Skip to content

Optimal Head Rotation and External Landmark for Internal Jugular Vein Cannulation After Placement of Proseal Laryngeal Mask Airway

Optimal Head Rotation and External Landmark for Internal Jugular Vein Cannulation After Placement of Proseal Laryngeal Mask Airway

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT01407302
Enrollment
100
Registered
2011-08-02
Start date
2011-07-31
Completion date
2012-12-31
Last updated
2013-12-25

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

General Anesthesia With Laryngeal Mask Airway (LMA)

Keywords

Laryngeal mask airway, internal jugular vein cannulation

Brief summary

Recently, laryngeal mask airway (LMA) placements are frequently performed for general anesthesia. The investigators occasionally encounter a clinical situation to perform internal jugular vein (IJV) cannulation after LMA insertion, especially for difficult airway in subjects undergoing major surgery. However, anatomic relations of IJV and common carotid artery (CCA) in patient with LMA placement have been reported to be different from those in patients with endotracheal tube. The degree of overlapping of the right IJV and CCA after LMA placement was greater than before LMA placement. Furthermore, there are many cases of complete overlapping right IJV and CCA after LMA placement. Therefore, the risk of puncturing CCA increases when the investigators try to cannulate IJV after LMA placement. Furthermore, the central landmark commonly used for IJV cannulation was proved to show low success rate after LMA placement in previous report. The investigators carefully examined the anatomic relations of IJV and CCA after LMA insertion with ultrasonography, and found that the degree of overlapping is different according to the degree of head rotation. The investigators postulated that if the degree of overlapping is different according to the degree of head rotation after LMA insertion, the investigators can find the angle of head rotation for least overlapping and reduce the risk of CCA puncture. Therefore, the investigators tried (1) to find the optimal head rotation angle appropriate for puncturing IJV after LMA placement, and (2) to find suitable landmark adequate for IJV cannulation after LMA placement.

Detailed description

Recently, laryngeal mask airway (LMA) placements are frequently performed for general anesthesia. The investigators occasionally encounter a clinical situation to perform internal jugular vein (IJV) cannulation after LMA insertion, especially for difficult airway in subjects undergoing major surgery. However, anatomic relations of IJV and common carotid artery (CCA) in patient with LMA placement have been reported to be different from those in patients with endotracheal tube. The degree of overlapping of the right IJV and CCA after LMA placement was greater than before LMA placement. Furthermore, there are many cases of complete overlapping right IJV and CCA after LMA placement. Therefore, the risk of puncturing CCA increases when the investigators try to cannulate IJV after LMA placement. Furthermore, the central landmark commonly used for IJV cannulation was proved to show low success rate after LMA placement in previous report. Previous study recommended the lower puncture point near that area where the clavicular head of the sternocleidomastoid muscle attaches to the clavicle, because CCA was not observed in the vicinity of the IJV after LMA insertion. Even though they performed test puncture at the lower puncture point in 20 patients and found no complications, the lower puncture point is not the usual site for IJV cannulation for most anesthesiologists. It is known that increased head rotation is associated with high probability of CCA contact. The investigators carefully examined the anatomic relations of IJV and CCA after LMA insertion with ultrasonography, and found that the degree of overlapping is different according to the degree of head rotation. The investigators postulated that if the degree of overlapping is different according to the degree of head rotation after LMA insertion, the investigators can find the angle of head rotation for least overlapping and reduce the risk of CCA puncture. Therefore, the investigators tried (1) to find the optimal head rotation angle appropriate for puncturing IJV after LMA placement, and (2) to find suitable landmark adequate for IJV cannulation after LMA placement.

Interventions

OTHERHead rotation

Repeated ultrasonographic examination according to the degree of head rotation (examination of overlap index of internal jugular vein and common carotid artery, and accuracy of external landmark of jugular cannulation)

Sponsors

Samsung Medical Center
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
20 Years to 70 Years
Healthy volunteers
No

Inclusion criteria

* patients undergoing general anesthesia with laryngeal mask airway insertion

Exclusion criteria

* patients undergoing emergency surgery * patients with anatomical problem of airway * anticipated difficult airway * patients with hemodynamic unstability * patients with severe cardiopulmonary disease

Design outcomes

Primary

MeasureTime frameDescription
overlap indexat 5 min after anesthesia inductionThe overlap index was derived from the ratio of the overlapping length of the IJV to the horizontal diameter of the CCA measured on the ultrasonographic image. The formula of calculation is as follows: overlap index = \[overlap length (mm)/ CCA diameter (mm)\] X 100(%), the measurements were repeated according to the degree of head rotation (neutral, 15 degree, 30 degree, 45 degree)

Secondary

MeasureTime frameDescription
The success of simulated internal jugular vein puncture (central landmark)at 5 min after anesthesia inductionThe success of internal jugular vein puncture guided by the central landmark simulated on the ultrasonographic images, the measurements were repeated according to the degree of head rotation (neutral, 15 degree, 30 degree, 45 degree)
The success of simulated internal jugular vein puncture (external jugular vein landmark)at 5 min after anesthesia inductionThe success of internal jugular vein puncture as guided by 1.5 cm or 2.5 cm medial to the external jugular vein simulated on the ultrasonographic images, the measurements were repeated according to the degree of head rotation (neutral, 15 degrees, 30 degrees, 45 degrees)

Countries

South Korea

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026