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Precision Dosing Management with Intelligent Computing in Digital Health

机译:数字健康智能计算精密计量管理

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Pediatric dosing is not only critical for successful pediatric trials in drug development but also paramount to safety and effective treatment at bedside. Due to the complex pharmacokinetic of children compared to adults, several challenges are posed in managing dosing precisely during drug development and after drug approval to clinicians. In particular, given the real-world practice, understanding the impact of development on the dose-exposure-response relationship is essential in optimizing the dosing to children of different ages. In this paper we propose a novel intelligent computing framework to examine how the growth and maturation create size- and age- dependent variability in pharmacokinetics and pharmacodynamics, and summarize the use of modeling-based approaches for dose finding in pediatric drug development, allowing clinicians to anticipate probable treatment effects and to have a higher likelihood of achieving optimal dose regimens early, as well as reducing the drug development cycling time and cost.
机译:儿科给药不仅对药物开发中的成功进行儿科试验至关重要,而且对床边的安全有效治疗至关重要。由于儿童的复杂药代动力学与成年人相比,在药物开发期间和临床医生药物批准后,在治疗给药时,在治疗给药时提出了几种挑战。特别是,鉴于真实世界的实践,了解发展对剂量暴露的影响 - 响应关系对于优化不同年龄儿童的剂量至关重要。在本文中,我们提出了一种新颖的智能计算框架,以研究药代动力学和药效动物动力学的增长和成熟如何创造尺寸和年龄依赖性变异,并总结了使用基于模拟的剂量在儿科药物发育中的方法,允许临床医生预期可能的治疗效果,并且早期实现最佳剂量方案的可能性更高,以及降低药物开发循环时间和成本。

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