Invasive and Ultrasound Based Monitoring of the Intracranial Pressure in an Experimental Model of Epidural Hematoma Progressing towards Brain Tamponade on Rabbits

Author:

Kasapas Konstantinos1,Diamantopoulou Angela2,Pentilas Nicolaos3,Papalois Apostolos4,Douzinas Emmanuel5,Kouraklis Gregorios2,Slama Michel6,Terkawi Abdullah Sulieman78,Blaivas Michael9,Sargsyan Ashot Ernest10,Karakitsos Dimitrios9

Affiliation:

1. Department of Neurosurgery, Athens General Hospital “G. Gennimatas”, 11527 Athens, Greece

2. 2nd Department of Surgery, Athens Medical School, Laiko University Hospital, 11527 Athens, Greece

3. Intensive Care Unit, Athens General Hospital “G. Gennimatas”, Athens, Greece

4. Experimental Research Center ELPEN, 19009 Athens, Greece

5. 3rd ICU Department, Athens Medical School, Evgenideio University Hospital, 15128 Athens, Greece

6. ICU, Amiens University Hospital, 80054 Amiens, France

7. Department of Anesthesiology, University of Virginia Health System, Charlottesville, VA 22903, USA

8. Department of Anesthesiology, King Fahad Medical City, Riyadh 11525, Saudi Arabia

9. Department of Internal Medicine, School of Medicine, University of South Carolina, Columbia, SC 29225, USA

10. Wyle Science, Technology & Engineering Group/NASA Bioastronautics, Houston, TX 77058, USA

Abstract

Introduction. An experimental epidural hematoma model was used to study the relation of ultrasound indices, namely, transcranial color-coded-Doppler (TCCD) derived pulsatility index (PI), optic nerve sheath diameter (ONSD), and pupil constriction velocity (V) which was derived from a consensual sonographic pupillary light reflex (PLR) test with invasive intracranial pressure (ICP) measurements.Material and Methods. Twenty rabbits participated in the study. An intraparenchymal ICP catheter and a 5F Swan-Ganz catheter (SG) for the hematoma reproduction were used. We successively introduced 0.1 mL increments of autologous blood into the SG until the Cushing reaction occurred. Synchronous ICP and ultrasound measurements were performed accordingly.Results. A constant increase of PI and ONSD and a decrease ofVvalues were observed with increased ICP values. The relationship between the ultrasound variables and ICP was exponential; thus curved prediction equations of ICP were used. PI, ONSD, andVwere significantly correlated with ICP (r2=0.84±0.076,r2=0.62±0.119, andr2=0.78±0.09, resp. (allP<0.001)).Conclusion. Although statistically significant prediction models of ICP were derived from ultrasound indices, the exponential relationship between the parameters underpins that results should be interpreted with caution and in the current experimental context.

Publisher

Hindawi Limited

Subject

General Environmental Science,General Biochemistry, Genetics and Molecular Biology,General Medicine

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