BargerM. M.WuJ.XiongY.OhD. D.CimpianA.PomerantzE. M. (2022). Parents’ responses to children’s math performance in early elementary school: Links with parents’ math beliefs and children’s math adjustment. Child Development, 93(6), e639–e655. https://doi.org/10.1111/cdev.13834
2.
BerkowitzT.SchaefferM. W.MaloneyE. A.PetersonL.GregorC.LevineS. C.BeilockS. L. (2015). Math at home adds up to achievement in school. Science, 350(6257), 196–198. https://doi.org/10.1126/science.aac7427
3.
BurchinalM.KrowkaS.Newman-GoncharR.JayanthiM.GerstenR.WavellS.LyskawaJ.HaymondK.BiermanK.GonzalezJ. E.McClellandM. M.NelsonK.PentimontiJ.PurpuraD. J.SachsJ.SaramaJ.Schlesinger-DevlinE.WashingtonJ.RosenE. (2022). Preparing young children for school (WWC 2022009). National Center for Education Evaluation and Regional Assistance, Institute of Education Sciences, U.S. Department of Education.
4.
CaspeM.MelziG.MesallesV.PrishkerN.AlvaradoC. (2023). Latine caregivers’ approaches to engaging young children in math. Early Childhood Research Quarterly, 64, 26–35. https://doi.org/10.1016/j.ecresq.2023.01.014
5.
CowanR. J.Swearer NapolitanoS. M.SheridanS. M. (2004). Home-school collaboration. Educational Psychology Papers and Publications, 18, 201–208.
6.
ChuF. W.vanMarleK.HoardM. K.NugentL.ScofieldJ. E.GearyD. C. (2019). Preschool deficits in cardinal knowledge and executive function contribute to longer-term mathematical learning disability. Journal of Experimental Child Psychology, 188, Article 104668. https://doi.org/10.1016/j.jecp.2019.104668
7.
DaubertE. M.RamaniG.RoweM.EasonS.LeechK. (2018). Sum thing to talk about: Caregiver-preschooler math talk in low-income families from the United States. Bordón, 70(3), 115–130. https://doi.org/10.13042/Bordon.2018.62452
8.
DevineA.HillF.CareyE.SzűcsD. (2018). Cognitive and emotional math problems largely dissociate: Prevalence of developmental dyscalculia and math anxiety. Journal of Educational Psychology, 110(3), 431–444. https://doi.org/10.1037/edu0000222
EasonS. H.ScaliseN. R.BerkowitzT.RamaniG. B.LevineS. C. (2022). Widening the lens of family math engagement: A conceptual framework and systematic review. Developmental Review, 66, Article 101046. https://doi.org/10.1016/j.dr.2022.101046
11.
GibbsB. G.ShahP. G.DowneyD. B.JarvisJ. A. (2017). The Asian American advantage in math among young children: The complex role of parenting. Sociological Perspectives, 60(2), 315–337. https://doi.org/10.1177/0731121416641676
12.
GilmoreC.MatchelorS.TrickettJ. (2022). Numberstart project intervention results [Manuscript in preparation]. Centre for Mathematical Cognition, Loughborough University.
13.
HendrixN. M.HojnoskiR. L.MissallK. N. (2019). Shared book reading to promote math talk in parent–child dyads in low-income families. Topics in Early Childhood Special Education, 39(1), 45–55. https://doi.org/10.1177/0271121419831762
14.
HojnoskiR. L.PolignanoJ. C.CaskieG. I. L. (2023). Number sense development during the preschool years: Relations within and between key skill indicators. Early Education and Development, 34(7), 1631–1646. https://doi.org/10.1080/10409289.2022.2120327
15.
KeatingM.HarmonT.ArnoldD. H. (2022). Relations between parental math beliefs and emergent math skills among preschoolers from low-income households. Early Child Development and Care, 192(9), 1359–1367. https://doi.org/10.1080/03004430.2021.1881076
16.
LinderS. M.EmersonA. (2019). Increasing family mathematics play interactions through a take-home math bag intervention. Journal of Research in Childhood Education, 33(3), 323–344. https://doi.org/10.1080/02568543.2019.1608335
17.
MaloneyE. A.RamirezG.GundersonE. A.LevineS. C.BeilockS. L. (2015). Intergenerational effects of parents’ math anxiety on children’s math achievement and anxiety. Psychological Science, 26(9), 1480–1488. https://doi.org/10.1177/0956797615592630
18.
MorganP. L.FarkasG.WuQ. (2009). Five-year growth trajectories of kindergarten children with learning difficulties in math. Journal of Learning Disabilities, 42, 306–321. https://doi.org/10.1177/0022219408331037
National Council of Teachers of Mathematics. (2006). Curriculum focal points for prekindergarten through grade 8 mathematics: A quest for coherence.
22.
National Governors Association Center for Best Practices & Council of Chief State School Officers. (2010). Common core state standards for math.
23.
National Math Advisory Panel. (2008). Foundations for success: The final report of the National Math Advisory Panel. U.S. Department of Education.
24.
National Research Council. (2009). Mathematics learning in early childhood: Paths toward excellence and equity. Committee on Early Childhood Mathematics, Christopher T. Cross, Taniesha A. Woods, and Heidi Schweingruber, Editors. Center for Education, Division of Behavioral and Social Sciences and Education. The National Academies Press.
25.
NelsonG.CarterH.BoedekerP.KnowlesE.EamesJ.BuckmillerC. (2024). The effects of math interventions in informal learning environments: A meta-analysis and quality review. Review of Educational Research, 94(1), 112–152. https://doi.org/10.3102/00346543231156182
26.
NiklasF.CohrssenC.TaylerC. (2016). Improving preschoolers’ numerical abilities by enhancing the home math environment. Early Education and Development, 27(3), 372–383. https://doi.org/10.1080/10409289.2015.1076676
27.
NiklasF.CohrssenC.TaylerC. (2018). Making a difference to children’s reasoning skills before school-entry: The contribution of the home learning environment. Contemporary Educational Psychology, 54, 79–88. https://doi.org/10.1016/j.cedpsych.2018.06.001
28.
RamaniG. B.RoweM. L.EasonS. H.LeechK. A. (2015). Math talk during informal learning activities in Head Start families. Cognitive Development, 35, 15–33. https://doi.org/10.1016/j.cogdev.2014.11.002
29.
RamaniG. B.SieglerR. S. (2008). Promoting broad and stable improvements in low-income children’s numerical knowledge through playing number board games. Child Development, 79(2), 375–394. https://doi.org/10.1111/j.1467-8624.2007.01131.x
30.
Rittle-JohnsonB.HoferK. G.FyfeE. R.FarranD. C. (2017). Early math trajectories: Low-income children’s math knowledge from ages 4 to 11. Child Development, 88(5), 1727–1742. https://doi.org/10.1111/cdev.12662
31.
SonnenscheinS.MetzgerS. R.ThompsonJ. A. (2016). Low-income parents’ socialization of their preschoolers’ early reading and math skills. Research in Human Development, 13(3), 207–224.
32.
SonS-H. C.HurJ. H. (2020). Parental math talk during home cooking and math skills in head start children: The role of task management talk. Journal of Research in Childhood Education, 34(3), 406–426. https://doi.org/10.1080/02568543.2019.1704318
33.
U.S. Department of Health and Human Services, Health Resources and Services Administration. (2008). National survey of children with special health care needs chartbook 2005-2006. http://mchb.hrsa.gov/cshcn05/
34.
Valicenti-McDermottM.LawsonK.HottingerK.SeijoR.SchechtmanM.ShulmanL.ShinnarS. (2015). Parental stress in families of children with autism and other developmental disabilities. Journal of Child Neurology, 30(13), 1728–1735. https://doi.org/10.1177/0883073815579705
35.
WattsT. C.DuncanG. J.SieglerR. S.Davis-KeanP. E. (2014). What’s past is prologue: Relations between early math knowledge and high school achievement. Educational Researcher, 43(7), 352–360. https://doi.org/10.3102/0013189X14553660
36.
ZippertE. L.RamaniG. B. (2017). Parents’ estimations of preschoolers’ number skills relate to at-home number-related activity engagement. Infant and Child Development, 26(2), Article e1968. https://doi.org/10.1002/icd.1968