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December 16, 2013Brain158 citationsOpen Access

The semiology of tilt-induced reflex syncope in relation to electroencephalographic changes

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JDJ. Gert van DijkRTRoland D. ThijsEZErik W. van Zwet

Key Result

The 'slow-flat-slow' EEG pattern during tilt-induced syncope indicated more profound circulatory changes, including lower minimum blood pressure and more asystole, compared to the 'slow' pattern.

Study Design

Type

Observational (n=69)

Structured PICO

P
Population
69 cases of tilt-induced vasovagal syncope evaluated with electroencephalography and video data.
E
Exposure
Electroencephalography and video monitoring during tilt-induced syncope
O
Outcome
Symptoms, signs and electroencephalographic changes with a 1 s resolutionsurrogate

EEG flattening during tilt-induced syncope correlates with more profound circulatory changes and specific clinical signs, allowing for a classification of syncopal signs based on cortical activity.

Abstract

Syncope is defined as transient loss of consciousness as a result of cerebral hypoperfusion. Electroencephalography during syncope shows either a 'slow-flat-slow' or a 'slow' pattern. The first is believed to denote more severe hypoperfusion. Although the diagnosis of vasovagal syncope relies primarily on history taking, there is limited evidence regarding the relative importance of various clinical features, and none that relate them to the severity of electroencephalographic changes. The aim of this investigation was to study symptoms, signs and electroencephalographic changes with a 1 s resolution using electroencephalography and video data in 69 cases of tilt-induced vasovagal syncope. The main finding was that flattening of the electroencephalograph indicated more profound circulatory changes: the 'slow-flat-slow' group had a lower minimum blood pressure, longer maximum RR-interval, contained more cases with asystole and had a longer duration of loss of consciousness than the 'slow' group. Second, we describe a range of signs, including some that have rarely been reported in syncope, e.g. oral automatisms. Third, signs occurred at different rates depending on electroencephalographic flattening, suggesting a classification of syncopal signs. Type A signs (e.g. loss of consciousness, eye opening and general stiffening) develop during the first slow phase, stay present during flattening and stop in the second slow phase. Type B (particularly myoclonic jerks) occur when the electroencephalograph is slow but not flat: their abolition with electroencephalographic flattening suggests dependence on cortical activity. Type C signs (making sounds, roving eye movements and stertorous breathing) occur only in the flat phase, whereas type D (dropping the jaw and snoring) may occur either in slow or flat phases. In conclusion, our findings provide a detailed assessment of clinical symptoms in relation to electroencephalographic (EEG) changes during tilt-induced syncope.

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Cite This Study

Dijk et al. (2013) conducted an observational in tilt-induced vasovagal syncope (n=69). Electroencephalographic 'slow-flat-slow' pattern vs. Electroencephalographic 'slow' pattern was evaluated on Circulatory changes and clinical signs. The 'slow-flat-slow' EEG pattern during tilt-induced syncope indicated more profound circulatory changes, including lower minimum blood pressure and more asystole, compared to the 'slow' pattern.

synapsesocial.com/papers/6a9f90873237489925f3cfb2https://doi.org/10.1093/brain/awt332
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