Quick Facts

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Anaesthesia

General

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Procedure Time

2โ€“4 Hours

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Hospital Stay

1-2 Nights

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Recovery Time

4 Weeks

Treatment overview

Brachial plexus injuries represent some of the most complex and life-altering nerve injuries in reconstructive surgery. The brachial plexus โ€” a network of nerves originating from the cervical and upper thoracic spine โ€” controls virtually all movement and sensation in the shoulder, arm, and hand. When disrupted by traction trauma (most commonly in road traffic accidents or birth injuries), the consequences can range from temporary weakness to complete, permanent paralysis of the entire upper limb.

At Olive Skin & Aesthetics, we manage traumatic and obstetric brachial plexus injuries with a structured, evidence-based approach โ€” from early nerve exploration and repair to neurotisation (nerve transfer), free functional muscle transfer, and late tendon transfer procedures โ€” always prioritising the recovery of the most functionally important movements: shoulder abduction, elbow flexion, and hand function.

  • Adults and children with traumatic brachial plexus injuries โ€” typically from motorcycle accidents, falls from height, or sports injuries
  • Infants with obstetric brachial plexus palsy (Erb’s palsy or Klumpke’s palsy) who fail to recover spontaneously by 3 months of age
  • Patients with partial plexus injuries (upper, lower, or combined trunk lesions)
  • Individuals presenting in a delayed manner where nerve repair is no longer viable and nerve or tendon transfer is the appropriate strategy
  • Patients who have undergone primary repair elsewhere and require secondary procedures to improve residual functional deficits

The management pathway is determined by the severity and level of the injury, defined by clinical examination and supported by MRI, CT myelogram, and nerve conduction studies. Surgery is ideally performed within 3โ€“6 months of injury for traumatic cases, and by 3โ€“6 months of age for birth injuries that do not show adequate spontaneous recovery.

Root avulsions (where the nerve is torn from the spinal cord) cannot be directly repaired and require neurotisation โ€” using expendable donor nerves such as the intercostal nerves, phrenic nerve, or contralateral C7 โ€” to reinnervate priority muscles (biceps for elbow flexion, deltoid for shoulder abduction). Root ruptures (where continuity is preserved but the nerve is torn outside the cord) are repaired with nerve grafts harvested from the sural nerve.

Late reconstructions โ€” for patients presenting beyond the window for nerve repair โ€” use tendon transfers, free functional muscle transfers (gracilis muscle), and arthrodesis to restore the most critical upper limb functions.

    • Days 1โ€“5 (hospital): Arm supported in sling. Wound and drain management. Early physiotherapy for shoulder and elbow positioning.
    • Week 2โ€“6: Structured physiotherapy commenced โ€” passive range of motion for all joints to prevent stiffness during the nerve regeneration wait.
    • Month 3โ€“6: Early signs of reinnervation monitored clinically (Tinel’s sign, EMG). Physiotherapy intensified.
    • Month 6โ€“12: Motor recovery, where it occurs, becomes clinically detectable. Strength grading and functional assessment guide next steps.
    • Month 12โ€“24: Maximum spontaneous recovery assessed. Secondary procedures (tendon transfers, muscle transfers) planned if residual deficits warrant intervention.
    • Ongoing: Long-term physiotherapy and occupational therapy. Psychological support for adaptation to residual disability where applicable.

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“Dr. Dhingra and the entire team at Olive made me feel so comfortable from day one. The results exceeded my expectations โ€” natural and beautiful. I couldn’t be happier with my decision.”

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Frequently Asked Questions

What is a brachial plexus injury, and what causes it?

The brachial plexus is the complex network of five nerve roots (C5 to T1) emerging from the cervical spinal cord that form the peripheral nerves controlling the entire arm โ€” shoulder abduction, elbow flexion, wrist extension, and hand intrinsic function. Injury occurs when this network is violently stretched (traction), compressed, or torn. The most common cause in adults is high-energy motorcycle accidents, where a shoulder-depression mechanism (shoulder forced down while the head is forced to the opposite side) stretches the plexus to rupture. In newborns, obstetric brachial plexus palsy (OBPP / Erb's palsy) results from difficult delivery with shoulder dystocia. Root avulsions (complete nerve root torn from the spinal cord โ€” irreparable from within) are the most devastating pattern.

What imaging is performed, and how is the extent of injury assessed?

Brachial plexus injury assessment requires a multimodal diagnostic approach: MRI (specifically high-resolution 3T MRI with brachial plexus sequences) is the primary imaging modality โ€” identifying pseudomeningoceles (fluid pouches at avulsed root sites, pathognomonic for root avulsion), nerve continuity, and intraneural fibrosis. CT myelography adds detail in patients with metallic implants or poor MRI tolerance. Electrodiagnostics (EMG/NCS) at 3 to 6 weeks post-injury quantify denervation patterns and identify which muscles are reinnervating. Intraoperative nerve action potentials confirm root integrity during surgical exploration โ€” roots generating action potentials despite clinical paralysis are in continuity (neuropraxia) and warrant neurolysis rather than reconstruction.

What surgical reconstruction options exist for complete brachial plexus injuries?

Surgical reconstruction is planned based on available nerve roots, injury pattern, and elapsed time: Neurolysis (external and internal decompression) of roots in continuity with Sunderland Grade 1โ€“3 injuries. Nerve grafting (using long sural nerve grafts to bridge gaps between intact roots and target motor nerves) โ€” requires at least one intact donor root. Nerve transfer (neurotization): when all roots are avulsed and no plexus-derived donor exists, healthy expendable motor nerves from the contralateral C7 root, ipsilateral intercostal nerves, phrenic nerve, or spinal accessory nerve are transferred to reininnervate priority targets โ€” most commonly, restoring elbow flexion via musculocutaneous nerve neurotization is the first priority. Tendon transfers and free functioning muscle transplants restore motor function in late presentations.

How long does recovery take, and what function can realistically be restored?

Recovery from brachial plexus surgery follows the biological constraints of nerve regeneration โ€” 1 to 2 mm per day. Recovering elbow flexion from a nerve transfer at the neck to the musculocutaneous nerve (approximately 20 cm) requires 10 to 14 months before the first voluntary contraction is detectable. Full functional recovery (useful motor grade MRC 3 or above) requires 18 to 30 months. Realistic expectations are critical: in complete root avulsion injuries, surgery restores elbow flexion in the majority of patients, shoulder stability and external rotation in many, and useful wrist extension in some. Full hand recovery is rarely achievable in pan-plexus avulsion โ€” hand rehabilitation focuses on protective sensation restoration.

What rehabilitation is essential after brachial plexus surgery?

Brachial plexus rehabilitation is long-term and intensive: an experienced physiotherapist provides bi-weekly sessions throughout the multi-year recovery. The programme includes: positioning and joint protection splinting (preventing contractures in denervated shoulder, elbow, and wrist); passive range-of-motion exercises to maintain joint mobility while reinnervation occurs; electrical stimulation (NMES/EMS) to maintain muscle bulk and prevent fibrosis during denervation; sensory re-education as sensation returns; graded strengthening as motor recovery progresses; and cortical re-mapping through intensive mirror therapy and motor imagery to accelerate central nervous system adaptation to the novel motor pathways created by nerve transfers.

Clinic Details

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Olive Skin & Aesthetics

C4, Sector 15 Part 2, Sector 15, Gurugram, Haryana 122001

Hours: Monโ€“Fri: 9:00 AM โ€“ 5:00 PM | Sat: 10:00 AM โ€“ 5:00 PM

Phone: +91 93541 47353

Email: Oliveskinandaestheticsggn@gmail.com

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