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Generalizing the information content for stepped wedge designs: A marginal modeling approach.

Publication ,  Journal Article
Li, F; Kasza, J; Turner, EL; Rathouz, PJ; Forbes, AB; Preisser, JS
Published in: Scand Stat Theory Appl
September 2023

Stepped wedge trials are increasingly adopted because practical constraints necessitate staggered roll-out. While a complete design requires clusters to collect data in all periods, resource and patient-centered considerations may call for an incomplete stepped wedge design to minimize data collection burden. To study incomplete designs, we expand the metric of information content to discrete outcomes. We operate under a marginal model with general link and variance functions, and derive information content expressions when data elements (cells, sequences, periods) are omitted. We show that the centrosymmetric patterns of information content can hold for discrete outcomes with the variance-stabilizing link function. We perform numerical studies under the canonical link function, and find that while the patterns of information content for cells are approximately centrosymmetric for all examined underlying secular trends, the patterns of information content for sequences or periods are more sensitive to the secular trend, and may be far from centrosymmetric.

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Published In

Scand Stat Theory Appl

DOI

ISSN

0303-6898

Publication Date

September 2023

Volume

50

Issue

3

Start / End Page

1048 / 1067

Location

England

Related Subject Headings

  • Statistics & Probability
  • 4905 Statistics
  • 0104 Statistics
 

Citation

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Li, F., Kasza, J., Turner, E. L., Rathouz, P. J., Forbes, A. B., & Preisser, J. S. (2023). Generalizing the information content for stepped wedge designs: A marginal modeling approach. Scand Stat Theory Appl, 50(3), 1048–1067. https://doi.org/10.1111/sjos.12615
Li, Fan, Jessica Kasza, Elizabeth L. Turner, Paul J. Rathouz, Andrew B. Forbes, and John S. Preisser. “Generalizing the information content for stepped wedge designs: A marginal modeling approach.Scand Stat Theory Appl 50, no. 3 (September 2023): 1048–67. https://doi.org/10.1111/sjos.12615.
Li F, Kasza J, Turner EL, Rathouz PJ, Forbes AB, Preisser JS. Generalizing the information content for stepped wedge designs: A marginal modeling approach. Scand Stat Theory Appl. 2023 Sep;50(3):1048–67.
Li, Fan, et al. “Generalizing the information content for stepped wedge designs: A marginal modeling approach.Scand Stat Theory Appl, vol. 50, no. 3, Sept. 2023, pp. 1048–67. Pubmed, doi:10.1111/sjos.12615.
Li F, Kasza J, Turner EL, Rathouz PJ, Forbes AB, Preisser JS. Generalizing the information content for stepped wedge designs: A marginal modeling approach. Scand Stat Theory Appl. 2023 Sep;50(3):1048–1067.
Journal cover image

Published In

Scand Stat Theory Appl

DOI

ISSN

0303-6898

Publication Date

September 2023

Volume

50

Issue

3

Start / End Page

1048 / 1067

Location

England

Related Subject Headings

  • Statistics & Probability
  • 4905 Statistics
  • 0104 Statistics