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1.
Artigo em Inglês | MEDLINE | ID: mdl-10965263

RESUMO

This is a case of superficial siderosis of the central nervous system (SSCN). The diagnosis of SSCN was based on the result of T2-weighted magnetic resonance imaging and on suggestive clinical manifestations. The pure-tone audiogram showed bilateral progressive sensorineural hearing loss with a poor speech discrimination score and Jerger type IV. The remarkable elevation of the detective threshold of cochlear microphonics on electrocochleography was found and distortion product otoacoustic emission (DPOAE) showed no response: These electrophysiologic examinations, including electrocochleography and DPOAE, revealed that the progressive sensorineural hearing loss in this case was caused by both retrocochlear and cochlear damages.


Assuntos
Doenças do Sistema Nervoso Central/diagnóstico , Perda Auditiva Neurossensorial/diagnóstico , Testes Auditivos/métodos , Emissões Otoacústicas Espontâneas , Siderose/diagnóstico , Doenças do Sistema Nervoso Central/complicações , Doenças do Sistema Nervoso Central/fisiopatologia , Feminino , Perda Auditiva Neurossensorial/etiologia , Perda Auditiva Neurossensorial/fisiopatologia , Humanos , Imageamento por Ressonância Magnética , Pessoa de Meia-Idade , Siderose/complicações , Siderose/fisiopatologia
2.
J Electron Microsc (Tokyo) ; 49(1): 31-9, 2000.
Artigo em Inglês | MEDLINE | ID: mdl-10791418

RESUMO

Today's information-oriented society requires high density and high quality magnetic recording media. The quantitative observation of fine magnetic structures by electron holography is greatly anticipated in the development of such new recording materials. However, the magnetic fields around particles <50 nm have not been observed, because the fields are too weak to observe in the usual way. Here we present a highly precise phase measurement technique: improved phase-shifting electron holography. Using this method, the electric field around a charged polystyrene latex particle (100 nm in diameter) and the magnetic field around iron particles (30 nm in diameter) are observed precisely. A precision of the reconstructed phase image of 2pi/300 rad is achieved in the image of the latex particle.

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