Literature DB >> 20573454

Ultrasound assessed thickness of burn scars in association with laser Doppler imaging determined depth of burns in paediatric patients.

Xue-Qing Wang1, Julie Mill, Olena Kravchuk, Roy M Kimble.   

Abstract

This study describes the ultrasound assessment of burn scars in paediatric patients and the association of these scar thickness with laser Doppler imaging (LDI) determined burn depth. A total of 60 ultrasound scar assessments were conducted on 33 scars from 21 paediatric burn patients at 3, 6 and 9 months after-burn. The mean of peak scar thickness was 0.39±0.032 cm, with the thickest at 6 months (0.40±0.036 cm). There were 17 scald burn scars (0.34±0.045 cm), 4 contact burn scars (0.61±0.092 cm), and 10 flame burn scars (0.42±0.058 cm). Each group of scars followed normal distributions. Twenty-three scars had original burns successfully scanned by LDI and various depths of burns were presented by different colours according to blood perfusion units (PU), with dark blue <125, light blue 125-250, and green 250-440 PU. The thickness of these scars was significantly different between the predominant colours of burns, with the thinnest scars for green coloured burns and the thickest for dark blue coloured burns. Within light blue burns, grafted burns healed with significantly thinner scars than non-grafted burns. This study indicates that LDI can be used for predicting the risk of hypertrophic scarring and for guiding burn care. To our knowledge, this is the first study to correlate the thickness of burns scars by ultrasound scan with burn depth determined by LDI.
Copyright © 2010 Elsevier Ltd and ISBI. All rights reserved.

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Year:  2010        PMID: 20573454     DOI: 10.1016/j.burns.2010.05.018

Source DB:  PubMed          Journal:  Burns        ISSN: 0305-4179            Impact factor:   2.744


  14 in total

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Review 2.  Imaging Techniques for Clinical Burn Assessment with a Focus on Multispectral Imaging.

Authors:  Jeffrey E Thatcher; John J Squiers; Stephen C Kanick; Darlene R King; Yang Lu; Yulin Wang; Rachit Mohan; Eric W Sellke; J Michael DiMaio
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Review 4.  Technologies to monitor the health of loaded skin tissues.

Authors:  Dan L Bader; Peter R Worsley
Journal:  Biomed Eng Online       Date:  2018-04-12       Impact factor: 2.819

5.  Ultrasonographic findings of re-epithelialized skin after partial-thickness burns.

Authors:  Jong Dae Kim; Suk Joon Oh; Sun Gyu Kim; Song Vogue Ahn; Yu Jin Jang; Ban Seok Yang; Ji Yun Jeong; Kwang Jo Kim
Journal:  Burns Trauma       Date:  2018-08-06

6.  Comparative effectiveness of Biobrane®, RECELL® Autologous skin Cell suspension and Silver dressings in partial thickness paediatric burns: BRACS randomised trial protocol.

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Journal:  Burns Trauma       Date:  2019-10-31

7.  Comparison of three different dressings for partial thickness burns in children: study protocol for a randomised controlled trial.

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8.  A new CO2 laser technique for the treatment of pediatric hypertrophic burn scars: An observational study.

Authors:  Tomasz Żądkowski; Paweł Nachulewicz; Maciej Mazgaj; Magdalena Woźniak; Czesław Cielecki; Andrzej Paweł Wieczorek; Iwona Beń-Skowronek
Journal:  Medicine (Baltimore)       Date:  2016-10       Impact factor: 1.889

Review 9.  A systematic review of objective burn scar measurements.

Authors:  Kwang Chear Lee; Janine Dretzke; Liam Grover; Ann Logan; Naiem Moiemen
Journal:  Burns Trauma       Date:  2016-04-27

10.  Photochemical Tissue Passivation Reduces Vein Graft Intimal Hyperplasia in a Swine Model of Arteriovenous Bypass Grafting.

Authors:  Robert N Goldstone; Michael C McCormack; Saiqa I Khan; Harry M Salinas; Amanda Meppelink; Mark A Randolph; Michael T Watkins; Robert W Redmond; William G Austen
Journal:  J Am Heart Assoc       Date:  2016-07-27       Impact factor: 5.501

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