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SmartPDT®:通过卫星观测实现智能手机实时剂量测定,用于日光光动力疗法。

SmartPDT®: Smartphone enabled real-time dosimetry via satellite observation for daylight photodynamic therapy.

机构信息

School of Medicine, University of Dundee, DD1 9SY, UK.

siHealth Ltd, Building R104, RAL, Harwell Campus, Didcot, OX11 0QX, UK.

出版信息

Photodiagnosis Photodyn Ther. 2020 Sep;31:101914. doi: 10.1016/j.pdpdt.2020.101914. Epub 2020 Jul 6.

Abstract

BACKGROUND

Actinic keratosis (AK) affects one quarter of over 60  year olds in Europe with the risk of transforming into invasive squamous cell carcinoma. Daylight photodynamic therapy (dPDT) is an effective and patient preferred treatment that uses sunlight to clear AK. Currently, there is no standardised method for measuring the light received during treatment.

METHODS

SmartPDT® is a smartphone-based application and web-portal, developed by siHealth Ltd, enabling remote delivery of dPDT. It uses satellite imagery and computational algorithms to provide real-time determination of exposure to PpIX-effective solar radiation ("light dose"). The application also provides forecast of expected radiant exposures for 24- and 48-hs prior to the treatment period. Validation of the real-time and forecasted radiant exposure algorithms was performed against direct ground-based measurement under all weather conditions in Chilton, UK.

RESULTS

Agreement between direct ground measurements and satellite-determined radiant exposure for 2-h treatment was excellent at -0.1 % ± 5.1 % (mean ± standard deviation). There was also excellent agreement between weather forecasted radiant exposure and ground measurement, 1.8 % ± 17.7 % at 24-hs and 1.6 % ± 25.2 % at 48-hs. Relative Root Mean Square of the Error (RMSE) demonstrated that agreement improved as time to treatment reduced (RMSE = 22.5 % (48 -hs), 11.2 % (24-hs), 5.2 % (real-time)).

CONCLUSION

Agreement between satellite-determined, weather-forecasted and ground-measured radiant exposure was better than any existing published literature for dPDT. The SmartPDT® application and web-portal has excellent potential to assist with remote delivery of dPDT, an important factor in reducing risk in an elderly patient population during the Covid-19 pandemic.

摘要

背景

光化性角化病(AK)影响四分之一的 60 岁以上欧洲人,有转化为侵袭性鳞状细胞癌的风险。日光光动力疗法(dPDT)是一种有效的、受患者青睐的治疗方法,它利用阳光清除 AK。目前,还没有标准化的方法来测量治疗过程中接收到的光。

方法

SmartPDT®是由 siHealth Ltd 开发的基于智能手机的应用程序和网络门户,可远程提供 dPDT。它使用卫星图像和计算算法实时确定对 PpIX 有效太阳辐射(“光剂量”)的暴露。该应用程序还为治疗期前 24 小时和 48 小时提供预期辐射暴露的预测。在英国奇尔顿的所有天气条件下,对实时和预测的辐射暴露算法进行了直接地面测量的验证。

结果

2 小时治疗的直接地面测量值与卫星确定的辐射暴露值之间的一致性非常好,为-0.1%±5.1%(平均值±标准偏差)。在 24 小时和 48 小时的情况下,天气预测的辐射暴露与地面测量值之间也有很好的一致性,分别为 1.8%±17.7%和 1.6%±25.2%。相对均方根误差(RMSE)表明,随着治疗时间的减少,一致性有所提高(RMSE=22.5%(48 小时),11.2%(24 小时),5.2%(实时))。

结论

卫星确定、天气预测和地面测量的辐射暴露之间的一致性优于任何已发表的 dPDT 文献。SmartPDT®应用程序和网络门户具有很好的潜力,可以协助远程提供 dPDT,这是在新冠疫情期间降低老年患者群体风险的一个重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d563/7336930/a3bf8efd3331/gr1_lrg.jpg

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