Tarsal tunnel syndrome (TTS) is an entrapment neuropathy caused by compression of the posterior tibial nerve at the ankle, resulting in pain, numbness, and tingling sensations in the heel and sole of the foot. Perineural steroid injections under ultrasound guidance are commonly used for conservative management to decrease inflammation and relieve pressure. Pulsed radiofrequency (PRF) is a minimally invasive neuromodulatory technique that delivers electrical pulses to alter pain transmission and promote tissue healing without damaging the nerve structure. The objective of this prospective, randomized, double-blind clinical trial is to determine whether combining ultrasound-guided pulsed radiofrequency with perineural steroid injection provides superior pain relief, improved foot function, and higher patient satisfaction compared to perineural steroid injection alone in patients with mild-to-moderate tarsal tunnel syndrome. A total of 50 adult participants will be randomly allocated to one of two study groups: * Group A (Active PRF + Steroid Injection): Participants receive ultrasound-guided pulsed radiofrequency applied adjacent to the posterior tibial nerve for 8 minutes (480 seconds), followed immediately by a perineural injection of 10 mL solution containing triamcinolone acetonide, dextrose 5%, and lidocaine 1%. * Group B (Sham PRF + Steroid Injection): Participants undergo identical ultrasound-guided needle positioning and sensory/motor stimulation testing, followed by 8 minutes of sham radiofrequency (generator switched off), and then receive the identical 10 mL perineural steroid injection. Participants will be evaluated prior to the procedure and at 2 weeks, 1 month, 3 months, and 6 months post-intervention to assess pain severity (Visual Analogue Scale), foot function and disability (Foot Function Index), global impression of recovery, and any procedure-related side effects or complications.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
DOUBLE
Enrollment
50
Under real-time ultrasound guidance, a 22-gauge, 54-mm radiofrequency cannula with a 5-mm active tip is placed adjacent to the posterior tibial nerve. Sensory (50 Hz, ≤0.5 V) and motor (2 Hz, \>0.5 V) stimulation are confirmed, followed by active pulsed radiofrequency (PRF) delivery (parameters: 42°C maximum tip temperature, 45 V, 2 Hz, 20 ms pulse width, for 480 seconds delivered as two consecutive 240-second cycles). Immediately following PRF, a 10 mL solution (8 mL dextrose 5%, 1 mL triamcinolone acetonide 40 mg, and 1 mL lidocaine 1%) is injected through the same cannula around the nerve (5 mL superficial and 5 mL deep).
Under real-time ultrasound guidance, the cannula is positioned adjacent to the posterior tibial nerve using the identical technique, followed by identical sensory and motor stimulation testing. The cannula is maintained in place for 480 seconds with the radiofrequency generator switched off (sham PRF). Immediately following the sham phase, the identical 10 mL solution (8 mL dextrose 5%, 1 mL triamcinolone acetonide 40 mg, and 1 mL lidocaine 1%) is injected around the nerve (5 mL superficial and 5 mL deep).
Change from Baseline in Pain Severity on the Visual Analogue Scale (VAS) at 6 Months
Pain intensity is assessed using a 10-cm Visual Analogue Scale (VAS), where 0 indicates "no pain" and 10 indicates "worst pain imaginable" (higher scores indicate worse pain). The change in foot and heel pain and paresthesia from baseline to 6 months post-intervention will be evaluated.
Time frame: Baseline and 6 months post-intervention
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