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1.
No Shinkei Geka ; 49(3): 683-688, 2021 May.
Artigo em Japonês | MEDLINE | ID: mdl-34092575

RESUMO

Cerebral tuberculoma is a rare and serious form of tuberculosis. Despite advancements in imaging and laboratory diagnostics, it is challenging to diagnose cerebral tuberculoma due to its insidious nature and nonspecific findings. A 56-year-old woman was referred to our hospital for headaches. The patient had previously undergone treatment for pulmonary tuberculosis, which had been completely cured 2 months prior to presentation. Brain MRI revealed an enhanced mass lesion with surrounding edema in the right frontal lobe. Although a mild increase in the serum carcinoembryonic antigen(CEA)level and a moderate accumulation of FDG on FDG-PET indicated inflammatory changes or a malignant brain tumor, other imaging and laboratory findings were nonspecific. The mass lesion was indistinguishable from a brain tumor. Hence, the patient underwent surgical removal, and the pathological diagnosis was tuberculoma. In patients with a history of tuberculosis, cerebral tuberculoma should be considered in the differential diagnosis of intracranial mass lesions, even if the original lesion is completely cured. A mild increase in the serum CEA level and a moderate accumulation of FDG on FDG-PET were considered indicative of intracranial inflammation and consistent with cerebral tuberculoma.


Assuntos
Neoplasias Encefálicas , Tuberculoma , Diagnóstico Diferencial , Feminino , Humanos , Imageamento por Ressonância Magnética , Pessoa de Meia-Idade , Tomografia por Emissão de Pósitrons , Tuberculoma/diagnóstico por imagem , Tuberculoma/cirurgia
2.
Neurol Med Chir (Tokyo) ; 61(11): 647-651, 2021 Nov 15.
Artigo em Inglês | MEDLINE | ID: mdl-34470989

RESUMO

The significance of atypical histological features (AHF) as risk factors for recurrence in benign meningioma is not well understood. This study examined risk factors of World Health Organization (WHO) Grade I meningioma (GIM) recurrence, focusing on AHF. We investigated 150 consecutive newly diagnosed GIM patients who had more than one year of follow-up after resection in our hospital between January 2007 and March 2018. The following factors were reviewed retrospectively: age, sex, tumor location, extent of resection, MIB-1 index, mitotic figures, number and distribution of AHF, and recurrence. The patients were grouped according to the presence or absence of recurrence and comparatively examined. Recurrence was observed in 10 cases (6.7%). Univariate analysis showed that patients with recurrence had a significantly higher MIB-1 index (2.0 vs. 4.3; p = 0.006) and a significantly higher proportion of male patients (21.4% vs. 70.0%; p = 0.002) and patients with sheet-like growth (6.42% vs. 30.0%; p = 0.04). In multivariate analysis, skull base location (odds ratio [OR] 31.424; 95% confidence interval [CI] 1.74-569), gross total resection (OR 0.130; 95% CI 0.0189-0.897), and MIB-1 index (OR 1.939; 95% CI 1.19-3.15) were significantly associated with recurrence. Our study revealed that skull base location, subtotal resection, and high MIB-1 index were independent risk factors for recurrence. Only the presence of sheet-like growth had a significantly higher incidence in patients with recurrence in univariate analysis of AHF. Multivariate analysis found no significant association. Sheet-like growth may be involved in malignancy and recurrence of benign meningioma.


Assuntos
Neoplasias Meníngeas , Meningioma , Criança , Feminino , Humanos , Masculino , Neoplasias Meníngeas/epidemiologia , Neoplasias Meníngeas/cirurgia , Meningioma/epidemiologia , Meningioma/cirurgia , Recidiva Local de Neoplasia/epidemiologia , Estudos Retrospectivos , Fatores de Risco , Organização Mundial da Saúde
3.
J Neuroendovasc Ther ; 15(8): 489-497, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-37502765

RESUMO

Objective: To examine the effectiveness of a newly developed emergency room (ER) protocol to treat patients with stroke and control the spread of SARS-CoV-2 by evaluating the door-to-picture time. Methods: We retrospectively enrolled 126 patients who were transported to our ER by ambulance with suspected stroke between April 15 and October 31, 2020 (study group). A risk judgment system named the COVID level was introduced to classify the risk of infection as follows: level 0, no infection; I, infection unlikely; II, possible; III, probable; and IV, definite. Patients with COVID levels 0, I, or II and a Glasgow Coma Scale (GCS) score >10 were placed in a normal ER (nER) without atmospheric pressure control; the medical staff wore standard personal protective equipment (PPE) in such cases. Patients with COVID level II, III, or IV, and a GCS score of ≤10 were assigned to the negative pressure ER (NPER); the medical staff wore enhanced PPE for these cases. The validity of the protocol was assessed. The door-to-picture time of the study group was compared with that of 114 control patients who were transported with suspected stroke during the same period in 2019 (control group). The difference in the time for CT and MRI between the two groups was also compared. In the study group, the time spent in the nER and NPER was evaluated. Results: In all, 118 patients (93.7%) were classified as level I, 6 (4.8%) as level II, and 2 (1.6%) as level III. Only five patients (4.0%) were treated with NPER. Polymerase chain reaction tests were performed on 118 out of 126 patients (93.7%) and were negative. No significant differences were observed in age, sex, neurological severity, modalities of diagnostic imaging, and diagnosis compared with the control group. The median door-to-picture time was 18 (11-27.8) min in the study group and 15 (10-25) min in the control group (p = 0.08). No delay was found on CT (15 [10-21] vs. 14 [9-21] min, p = 0.24). In contrast, there was an 8-min delay for MRI (30 [21.8-50] vs. 22 [14-30] min, p = 0.01). The median door-to-picture time was 29 min longer in patients treated with NPER than in those treated with nER, although the difference was not significant due to the small number of patients (47 [27-57] vs. 18 [11-26] min, p = 0.07). Conclusion: Our protocol could optimize the use of medical resources with only a 3-min delay in the door-to-picture time in an area without explosive outbreak. Unfortunately, the effectiveness of the protocol in preventing infection could not be verified because of the low incidence of COVID-19. When developing and modifying an institutional protocol, recognizing the outbreak status surrounding each institution is important.

4.
J Phys Chem A ; 110(51): 13712-6, 2006 Dec 28.
Artigo em Inglês | MEDLINE | ID: mdl-17181325

RESUMO

Vibrational spectra of microsolvated benzonitrile radical anions (C6H5CN- -S; S = H2O and CH3OH) were measured by probing the electron detachment efficiency in the 3 microm region, representing resonance bands of autodetachment via OH stretching vibrations of the solvent molecules. The hydrogen-bonded OH band for both the cluster anions exhibited a large shift to the lower energy side with approximately 300 cm-1 compared to those for the corresponding neutral clusters. The solvent molecules are bound collinearly to the edge of the CN group of the benzonitrile anion in the cluster structures optimized with the density functional theory, in which the simulated vibrational energies are in good agreement with the observed band positions. Natural population analyses were performed for a qualitative implication in changes of solvent orientation upon electron attachment. Asymmetric band shapes depending on the vibrational modes are discussed with respect to dynamics of the autodetachment process from a theoretical aspect incorporated with density functional calculations.

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