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局部微粒应用中用户差异的动作捕捉量化

Motion Capture Quantification of User Variation in Topical Microparticle Application.

作者信息

Snoswell Aaron J, Yamada Miko, Kirby Giles T S, Singh Surya P N, Prow Tarl W

机构信息

Dertmatology Research Centre, The University of Queensland Diamantina Institute, The University of Queensland, Brisbane, QLD, Australia.

Robotics Design Lab, School of Information Technology and Electrical Engineering, The University of Queensland, Brisbane, QLD, Australia.

出版信息

Front Pharmacol. 2020 Sep 8;11:1343. doi: 10.3389/fphar.2020.01343. eCollection 2020.

Abstract

Motion capture has the potential to shed light on topical drug delivery application. This approach holds promise both as a training tool, and for the development of skin technology, but first, this approach requires validation. Elongated microparticles (EMP) are a physical delivery enhancement technology that relies on a user working in the microparticles using a textured applicator. We used this approach to test the hypothesis that motion capture data can be used to characterize the topical application process. Motion capture was used to record participants while applying a mixture of EMP and sodium fluorescein to ex-vivo porcine skin samples. Treated skin was assessed using reflectance confocal and fluorescence microscopy. Image analysis was used to quantify the microparticle density and the presence of a fluorescent drug surrogate, sodium fluorescein. A strong correlation was present between applicator motion and microparticle and drug delivery profiles. There were quantitative and qualitative differences in the intra- and inter- user application methods that went beyond the level of training. Frequency and velocity of the applicator motion were key factors that correlated with EMP density. Our quantitative analysis of an experimental dermatological device supports the hypothesis that self-application may benefit from some form of digital monitoring or training with feedback. Our conclusion is that the integration of motion capture into experimental dermatological research offers an improved and quantifiable perspective that could be broadly useful with respect to topical applications, and with respect to the instruction provided to patients and clinicians.

摘要

运动捕捉有潜力为局部药物递送应用提供启示。这种方法作为一种训练工具以及用于皮肤技术的开发都具有前景,但首先,这种方法需要验证。细长微粒(EMP)是一种物理递送增强技术,它依赖于使用者使用有纹理的涂抹器在微粒中操作。我们采用这种方法来检验运动捕捉数据可用于表征局部应用过程这一假设。在将EMP和荧光素钠的混合物应用于离体猪皮肤样本的过程中,使用运动捕捉来记录参与者。使用反射共聚焦显微镜和荧光显微镜对处理过的皮肤进行评估。图像分析用于量化微粒密度以及荧光药物替代物荧光素钠的存在情况。涂抹器运动与微粒及药物递送情况之间存在很强的相关性。使用者内部和使用者之间的应用方法在数量和质量上存在差异,且超出了训练水平。涂抹器运动的频率和速度是与EMP密度相关的关键因素。我们对一种实验性皮肤病学装置的定量分析支持了这样的假设,即自我应用可能会受益于某种形式的数字监测或有反馈的训练。我们的结论是,将运动捕捉整合到实验性皮肤病学研究中提供了一个改进的、可量化的视角,这在局部应用以及向患者和临床医生提供的指导方面可能具有广泛的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0987/7508043/eb29e4479983/fphar-11-01343-g001.jpg

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