The aim of this study is to demonstrate the feasibility of a new technique using real time ultrasound guided paramedian approach to the epidural space. This approach will use transverse view of the spine utilizing curvilinear low frequency ultrasound probe "Sonosite S nerve" and echogenic 17G tuohy needles " Pajunk TuohySono" The investigators believe that this new technique is helpful to get the best anatomic landmark for epidural catheter placement using the real-time ultrasound. Measurable outcomes: * Block performance time. * Block success rate. * Needle Depth to epidural space Block success rate will be measured as the rate of cases that will have successful insertion of the epidural catheter using ultrasound guidance and the case is done completely under epidural anesthesia. All cases that will be converted to general anesthesia will be counted unsuccessful. Other measurable outcome data that will be collected will include needle depth to the epidural space, and ultrasound measured depth to the lamina
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
25
Anesthesiologist will place epidural with aid of ultrasound and placement with echogenic 17G Tuohy needles (Pajunk TuohySono)
Anesthesiologist will place epidural within standard practice, with standard needles.
Cleveland Clinic
Cleveland, Ohio, United States
Real-time ultrasound-guided paramedian epidural access:
Block success rate will be measured as the rate of cases that will have succesful insertion of the epidural catheter using ultrasound guidance and the case is done completely under epidural anesthesia. The aim of this study is to demonstrate the feasibility of a new technique using real time ultrasound guided paramedian approach to the epidural space. This approach will use transverse view of the spine utilizing curvilinear low frequency ultrasound probe "Sonosite S nerve" and echogenic 17G tuohy needles " Pajunk TuohySono"
Time frame: Day 1
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