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Biomedical subjects

Roberto Gasparotti

Publications and source records attributed to Roberto Gasparotti.

7 recordsLinked to original sources

Internal jugular vein thrombosis associated with acute mastoiditis in a pediatric age.

OBJECTIVE: To discuss the clinical aspects and management of internal jugular vein thrombosis associated with acute otitis media. STUDY DESIGN: Case reports and review of the literature. SETTING: University hospital, tertiary referral center. PATIENT: The authors describe two cases of internal jugular vein thrombosis, without sigmoid sinus thrombosis, secondary to acute otomastoiditis. INTERVENTION: Jugular vein thrombosis was diagnosed in both cases by observation of filling defects of the involved jugular bulb on contrast-enhanced computed tomography and confirmed by conventional magnetic resonance and magnetic resonance venography. RESULTS: Both patients recovered after recanalization of the vessel concomitant to anticoagulation and antibiotic treatment associated with a simple mastoidectomy. CONCLUSION: Internal jugular vein thrombosis may be a complication of acute otitis media, without involvement of the sigmoid sinus and with a starting point in the jugular bulb. Anticoagulation associated with antibiotic therapy can be considered a safe and effective treatment. Surgery should only be performed to eliminate the source of infection from the middle ear and mastoid.

Acute Disease↗

Diffusion-weighted MR of the brain: methodology and clinical application.

Clinical diffusion magnetic resonance (MR) imaging in humans started in the last decade with the demonstration of the capabilities of this technique of depicting the anatomy of the white matter fibre tracts in the brain. Two main approaches in terms of reconstruction and evaluation of the images obtained with application of diffusion sensitising gradients to an echo planar imaging sequence are possible. The first approach consists of reconstruction of images in which the effect of white matter anisotropy is averaged -- known as the isotropic or diffusion weighted images, which are usually evaluated subjectively for possible areas of increased or decreased signal, reflecting restricted and facilitated diffusion, respectively. The second approach implies reconstruction of image maps of the apparent diffusion coefficient (ADC), in which the T2 weighting of the echo planar diffusion sequence is cancelled out, and their objective, i.e. numerical, evaluation with regions of interest or histogram analysis. This second approach enables a quantitative and reproducible assessment of the diffusion changes not only in areas exhibiting signal abnormality in conventional MR images but also in areas of normal signal. A further level of image post-processing requires the acquisition of images after application of sensitising gradients along at least 6 different spatial orientations and consists of computation of the diffusion tensor and reconstruction of maps of the mean diffusivity (D) and of the white matter anisotropic properties, usually in terms of fractional anisotropy (FA). Diffusion-weighted imaging is complementary to conventional MR imaging in the evaluation of the acute ischaemic stroke. The combination of diffusion and perfusion MR imaging has the potential of providing all the information necessary for the diagnosis and management of the individual patient with acute ischaemic stroke. Diffusion-weighted MR, in particular quantitative evaluation based on the diffusion tensor, has a fundamental role in the assessment of brain maturation and of white matter diseases in the fetus, in the neonate and in the child. Diffusion MR imaging enables a better characterisation of the lesions demonstrated by conventional MR imaging, for instance in the hypoxic-ischaemic encephalopathy, in infections and in the inherited metabolic diseases, and is particularly important for the longitudinal evaluation of these conditions. Diffusion-weighted MR imaging has an established role in the differential diagnosis between brain abscess and cystic tumour and between epidermoid tumour and arachnoid cyst. On the other hand, the results obtained with diffusion MR in the characterisation of type and extension of glioma do not yet allow decision making in the individual patient. Diffusion is one of the most relevant MR techniques to have contributed to a better understanding of the pathophysiological mechanisms of multiple sclerosis (MS). In fact, it improves the specificity of MR in characterising the different pathological substrata underlying the rather uniform lesion appearance on the conventional images and enables detection of damage in the normal-appearing white and grey matter. In MS patients the ADC or D values in the normal-appearing white matter are increased as compared to control values, albeit to a lesser degree than in the lesions demonstrated by T2-weighted images. In addition, the D of the normal appearing grey matter is increased in MS patients and this change correlates with the cognitive deficit of these patients. Histogram analysis in MS patients shows that the peak of the brain D is decreased and right-shifted, reflecting an increase of its value, and the two features correlate with the patient's clinical disability. Ageing is associated to a mild but significant increase of the brain ADC or D which is predominantly due to changes in the white matter. Region of interest and histogram studies have demonstrated that D or ADC are increased in either the areas of leukoaraiosis or the normal-appearing white matter in patients with inherited cerebral autosomal dominant arteriopathy with subcortical infarcts and stroke or sporadic ischaemic leukoencephalopathy. Diffusion changes might be a more sensitive marker for progression of the disease than conventional imaging findings. In neurodegenerative diseases of the central nervous system such as Alzheimer's disease, Huntington's disease, hereditary ataxias and motor neuron disease, quantitative diffusion MR demonstrates the cortical and subcortical grey matter damage, which is reflected in a regional increase of D or ADC, but also reveals the concomitant white matter changes that are associated with an increase in D or ADC and decrease in FA. In all these diseases the diffusion changes are correlated to the clinical deficit and are potentially useful for early diagnosis and longitudinal evaluation, especially in the context of pharmacological trials.

Brain Diseases↗

Thalamic infarcts in young adults: relationship between clinical-topographic features and pathogenesis.

BACKGROUND: Most reports on thalamic infarcts have focused on clinicoanatomical correlations while the mechanisms of stroke have rarely been investigated. Moreover, most series have included mainly elderly stroke patients, whereas scarce information is available about the etiology of thalamic infarcts in the young. OBJECTIVE: To investigate the mechanisms of thalamic infarcts according to vascular territory in a series of young adults. METHODS: A sample of 24 consecutive patients with thalamic infarcts were found in an unselected series of 129 patients with cerebral infarction aged 18-45 years. Diagnostic investigation included computed tomography and magnetic resonance imaging scans, ultrasonic scanning of the extracranial and intracranial arteries, conventional angiography and magnetic resonance angiography, transthoracic and transesophageal echocardiography and extensive thrombophilic studies. The affected vascular territory within the thalamus was determined using standard templates. RESULTS: Thalamic infarcts constituted almost one fifth of the ischemic strokes in our series. Ten patients (42%) had infarct in the territory of the thalamogeniculate pedicle (group 1), 10 (42%) in the territory of the paramedian thalamosubthalamic artery (group 2) and 3 (12%) in the territory of the tuberothalamic artery (group 3). In 1 patient (4%), the lesion involved more than one vascular thalamic territory. A significant association between cardioembolism and paramedian infarcts was found when comparing the mechanisms of stroke of group 2 with those of the group including infarcts in other thalamic territories (p = 0.002) and with those of group 1 (p = 0.02). CONCLUSIONS: Our findings provide information about the epidemiology of thalamic infarcts in young adults and point to a differential association between the distribution of infarcts in specific vascular territories and the mechanism of stroke.

Adult↗

Plasma homocysteine concentration, C677T MTHFR genotype, and 844ins68bp CBS genotype in young adults with spontaneous cervical artery dissection and atherothrombotic stroke.

BACKGROUND AND PURPOSE: The role of mild hyperhomocysteinemia as a risk factor for cerebral ischemia may depend on stroke subtype. To test this hypothesis, we undertook a prospective case-control study of a group of patients with spontaneous cervical artery dissection (sCAD), a group of patients with atherothrombotic stroke (non-CAD), and a group of control subjects. METHODS: Fasting total plasma homocysteine (tHcy) concentration, C677T MTHFR genotype, and 844ins68bp CBS genotype were determined in 25 patients with sCAD, 31 patients <45 years of age with non-CAD ischemic stroke, and 36 control subjects. Biochemical data in the patient groups were obtained within the first 72 hours of stroke onset. RESULTS: Median tHcy levels were significantly higher in patients with sCAD (13.2 micromol/L; range, 7 to 32.8 micromol/L) compared with control subjects (8.9 micromol/L; range, 5 to 17.3 micromol/L; 95% CI, 1.05 to 1.52; P=0.006). Cases with tHcy concentration above the cutoff level of 12 micromol/L were significantly more represented in the group of patients with sCAD compared with control subjects (64% versus 13.9%; 95% CI, 2.25 to 44.23; P=0.003); a significant association between the MTHFR TT genotype and sCAD was also observed (36% versus 11.1%; 95% CI, 1.10 to 19.23; P=0.045). No significant difference in tHcy levels and in the prevalence of thermolabile MTHFR was found between patients with non-CAD ischemic stroke and control subjects and between patients with sCAD and non-CAD ischemic stroke. The distribution of the 844ins68bp CBS genotype and the prevalence of subjects carrying both the TT MTHFR and 844ins68bp CBS genotypes were not significantly different among the 3 groups. CONCLUSIONS: Our results are consistent with the hypothesis that increased plasma homocysteine levels and the TT MTHFR genotype may represent risk factors for sCAD. In contrast, their role in atherothrombotic strokes remains a contentious issue.

Adult↗

Inflammatory myofibroblastic tumor of the temporal bone.

Inflammatory myofibroblastic tumors include a diverse group of lesions characterized by inflammatory cell infiltration and variable fibrotic responses. Occurrence in the temporal bone is unusual. We present CT and MR imaging findings of an inflammatory myofibroblastic tumor of the temporal bone in a 26-year-old patient with repeated paroxystic episodes of rotatory vertigo that occurred over a few days. CT and MR imaging revealed a homogeneously enhancing soft-tissue mass of the right mastoid with bone erosion of the tegmen and extensive dural thickening. The mass resembled a malignant tumor, and the patient underwent an extended mastoidectomy through a retroauricular approach. Microscopic examination showed myofibroblastic spindle cells with mixed inflammatory infiltrate, and the pathologic diagnosis was inflammatory myofibroblastic tumor.

Adult↗