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Predictive factors for favorable short-term response to interlaminar epidural block for cervical radiculopathy

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Abstract

Purpose

We sought to identify clinical predictors of favorable short-term outcomes associated with cervical interlaminar epidural injection (CIEI). Previous studies investigating the predictive factors of CIEI efficacy have shown inconsistent results. Gaining information on the possible response determinants of CIEI is necessary for appropriate treatment selection and outcomes prediction in the treatment of cervical radiculopathy.

Methods

We analyzed the clinical data of 72 patients who received fluoroscopic-guided CIEI using the paramedian approach for cervical radiculopathy to identify the predictive factors for short-term outcomes of CIEI. Demographic characteristics, history of neck surgery, diagnosis, initial numeric rating score, duration of symptoms, Douleur Neuropathique 4 (DN4) questions, painDETECT questionnaire, neck disability index, and ventral epidural spread of contrast medium were assessed. Treatment success was defined as at least a 50% reduction in the numeric rating score after CIEI and was designated as a good response.

Results

The short-term success rate of CIEI for cervical radiculopathy was 55.56%. Multivariate logistic regression analysis established that spinal stenosis (odds ratio 0.183; P = 0.012), a longer duration of > 24 weeks of symptoms (odds ratio 0.206; P = 0.026), and combined positive results for the DN4 and painDETECT (odds ratio, 0.019; P = 0.008) decreased the odds ratio of a good response, 2–3 weeks after CIEI.

Conclusions

CIEI provides a significant short-term outcome in patients with cervical radiculopathy. However, CIEI efficacy may be negatively affected in patients with spinal stenosis, the presence of a chronic state, and a possible neuropathic pain component.

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References

  1. Cohen SP. Epidemiology, diagnosis, and treatment of neck pain. Mayo Clin Proc. 2015;90:284–99.

    Article  Google Scholar 

  2. Fejer R, Kyvik KO, Hartvigsen J. The prevalence of neck pain in the world population: a systematic critical review of the literature. Eur Spine J. 2006;15:834–48.

    Article  Google Scholar 

  3. Mansfield M, Smith T, Spahr N, Thacker M. Cervical spine radiculopathy epidemiology: a systematic review. Musculoskel Care. 2020;18:555–67.

    Article  Google Scholar 

  4. Wainner RS, Gill H. Diagnosis and nonoperative management of cervical radiculopathy. J Orthop Sports Phys Ther. 2000;30:728–44.

    Article  CAS  Google Scholar 

  5. Childress MA, Becker BA. Nonoperative management of cervical radiculopathy. Am Fam Physician. 2016;93:746–54.

    Google Scholar 

  6. Diwan S, Manchikanti L, Benyamin RM, Bryce DA, Geffert S, Hameed H, Sharma ML, Abdi S, Falco FJ. Effectiveness of cervical epidural injections in the management of chronic neck and upper extremity pain. Pain Physician. 2012;15:E405–34.

  7. Carragee EJ, Hurwitz EL, Cheng I, Carroll LJ, Nordin M, Guzman J, Peloso P, Holm LW, Côté P, Hogg-Johnson S, van der Velde G, Cassidy JD, Haldeman S. Treatment of neck pain: injections and surgical interventions: results of the bone and joint decade 2000–2010 task force on neck pain and its associated disorders. J Manip Physiol Ther. 2009;32:S176–93.

  8. Sencan S, Edipoglu IS, Yazici G, Yucel FN, Gunduz OH. Are foraminal stenosis severity and herniation level associated with the treatment success of cervical interlaminar epidural steroid injection? Pain Physician. 2020;23:325–32.

    Google Scholar 

  9. Kwon JW, Lee JW, Kim SH, Choi JY, Yeom JS, Kim HJ, Kwack KS, Moon SG, Jun WS, Kang HS. Cervical interlaminar epidural steroid injection for neck pain and cervical radiculopathy: effect and prognostic factors. Skelet Radiol. 2007;36:431–6.

  10. Shakir A, Ma V, Mehta B. Prediction of therapeutic response to cervical epidural steroid injection according to distribution of radicular pain. Am J Phys Med Rehabil. 2011;90:917–22.

    Article  Google Scholar 

  11. Choi JW, Lim HW, Lee JY, Lee WI, Lee EK, Chang CH, Yang JY, Sim WS. Effect of cervical interlaminar epidural steroid injection: analysis according to the neck pain patterns and MRI findings. Korean J Pain. 2016;29:96–102.

  12. Fish DE, Kobayashi HW, Chang TL, Pham Q. MRI prediction of therapeutic response to epidural steroid injection in patients with cervical radiculopathy. Am J Phys Med Rehabil. 2009;88:239–46.

    Article  Google Scholar 

  13. Kim MS, Lee DG, Chang MC. Outcome of transforaminal epidural steroid injection according to severity of cervical foraminal stenosis. World Neurosurg. 2018;110:e398–403.

    Article  Google Scholar 

  14. Woods BI, Hilibrand AS. Cervical radiculopathy: epidemiology, etiology, diagnosis, and treatment. J Spinal Disord Tech. 2015;28:E251–9.

    Article  Google Scholar 

  15. Manchikanti L, Abdi S, Atluri S, Benyamin RM, Boswell MV, Buenaventura RM, Bryce DA, Burks PA, Caraway DL, Calodney AK, Cash KA, Christo PJ, Cohen SP, Colson J, Conn A, Cordner H, Coubarous S, Datta S, Deer TR, Diwan S, Falco FJ, Fellows B, Geffert S, Grider JS, Gupta S, Hameed H, Hameed M, Hansen H, Helm S 2nd, Janata JW, Justiz R, Kaye AD, Lee M, Manchikanti KN, McManus CD, Onyewu O, Parr AT, Patel VB, Racz GB, Sehgal N, Sharma ML, Simopoulos TT, Singh V, Smith HS, Snook LT, Swicegood JR, Vallejo R, Ward SP, Wargo BW, Zhu J, Hirsch JA. An update of comprehensive evidence-based guidelines for interventional techniques in chronic spinal pain. Part II: guidance and recommendations. Pain Physician. 2013;16:S49–283.

  16. Rahimzadeh P, Sharma V, Imani F, Faiz HR, Ghodraty MR, Nikzad-Jamnani AR, Nader ND. Adjuvant hyaluronidase to epidural steroid improves the quality of analgesia in failed back surgery syndrome: a prospective randomized clinical trial. Pain Physician. 2014;17:E75–82.

  17. Morlion B. Pharmacotherapy of low back pain: targeting nociceptive and neuropathic pain components. Curr Med Res Opin. 2011;27:11–33.

    Article  CAS  Google Scholar 

  18. Berthelot JM, Biha N, Darrieutort-Laffite C, Le Goff B, Maugars Y. Are painDETECT scores in musculoskeletal disorders associated with duration of daily pain and time elapsed since current pain onset? Pain Rep. 2019;4: e739.

    Article  Google Scholar 

  19. Dower A, Davies MA, Ghahreman A. Pathologic basis of lumbar radicular pain. World Neurosurg. 2019;128:114–21.

    Article  Google Scholar 

  20. Sivas F, Uzun Ö, Başkan B, Bodur H. The neuropathic pain component among patients with chronic low back-radicular pain. J Back Musculoskel Rehabil. 2018;31:939–46.

    Article  Google Scholar 

  21. Colloca L, Ludman T, Bouhassira D, Baron R, Dickenson AH, Yarnitsky D, Freeman R, Truini A, Attal N, Finnerup NB, Eccleston C, Kalso E, Bennett DL, Dworkin RH, Raja SN. Neuropathic pain. Nat Rev Dis Primer. 2017;3:17002.

  22. Sung JK, Choi JH, Jeong J, Kim WJ, Lee DJ, Lee SC, Kim YC, Moon JY. Korean version of the painDETECT questionnaire: a study for cultural adaptation and validation. Pain Pract. 2017;17:494–504.

  23. Finnerup NB, Haroutounian S, Kamerman P, Baron R, Bennett DLH, Bouhassira D, Cruccu G, Freeman R, Hansson P, Nurmikko T, Raja SN, Rice ASC, Serra J, Smith BH, Treede RD, Jensen TS. Neuropathic pain: an updated grading system for research and clinical practice. Pain. 2016;157:1599–606.

  24. Epping R, Verhagen AP, Hoebink EA, Rooker S, Scholten-Peeters GGM. The diagnostic accuracy and test-retest reliability of the dutch PainDETECT and the DN4 screening tools for neuropathic pain in patients with suspected cervical or lumbar radiculopathy. Musculoskel Sci Pract. 2017;30:72–9.

    Article  CAS  Google Scholar 

  25. Sanal-Toprak C, Ozturk EC, Yucel FN, Sencan S, Gunduz OH. Does the presence of neuropathic pain affect the outcomes of the interlaminar epidural steroid injection for cervical disc herniation?: a prospective clinical study. Medicine (Baltimore). 2021;100: e25012.

    Article  CAS  Google Scholar 

  26. House LM, Barrette K, Mattie R, McCormick ZL. Cervical epidural steroid injection: techniques and evidence. Phys Med Rehabil Clin N Am. 2018;29:1–17.

    Article  Google Scholar 

  27. Rao R. Neck pain, cervical radiculopathy, and cervical myelopathy: pathophysiology, natural history, and clinical evaluation. Instr Course Lect. 2003;52:479–88.

    Google Scholar 

  28. Bogduk N. The anatomy and pathophysiology of neck pain. Phys Med Rehabil Clin N Am. 2011;22:367–82 (vii).

    Article  Google Scholar 

  29. Vernon H, Mior S. The neck disability index: a study of reliability and validity. J Manip Physiol Ther. 1991;14:409–15.

    CAS  Google Scholar 

  30. Vernon H. The neck disability index: state-of-the-art, 1991–2008. J Manip Physiol Ther. 2008;31:491–502.

    Article  Google Scholar 

  31. Lagattuta F, Falco F. Assessment and treatment of cervical spine disorders. In: Braddom R, editor. Physical medicine and rehabilitation. Philadelphia: Saunders; 2000. p. p762–791.

  32. Song KJ, Choi BW, Choi BR, Seo GB. Cross-cultural adaptation and validation of the Korean version of the neck disability index. Spine (Phila Pa 1976). 2010;35:E1045–9.

    Article  Google Scholar 

  33. Jovicic MD, Konstantinovic LM, Grgurevic AD, Milovanovic ND, Trajkovic G, Jovicic VZ, Kostic Dedic SI, Hrkovic MK, Draganac SM. Validation of the neck disability index in Serbian patients with cervical radiculopathy. J Manip Physiol Ther. 2018;41:496–502.

  34. Manchikanti L, Nampiaparampil DE, Candido KD, Bakshi S, Grider JS, Falco FJE, Sehgal N, Hirsch JA. Do cervical epidural injections provide long-term relief in neck and upper extremity pain? A systematic review. Pain Physician. 2015;18:39–60.

  35. Dworkin RH, O'Connor AB, Kent J, Mackey SC, Raja SN, Stacey BR, Levy RM, Backonja M, Baron R, Harke H, Loeser JD, Treede RD, Turk DC, Wells CD. Interventional management of neuropathic pain: NeuPSIG recommendations. Pain. 2013;154:2249–61.

  36. Lee B, Lee SE, Kim YH, Park JH, Lee KH, Kang E, Kim S, Kim J, Oh D. Evaluation of contrast flow patterns with cervical interlaminar epidural injection: comparison of midline and paramedian approaches. Medicina (Kaunas). 2020;57(1):8.

  37. Cohen SP, Bicket MC, Jamison D, Wilkinson I, Rathmell JP. Epidural steroids: a comprehensive, evidence-based review. Reg Anesth Pain Med. 2013;38:175–200.

    Article  CAS  Google Scholar 

  38. El-Yahchouchi C, Wald J, Brault J, Geske J, Hagen C, Murthy N, Kaufmann T, Thielen K, Morris J, Diehn F, Amrami K, Carter R, Shelerud R, Maus T. Lumbar transforaminal epidural steroid injections: does immediate post-procedure pain response predict longer term effectiveness? Pain Med. 2014;15:921–8.

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Acknowledgements

This study was supported by “Inje University Haeundae Paik Hospital”.

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Correspondence to Daeseok Oh.

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Oh, D., Cheong, S.H., Choi, Y.G. et al. Predictive factors for favorable short-term response to interlaminar epidural block for cervical radiculopathy. J Anesth 37, 23–31 (2023). https://doi.org/10.1007/s00540-022-03122-y

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  • DOI: https://doi.org/10.1007/s00540-022-03122-y

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