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1.
J Clin Virol ; 69: 40-3, 2015 Aug.
Article in English | MEDLINE | ID: mdl-26209376

ABSTRACT

Herpes simplex encephalitis is rarely caused by herpes simplex virus type 2 (HSV-2) after the neonatal period. The pathogenesis of HSV-2 encephalitis is not known and its treatment has not been discussed. We report a case of mild meningoencephalitis secondary to HSV-2 primary infection after sexual risk behaviour in a healthy young man. The diagnosis was established upon clinical, biological and electroencephalographic criteria. Aciclovir treatment led to rapid clinical improvement. This case highlights HSV-2 as a rare cause of meningoencephalitis, and questions the management of this rare manifestation of HSV-2 infection.


Subject(s)
Encephalitis, Herpes Simplex/drug therapy , Encephalitis, Herpes Simplex/virology , Herpes Genitalis/complications , Herpesvirus 2, Human , Meningoencephalitis/drug therapy , Meningoencephalitis/virology , Acyclovir/therapeutic use , Adult , Antibodies, Viral/blood , Antiviral Agents/therapeutic use , Brain/diagnostic imaging , Encephalitis, Herpes Simplex/diagnosis , Herpes Genitalis/virology , Herpes Simplex/diagnosis , Herpesvirus 2, Human/drug effects , Herpesvirus 2, Human/genetics , Herpesvirus 2, Human/immunology , Humans , Immunocompetence , Male , Meningoencephalitis/diagnosis , Meningoencephalitis/etiology , Polymerase Chain Reaction , Radiography
2.
Phys Rev Lett ; 106(24): 247201, 2011 Jun 17.
Article in English | MEDLINE | ID: mdl-21770592

ABSTRACT

In this work we investigate the magnetic and structural properties of bulk Fe and Fe nanoparticles under pressure with x-ray absorption and emission spectroscopies providing answers to two fundamental questions: (a) the chicken-or-egg problem for the magnetic and structural transitions and (b) magnetism in the high pressure hcp phase. The two transitions, inextricably linked in the bulk, are clearly decoupled in the nanoparticles, with the magnetic collapse preceding the structural transition. Ultrafast x-ray emission spectroscopy detects remnant magnetism, probably antiferromagnetic fluctuations, up to pressures of about 40 GPa in the hcp phase. This could be of direct relevance to the superconductivity in ϵ-Fe [K. Shimizu et al., Nature (London) 412, 316 (2001)] through the existence of a quantum critical point and associated magnetic fluctuations.

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