# Advancements in spinal cord injury rehabilitation

> Live situation record from CLSTR: https://clstr.news/situations/advancements-in-spinal-cord-injury-rehabilitation
> Updated: 2026-09-08T04:11:00.000Z. Sources: 8. Developments: 2.

Recent medical research has demonstrated new methods for restoring motor function and sensation in individuals with spinal cord injuries.

In the United States, researchers at the Feinstein Institutes for Medical Research utilized a hybrid brain-body interface (BBI) to help a paralyzed patient regain motor functions and sensation. By stimulating both the brain and the spinal cord, the system enabled the patient to perform delicate tasks, such as grasping fragile objects, with the sense of touch persisting even when devices were deactivated.

In Italy, researchers from the MINE Lab—a collaboration between Università Vita-Salute San Raffaele and Scuola Superiore Sant’Anna—have advanced “trunk-mediated control” techniques. Published in the journal Med, this method utilizes commercially available spinal cord stimulators to allow individuals with chronic, complete spinal cord injuries to stand and walk. 

In a study involving four participants under the age of 35, the technique enabled patients to use voluntary trunk movements to modulate electrical stimulation, facilitating the transition from weight-bearing postures to coordinated walking steps. Following four months of intensive rehabilitation, all participants were able to walk using a walker without manual assistance or weight-support systems. One participant successfully walked 132 meters in 42 minutes, while three participants were able to stand while supporting themselves with only one hand. 

Researchers Pietro Mortini and Silvestro Micera noted that the technique leverages preserved bodily functions to allow patients to actively participate in the walking process. Beyond physical mobility, clinicians reported improvements in the patients' psychological well-being. Researchers intend to expand this protocol to non-traumatic injuries in the future.

## Claims

- The method uses voluntary trunk movements to control electrical spinal cord stimulation. (corroborated by 6 sources)
- Four paraplegic individuals regained the ability to stand and walk using a walker. (corroborated by 5 sources)
- The procedure utilizes a commercially available spinal cord stimulator rather than brain implants or external sensors. (corroborated by 4 sources)
- The four study participants were all under the age of 35 with chronic, complete spinal cord injuries. (corroborated by 4 sources)
- One participant successfully walked 132 meters in 42 minutes. (corroborated by 3 sources)
- Participants' Wischi II walking capacity scores increased from zero to nine. (corroborated by 2 sources)
- Pietro Mortini described the technique as an important step forward in neuromodulation. (corroborated by 2 sources)
- Silvestro Micera noted that the approach focused on fine-tuning trunk movement to help patients use it effectively. (corroborated by 2 sources)
- Sandro Iannaccone reported improvements in patients' moods. (single source)

## Timeline

### 2026-09-08: MINE Lab technique enables four paraplegic patients to walk

Four patients with chronic spinal cord injuries have regained walking ability using a new Italian-developed technique that uses voluntary trunk movements to control epidural electrical stimulation.

6 sources. https://clstr.news/cluster/italian-researchers-develop-spinal-stimulation-technique-to-restore-walking-in-paraplegics

### 2026-09-06: Brain implants restore movement and sensation in paralysis study

A hybrid brain-body interface has successfully helped a paralyzed patient regain movement and sensation by stimulating both the brain and spinal cord.

2 sources. https://clstr.news/cluster/brain-implants-restore-movement-and-sensation-in-paralysis-study

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Cite as: Advancements in spinal cord injury rehabilitation. CLSTR, https://clstr.news/situations/advancements-in-spinal-cord-injury-rehabilitation
