Facial nerve rehabilitation
Rehabilitation
estimated about CNY 130-290
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Description
A therapeutic intervention to restore function and reduce complications following facial nerve injury or paralysis, involving exercises, neuromuscular re-education, and sensory stimulation.
Main Uses
Primary purposes include restoring voluntary facial muscle control, reducing synkinesis, improving symmetry at rest and during movement, enhancing eyelid closure and oral competence, preventing contractures, and supporting psychosocial reintegration. Applicable scenarios: post-Bell’s palsy recovery (within first 6 months), post-surgical facial nerve repair, chronic facial palsy (>1 year) with residual function, pediatric facial nerve palsy, and adjunctive therapy alongside botulinum toxin for synkinesis management.
Normal Range
Face nerve rehabilitation training is a non-invasive therapeutic intervention, not a laboratory or diagnostic test with numerical values; therefore, there is no 'normal range' of quantitative metrics. Clinical progress is assessed qualitatively and semi-quantitatively using validated scales (e.g., House-Brackmann Facial Nerve Grading Scale: Grade I = normal function; Grade II–VI = increasing impairment) and objective measures such as facial electromyography (EMG) amplitude (normal resting EMG: <5 µV; voluntary contraction: 200–2000 µV), blink reflex latency (normal R1: 10–13 ms; R2: 25–40 ms), and facial nerve conduction velocity (normal: 50–70 m/s).
Low Values - Possible Causes
1. Acute Bell’s palsy (idiopathic facial nerve inflammation), 2. Ramsay Hunt syndrome (varicella-zoster virus reactivation), 3. Traumatic facial nerve injury (e.g., temporal bone fracture, iatrogenic during parotid or skull base surgery), 4. Lyme neuroborreliosis, 5. Chronic inflammatory demyelinating polyneuropathy (CIDP) affecting cranial nerves.
High Values - Possible Causes
N/A — 'High values' are not applicable to facial nerve rehabilitation training itself, as it is a therapeutic modality, not a measurable biomarker. However, abnormally elevated electrophysiological parameters (e.g., increased EMG amplitude or polyphasic motor unit potentials) may indicate compensatory hyperactivity, synkinesis, or aberrant nerve regeneration — not 'high training values'.
estimated about CNY 130-290
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