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Clinical Trial Details — Status: Completed

Administrative data

NCT number NCT02826889
Other study ID # 4-2016-0189
Secondary ID
Status Completed
Phase N/A
First received July 6, 2016
Last updated September 28, 2017
Start date May 24, 2016
Est. completion date July 27, 2017

Study information

Verified date September 2017
Source Yonsei University
Contact n/a
Is FDA regulated No
Health authority
Study type Interventional

Clinical Trial Summary

Appropriate fluid management is an important part of anesthesia in patients undergoing surgery, and several dynamic indices have been suggested to have high predictability for fluid responsiveness in patients receiving mechanical ventilation. Among various surgical positions, the prone position is known to cause unique physiologic and hemodynamic changes and affect the predictability and cut-off values of dynamic indices for fluid responsiveness. A previous study reported that pulse pressure variation (PPV) and corrected flow time were able to predict fluid responsiveness with relatively high accuracy in patients undergoing spine surgery in the prone position using a Wilson frame. However, the Jackson frame is known to have less effects on the cardiovascular system compared to the Wilson frame, and therefore may be physiologically more appropriate in patients undergoing surgery in the prone position. The pleth variability index (PVI) is a dynamic index that can be monitored non-invasively in patients under mechanical ventilation. The present study aims evaluate the validity of PPV and pleth variability index (PVI) as predictors of fluid responsiveness in the supine and prone positions in patients undergoing posterior lumbar spinal fusion using the Jackson table.


Recruitment information / eligibility

Status Completed
Enrollment 58
Est. completion date July 27, 2017
Est. primary completion date July 27, 2017
Accepts healthy volunteers No
Gender All
Age group 19 Years to 75 Years
Eligibility Inclusion Criteria:

1. Patients between the age of 19 and 75, scheduled for spine surgery under general anesthesia using the Jackson table

Exclusion Criteria:

1. Patient refusal

2. Patients that are not normal sinus rhythm on preoperative ECG

3. Patients with moderate~severe cardiac valve disease

4. Patients with an ejection fraction under 50%

5. Significant lung disease

6. Obesity (BMI>35kg/m2)

7. Patients with contraindications to esophageal doppler probe insertion

8. Illiterate patients or foreigners

Study Design


Related Conditions & MeSH terms


Intervention

Device:
Philips Intelivue MP70 monitor
Philips Intelivue MP70 monitor (Intellivue MP70, Philips medical Systems, Suresnes, France) -a radial arterial cannula is inserted and arterial pressure waveforms are monitored through Philips Intelivue MP70 monitor. In the monitor, PPVauto is displayed in real-time. It is based on automatic detection algorithms, kernel smoothing, and rank-order filters.
Pleth Variability Index (PVI)
PVI is the measure of the dynamic changes in the Perfusion Index (PI) that occur during one or more complete respiratory cycles. A rainbow Pulse CO-Oximetry sensor is attached to the patient's finger and the PVI is displayed in real-time on the Root monitor.

Locations

Country Name City State
Korea, Republic of Department of Anesthesiology and Pain Medicine, Anesthesia and Pain Research Institue, Yonsei Universiy College of Medicine Seoul

Sponsors (1)

Lead Sponsor Collaborator
Yonsei University

Country where clinical trial is conducted

Korea, Republic of, 

Outcome

Type Measure Description Time frame Safety issue
Primary Pulse Pressure Variation (PPV) Fluid responsiveness predictability of FTc and PVI in patients undergoing posterior lumbar fusion in the prone position by using the Jackson frame by calculating area under the curve of the ROC curve. From 15 minutes after induction of anesthesia in the supine position to 5 minutes after fluid loading in the prone position
Primary Pleth Variability Index (PVI) From 15 minutes after induction of anesthesia in the supine position to 5 minutes after fluid loading in the prone position
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