Hydatid disease primarily affects the liver and typically demonstrates characteristic imaging findings. However, there are many potential local complications (eg, intrahepatic complications, exophytic growth, transdiaphragmatic thoracic involvement, perforation into hollow viscera, peritoneal seeding, biliary communication, portal vein involvement, abdominal wall invasion). Furthermore, secondary involvement due to hematogenous dissemination may be seen in almost any anatomic location (eg, lung, kidney, spleen, bone, brain). Ultrasonography (US) is particularly useful for the detection of cystic membranes, septa, and hydatid sand. Computed tomography (CT) best demonstrates cyst wall calcification and cyst infection. CT and magnetic resonance (MR) imaging may demonstrate cyst wall defects as well as the passage of contents through a defect. Chest radiography, US, CT, and MR imaging are all useful in depicting transdiaphragmatic migration of hydatid disease. CT is the modality of choice in peritoneal seeding. US and CT demonstrate rupture in most cases that involve wide communication. Indirect signs of biliary communication include increased echogenicity at US and fluid levels and signal intensity changes at MR imaging. CT allows precise assessment of osseous lesions, whereas MR imaging is superior in demonstrating neural involvement. Familiarity with atypical manifestations of hydatid disease may be helpful in making a prompt, accurate diagnosis.
These findings point to a role of CHI3L1 in patients with progressive forms of MS, particularly in those with PPMS.
Background: Deep brain stimulation (DBS) and the proper target for chronic cluster headache (CCH) are still subjects of controversy. Objectives: We present our long-term results of analysis of the target and its structural connectivity. Methods: Fifteen patients with drug-resistant CCH underwent DBS in coordinates 4 mm lateral to the III ventricular wall and 2 mm behind and 5 mm below the intercommissural point. The clinical parameters recorded were the number of weekly attacks, pain intensity, and duration of the headache. Structural connectivity was studied using 3-T MR diffusion tensor imaging (DTI). Results: All of our patients improved from a mean of 39 attacks/week to 2; pain intensity decreased from 9 to 3 out of 10, and the mean cephalalgia duration decreased from 53 to 8 min. The mean stereotactic coordinates of the effective contact location were 6.1 mm lateral to the midcommissural point and 1.2 mm behind and 4.0 mm below the intercommissural point. DTI analysis showed that this target was connected to tracts and nuclei of the posterior mesencephalic tegmentum, specifically the dorsal longitudinal and mamillotegmental fasciculi. Conclusions: Our data showed DBS to be a safe and useful procedure for the treatment of drug-resistant CCH; the rate of improvement was higher than those found in other series. Although these are promising results, larger series targeting those fasciculi with a longer follow-up are needed.
Background and purpose It has been suggested that silent infarctions (SIs) and hyperintense white matter lesions (WMLs) are related to migraine frequency. We studied their prevalence and anatomical distribution in patients with chronic migraine (CM). Methods A total of 96 women with CM [mean age 43 (range 16–65) years] and 29 women with episodic migraine (EM) [mean age 36 (range 16–58) years] underwent 1.5‐T magnetic resonance imaging following the CAMERA protocol. The number, size and location of SIs and deep WMLs were recorded and a modified Fazekas scale was applied to assess periventricular WMLs. Results White matter lesions were found in 59 (61.5%) women with CM and 17 (58.6%) women with EM (odds ratio, 1.13; 95% confidence intervals, 0.48–2.62; P = 0.784). The majority (63% CM and 71% EM) were small deep WMLs. Exclusive periventricular WMLs were exceptional. Of the 739 WMLs seen in patients with CM, 734 (99.3%) were hemispheric and mostly frontal (81%). Posterior fossa WMLs were seen in only five (5.2%) women with CM (always in the pons) and two (6.9%) women with EM. Age >45 years was the only vascular risk factor associated with a higher WML number (median: 0 < 45 years and 3 > 45 years; P = 0.004). We found seven SIs in six women with CM (6.3%). Conclusions As compared with the expected prevalence at this age, this study confirms that the prevalence of WMLs, in most cases small, deep and frontal, was increased in CM and EM. However, our results do not support an association of WMLs or SIs with a higher frequency of attacks, but with the presence of vascular risk factors and mainly age >45 years.
Objective: To establish clinical guidelines for the clinical use and interpretation of motor evoked potentials (MEP) in diagnosing and monitoring patients with multiple sclerosis (MS). Recommendations for MEP use and interpretation will help us rationalise and optimise resources used in MS patient diagnosis and follow up. Method:We completed an extensive literature review and pooled our own data to produce a consensus statement with recommendations for the clinical use of MEPs in the study of MS.Results: MEPs, in addition to spinal and cranial magnetic resonance imaging (MRI), help us diagnose and assess MS patients whose disease initially presents as spinal cord syndrome and those with non-specific brain MRI findings, or a normal brain MRI and clinical signs of MS. ଝ Please cite this article as: Fernández V, Valls-Sole J, Relova JL, Raguer N, Miralles F, Dinca L, et al. Recomendaciones para la utilización clínica del estudio de potenciales evocados motores en la esclerosis múltiple. Neurología. 2013;28:408-416. Recommendations for the clinical use of motor evoked potentials 409Conclusions: Whenever possible, a multimodal evoked potential study should be performed on patients with suspected MS in order to demonstrate involvement of the motor pathway which supports a diagnosis of dissemination in space. Recomendaciones para la utilización clínica del estudio de potenciales evocados motores en la esclerosis múltiple ResumenObjetivo: Establecer una guía clínica para la utilización clínica del estudio de potenciales evocados motores (PEM) en el diagnóstico y el seguimiento de la esclerosis múltiple (EM). Disponer de unas recomendaciones para la utilización clínica de los PEM contribuye a racionalizar y optimizar los recursos en el proceso diagnóstico y de seguimiento en los pacientes con EM.Método: Hemos llevado a cabo una extensa revisión de la literatura médica y puesto en común nuestros propios datos para consensuar recomendaciones para el uso clínico de los PEM en el estudio de la EM.Resultados: Los PEM contribuyen, junto con la resonancia magnética medular o cerebral, al diagnóstico y evaluación de los pacientes cuyo inicio clínico es un síndrome medular, que presentan hallazgos de neuroimagen poco específicos o que presentan criterios clínicos de EM con neuroimagen cerebral normal.Conclusiones: Es aconsejable realizar un estudio de potenciales evocados multimodales en pacientes con sospecha de EM para documentar la afectación de la vía motora como apoyo al diagnóstico de diseminación en espacio.
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