Author:
Schmaling Karen B.,Gallo Stephen A.
Abstract
Abstract
Background
Differential participation and success in grant applications may contribute to women’s lesser representation in the sciences. This study’s objective was to conduct a systematic review and meta-analysis to address the question of gender differences in grant award acceptance rates and reapplication award acceptance rates (potential bias in peer review outcomes) and other grant outcomes.
Methods
The review was registered on PROSPERO (CRD42021232153) and conducted in accordance with PRISMA 2020 standards. We searched Academic Search Complete, PubMed, and Web of Science for the timeframe 1 January 2005 to 31 December 2020, and forward and backward citations. Studies were included that reported data, by gender, on any of the following: grant applications or reapplications, awards, award amounts, award acceptance rates, or reapplication award acceptance rates. Studies that duplicated data reported in another study were excluded. Gender differences were investigated by meta-analyses and generalized linear mixed models. Doi plots and LFK indices were used to assess reporting bias.
Results
The searches identified 199 records, of which 13 were eligible. An additional 42 sources from forward and backward searches were eligible, for a total of 55 sources with data on one or more outcomes. The data from these studies ranged from 1975 to 2020: 49 sources were published papers and six were funders’ reports (the latter were identified by forwards and backwards searches). Twenty-nine studies reported person-level data, 25 reported application-level data, and one study reported both: person-level data were used in analyses. Award acceptance rates were 1% higher for men, which was not significantly different from women (95% CI 3% more for men to 1% more for women, k = 36, n = 303,795 awards and 1,277,442 applications, I2 = 84%). Reapplication award acceptance rates were significantly higher for men (9%, 95% CI 18% to 1%, k = 7, n = 7319 applications and 3324 awards, I2 = 63%). Women received smaller award amounts (g = -2.28, 95% CI -4.92 to 0.36, k = 13, n = 212,935, I2 = 100%).
Conclusions
The proportions of women that applied for grants, re-applied, accepted awards, and accepted awards after reapplication were less than the proportion of eligible women. However, the award acceptance rate was similar for women and men, implying no gender bias in this peer reviewed grant outcome. Women received smaller awards and fewer awards after re-applying, which may negatively affect continued scientific productivity. Greater transparency is needed to monitor and verify these data globally.
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences,General Environmental Science
Reference91 articles.
1. Rice DB, Raffoul H, Ioannidis JP, Moher D. Academic criteria for promotion and tenure in biomedical sciences faculties: cross sectional analysis of international sample of universities. BMJ. 2020;m2081. https://doi.org/10.1136/bmj.m2081.
2. United Nations Educational, Scientific and Cultural Organization (UNESCO). Women in Science. Fact Sheet 55, June 2019. http://uis.unesco.org/en/topic/women-science#. Accessed 5 June 2022.
3. Foley DJ, Selfa LA, Grigorian KH. Number of women with US doctorates in science, engineering, or health employed in the United States more than doubles since 1997. National Center for Science and Engineering Statistics, February 2019, NSF 19–307. https://www.nsf.gov/statistics/2019/nsf19307/nsf19307.pdf. Accessed 5 June 2022.
4. Committee on Maximizing the Potential of Women in Academic Science and Engineering (US). Beyond bias and barriers: Fulfilling the potential of women in academic science and engineering. Washington, DC: National Academies Press; 2007.
5. Miller DI, Eagly AH, Linn MC. Women’s representation in science predicts national gender-science stereotypes: evidence from 66 nations. J Educ Psychol. 2015;107(3):631–44. https://doi.org/10.1037/edu0000005.