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Arne May

Publications and source records attributed to Arne May.

At least 19 recordsLinked to original sources

Effectiveness of intranasal zolmitriptan in acute cluster headache: a randomized, placebo-controlled, double-blind crossover study.

BACKGROUND: Cluster headache is a form of primary headache in which attacks are rapid in onset with very severe pain. The mainstays of acute therapy are inhaled oxygen and sumatriptan succinate injection. OBJECTIVE: To evaluate zolmitriptan nasal spray in the acute treatment of cluster headache. METHODS: Ninety-two patients, aged 40 +/- 10 years (mean +/- SD) (80 men and 12 women), with International Headache Society-defined cluster headache were randomized into a placebo-controlled, double-blind crossover study. Patients treated 3 headache attacks using placebo for 1 attack, 5 mg of zolmitriptan nasal spray (ZNS5) for 1 attack, and 10 mg of zolmitriptan nasal spray for 1 attack. The primary end point was headache relief at 30 minutes, defined as reduction from moderate, severe, or very severe pain to no or mild pain. The study was approved by the appropriate ethics committees. RESULTS: Sixty-nine patients were available for an intention-to-treat analysis. The 30-minute headache relief rates were placebo, 21%; ZNS5, 40%; and ZNS10, 62%. Modeling the response as a binary outcome, the Wald test was significant for the overall regression (chi(2)(1) = 29.4; P<.001), with both ZNS5 and ZNS10 giving significant effects against placebo. Headache relief rates for patients with episodic cluster headache were 30% for placebo, 47% for ZNS5, and 80% for ZNS10, while corresponding rates for patients with chronic cluster headache were 14%, 28%, and 36%, respectively. Zolmitriptan was also well tolerated. CONCLUSION: Five-milligram and 10-mg doses of zolmitriptan intranasal spray are effective within 30 minutes and well tolerated in the treatment of acute cluster headache. Trial Registration controlled-trials.com Identifier ISCRTN27362692.

Acute Disease↗

A review of diagnostic and functional imaging in headache.

The neuroimaging of headache patients has revolutionised our understanding of the pathophysiology of primary headaches and provided unique insights into these syndromes. Modern imaging studies point, together with the clinical picture, towards a central triggering cause. The early functional imaging work using positron emission tomography shed light on the genesis of some syndromes, and has recently been refined, implying that the observed activation in migraine (brainstem) and in several trigeminal-autonomic headaches (hypothalamic grey) is involved in the pain process in either a permissive or triggering manner rather than simply as a response to first-division nociception per se. Using the advanced method of voxel-based morphometry, it has been suggested that there is a correlation between the brain area activated specifically in acute cluster headache--the posterior hypothalamic grey matter--and an increase in grey matter in the same region. No structural changes have been found for migraine and medication overuse headache, whereas patients with chronic tension-type headache demonstrated a significant grey matter decrease in regions known to be involved in pain processing. Modern neuroimaging thus clearly suggests that most primary headache syndromes are predominantly driven from the brain, activating the trigeminovascular reflex and needing therapeutics that act on both sides: centrally and peripherally.

Brain↗

Temporal and spatial dynamics of brain structure changes during extensive learning.

The current view regarding human long-term memory as an active process of encoding and retrieval includes a highly specific learning-induced functional plasticity in a network of multiple memory systems. Voxel-based morphometry was used to detect possible structural brain changes associated with learning. Magnetic resonance images were obtained at three different time points while medical students learned for their medical examination. During the learning period, the gray matter increased significantly in the posterior and lateral parietal cortex bilaterally. These structural changes did not change significantly toward the third scan during the semester break 3 months after the exam. The posterior hippocampus showed a different pattern over time: the initial increase in gray matter during the learning period was even more pronounced toward the third time point. These results indicate that the acquisition of a great amount of highly abstract information may be related to a particular pattern of structural gray matter changes in particular brain areas.

Adult↗

Hypothalamic deep brain stimulation in positron emission tomography.

Recently, functional imaging data have underscored the crucial role the hypothalamus plays in cluster headache, one of the most severe forms of primary headache. This prompted the application of hypothalamic deep brain stimulation. Yet, it is not apparent how stimulation of an area that is thought to act as a pace-maker for acute headache attacks is able to prevent these attacks from occurring. We addressed this issue by examining 10 operated chronic cluster headache patients, using H2(15O)-positron emission tomography and alternately switching the hypothalamic stimulator on and off. The stimulation induced activation in the ipsilateral hypothalamic gray (the site of the stimulator tip), the ipsilateral thalamus, somatosensory cortex and praecuneus, the anterior cingulate cortex, and the ipsilateral trigeminal nucleus and ganglion. We additionally observed deactivation in the middle temporal gyrus, posterior cingulate cortex, and contralateral anterior insula. Both activation and deactivation are situated in cerebral structures belonging to neuronal circuits usually activated in pain transmission and notably in acute cluster headache attacks. Our data argue against an unspecific antinociceptive effect or pure inhibition of hypothalamic activity. Instead, the data suggest a hitherto unrecognized functional modulation of the pain processing network as the mode of action of hypothalamic deep brain stimulation in cluster headache.

Adult↗

Role of functional imaging in neurological disorders.

Neuroimaging in recent years has greatly contributed to our understanding of a wide range of aspects related to central neurological diseases. These include the classification and localization of disease, such as in headache; the understanding of pathology, such as in Parkinson's disease (PD); the mechanisms of reorganization, such as in stroke and multiple sclerosis (MS); and the subclinical progress of disease, such as in amyotrophic lateral sclerosis (ALS). Apart from presurgical mapping, however, the clinical applications so far are limited. Nevertheless, functional imaging does enable the formulation of neurobiological hypotheses that can be tested clinically, and thus is well suited for testing classic clinical hypotheses about how the brain works. Understanding the mechanisms and sites of pathology, such as has been achieved in cluster headaches, facilitates the development of new therapeutic strategies.

Animals↗

Update on the diagnosis and management of trigemino-autonomic headaches.

Severe shortlasting headaches are rare but very disabling conditions with a major impact on the patients' quality of life. Following the IHS criteria, these headaches broadly divide themselves into those associated with autonomic symptoms, so called trigeminal autonomic cephalgias (TACs), and those with few autonomic symptoms. The trigeminal-autonomic cephalgias include cluster headache, paroxysmal hemicranias, and a syndrome called SUNCT (short lasting unilateral neuralgic cephalgias with conjunctival injection and tearing). In all of these syndromes, hemispheric head pain and cranial autonomic symptoms are prominent. The paroxysmal hemicranias have, unlike cluster headaches, a very robust response to indomethacin, leading to a notion of indomethacin-sensitive headaches. Although TACs are, in comparison with migraine, quite rare, it is nevertheless very important to consider the clinical factor that they are easy to diagnose and the treatment is very effective in most patients.

Cluster Headache↗

Magnetic resonance-based morphometry: a window into structural plasticity of the brain.

PURPOSE OF REVIEW: In contrast to traditional anatomical and pathological methods, magnetic resonance morphometry of the brain allows the in-vivo study of temporal changes in brain morphology and the correlation of brain morphology with brain function. Magnetic resonance morphometry has thereby recently emerged as one of the most promising fields in clinical neuroscience. This review covers the last 3 years, which have witnessed remarkable progress in this alluring new field. RECENT FINDINGS: Next to the detection of structural differences in grey and white matter in a number of brain diseases, a very important recent finding of magnetic resonance-based morphometry is the discovery of the brain's ability to alter its shape within weeks, reflecting structural adaptation to physical and mental activity. Consequently, magnetic resonance morphometry promises to be a powerful method to study disease states of the brain and to track the effects of novel therapies. SUMMARY: Despite these fascinating prospects, the results of morphometric studies are still dependent on the properties of the individual magnetic resonance scanner, which renders pooling of data almost impossible. It is also not known what the structural plasticity is based on at the histological or cellular level. Once these obstacles are overcome, magnetic resonance-based morphometry will become a powerful method for multicenter and therapeutic trials of several brain diseases.

Brain↗

Trigeminal-autonomic headaches in daily clinical practice.

Following the revised International Headache Society criteria, a group of short-lasting headaches associated with autonomic symptoms, the so called trigeminal autonomic cephalgias, were newly recognized. The trigeminal autonomic cephalgias include cluster headache, paroxysmal hemicranias and a syndrome involving short-lasting unilateral neuralform cephalgias with conjunctival injection and tearing (SUNCT) syndrome. In all of these syndromes, the half-sided head pain and cranial autonomic symptoms are prominent. All of the trigeminal autonomic cephalgias differ in duration, frequency and rhythmicity of the attacks, the intensity of pain and autonomic symptoms, as well as treatment options. This review gives a brief clinical description of the headache disorders and recent pathophysiological findings, as well as an overview of the treatment of cluster headache, paroxysmal hemicranias and SUNCT syndrome.

Analgesics↗

Treatment satisfaction with zolmitriptan nasal spray for migraine in a real life setting: results from phase two of the REALIZE study.

In phase one of the REALIZE study, zolmitriptan nasal spray demonstrated a significant headache response from 10 min post-dose and total symptom relief from 30 min post-dose. The objective of phase two was to investigate patients' dosing patterns, satisfaction and preference following open-label treatment with the nasal spray. Up to 3 attacks were treated. The ITT population consisted of 851 patients. The median time from onset of symptoms to treatment was 1 h 15 min (primary endpoint). Most patients reported being satisfied or very satisfied with zolmitriptan nasal spray (75.7%). Furthermore, the majority of patients would be willing to use zolmitriptan nasal spray in the future (59.8%) and preferred zolmitriptan nasal spray over previous therapies (57.8%). Zolmitriptan nasal spray was well tolerated. Most patients were satisfied with zolmitriptan nasal spray, were willing to continue using it and preferred it to previous therapies.

Adolescent↗

Evaluation of the efficacy of intravenous acetaminophen in the treatment of acute migraine attacks: a double-blind, placebo-controlled parallel group multicenter study.

The efficacy of intravenous acetaminophen (1000mg) in the treatment of acute migraine attacks as an alternative to parenteral application of lysine acetylsalicylate or triptans was investigated, using a multi-center, randomized, double-blind, placebo controlled study design. Migraine diagnosis was made according to the International Headache Society Classification. Sixty patients were included in three headache outpatient centers (Neurology Departments of the Universities of Regensburg, Münster and München). In the acute migraine attack patients were treated intravenously with either 1000mg paracetamol (acetaminophen) or placebo. The primary end point was pain-free after 2h. Secondary efficacy criteria were pain-free after 24h or pain relief after 2hours and after 24hours. With regard to the efficacy criteria, 37% of patients reported pain relief or painfree after two hours, 12 patients after treatment with acetaminophen and 10 patients after treatment with placebo. Out of these, 3 patients in the acetaminophen and 4 patients in the placebo group were painfree. After 24hours 86% of the patients reported pain relief: 24 treated with acetaminophen and 27 treated with placebo. The results indicate, that 1000mg intravenous acetaminophen is not superior to placebo in treating severe acute migraine attacks.

Acetaminophen↗

The role of imaging in the pathophysiology and diagnosis of headache.

PURPOSE OF REVIEW: Functional neuroimaging in headache patients has revolutionized our understanding of these syndromes and provided unique insights into some of the most common maladies in humans, suggesting that at least migraine and cluster headache are driven primarily from the brain. This review highlights new studies and recent advances in studying headache using neuroimaging. RECENT FINDINGS: Concerning the diagnostics of headache, an EFNS Task Force evaluated recently the usefulness of imaging procedures in non-acute headache patients on the basis of evidence from the literature and defined guidelines on when to use magnetic resonance imaging or computed tomography. Regarding the pathophysiology of primary headache syndromes, repeated and independent findings reinforce the crucial role for the brainstem in acute and probably also in chronic migraine, and the hypothalamic grey in several trigemino-autonomic headaches. If further studies confirm these findings, a better understanding will be gained of where and how acute and preventive therapy can be targeted. SUMMARY: Given the rapid advances in functional neuroimaging, in particular newer techniques such as voxel-based morphometry and magnetic resonance spectrometry, functional imaging continues to play a significant role and opens new avenues in targeting the neural substrates in individual primary headache syndromes.

Brain Stem↗

Zolmitriptan 5 mg nasal spray: efficacy and onset of action in the acute treatment of migraine--results from phase 1 of the REALIZE Study.

OBJECTIVES: The objective of phase 1 (reported here) of this two-phase study was to assess the efficacy of zolmitriptan 5 mg nasal spray, in terms of ability to provide relief from all migraine symptoms, in a controlled setting, designed to replicate clinical practice. BACKGROUND: Zolmitriptan nasal spray has been shown to be fast acting and highly effective in the treatment of migraine, as assessed using standard endpoints, such as headache response and pain-free rates. METHODS: In the double-blind first phase of the study, patients with migraine were randomized to receive zolmitriptan 5 mg nasal spray or placebo to treat a single migraine attack. Attacks were treated according to patients' normal patterns of use, in order to closely reflect clinical practice; that is, no specific regimen was dictated in terms of time to treatment or at what level of pain intensity the headache should be treated. Patients could take a second dose of study medication or an agreed escape medication if adequate pain relief had not been achieved 2 hours after the first dose. The primary efficacy endpoint was total symptom relief (freedom from pain, nausea, photophobia, and phonophobia) 1 hour after the first dose. Secondary efficacy endpoints included headache response, pain-free status and sustained pain-free status, and ability to perform normal activities. RESULTS: The intention-to-treat population comprised 461 zolmitriptan nasal spray recipients and 451 placebo recipients. The total symptom relief rate 1 hour post-dose was significantly higher in the zolmitriptan 5 mg nasal spray group than in the placebo group (14.5% vs. 5.1%; P < .0001); the difference between the groups was significant from 30 minutes post-dose. Treatment with zolmitriptan nasal spray, compared with placebo, also produced a higher headache response rate from 10 minutes post-dose (15.1% vs. 9.1%; P = .0079) and a higher pain-free rate from 30 minutes post-dose (7.7% vs. 3.2%; P = .0039). Zolmitriptan nasal spray was also significantly superior to placebo in terms of sustained pain-free status and patients' ability to perform normal activities. Zolmitriptan nasal spray was well tolerated. CONCLUSIONS: These findings confirm the efficacy demonstrated by zolmitriptan nasal spray in previous clinical trials.

Acute Disease↗

Detection of cardiac right-to-left shunts by contrast-enhanced harmonic carotid duplex sonography.

OBJECTIVE: Paradoxical embolization by cardiac right-to-left shunts (RLS) is increasingly recognized as an important factor for embolic stroke. Contrast-enhanced transcranial Doppler sonography (ce-TCDS) is an established diagnostic tool for RLS detection but is frequently limited because of an inadequate temporal acoustic bone window. The purpose of this study was to determine whether extracranial sonography (ECS) using harmonic frequencies improves detection of RLS. METHODS: Extracranial color duplex sonography using harmonic frequencies enables visualization of even single ultrasound contrast agent microbubbles because of oscillation. Patients with stroke and positive RLS findings on transesophageal echocardiography underwent a simultaneous extracranial and transcranial sonographic examination of the proximal common carotid artery (CCA) and middle cerebral artery (MCA) on the same side. A Valsalva strain was performed for 10 seconds after intravenous bolus injection of a galactose-based nontranspulmonary contrast agent. The B-mode frame sequences of the transverse plane of the CCA obtained by harmonic ECS and the ce-TCDS recordings of high-intensity transient signals from the MCA were analyzed offline. RESULTS: In all patients with RLS, the shunts could be identified by harmonic ECS. A close correlation could be seen between the count of visualized microbubbles in the CCA and the number of high-intensity transient signals detected on ce-TCDS in the ipsilateral MCA. CONCLUSIONS: The results of this study indicate that contrast-enhanced ultrasound harmonic imaging of the CCA using a Valsalva strain might be an optional screening tool for detection of cardiac RLS in patients with insufficient acoustic bone windows.

Carotid Artery, Internal↗

Bilateral thalamic gray matter changes in patients with restless legs syndrome.

Restless legs syndrome (RLS) is a common neurological disorder of a primary unpleasant sensation with an urge to move the legs occurring at rest. The etiology of idiopathic RLS is unknown and structural cerebral abnormalities have so far not been detected. We studied 51 right-handed patients with an idiopathic restless legs syndrome in two independent samples (Regensburg RLS-group: n = 28, Munich RLS-group: n = 23) and compared them to 51 sex- and age-matched healthy volunteers. High-resolution T1-weighted magnetic resonance imaging (MRI) of each subject was obtained and analyzed using voxel-based morphometry (VBM) to detect regionally specific differences in gray matter between patients and controls. Conjunction analysis was used to combine results from both centers. In patients with idiopathic RLS, both study centers observed independently a bilateral gray matter increase in the pulvinar. In the conjunction analysis including all patients and controls from both study centers, a significant gray matter increase in the pulvinar bilaterally (right: x = 16, y = -21, z = 12, Z = 4.57; left: x = -16, y = -24, z = 12, Z = 4.10) was present. This is the first demonstration of structural changes in the brain of patients with idiopathic RLS. These changes in thalamic structures are either involved in the pathogenesis of RLS or may reflect a consequence of chronic increase in afferent input of behaviorally relevant information.

Adult↗