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A review of disease progression models of Parkinson's disease and applications in clinical trials
Author(s) -
Venuto Charles S.,
Potter Nicholas B.,
Ray Dorsey E.,
Kieburtz Karl
Publication year - 2016
Publication title -
movement disorders
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.352
H-Index - 198
eISSN - 1531-8257
pISSN - 0885-3185
DOI - 10.1002/mds.26644
Subject(s) - disease , clinical trial , parkinson's disease , drug trial , rating scale , medicine , psychology , physical medicine and rehabilitation , pathology , developmental psychology
ABSTRACT Quantitative disease progression models for neurodegenerative disorders are gaining recognition as important tools for drug development and evaluation. In Parkinson's disease (PD), several models have described longitudinal changes in the Unified Parkinson's Disease Rating Scale (UPDRS), one of the most utilized outcome measures for PD trials assessing disease progression. We conducted a literature review to examine the methods and applications of quantitative disease progression modeling for PD using a combination of key words including “Parkinson disease,” “progression,” and “model.” For this review, we focused on models of PD progression quantifying changes in the total UPDRS scores against time. Four different models reporting equations and parameters have been published using linear and nonlinear functions. The reasons for constructing disease progression models of PD thus far have been to quantify disease trajectories of PD patients in active and inactive treatment arms of clinical trials, to quantify and discern symptomatic and disease‐modifying treatment effects, and to demonstrate how model‐based methods may be used to design clinical trials. The historical lack of efficiency of PD clinical trials begs for model‐based simulations in planning for studies that result in more informative conclusions, particularly around disease modification. © 2016 International Parkinson and Movement Disorder Society

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