Giant Solitary Juvenile Xanthogranuloma with Spontaneous Regression

1979 ◽  
Vol 41 (2) ◽  
pp. 258-263 ◽  
Author(s):  
Tsunemi NUMATA ◽  
Schuichi INADA
2015 ◽  
Vol 15 (4) ◽  
pp. 372-379 ◽  
Author(s):  
Yohei Miyake ◽  
Susumu Ito ◽  
Mio Tanaka ◽  
Yukichi Tanaka

The authors report the case of a large left occipital mass lesion in an 8-month-old boy who presented with seizure. Neuroimaging demonstrated an approximately 5-cm extraaxial tumor, and the patient underwent partial resection. The tumor was strongly attached to the tentorium and falx. In the postoperative course the residual lesion regressed spontaneously, and after 5 years only a slight residual tumor remained along the tentorium. Histopathological examination of the tumor revealed non-Langerhans cell histiocytosis (non-LCH). However, the tumor was not diagnosed as juvenile xanthogranuloma (JXG) because it lacked Touton giant cells. Hence, the authors described this lesion as a fibroxanthogranuloma. Most intracraniospinal non-LCHs have been reported as JXG; however, several cases of xanthomatous tumors with histopathological features resembling those of JXG have been described as fibrous xanthoma, xanthoma, fibroxanthoma, and xanthogranuloma. Among JXG and the xanthomatous tumors, a review of the literature revealed several cases of dural-based tumors; these dural-based tumors have had favorable courses, including the case described in this report. In addition, the patient in the present case experienced spontaneous regression of the residual tumor. The authors report this unique case and review the literature on isolated intracraniospinal non-LCHs, especially in cases of dural-based lesion.


2012 ◽  
Vol 43 (02) ◽  
Author(s):  
D Wille ◽  
O Bozinov ◽  
I Scheer ◽  
M Grotzer ◽  
E Boltshauser

Phlebologie ◽  
2010 ◽  
Vol 39 (03) ◽  
pp. 167-175
Author(s):  
M. Poetke ◽  
P. Urban ◽  
H.-P. Berlien

SummaryVascular malformations are structural abnormalities, errors of vascular morphogenesis, which can be localized in all parts of the vascular system. All vascular malformations by definition, are present at birth and grow proportionately with the child; their volume can change. In contrast to the haemangiomas, which only proliferate from the endothelial cells the division in stages is of clinical importance. Vascular malformations are divided from the part of vascular system, which is affected.In principle the techniques of laser application in congenital vascular tumours like haemangiomas and in vascular malformations are similar, but the aim is different. In tumours the aim is to induce regression, in vascular malformations the aim is to destroy the pathologic vascular structure because there is no spontaneous regression. This means that the parameters for treatment of vascular malformations must be more aggressive than for vascular tumours.


2000 ◽  
Vol 62 (2) ◽  
pp. 172-174 ◽  
Author(s):  
Keiko KOBAYASHI ◽  
Akimichi MORITA ◽  
Noriyuki SAKAKIBARA ◽  
Takuo TSUJI

2020 ◽  
Vol 26 (4) ◽  
pp. 449-453
Author(s):  
Jacob A. Kahn ◽  
Jeffrey T. Waltz ◽  
Ramin M. Eskandari ◽  
Cynthia T. Welsh ◽  
Michael U. Antonucci

The authors report an unusual presentation of juvenile xanthogranuloma (JXG), a non–Langerhans cell histiocytosis of infancy and early childhood. This entity typically presents as a cutaneous head or neck nodule but can manifest with more systemic involvement including in the central nervous system. However, currently there is limited information regarding specific imaging features differentiating JXG from other neuropathological entities, with diagnosis typically made only after tissue sampling. The authors reviewed the initial images of a young patient with shunt-treated hydrocephalus and enlarging, chronic, extraaxial processes presumed to reflect subdural collections from overshunting, and they examine the operative discovery of a mass lesion that was pathologically proven to be JXG. Their results incorporate the important associated histological and advanced imaging features, including previously unreported metabolic activity on FDG PET. Ultimately, the case underscores the need to consider JXG in differential diagnoses of pediatric intracranial masses and highlights the potential role of PET in the initial diagnosis and response to treatment.


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