Authors: Michael Strupp, Jose A. Lopez-Escamez, Ji-Soo Kim, Dominik Straumann, Joanna C. Jen, John Carey, Alexandre Bisdorff, Thomas Brandt
Categories: Research Article, ICVD, Vertigo, attacks, dizziness, neurovascular compression
Source: Journal of Vestibular Research
Doi: 10.3233/VES-160589
This paper describes the diagnostic criteria for vestibular paroxysmia (VP) as defined by the Classification Committee of the Bárány Society. The diagnosis of VP is mainly based on the patient history and A) at least ten attacks of spontaneous spinning or non-spinning vertigo; B) duration less than 1 minute; C) stereotyped phenomenology in a particular patient; D) response to a treatment with carbamazepine/oxcarbazepine; and F) not better accounted for by another diagnosis. Probable VP is defined as A) at least five attacks of spinning or non-spinning vertigo; B) duration less than 5 minutes; C) spontaneous occurrence or provoked by certain head-movements; D) stereotyped phenomenology in a particular patient; E) not better accounted for by another diagnosis.
Ephaptic discharges in the proximal part of the 8th cranial nerve, which is covered by oligodendrocytes, are the assumed mechanism. Important differential diagnoses are Menière’s disease, vestibular migraine, benign paroxysmal positional vertigo, epileptic vestibular aura, paroxysmal brainstem attacks (in multiple sclerosis or after brainstem stroke), superior canal dehiscence syndrome, perilymph fistula, transient ischemic attacks and panic attacks. Current areas of uncertainty in the diagnosis of VP a) MRI findings of vascular compression which are not diagnostic of the disease or predictive for the affected side because they are also observed in about 30% of healthy asymptomatic subjects; and b) response to treatment with carbamazepine/oxcarbazepine supports the diagnosis but there are so far no randomized controlled trials for treatment of VP.
Keywords: Vertigo, dizziness, attacks, neurovascular compression, ICVD
The Bárány Society representing the international community of basic scientists, otolaryngologists and neurologists committed to vestibular research mandated a Classification Committee for an International Classification of Vestibular Disorders (ICVD). Individual disorders are defined by subcommittees that include otolaryngologists and neurologists from at least three continents. Since the beginning of the process, consensus papers on the classification of vestibular symptoms [4], vestibular migraine [26], Menière’s disease [28] and benign paroxysmal positional vertigo (BPPV) [42] have been published.
In 1975 Jannetta and colleagues described a “neurovascular cross-compression in patients with hyperactive dysfunction symptoms of the eighth cranial nerve” [17]. This concept was further evaluated – mainly by neurosurgeons – in terms of the pathophysiology, area of compression and treatment by decompression of the eighth nerve [2, 12, 16, 23, 32]. In 1984 it was called “disabling positional vertigo” by Jannetta and colleagues [18], from a clinical point of view a heterogeneous syndrome of vertigo with symptoms of various durations (from seconds to days), various characteristic features (spinning vertigo, light-headedness or gait instability without vertigo), and varying accompanying symptoms. In 1986, Jannetta and colleagues [31] reported a case series of 21 patients treated by microvascular decompression, 16 of whom benefited from this procedure. These results were confirmed by larger case series on 41 patients [29] and 207 patients [30] with a success rate between 73% and 80%. Later it was criticized that the selection criteria for surgery were variable and that no standardized outcome measures were used [43].
The term “vestibular paroxysmia” (VP) was introduced by Brandt and Dieterich in 1994 [5]. The initial criteria of VP were based on an observational study on 11 patients and were as follows [5]: 1) short attacks of spinning or non-spinning vertigo lasting from seconds to minutes; 2) attacks frequently dependent on a particular head position; 3) hyperacusis or tinnitus (7 patients) permanently or during the attack; and 4) auditory or vestibular deficits measurable by neurophysiological methods. To make the diagnosis three out of four criteria had to be fulfilled and the patient had to respond to treatment with carbamazepine.
In 2008, based on a study on 32 patients, the suggested diagnostic criteria were modified as follows to include two categories [14]: “Definite VP”: at least five attacks and the patient also fulfils criteria A-E: A) vertigo spells lasting seconds to minutes. The individual attack is self-limiting and subsides without specific therapeutic intervention; B) one or several of the following provoking factors to induce the 1. occurring at rest; 2. certain head/body positions (not BPPV-specific positioning maneuvers); 3. changes in head/body position (not BPPV-specific positioning maneuvers); C) none or one or several of the following characteristics during the 1. disturbance of stance; 2. disturbance of gait; 3. unilateral tinnitus; 4. unilateral pressure/numbness in or around the ear; 5. unilaterally reduced hearing; D) one or several of the following additional diagnostic 1. neurovascular cross-compression demonstrated on MRI (CISS sequence, TOF MR angiography); 2. hyperventilation-induced nystagmus as measured by oculography; 3. increase of vestibular deficit at follow-up investigations as measured by oculography; 4. treatment response to antiepileptics (not applicable at first consultation); E) the symptoms cannot be explained by another disease. The diagnostic criteria for “Probable VP” were as at least five attacks and the patient fulfils criterion A, and at least three of criteria B-E.
In 2009, an analogous clinical syndrome in two patients with brief, spontaneous, recurrent attacks of tinnitus and vertigo, which responded to low-dose gabapentin, was described as “audiovestibular paroxysmia” [35].
This work forms part of an ongoing multi-year project to develop an International Classification of Vestibular Disorders (ICVD) which uses a structured process to develop international consensus definitions for vestibular symptoms, syndromes, disorders, and diseases. This process, overseen by the Classification Committee of the Bárány Society (CCBS), is based on expert, multi-disciplinary committees with international representation developing diagnostic criteria for subsequent comment and refinement prior to publication. These criteria are based on a critical appraisal of current best scientific evidence. All definitions are supported by notes, comments, and written discussion according to a template established by the CCBS for ICVD. The criteria for VP were developed iteratively over a four-year period (2013-16) through discussion, presentation, and refinement. Special care was taken that the criteria are practical and can be applied in every country all over the world; this applies particularly to the use of laboratory examinations not available everywhere.
Although the prevalence of VP is not known, it should be considered a rare disease (<1 in 2000 people), since only small case series and single cases have been published [3, 5, 10, 13, 14, 25, 39]. There are no data on the life-time prevalence of VP. The relative frequency of VP in a group of more than 17,000 patients with vertigo and dizziness in a tertiary care centre was around 4% [6]. The mean age of the patients in the three case series with more than 10 patients was 51 years (range 25–67 years) [5], 48.0±15.3 years (mean±SD) [14] and 48.4±14.5 years (range 25–77 years). Vestibular paroxysmia was also described in children with features similar to those in adults [25] and appears to have often a good long term prognosis with spontaneous remission with age [7]. From the three studies mentioned above [6, 14, 25] of a total number of 63 patients, 32 were female. There is no epidemiological evidence of a genetic contribution.
In analogy to brief recurrent symptoms in trigeminal neuralgia, hemifacial spasm, glossopharyngeal neuralgia or myokymia of the superior oblique muscle [15], it is assumed that the short attacks of vertigo are triggered by ephaptic discharges, i.e. pathological paroxysmal interaxonal transmissions between neighboring, partially demyelinated axons. The likely site of the lesion is the central (oligodendroglia) myelin [12], proximal to the “transition zone”. This corresponds to the first 15 mm after the nerve exit [21]. Potential causes for nerve injury are focal irritation by a blood vessel [2, 3, 5, 12, 16, 23, 32, 39], tumor or cyst [1, 24] compression, demyelination, trauma and unidentified causes.
Approximately 50% of patients undergoing testing of vestibular and audiological function exhibit signs of a mild to moderate unilateral hypofunction during the attack-free intervals [14]. Hearing loss is usually less prominent than in patients with Menière’s disease. Identification of the affected side is often not possible. If the attacks are accompanied by strictly unilateral audiological symptoms and there are vestibular and audiological deficits on the same side, one can identify the affected ear in exceptional cases [36].
The role of MRI in identifying the affected side also has to be evaluated further [10, 14]. In a study of 32 patients with VP, neurovascular compression of the 8th cranial nerve was detected in 95% of the patients; bilateral neurovascular compression was found in 42% of the patients [14]. In another study of 20 patients with VP, neurovascular compression of the 8th cranial nerve was found in all patients, but also in 7 out of 20 control subjects (sensitivity: 100%, 65% for the diagnosis of VP by MRI) [3]. The distance between the brainstem and compressing vessels varied between 0.0 and 10.2 mm. This part of the nerve is proximal to the transition zone and covered by oligodendrocytes. In 15 cases, the compressing vessel was the anterior inferior cerebellar artery (75%), in one the posterior inferior cerebellar artery (5%), in two a vein (10%), and in another two the vertebral artery. Thus, a high-resolution MRI with CISS/FIESTA sequences of the brainstem may support the diagnosis.
Seven Tesla MRI was performed in six patients with VP [34]. The study confirmed neuro-vascular cross-compression also seen on 1.5 and 3.0 MRI. No structural abnormalities were detected in any of the patients in 7 Tesla MRI. These findings suggest that the symptoms of VP in these patients were not caused by structural nerve lesions.
In trigeminal neuralgia, high-resolution diffusion tensor imaging revealed significantly lower anisotropy and higher apparent diffusion coefficient in the affected trigeminal root compared to control, which correlated with structural atrophic nerve changes [22]. Comparable findings are not yet available for the 8th cranial nerve due to methodological limitations by the short course of the 8th cranial nerve from the brainstem to the internal acoustic meatus and the adjacent temporal bone. A cranial MRI should also be performed to exclude the presence of a tumor in the area of the cerebello-pontine angle, arachnoid cysts [1], megalodolichobasilaris, brainstem plaques in multiple sclerosis (MS), brainstem infarctions (leading to paroxysmal brainstem attacks with or without ataxia) or other brainstem lesions.
The leading symptom of VP is recurrent spontaneous attacks of vertigo. The diagnosis is generally straightforward because of the characteristic brief duration (from seconds up to one minute), the frequently recurring attacks of vertigo and the response to a treatment with carbamazepine or oxcarbazepine. There are only a few other disorders which may present with this leading
Other differential diagnoses are characterized by recurrent attacks of vertigo that are induced by certain maneuvers. These differential diagnoses include BPPV, central positional vertigo/nystagmus, “rotational vertebral artery occlusion syndrome” (RVAOS), orthostatic hypotension, or rarely cysts or tumors in the cerebello-pontine angle [1, 24]. In BPPV the attacks are induced by changes of head or body position relative to gravity, and the diagnosis can be proven by the diagnostic positional maneuvers. However, if they are negative, VP remains an important differential diagnosis. In central positional/positioning nystagmus the positioning maneuvers induce a similar nystagmus in different head positions [9]. In RVAOS the attacks are induced by rotation of the head either to the right or left, and diagnosis is proven by angiography. Similar to VP the symptoms are also caused by an excitation of the peripheral vestibular system [38]. In orthostatic hypotension the symptoms occur when the patient stands up and may be associated with vertigo and downbeat nystagmus; the key to this diagnosis is measurement of supine and orthostatic blood pressure [11].
A therapeutic trial of a low dose of carbamazepine (200–800 mg/day) or oxcarbazepine (300–900 mg/day) is often effective (for references see [8, 37]). Moreover, a positive response supports the definite diagnosis. The exact specificity of the drug response for the establishment of the diagnosis still needs to be shown. A study on the course of the disease in 32 patients under treatment with carbamazepine or oxcarbazepine over a 3-year period revealed a significant and continuing decrease in the attack frequency down to 10% of the initial value as well as a reduction in the intensity and duration of the attacks [14]. In case of intolerance to these drugs, other sodium channel blockers such as phenytoin or valproic acid are possible alternatives; however, there are no study data available yet.
Despite the report of partial successes [31] and a clinically well-documented single case [39], operative microvascular decompression should be reserved for cases with VP who respond but do not tolerate the treatment with the above mentioned drugs and in whom the affected side could be clearly identified because of the risk of a brainstem infarction due to intra- or post-operative vasospasm.
This work was supported by the Federal Ministry of Education and Research to the German Center for Vertigo and Balance Disorders (Grant No. 01EO0901 and 01EO1401).