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Network meta-analysis models to account for variability in treatment definitions: Application to dose effects

机译:网络元分析模型以考虑治疗定义的可变性:适用剂量效应

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For a network meta-analysis, an interlinked network of nodes representing competing treatments is needed. It is often challenging to define the nodes as these typically refer to similar but rarely identical interventions. The objectives of this paper are as follows: (i) to present a series of network meta-analysis models that account for variation in the definition of the nodes and (ii) to exemplify the models where variation in the treatment definitions relates to the dose. Starting from the model that assumes each node has a 'fixed' definition, we gradually introduce terms to explain variability by assuming that each node has several subnodes that relate to different doses. The effects of subnodes are considered monotonic, linked with a 'random walk', random but exchangeable, or have a linear pattern around the treatment mean effect. Each model can be combined with different assumptions for the consistency of effects and might impact on the ranking of the treatments. Goodness of fit, heterogeneity and inconsistency were assessed. The models are illustrated in a star network for the effectiveness of fluoride toothpaste and in a full network comparing agents for multiple sclerosis. The fit and parsimony measures indicate that in the fluoride network the impact of the dose subnodes is important whereas in the multiple sclerosis network the model without subnodes is the most appropriate. The proposed approach can be a useful exploratory tool to explain sources of heterogeneity and inconsistency when there is doubt whether similar interventions should be grouped under the same node.
机译:对于网络元分析,需要表示代表竞争处理的节点的交互网络。定义节点通常是挑战,因为这些节点通常是指相似但很少相同的干预措施。本文的目标如下:(i)展示一系列网络元分析模型,该模型考虑了节点的定义和(ii)的变化,以举例说明治疗定义的变化与剂量有变化的模型。从假定每个节点具有“固定”定义的模型开始,我们逐渐引入术语来解释可变性,假设每个节点具有与不同剂量相关的多个子节点。子节点的效果被认为是单调,与“随机步行”,随机但可交换的,或者在治疗周围的线性模式平均效果。每个模型可以与不同的假设相结合,以实现效果的一致性,并且可能会影响治疗的排名。评估健康,异质性和不一致的良好。该模型在星形网络中示出,用于氟化物牙膏的有效性,并在全网络比较药物中进行多发性硬化剂。拟合和分析措施表明,在氟化物网络中,剂量子节点的影响很重要,而在多发性硬化网络中,没有子节点的模型是最合适的。当有疑问,在疑问时应在同一节点下是否应分组类似的干预措施,所提出的方法可以是一个有用的探索工具,以解释异质性和不一致的源。

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