 35 beats/min
Arms & Interventions
Ventilator hyperinflation
For the ventilator hyperinflation techniques (VHI), the study consists of three consecutive periods 1) baseline period: 10 minutes rest in side lying by effected lung uppermost with head-up 30 degree 2) Intervention period: Patients were positioned as same as baseline period and 4 sets of 6 hyperinflation breath were applied by mechanical ventilator at 150% of tidal volume (VT) at initial 3) recovery period: 10 minutes rest in the same position but reduce VT to initial.
Intervention: Ventilator hyperinflation (Other)
Chest physical therapy
For the conventional chest physical therapy (CPT), the study will be performed in the similar procedure except the intervention period, the patient will be received vibration and passive of the both upper extremity.
Intervention: Chest physical therapy (Other)
Outcomes
Primary Outcomes
Mean arterial pressure (MAP)
Time Frame: "change from baseline in mean arterial pressure (MAP) at during intervention" and "change from baseline in mean arterial pressure (MAP) at immediately after intervention"
Change from baseline in mean arterial pressure (MAP)
Secondary Outcomes
- Heart rate (HR)("change from baseline in heart rate (HR) at during intervention" and "change from baseline in heart rate (HR) at immediately after intervention")
- Systolic blood pressure (SBP)("change from baseline in systolic blood pressure (SBP) at during intervention" and "change from baseline in systolic blood pressure (SBP) at immediately after intervention")
- Diastolic blood pressure (DBP)("change from baseline in diastolic blood pressure (DBP) at during intervention" and "change from baseline in diastolic blood pressure (DBP) at immediately after intervention")
- Central venous pressure (CVP)("change from baseline in central venous pressure (CVP) at during intervention" and "change from baseline in central venous pressure (CVP) at immediately after intervention")
Investigators
Mr.Atsadang Natisri
Principal Investigator
Khon Kaen University
