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Clinical Trials/NCT07619794
NCT07619794Not yet recruitingNot Applicable

Combined Effects of Transcutaneous Spinal Cord Stimulation (tSCS) and Augmented Reality (AR) Training on Pain and Balance in Diabetic Neuropathy Patients.

Riphah International University1 site in 1 country36 target enrollmentStarted: June 15, 2026Last updated:

Trial Snapshot

Phase
Not Applicable
Status
Not yet recruiting
Enrollment
36
Locations
1

Study Overview

Brief Summary

tSCS and AR-based training have individually shown benefits in neuromotor rehabilitation; no study to date has evaluated their combined effects on pain, balance, lower-limb strength, retention, and vibration sense in diabetic neuropathy. The rationale for combining them lies in their complementary mechanisms: tSCS at 30 Hz activates large-diameter Aβ afferents, inhibiting nociceptive input, enhancing spinal excitability, and facilitating motor activation.

Detailed Description

In Pakistan, 26.3% of the population is affected, and DN impacts about 40% of cases, with early signs reducing function. (9-11) Standard care includes glycemic control, medications like duloxetine and pregabalin, topical agents, and modalities such as TENS.

Alongside pain, lower-limb strength declines due to motor axonal degeneration and prolonged disuse, (1) limiting mobility and increasing the risk of falls. Balance impairments are frequent in DN and result from compromised proprioceptive input and impaired postural control mechanisms; (4) these deficits are exacerbated by pain-related inactivity and muscular weakness.

Augmented reality (AR) based rehabilitation delivers multisensory feedback, such as visual, vestibular, and proprioceptive inputs, during interactive, task-specific training. It enhances sensorimotor coordination, dynamic postural stability, and proprioceptive reweighting. AR training can improve balance responses, promote lower-limb engagement, and reinforce accurate proprioceptive input.

The tSCS enabled stepping in individuals with complete motor loss, confirming its impact on lower-limb functional recovery. Additionally, this stimulation frequency targets mechano-sensory pathways associated with vibration sense and is believed to support retention of sensorimotor gains through repeated activation of neuroplastic mechanisms at the spinal and cortical levels.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Parallel
Primary Purpose
Treatment
Masking
None

Eligibility Criteria

Ages
18 Years to — (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • More than or equals to 4 score on Douleur Neuropathique 4 Questionnaire
  • More than or equals to 6 Hz at Neurothesiometer
  • More than or equals to 4 score on the Numeric Pain Rating Scale (NPRS)

Exclusion Criteria

  • Cognitively compromised (MOCA ≤ 26/30)
  • Metallic implants at skull
  • Skin allergy

Investigators

Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

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