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Jeremy H Rees

Publications and source records attributed to Jeremy H Rees.

4 recordsLinked to original sources

Quantitative analysis of whole-tumor Gd enhancement histograms predicts malignant transformation in low-grade gliomas.

PURPOSE: To quantify subtle gadolinium (Gd) enhancement (signal increase) in whole-tumor histograms and optimize their ability to predict subsequent malignant transformation in low-grade gliomas (LGGs). MATERIALS AND METHODS: We analyzed histograms from 21 adult subjects with LGGs (eight nontransformers and 13 transformers) who had been imaged every six months for periods of two to five years. Before transformation these tumors were reported as radiologically non-enhancing. Imaging included a T(1)-weighted volume sequence before and after a double dose of Gd-DTPA contrast agent. Image data sets were spatially registered and subtracted to obtain maps of percent enhancement (%E). Tumor outlines were defined on fluid-attenuated inversion recovery (FLAIR) images, and the volumes were calculated. Histogram tails were analyzed to obtain the volume (mL) of subtly enhancing tissue (%E > 10%). RESULTS: Baseline enhancing volumes were higher for Ts than for NTs (P < 0.005). Kaplan-Meier survival curves for a threshold of 4 mL showed clear differences at five years (P < 0.04). Pretransformation examinations predicted transformation (corrected threshold = 3.0 mL, P = 0.011). CONCLUSION: Clear histogram differences at presentation suggest that the process of transformation starts very early. It is now possible to identify individuals at high risk for transformation at baseline by quantifying the volume of subtly enhancing tumor tissue, and such findings could have an impact on patient management.

Adult↗

Apparent diffusion coefficient histograms may predict low-grade glioma subtype.

The subtypes of glioma are known to have different prognosis and response to treatment. The purpose of this work was to investigate whether apparent diffusion coefficient (ADC) histograms of untreated low-grade astrocytomas and oligodendrogliomas exhibit different characteristics due to their biological differences, and whether a diagnosis of tumour subtype can be made at presentation using the histogram alone, which, if possible, would have an impact on clinical practise. Fifteen patients with astrocytoma (AC) [11 male (mean age +/- standard deviation) 40 +/- 11 years], nine with oligodendroglioma (OD) (four male, 45 +/- 13 years) and three with oligoastrocytoma (OA) (two male, 60 +/- 11 years) were recruited and diffusion-weighted images (b = 0 and 1000 s mm(-2)) were acquired every 6 months to date or until malignant transformation. Whole tumour ADC histograms were calculated, a multiple discriminant analysis was performed and quantitative morphological parameters extracted, the AC and OD subtypes were then compared using Student's unpaired t-test. Classification of the histograms was also performed. ODs had significantly lower group ADC values than ACs and up to 83% of the subjects could be correctly classified into the OD and AC groups by reference to the histogram. The group differences were most significant for the multiple discriminant analysis (p = 1 x 10(-5)) and at the 10th centile point [AC = 1170 +/- 170, OD = (1030 +/- 80) x 10(-6) mm(2) s(-1)] (p = 0.01). ODs have a lower ADC than ACs with differences throughout the histogram. Both tumour types show similar intra-tumour heterogeneity, as seen from the equal group peak heights, but ACs shows more intra-group heterogeneity. ADC histogram analysis may aid non-invasive sub-classification of low-grade glioma histological subtypes.

Adult↗

Severity of Guillain-Barré syndrome is associated with Fc gamma Receptor III polymorphisms.

Macrophages and ganglioside-specific IgG are involved in the pathogenesis of Guillain-Barre syndrome (GBS). Leukocyte IgG receptors (Fc gammaR) confer potent cellular effector functions to the specificity of IgG. The efficacy of IgG-mediated cellular inflammatory responses is determined by functional polymorphisms of three Fc gammaR subclasses (Fc gammaRIIa: H131/R131; Fc gammaRIIIa: V158/F158; Fc gammaRIIIb: NA1/NA2). Fc gammaR genotype distributions were determined in a Dutch, and British cohort of GBS patients and controls. In addition, a meta-analysis incorporating all previously published data, encompassing a total of 345 GBS patients and 714 healthy controls, was performed. Results suggest that Fc gammaRIII genotypes may represent mild disease-modifying factors in GBS.

Adult↗

Low-grade gliomas in adults.

PURPOSE OF REVIEW: This paper aims to summarize the current thinking about the management of adult supratentorial low-grade gliomas. These are well differentiated primary brain tumours that typically develop in young adults. Their biological behaviour is poorly understood but the majority of these tumours grow slowly, infiltrate surrounding normal brain, and show an intrinsic tendency to undergo malignant transformation to high-grade gliomas. Surgery and radiotherapy are the main treatment options, but their precise role and timing are controversial. RECENT FINDINGS: Resective surgery is at best regarded as a practice option because there is a paucity of good quality evidence to show that extent of resection correlates with survival. Radiotherapy prolongs progression-free survival but not overall survival and may lead to long-term cognitive deficits, although not as widespread as had previously been thought. A minority of tumours with oligodendroglial differentiation are chemosensitive and this correlates with allelic loss of chromosomes 1p and 19q. New imaging and molecular techniques, in particular gene microarray studies, are providing more information about these tumours, although they have yet to have a significant impact on clinical management. SUMMARY: The best management of low-grade gliomas is still unknown but advances in molecular genetics and imaging are improving our ability to prognosticate and follow the natural history of these tumours.

Disease-Free Survival↗