Introduction: Dynamic and static compliance should be calculated as a routine part of ventilator monitoring. Dynamic and static compliance are 60-100 mL/cm H2O. A decrease in dynamic compliance without a change in the static compliance suggests an acute increase in airway resistance and can be assessed further by comparing peak pressure and plateau pressure. The normal gradient is approximately 10 cm H2O. A gradient \>10 cm H2O may be secondary to endotracheal tube obstruction, mucous plugging, or bronchospasm. If volume is constant, acute changes in both dynamic and static compliance suggest a decrease in respiratory system compliance that may be caused by worsening increasing abdominal pressures. When static compliance is \<25 mL/cm H2O, ventilator weaning may be difficult secondary to tachypnea during spontaneous breathing trials. (1) Aim of the work: to detect the cardiopulmonary burden of surgical ring retractors application during abdominal surgeries in supine versus lateral position (cancer bladder for supine position and open surgical nephrectomy for lateral position). Hypothesis: Abdominal retractors application would produce more cardiopulmonary instability during lateral position than during supine position for abdominal surgery. Patient \& Methods: This comparative prospective randomized study, will be done on ASA I-II patients, both sexes, Age 18 - 65 year, to compare pulmonary compliance and cardiac performance before, during and after surgical self-retaining abdominal retractors application patients will be divided into 2 groups; 1st group (S) will undergo orthotropic cancer bladder diversion and the 2nd group (L) both supine and lateral position for open surgical nephrectomy for lateral position.
Introduction: Dynamic and static compliance should be calculated as a routine part of ventilator monitoring. Dynamic and static compliance are 60-100 mL/cm H2O. A decrease in dynamic compliance without a change in the static compliance suggests an acute increase in airway resistance and can be assessed further by comparing peak pressure and plateau pressure. The normal gradient is approximately 10 cm H2O. A gradient \>10 cm H2O may be secondary to endotracheal tube obstruction, mucous plugging, or bronchospasm. If volume is constant, acute changes in both dynamic and static compliance suggest a decrease in respiratory system compliance that may be caused by worsening increasing abdominal pressures. When static compliance is \<25 mL/cm H2O, ventilator weaning may be difficult secondary to tachypnea during spontaneous breathing trials. (1) Aim of the work: to detect the cardiopulmonary burden of surgical ring retractors application during abdominal surgeries in supine versus lateral position (cancer bladder for supine position and open surgical nephrectomy for lateral position). Hypothesis: Abdominal retractors application would produce more cardiopulmonary instability during lateral position than during supine position for abdominal surgery. Patient \& Methods: This comparative prospective randomized study, will be done on ASA I-II patients, both sexes, Age 18 - 65 year, to compare pulmonary compliance and cardiac performance before, during and after surgical self-retaining abdominal retractors application patients will be divided into 2 groups; 1st group (S) will undergo orthotropic cancer bladder diversion and the 2nd group (L) both supine and lateral position for open surgical nephrectomy for lateral position. Study will be done at Mansoura University Hospital, during the year 2018, for 4 month duration, starting predected date=1-11-2018 actual study start date=15-12-2018\[ NB. by mistake in the 1st registration i have regestered the study protocol predicted time of study start but actually the study started on 15-12-2018 thats why i changed the date more than one time \] till 30-3-2019 after approval of IRB (Institutional Review Board), Mansoura Faculty of Medicine. Primary outcome; composite 1ry outcome \[1-Dynamic pulmonary compliance.2- Cardiac Index\] during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups. Secondary outcome: Static lung compliance, Cardiac output, Stroke volume SV - stroke volume variability (SVV)-Cardiac performance index CPI, O2 delivery DIO2. Noninvasive Intraoperative hemodynamic (MBP, HR, O2 saturation)\] during and after surgical ring retractor application compared to the same variable reading prior retractor application and in between both groups.
Study Type
OBSERVATIONAL
Enrollment
40
Primary outcome; composite 1ry outcome \[1-Dynamic pulmonary compliance monitoring.2- Cardiac Index monitoring\] during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups. Secondary outcome: Static lung compliance, Cardiac output, Stroke volume SV - stroke volume variability (SVV)-Cardiac performance index, O2 delivery DIO2. Noninvasive Intraoperative hemodynamic (MBP, HR, O2 saturation)\] during and after surgical ring retractor application compared to the same variable reading prior retractor application and in between both groups.
Mansoura faculty of Medicine- Mansoura Urology and nephrology center
Al Mansurah, Dakahlia Governorate, Egypt
-non invasive Dynamic pulmonary compliance .
dynamic pulmonary compliance during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: mean dynamic compliance at minutes 30,60,90,120,180,210 240 post retractor application compared to mean dynamic compliance at minutes 10,20,30,post endotracheal intubation(Basal Value preretractor application)
Non invasive Cardiac Index
Cardiac index monitoring during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: mean Non invasive Cardiac Index at minutes 30,60,90,120,180,210 240 post retractor application compared to mean Non invasive Cardiac Index at minutes 10,20,30,post endotracheal intubation(Basal Value preretractor application)
Static lung compliance
Static lung compliance during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
Cardiac output.
Cardiac output. during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
Stroke volume SV
Stroke volume SV. during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
- stroke volume variability (SVV)
Stroke volume variability (SVV)during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
-Cardiac performance index CPI
Cardiac performance index during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
Oxygen delivery DIO2
Oxygen delivery DIO2 during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
. Noninvasive Intraoperative MBP
Noninvasive Intraoperative MBP during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
HR
HR during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
arterial O2 saturation(SaO2%)
SaO2 saturation during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
End tidal Co2 EtCO2
End tidal Co2 EtCO2 during and after surgical retractor application compared to the same variables reading prior retractor application and in between both groups
Time frame: After endotracheal intubation recorded 3 times every 10 minutes -After Abdominal retractors application recorded every 30 minutes for 6 readings -After retractor removal 3 times every 10 minutes
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