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1.
AJNR Am J Neuroradiol ; 43(2): 230-237, 2022 02.
Article in English | MEDLINE | ID: mdl-34992125

ABSTRACT

BACKGROUND AND PURPOSE: Normal pressure hydrocephalus is characterized by systolic peaks of raised intracranial pressure, possibly due to a reduced compliance of the spinal CSF spaces. This concept of a reduced spinal CSF buffer function may be reflected by a low cervical CSF outflow from the cranium. The aim of this study was to investigate craniospinal CSF flow rates by phase-contrast MR imaging in patients with normal pressure hydrocephalus. MATERIALS AND METHODS: A total of 42 participants were included in this prospective study, consisting of 3 study groups: 1) 10 patients with normal pressure hydrocephalus (mean age, 74 [SD, 6] years, with proved normal pressure hydrocephalus according to current scientific criteria); 2) eighteen age-matched healthy controls (mean age, 71 [SD, 5] years); and 3) fourteen young healthy controls (mean age, 21 [SD, 2] years, for investigation of age-related effects). Axial phase-contrast MR imaging was performed, and the maximal systolic CSF and total arterial blood flow rates were measured at the level of the upper second cervical vertebra and compared among all study groups (2-sample unpaired t test). RESULTS: The maximal systolic CSF flow rate was significantly decreased in patients with normal pressure hydrocephalus compared with age-matched and young healthy controls (53 [SD, 40] mL/m; 329 [SD, 175] mL/m; 472 [SD, 194] mL/m; each P < .01), whereas there were no significant differences with regard to maximal systolic arterial blood flow (1160 [SD, 404] mL/m; 1470 [SD, 381] mL/m; 1400 [SD, 254] mL/m; each P > .05). CONCLUSIONS: The reduced maximal systolic craniospinal CSF flow rate in patients with normal pressure hydrocephalus may be reflective of a reduced compliance of the spinal CSF spaces and an ineffective spinal CSF buffer function. Systolic craniospinal CSF flow rates are an easily obtainable MR imaging-based measure that may support the diagnosis of normal pressure hydrocephalus.


Subject(s)
Hydrocephalus, Normal Pressure , Hydrocephalus , Adult , Aged , Cerebrospinal Fluid/diagnostic imaging , Cerebrospinal Fluid/physiology , Humans , Hydrocephalus, Normal Pressure/diagnostic imaging , Magnetic Resonance Imaging/methods , Pilot Projects , Prospective Studies , Young Adult
2.
Eur J Paediatr Neurol ; 19(3): 372-6, 2015 May.
Article in English | MEDLINE | ID: mdl-25596902

ABSTRACT

BACKGROUND/PURPOSE: Migraine is frequent in young adults and adolescents and often associated with neck muscle tension and pain. Common pathophysiological pathways, such as reciprocal cervico-trigeminal activation, are assumed. Tense areas within the neck muscles can be clinically observed many patients with migraine. The aim of this pilot case study was to visualize these tense areas via magnet resonance imaging (MRI). METHODS: Three young patients with migraine were examined by an experienced investigator. In all three patients tense areas in the trapezius muscles were palpated. These areas were marked by nitroglycerin capsules on the adjacent skin surface. RESULTS: The MRI showed focal signal alterations at the marked locations within the trapezius muscles. CONCLUSION: Visualization of palpable tense areas by MRI may be usefully applied in the future to help elucidate the underlying pathophysiological processes of migraine.


Subject(s)
Migraine Disorders/physiopathology , Superficial Back Muscles/physiopathology , Adolescent , Adult , Female , Humans , Magnetic Resonance Imaging , Male , Migraine Disorders/etiology , Pilot Projects , Spasm/complications , Young Adult
3.
Radiologe ; 52(9): 813-20, 2012 Sep.
Article in German | MEDLINE | ID: mdl-22986626

ABSTRACT

CLINICAL ISSUE: Causes and imaging patterns of hydrocephalus differ depending on the age of the patient. Traditionally, hydrocephalus was classified into non-communicating and communicating hydrocephalus but more recent classifications also take the site of occlusion and the etiology into account. DIAGNOSTICS: For the diagnostic work-up computed tomography (CT), sonography and magnetic resonance imaging (MRI) are available and MRI is the method of choice for children and adolescents as it allows determination of the cause and location of a possible obstruction. In the first 12-18 months sonography allows evaluation of the lateral ventricles and the third ventricle and CT is usually only chosen in children in emergency situations and/or if no other modality is available. PERFORMANCE: We retrospectively evaluated a population of 785 children and adolescents (426 males aged 0-17 years) referred for MRI between April 2009 and March 2012 due to headaches, somnolence, concentration difficulties or developmental delay. Among these 80 (49 male) met the MRI criteria for hydrocephalus, 75 (46 male) had non-communicating hydrocephalus and 5 (3 male) communicating hydrocephalus. Of the patients 24 (15 male) had posthemorrhagic aqueductal stenosis, 16 (8 male) intracranial tumors, 9 (6 male) Chiari II malformations, 5 (4 male) other congenital malformations including malformations of the Dandy Walker spectrum, 9 (3 male) idiopathic aqueductal stenosis, 7 (5 male) arachnoidal cysts and 10 (8 male) other disorders, such as post-infections, macrocephaly cutis marmorata telangiectatica congenita (M-CMTC) syndrome, mesencephalic arteriovenous malformation (AVM), Langerhans cell histiocystosis. PRACTICAL RECOMMENDATIONS: It is important to take the age of the patient and the imaging pattern into account and to exclude tumors when reporting MR images of children with hydrocephalus.


Subject(s)
Brain/pathology , Cerebrospinal Fluid/cytology , Hydrocephalus/pathology , Magnetic Resonance Imaging/statistics & numerical data , Adolescent , Child , Child, Preschool , Germany/epidemiology , Humans , Infant , Infant, Newborn , Male , Prevalence , Reproducibility of Results , Risk Factors , Sensitivity and Specificity
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