scholarly journals Noninvasive intracranial pressure monitoring via optic nerve sheath diameter for robotic surgery in steep Trendelenburg position

2015 ◽  
Vol 9 (3) ◽  
pp. 239 ◽  
Author(s):  
ShagunBhatia Shah ◽  
AjayKumar Bhargava ◽  
Itee Choudhury
2017 ◽  
Vol 04 (04) ◽  
pp. S13-S18 ◽  
Author(s):  
Seelora Sahu ◽  
Amlan Swain

AbstractMeasurement and monitoring of intracranial pressure is pivotal in management of brain injured patients. As a rapid and easily done bed side measurement, ultrasonography of the optic nerve sheath diameter presents itself as a possible replacement of the conventional invasive methods of intracranial pressure management. In this review we go through the evolution of optic nerve sheath diameter measurement as a novel marker of predicting raised intracranial pressure, the modalities by which it can be measured as well as its correlation with the invasive methods of intracranial pressure monitoring.


2019 ◽  
Vol 2019 ◽  
pp. 1-5
Author(s):  
Yanghyun Kim ◽  
Seomun Choi ◽  
Sungwoo Kang ◽  
Boram Park

Background. Robot-assisted laparoscopic radical prostatectomy (RLRP) can increase intracranial pressure (ICP) related to a change in position. Increasing ICP may result in various ocular complications, which are rare but serious, such as a corneal abrasion and ischemic optic neuropathy. We performed a prospective observational trial using ultrasonographic measurements to compare optic nerve sheath diameter (ONSD) related to ICP between patients who received either propofol or sevoflurane and underwent RLRP. Methods. Thirty-two male patients scheduled to undergo RLRP were assigned into groups according to the anesthetic agent used (group P: propofol, n = 16; group S: sevoflurane, n = 16). ONSD, end-tidal partial pressure of CO2, and blood pressure were measured 10 min after induction of anesthesia (T0), 30 min (T1), 60 min (T2), and 90 min after changing to the steep Trendelenburg position and introducing a pneumoperitoneum (T3) and 10 min after returning the patient’s position to supine (T4) during surgery. Results. No significant differences were observed in the demographic data of the patients, surgery time, or intraoperative variables, including hemodynamic and respiratory variables, at any of the time points. The mean right ONSDs in the propofol and sevoflurane groups were 37.3 and 40.1 mm at 30 min (p=0.003), respectively. The mean left ONSDs were 38.4 and 40.8 mm at 30 min (p=0.021) after changing to the Trendelenburg position. The ONSDs between the two groups were significantly different during surgery. Conclusions. ONSD increased more in the sevoflurane group than in the propofol group during RLRP. Intravenous anesthetics could alleviate the increase in ICP during RLRP.


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