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Updated: May 15, 2026

Diffusion Tensor Magnetic Resonance Imaging in the Analysis of Neurodegenerative Diseases
Published on: July 28, 2013
Kinematic and diffusion tensor imaging definition of familial Marcus Gunn jaw-winking synkinesis
Antonella Conte1, Francesco Brancati, Francesco Garaci
1IRCCS Neuromed, Pozzilli, Isernia, Italy.
Background:
Marcus Gunn jaw-winking synkinesis (MGJWS) is characterized by eyelid ptosis, which disappears during jaw movement. Familial MGJWS is an extremely rare condition. Some authors suggested that MGJWS is due to neural misdirection in the brainstem whereas others suggested that aberrant reinnervation or ephapse may be responsible for synkinetic activity. Pathogenesis of this condition is therefore still unclear.
Methodology/Principal Findings:
To investigate pathogenetic mechanism in familial MGJWS we performed neurophysiological (EMG, Blink Reflex, Recovery cycle of the R2 component of the blink reflex, Masseter inhibitory reflex, BAEPS and kinematic analysis) and neuroradiological (MRI, Diffusion Tensor Imaging) investigations in a member of a multigenerational family with autosomal dominant Marcus Gunn jaw-winking synkinesis (MGJWS). Kinematic analysis of eyelid and jaw movements disclosed a similar onset and offset of the eyelid and jaw in both the opening and closing phases. The excitability of brainstem circuits, as assessed by the blink reflex recovery cycle and recovery index, was normal. Diffusion Tensor Imaging revealed reduced fractional anisotropy within the midbrain tegmentum.
Conclusions/Significance:
Kinematic and MRI findings point to a brainstem structural abnormality in our familial MGJWS patient thus supporting the hypothesis of a neural misdirection of trigeminal motor axons to the elevator palpebralis muscle.
Insights
Familial Marcus Gunn jaw-winking synkinesis (MGJWS) may stem from brainstem abnormalities. Diffusion Tensor Imaging revealed reduced fractional anisotropy in the midbrain tegmentum, supporting neural misdirection.
Area of Science:
- Neuroscience
- Ophthalmology
- Genetics
Background:
- Marcus Gunn jaw-winking synkinesis (MGJWS) involves eyelid ptosis that resolves with jaw movement.
- Familial MGJWS is exceptionally rare, with unclear pathogenesis.
- Theories include neural misdirection, aberrant reinnervation, or ephapse.
Observation:
- Neurophysiological and neuroradiological studies were conducted on a multigenerational family with autosomal dominant MGJWS.
- Kinematic analysis showed synchronized eyelid and jaw movement phases.
- Brainstem circuit excitability was normal via blink reflex recovery.
Findings:
- Diffusion Tensor Imaging revealed reduced fractional anisotropy in the midbrain tegmentum.
- This suggests a structural brainstem abnormality in familial MGJWS.
- Findings support the neural misdirection hypothesis.
Implications:
- The study supports the hypothesis of trigeminal motor axons misdirecting to the levator palpebrae muscle.
- This provides insight into the pathogenesis of familial MGJWS.
- Further research into brainstem development and neural pathways is warranted.
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