PubMed Health⌕ Search

PubMed · 4753868

Binasal hemianopia.

Abstract

Three patients with nasal visual field defects are described. In each case it is believed that compression of the lateral fibres of the optic nerve by the anterior cerebral or internal carotid artery was the cause. Binasal hemianopia can thus be produced by a single lesion and is as much a true hemianopia as the common bitemporal one. The value of careful neuroradiological investigation to display the relationships of a tumour to the chiasma, optic nerves, and related vessels and thus explain the field defects is demonstrated.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J E O'Connell, E P Du Boulay. 1973. Binasal hemianopia.. https://doi.org/10.1136/jnnp.36.5.697

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Neural transformation in a pituitary corticotroph adenoma.

A pituitary mass was removed by the transsphenoidal approach from a 63-year-old man with the clinical history and laboratory findings characteristic of Cushing's disease with partial hypopituitarism. Histological, immunohistochemical, ultrastructural and immunoelectron microscopic investigation demonstrated a periodic acid-Schiff-positive, adrenocorticotropic hormone (ACTH)-immunoreactive, pituitary corticotroph adenoma with the formation of neural tissue resembling neuropil within the tumor. The neural elements showed immunopositivity for neurofilament protein and ACTH, but were immunonegative for other adenohypophysial hormones and for corticotropin-releasing hormone. Although the molecular mechanism accounting for neural transformation in this corticotroph adenoma remained obscure, based on the clinical, histological and morphological findings it appears that formation of neural tissue most likely indicate a favorable prognosis.

Adenoma, Chromophobe↗

High frequency of serum DNA alterations in renal cell carcinoma detected by fluorescent microsatellite analysis.

To date there are no reliable serological markers for renal cell carcinoma (RCC). We applied fluorescent microsatellite analysis (MSA) to detect serum DNA alterations in patients with RCC. Fresh tumour, peripheral blood and serum specimens from 60 consecutive patients treated for malignant renal tumours (n= 53 RCC and n= 7 non-RCC) were prospectively collected. After DNA extraction, we performed MSA with a total of 9 markers from the chromosomal regions 3p, 5q, 7p, 7q, 9p, 13q, 17p and 17q to identify tumour specific serum DNA alterations in Group I (n= 53 RCC); 11 additional markers were used in the first 23 RCCs (Group II) in order to increase sensitivity; and 20 healthy controls were investigated with 10 markers. Besides the histomorphological diagnosis the RCCs were genetically stratified according to the "Heidelberg Classification" of renal tumours. Detection of allelic imbalance and loss of heterozygosity (LOH) was carried out on an automated laser sequencer. In Group I we identified serum DNA alterations in 74% (39/53) of cases. When applying 20 markers, the sensitivity was elevated to 87% (20/23) in Group II. Investigating 20 healthy controls with 10 markers, the method rendered 85% specificity. The highest incidence of alterations was detected for chromosomal regions 3p and 5q. The presence of serum DNA alteration was not associated with tumour nuclear grade but exhibited a trend towards advanced stages (p = 0,044). In RCC, the microsatellite analysis has a high sensitivity in the detection of serum DNA alterations when a sufficient number of markers from various chromosomal regions are used. Advanced tumours tend to express serum DNA alterations more frequently.

Adenoma, Chromophobe↗

Sarcomatoid renal cell carcinoma with foci of chromophobe carcinoma.

Both chromophobe carcinoma and sarcomatoid carcinoma of the kidney are rare. The former is characterized by a relatively good prognosis, while the latter is a highly aggressive tumor. Coexistence of the two components in one renal tumor, which has been reported only rarely, is therefore paradoxical. Both sarcomatoid and chromophobe renal carcinoma were diagnosed in a 52-year-old woman following nephrectomy and resection of metastases in the right lobe of the liver. She died of the disease two months after the first operation; only the sarcomatoid component of her tumor was seen in the liver metastasis and the recurrent carcinoma. Differences in phenotype, immunophenotype and DNA-ploidy patterns of the two components are reported. The intensive p53 staining observed only in the sarcomatoid area supports the role of the TP53 gene in the transformation of chromophobe renal carcinoma to sarcomatoid carcinoma.

Adenoma, Chromophobe↗