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D Rallan

Publications and source records attributed to D Rallan.

4 recordsLinked to original sources

High-resolution ultrasound reflex transmission imaging and digital photography: potential tools for the quantitative assessment of pigmented lesions.

BACKGROUND/AIMS: High-resolution ultrasound (HRU) is a relatively cheap imaging method that shows small quantitative differences between benign naevi and melanoma. Previous studies using B-mode display suggest that these arise from their differing attenuating properties. Attenuation characteristics, however, are better evaluated using reflex transmission imaging (RTI). White light clinical (WLC) photography is an even cheaper imaging method that is routinely used for monitoring but less frequently in everyday diagnosis. As features from each method may have an independent origin, two such modalities may be of greater diagnostic value than either method alone. However, although quantitative analysis of digital photographs is being developed to aid tumour diagnosis, in vivo RTI for the evaluation of pigmented skin lesions has not previously been described. This paper presents the feasibility of performing RTI in vivo and evaluates the reliability of the objective features used. The potential of the combination of quantitative RTI and white light (WL) digital photography data for the classification of pigmented lesions was assessed. METHODS: Randomly selected patients were recruited via a skin cancer screening clinic. RTI data were acquired from each index lesion with a 20 MHz single-element scanner. WL images were taken using a high-resolution (2.8 Mpixels) digital camera. Quantitative features calculated from both images were used to derive a discriminant rule. This equation was then applied to reclassify each case based on its quantitative criteria. The resultant classification was compared with histological diagnosis. RESULTS: Twenty-four lesions (10 melanoma and 14 naevi) were studied. On RTI, no subjective differences were observed between benign naevi and melanoma. Many lesions were either not visible on RTI or lacked clearly definable borders. Consequently, the WL photographs were used to draw lesion boundaries on RT images for feature calculation. Melanoma were less attenuating than naevi on RTI (P=0.026) and had greater red colour variegation on WL imaging (P=0.016). The combination of quantitative parameters (two from RTI and four from photographs) improved sensitivity for this sample without compromising the specificity of 100% compared with either modality alone. The procedure is highly reproducible (r=0.85 between two operators). CONCLUSIONS: Pigmented skin lesions can be quantitatively defined from RTI data acquired in vivo and a significant difference in attenuation is shown. However, accurate registration of the RT image with a corresponding photograph was crucial for this purpose and only possible when corresponding points could be reliably identified on both images. Combination of features from ultrasound and optical images may synergistically improve diagnostic accuracy and a larger study is warranted to investigate this.

Dermoscopy↗

Brooke-Spiegler syndrome: treatment with laser ablation.

Brooke-Spiegler syndrome is a rare genetic condition associated with adnexal and epidermal tumours. Facial trichoepitheliomas and cylindromas are particularly distressing to sufferers. Conventional treatment can be followed by recurrence. We report a case with disfiguring trichoepithelioma treated with erbium:Yag and CO2 laser, achieving a good cosmetic result without recurrence after 2 years. Brooke-Spiegler syndrome and its treatment are reviewed.

Adult↗

Skin imaging: is it clinically useful?

Non-invasive skin imaging techniques have proliferated over the last decade. Whilst most have a research role, some are routinely used in dermatology clinics. Of these, the skin surface microscope (dermatoscope), a diagnostic aid for pigmented lesions, has had most clinical impact. Such devices, when linked to a videomicroscope for computer analysis, have been dubbed as 'mole scanners'. Mole scanners are increasingly available on a commercial basis even though computer diagnosis of pigmented lesions is currently no better than diagnosis by human experts. Meanwhile, other imaging techniques, such as high-resolution ultrasonography, spectroscopy and optical coherence tomography, may yet find a role in diagnosis and disease monitoring.

Dermoscopy↗

Ultrasound in dermatology--basic principles and applications.

Ultrasound is widely used in general clinical medicine for non-invasive internal imaging. Over the last twenty years, technological advances have enabled the application of high-resolution ultrasonic imaging to the skin. Equipment and hardware is now available to produce cross-section images and three-dimensional reconstructions of selected skin segments. Resolution in vivo is not comparable to light microscopy but continues to improve with superior transducer designs. Skin ultrasonography has been reliably employed as an imaging modality in experimental designs, its quantifiable parameters being a distinct advantage. In particular, increased water content of the upper dermis, as occurs in inflammatory conditions or as a result of photodamage, can be demonstrated clearly as an echo-poor zone. Thus, the future of high-resolution ultrasound (HRU) may reside in its experimental role in monitoring inflammatory or photodamage processes in response to novel treatments. With regard to skin tumours, HRU reliably measures tumour thickness and also holds promise as a differentiator between seborrhoeic keratoses vs. melanoma and benign naevi vs. melanoma. While largely an experimental tool, the potential as an accurate, quantitative and reliable diagnostic and monitoring aid, merits further attention with an emphasis on clinical outcome measures.

Equipment Design↗