OBJECTIVE: To explore with neuroimaging techniques the anatomical and functional correlates of sporadic hyperekplexia. METHODS: Two elderly women with sporadic hyperekplexia underwent neurophysiological assessment, MRI of the brain and proton magnetic resonance spectroscopy (1H-MRS) of the brainstem and frontal lobes. Regional cerebral blood flow was investigated with single photon emission tomography (SPECT) during evoked startles and at rest. RESULTS: Both patients showed excessively large and non-habituating startle responses. In both patients, MRI showed impingement of the brainstem by the vertebrobasilar artery, lack of frontal or brainstem abnormalities on 1H-MRS and hyperperfusion in the dorsal pons and cingulate cortex, and superior frontal gyrus at SPECT during evoked startles. CONCLUSIONS: In our patients with hyperekplexia, the vertebrobasilar arteries were found to impinge on the brainstem. Neurophysiological findings and neurofunctional imaging of evoked startles indicated a pontine origin of the movement disorder modulated by activation in cortical, especially frontal, areas. The neurofunctional correlates of evoked startles in human sporadic hyperekplexia are similar to those observed for the startle circuit in animals.

Pontine hyperperfusion in sporadic hyperekplexia / R. Vetrugno; M. Mascalchi; A. Vella; R. Della Nave; L. Guerrini; A. Vattimo; W.M. Del Giudice; G. Plazzi; R. D'Angelo; G. Greco; P. Montagna. - In: JOURNAL OF NEUROLOGY, NEUROSURGERY AND PSYCHIATRY. - ISSN 0022-3050. - STAMPA. - 78:(2007), pp. 1001-1004.

Pontine hyperperfusion in sporadic hyperekplexia.

MASCALCHI, MARIO;VELLA, ALESSANDRA;
2007

Abstract

OBJECTIVE: To explore with neuroimaging techniques the anatomical and functional correlates of sporadic hyperekplexia. METHODS: Two elderly women with sporadic hyperekplexia underwent neurophysiological assessment, MRI of the brain and proton magnetic resonance spectroscopy (1H-MRS) of the brainstem and frontal lobes. Regional cerebral blood flow was investigated with single photon emission tomography (SPECT) during evoked startles and at rest. RESULTS: Both patients showed excessively large and non-habituating startle responses. In both patients, MRI showed impingement of the brainstem by the vertebrobasilar artery, lack of frontal or brainstem abnormalities on 1H-MRS and hyperperfusion in the dorsal pons and cingulate cortex, and superior frontal gyrus at SPECT during evoked startles. CONCLUSIONS: In our patients with hyperekplexia, the vertebrobasilar arteries were found to impinge on the brainstem. Neurophysiological findings and neurofunctional imaging of evoked startles indicated a pontine origin of the movement disorder modulated by activation in cortical, especially frontal, areas. The neurofunctional correlates of evoked startles in human sporadic hyperekplexia are similar to those observed for the startle circuit in animals.
2007
78
1001
1004
R. Vetrugno; M. Mascalchi; A. Vella; R. Della Nave; L. Guerrini; A. Vattimo; W.M. Del Giudice; G. Plazzi; R. D'Angelo; G. Greco; P. Montagna
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/317631
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