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Reduction in pain from corticosteroid injection for the treatment of trigger finger with subcutaneous single-injection digital block: a randomized controlled trial

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Abstract

Purpose

The pain from corticosteroid injections is not an insignificant issue for patients with trigger finger. The aim of this study was to evaluate the efficacy of subcutaneous single-injection digital block (SSIDB) for pain reduction during trigger finger corticosteroid injection.

Methods

Ninety patients requiring corticosteroid injections for trigger finger were randomized to three groups: SSIDB with 2 ml of 1% lidocaine, SSIDB with 1 ml of 1% lidocaine and no digital block (control group). In SSIDB groups, the intrasynovial corticosteroid injections were performed after digital nerve block. In control group, ethyl chloride spray was applied prior to intrasynovial injection of the corticosteroid and 1% lidocaine mixture. The pain during lidocaine needle insertion, lidocaine infiltration, corticosteroid needle insertion and corticosteroid infiltration were determined with a visual analog scale (VAS).

Results

The VAS pain scores for corticosteroid needle insertion in both SSIDB groups were significantly lower than the VAS pain scores in control group (p < 0.001). The VAS pain score during corticosteroid infiltration in 2 ml of 1% lidocaine group was significantly lower than 1 ml of 1% lidocaine group (p = 0.008), and in control group (p < 0.001). Pain during nerve block procedure in both SSIDB groups was significantly lower than the pain from corticosteroid injection in the control group (p < 0.05 and p < 0.05).

Conclusions

Subcutaneous single-injection digital block with 2 ml of 1% lidocaine was highly effective in reducing pain associated with injection of corticosteroid for trigger finger.

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References

  1. Saldana MJ (2001) Trigger digits: diagnosis and treatment. J Am Acad Orthop Surg 9:246–252

    Article  CAS  Google Scholar 

  2. Fleisch SB, Spindler KP, Lee DH (2007) Corticosteroid injections in the treatment of trigger finger: a level I and II systematic review. J Am Acad Orthop Surg 15:166–171

    Article  Google Scholar 

  3. Jianmongkol S, Kosuwon W, Thammaroj T (2007) Intra-tendon sheath injection for trigger finger: the randomized controlled trial. Hand Surg 12:79–82

    Article  Google Scholar 

  4. Pataradool K, Buranapuntaruk T (2011) Proximal phalanx injection for trigger finger: randomized controlled trial. Hand Surg 16:313–317

    Article  CAS  Google Scholar 

  5. Sibbitt WL Jr, Michael AA, Poole JL, Chavez-Chiang NR, Delea SL, Bankhurst AD (2011) Nerve blocks at the wrist for painful injections of the palm. J Clin Rheumatol 17:173–178

    Article  Google Scholar 

  6. Julka A, Vranceanu AM, Shah AS, Peters F, Ring D (2012) Predictors of pain during and the day after corticosteroid injection for idiopathic trigger finger. J Hand Surg Am 37:237–242

    Article  Google Scholar 

  7. Park KW, Boyer MI, Calfee RP, Goldfarb CA, Osei DA (2014) The efficacy of 95-Hz topical vibration in pain reduction for trigger finger injection: a placebo-controlled, prospective, randomized trial. J Hand Surg Am 39:2203–2207

    Article  Google Scholar 

  8. Earp BE, Stanbury SJ, Mora AN, Blazar PE (2017) Needle-free jet lidocaine administration for preinjection anesthesia in trigger finger injection: a randomized controlled trial. J Hand Surg Am 42:618–622

    Article  Google Scholar 

  9. Rosenbaum YA, Benvenuti N, Yang J, Ruff ME, Awan HM, Samora JB (2018) The effect of trigger finger injection site on injection-related pain. Hand (N Y) 13:164–169

    Article  Google Scholar 

  10. Wolfe SW (2011) Tendinopathy. In: Wolfe SW, Hotchkiss RN, Pederson WC, Kozin SH (eds) Green’s operative hand surgery, 6th edn. Elsevier Churchill Livingstone, Philadelphia (PA), pp 2067–2088

    Chapter  Google Scholar 

  11. Freiberg A, Levine R (1989) Nonoperative treatment of trigger fingers and thumbs. J Hand Surg Am 14:553–558

    Article  CAS  Google Scholar 

  12. Marks MR, Gunther SF (1989) Efficacy of cortisone injection in treatment of trigger fingers and thumbs. J Hand Surg Am 14:722–727

    Article  CAS  Google Scholar 

  13. Bodor M, Flossman T (2009) Ultrasound-guided first annular pulley injection for trigger finger. J Ultrasound Med 28:737–743

    Article  Google Scholar 

  14. Kosiyatrakul A, Loketkrawee W, Luenam S (2018) Different dosages of triamcinolone acetonide injection for the treatment of trigger finger and thumb: a randomized controlled trial. J Hand Surg Asian Pac 23:163–169

    Article  Google Scholar 

  15. Harbison S (1991) Transthecal digital block: flexor tendon sheath used for anaesthetic infusion. J Hand Surg Am 16:957

    Article  CAS  Google Scholar 

  16. Low CK, Vartany A, Engstrom JW, Poncelet A, Diao E (1997) Comparison of transthecal and subcutaneous single-injection digital block techniques. J Hand Surg Am 22:901–905

    Article  CAS  Google Scholar 

  17. Hung VS, Bodavula VK, Dubin NH (2005) Digital anaesthesia: comparison of the efficacy and pain associated with three digital nerve block techniques. J Hand Surg Br 30:581–584

    Article  CAS  Google Scholar 

  18. Yin ZG, Zhang JB, Kan SL, Wang P (2006) A comparison of traditional digital blocks and single subcutaneous palmar injection blocks at the base of the finger and a meta-analysis of the digital block trials. J Hand Surg Br 31:547–555

    Article  CAS  Google Scholar 

  19. Wheelock ME, Leblanc M, Chung B, Williams J, Lalonde DH (2011) Is it true that injecting palmar finger skin hurts more than dorsal skin? New level 1 evidence. Hand (N Y) 6:47–49

    Article  Google Scholar 

  20. Strazar AR, Leynes PG, Lalonde DH (2013) Minimizing the pain of local anesthesia injection. Plast Reconstr Surg 132:675–684

    Article  CAS  Google Scholar 

  21. Todd KH, Funk KG, Funk JP, Bonacci R (1996) Clinical significance of reported changes in pain severity. Ann Emerg Med 27:485–489

    Article  CAS  Google Scholar 

  22. Kelly AM (2001) The minimum clinically significant difference in visual analogue scale pain score does not differ with severity of pain. Emerg Med J 18:205–207

    Article  CAS  Google Scholar 

  23. Jeske HC, Kralinger F, Wambacher M, Perwanger F, Schoepf R, Oberladstaetter J, Krappinger D, Dallapozza C, Hoffmann F (2011) A randomized study of the effectiveness of suprascapular nerve block in patient satisfaction and outcome after arthroscopic subacromial decompression. Arthroscopy 27:1323–1328

    Article  Google Scholar 

  24. Brokelman RB, Haverkamp D, van Loon C, Hol A, van Kampen A, Veth R (2012) The validation of the visual analogue scale for patient satisfaction after total hip arthroplasty. Eur Orthop Traumatol 3:101–105

    Article  Google Scholar 

  25. Weston-Simons JS, Pandit H, Haliker V, Dodd CA, Popat MT, Murray DW (2012) Intra-articular local anaesthetic on the day after surgery improves pain and patient satisfaction after Unicompartmental Knee Replacement: a randomised controlled trial. Knee 19:352–355

    Article  CAS  Google Scholar 

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Acknowledgements

We would like to express our sincere thanks to Michele D. Spring, MD, Clinical Researcher at Armed Forces Research Institute of Medical Sciences (AFRIMS), Bangkok, Thailand, for manuscript revision. We would like to thank Worarachanee Imjaijitt, Biomedical Statistician at Office of Research Development, Phramongkutklao College of Medicine, Bangkok, Thailand, for statistical analysis.

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Correspondence to A. Kosiyatrakul.

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Kosiyatrakul, A., Songchou, K. & Luenam, S. Reduction in pain from corticosteroid injection for the treatment of trigger finger with subcutaneous single-injection digital block: a randomized controlled trial. Musculoskelet Surg 105, 309–314 (2021). https://doi.org/10.1007/s12306-020-00661-z

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  • DOI: https://doi.org/10.1007/s12306-020-00661-z

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