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KMID : 0363120220350030345
Korean Journal of Pain
2022 Volume.35 No. 3 p.345 ~ p.352
Relationship between needle depth for lumbar transforaminal epidural injection and patients¡¯ height and weight using magnetic resonance imaging
John Hyun-Ji

Sohn Kyo-Min
Kim Jae-Hun
Abstract
Background: Optimal needle depth in transforaminal epidural injection (TFEI) is determined by body measurements and is influenced by the needle entry angle. Physician can choose the appropriate needle length and perform the procedure more effectively if depth is predicted in advance.

Methods: This retrospective study included patients with lumbosacral pain from a single university hospital. The skin depth from the target point was measured using magnetic resonance imaging transverse images. The depth was measured bilaterally for L4 and L5 TFEIs at 15¡Æ, 20¡Æ, and 25¡Æ oblique angles from the spinous process.

Results: A total of 4,632 measurements of 386 patients were included. The lengths of the left and right TFEI at the same level and oblique angle were assessed, and no statistical differences were identified. Therefore, linear regression analysis was performed for bilateral L4 and L5 TFEIs. The R-squared values of height and weight combined were higher than the height, weight, and body mass index (BMI). The following equation was established: Depth (mm) = a ? b (height, cm) + c (weight, kg). Based on the equation, maximal BMI capable with a 23G, 3.5-inch, Quincke-type point spinal needle was presented for three different angles (15¡Æ, 20¡Æ, and 25¡Æ) at lumbar levels L4 and L5.

Conclusions: The maximal BMI that derived from the formulated equation is listed on the table, which can help in preparations for morbid obesity. If a patient has bigger BMI than the one in the table, the clinician should prepare longer needle than the usual spinal needle.
KEYWORD
Body Mass Index, Epidural Space, Injections, Epidural, Low Back Pain, Lumbosacral Region, Magnetic Resonance Imaging, Obesity, Morbid, Regression Analysis
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