The Effect of Mobile Health Intervention on Prelacteal Feeding Among Mothers in the First Month After Birth in South Ethiopia: A Cluster-Randomized Controlled Trial
Abstract
1. Introduction
Objectives
2. Methods and Materials
2.1. Study Design
2.2. Rationale for Using Cluster-Randomized Trial (cRCT)
2.3. Study Setting
2.4. Participants
2.5. Sample Size
2.6. Randomization and Allocation Procedures
2.7. Intervention
2.8. Control Group
2.9. Data Collection
2.10. Outcome Measures
2.11. Statistical Analysis
3. Results
Cluster Report
4. Discussion
5. Conclusions
5.1. Implication of the Findings
- Antenatal Care Promotion: The significant reduction in the odds of prelacteal feeding among mothers who attended ANC visits highlights the need for continued efforts to encourage frequent and early ANC attendance. Public health programs should focus on making ANC services more accessible, especially in rural areas, and reinforcing the importance of these visits for promoting optimal infant feeding practices.
- Targeted Interventions for Occupation: The stark differences in feeding practices based on maternal occupation suggest that targeted interventions may be necessary. For example, providing tailored health education and support for specific maternal occupations may help reduce harmful feeding practices. Engaging housewives in educational programs could further reduce prelacteal feeding practices.
- Contexts: mHealth is more effective in regions with limited-service provision and access challenges, while it shows minimal impact where service uptake is high. Before implementation, it is crucial to understand the context, socioeconomics, and sociodemographic characteristics of the target population.
5.2. Strengths and Limitations
5.3. Future Research
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
References
- Thapa, T.R.; Sagtani, R.A.; Mahotra, A.; Mishra, R.K.; Sharma, S.; Paudel, S. Factors affecting postnatal care service utilization in Pyuthan district: A mixed method study. PLoS ONE 2024, 19, e0307772. [Google Scholar] [CrossRef]
- WHO. Maternal Health. 2020, pp. 1–2. Available online: https://www.who.int/health-topics/maternal-health#tab=tab_1 (accessed on 25 May 2026).
- WHO. Child Mortality and Causes of Death. 2021, pp. 1–4. Available online: https://www.who.int/data/gho/data/themes/topics/topic-details/GHO/child-mortality-and-causes-of-death (accessed on 10 November 2025).
- Dewidar, O.; John, J.; Baqar, A.; Madani, M.T.; Saad, A.; Riddle, A.; Ota, E.; Welch, V.; Arabi, M.; Raut, M.K.; et al. Effectiveness of nutrition counseling for pregnant women in low- and middle-income countries to improve maternal and infant behavioral, nutritional, and health outcomes: A systematic review. Campbell Syst. Rev. 2023, 19, e1361. [Google Scholar] [CrossRef]
- Adem, A.; Assefa, N.; Deresa, M.; Yuya, M.; Ayana, G.M.; Negash, B.; Beshir, T.; Merga, B.T. Prelacteal Feeding Practices and Its Associated Factors among Mother of Children Less Than 2 Years of Age in Kersa District, Eastern Ethiopia. Glob. Pediatr. Health 2021, 8, 2333794X211018321. [Google Scholar] [CrossRef]
- Yang, Y.; Krupsky, K.; Keim, S.; McAdams, R.; Roberts, K.; McKenzie, L. Online Health Information Seeking Behaviors and Infant Feeding Practices: A Social Cognitive Theory Perspective. Health Behav. Res. 2021, 4, 10. [Google Scholar] [CrossRef]
- Belachew, A.B.; Kahsay, A.B.; Abebe, Y.G. Individual and community-level factors associated with introduction of prelacteal feeding in Ethiopia. Arch. Public Health 2016, 74, 6. [Google Scholar] [CrossRef]
- Tekaly, G.; Kassa, M.; Belete, T.; Tasew, H.; Mariye, T.; Teshale, T. Pre-lacteal feeding practice and associated factors among mothers having children less than two years of age in Aksum town, Tigray, Ethiopia, 2017: A cross-sectional study. BMC Pediatr. 2018, 18, 310. [Google Scholar] [CrossRef]
- Berde, A.S.; Ozcebe, H. Risk factors for prelacteal feeding in sub-Saharan Africa: A multilevel analysis of population data from twenty-two countries. Public Health Nutr. 2017, 20, 1953–1962. [Google Scholar] [CrossRef] [PubMed]
- Agha, S.; Tappis, H. The timing of antenatal care initiation and the content of care in Sindh, Pakistan. BMC Pregnancy Childbirth 2016, 16, 190. [Google Scholar] [CrossRef] [PubMed]
- Wolde, F.; Mulaw, Z.; Zena, T.; Biadgo, B.; Limenih, M.A. Determinants of late initiation for antenatal care follow up: The case of northern Ethiopian pregnant women. BMC Res. Notes 2018, 11, 837. [Google Scholar] [CrossRef]
- Nielsen, B.B.; Hemed, M.; Boas, I.M.; Said, A.; Said, K.; Makungu, M.H.; Rasch, V. Mobile phones improve antenatal care attendance in Zanzibar: A cluster randomized controlled trial. BMC Pregnancy Childbirth 2014, 14, 29. [Google Scholar] [CrossRef] [PubMed]
- Pérez-Escamilla, R.; Tomori, C.; Hernández-Cordero, S.; Baker, P.; Barros, A.J.D.; Bégin, F.; Chapman, D.J.; Grummer-Strawn, L.M.; McCoy, D.; Menon, P.; et al. Breastfeeding: Crucially important, but increasingly challenged in a market-driven world. Lancet 2023, 401, 472–485. [Google Scholar] [CrossRef]
- UNICEF. Breastfeeding Within Hour of Birth Provides Baby’s First Vaccine. 2016, pp. 1–3. Available online: https://news.un.org/en/story/2016/07/535732 (accessed on 28 May 2024).
- Agho, K.E.; Ogeleka, P.; Ogbo, F.A.; Ezeh, O.K.; Eastwood, J.; Page, A. Trends and predictors of prelacteal feeding practices in Nigeria (2003–2013). Nutrients 2016, 8, 462. [Google Scholar] [CrossRef]
- Engebretsen, I.M.S.; Nankabirwa, V.; Doherty, T.; Diallo, A.H.; Nankunda, J.; Fadnes, L.T.; Ekström, E.-C.; Ramokolo, V.; Meda, N.; Sommerfelt, H.; et al. Early infant feeding practices in three African countries: The PROMISE-EBF trial promoting exclusive breastfeeding by peer counsellors. Int. Breastfeed. J. 2014, 9, 19. [Google Scholar] [CrossRef]
- Radwan, M.M.H.M.M.; Arafa, S.A.; Habib, M.; DuPont, H.L. Prelacteal Infant Feeding Practices in Rural Egypt. J. Trop. Pediatr. 1992, 38, 317–322. [Google Scholar] [CrossRef]
- Temesgen, H.; Negesse, A.; Woyraw, W.; Getaneh, T.; Yigizaw, M. Prelacteal feeding and associated factors in Ethiopia: Systematic review and meta-analysis. Int. Breastfeed. J. 2018, 13, 49. [Google Scholar] [CrossRef]
- Takele, W.W.; Tariku, A.; Wagnew, F.; Ekubagewargies, D.T.; Getinet, W.; Derseh, L.; Anlay, D.Z. Magnitude of prelacteal feeding practice and its association with place of birth in Ethiopia: A systematic review and meta-analysis, 2017. Arch. Public Health 2018, 76, 63. [Google Scholar] [CrossRef] [PubMed]
- Chea, N.; Asefa, A. Prelacteal feeding and associated factors among newborns in rural Sidama, south Ethiopia: A community based cross-sectional survey. Int. Breastfeed. J. 2018, 13, 7. [Google Scholar] [CrossRef] [PubMed]
- Khanal, V.; Adhikari, M.; Sauer, K.; Zhao, Y. Factors associated with the introduction of prelacteal feeds in Nepal: Findings from the Nepal Demographic and Health Survey 2011. Int. Breastfeed. J. 2013, 8, 9. [Google Scholar] [CrossRef]
- Amele, E.A.; Demissie, B.W.; Desta, K.W.; Woldemariam, E.B. Prelacteal feeding practice and its associated factors among mothers of children age less than 24 months old in Southern Ethiopia. Ital. J. Pediatr. 2019, 45, 15. [Google Scholar] [CrossRef] [PubMed]
- Megersa, N.D.; Tariku, E.Z.; Yesera, G.E.; Gutema, B.T. Prevalence of prelacteal feeding and its associated factors among mothers of under-24-month-old children at arba minch zuria district, Ethiopia: A cross-sectional study. SAJCH S. Afr. J. Child Health 2021, 15, 112–117. [Google Scholar] [CrossRef]
- Knop, M.R.; Nagashima-Hayashi, M.; Lin, R.; Saing, C.H.; Ung, M.; Oy, S.; Yam, E.L.Y.; Zahari, M.; Yi, S. Impact of mHealth interventions on maternal, newborn, and child health from conception to 24 months postpartum in low- and middle-income countries: A systematic review. BMC Med. 2024, 22, 196. [Google Scholar] [CrossRef]
- Feroz, A.; Perveen, S.; Aftab, W. Role of mHealth applications for improving antenatal and postnatal care in low and middle income countries: A systematic review. BMC Health Serv. Res. 2017, 17, 704. [Google Scholar] [CrossRef] [PubMed]
- Downs, S.M.; Sackey, J.; Kalaj, J.; Smith, S.; Fanzo, J. An mHealth voice messaging intervention to improve infant and young child feeding practices in Senegal. Matern. Child Nutr. 2019, 15, e12825. [Google Scholar] [CrossRef]
- Cherie, N.; Wordofa, M.A.; Debelew, G.T. The effect of an interactive mobile health intervention to improve community-based essential neonatal care practices among postpartum women in northeast Ethiopia: A cluster randomized controlled trial. Int. Health 2025, 17, 820–835. [Google Scholar] [CrossRef] [PubMed]
- Gilano, G.; Dekker, A.; Fijten, R. Effect of mobile phone messaging on uptake of maternal and child health service in southern Ethiopia: Protocol for cluster randomized controlled trial. Clin. Nutr. Open Sci. 2024, 54, 89–99. [Google Scholar] [CrossRef]
- World Health Organization (WHO). The World Health Report 2006: Working Together for Health; WHO: Geneva, Switzerland, 2006; pp. 1–3. Available online: https://apps.who.int/iris/handle/10665/43432 (accessed on 10 November 2025).
- Kebede, T.T.; Godana, W.; Utaile, M.M.; Sebsibe, Y.B. Effects of antenatal care service utilization on maternal near miss in Gamo Gofa zone, southern Ethiopia: Retrospective cohort study. BMC Pregnancy Childbirth 2021, 21, 209. [Google Scholar] [CrossRef]
- Gebreeyesus, F.A.; Temere, B.C.; Amlak, B.T.; Tarekegn, T.T.; Shiferaw, B.Z.; Emire, M.S.; Geleta, O.T.; Terefe, T.F.; Mewahegn, A.A.; Jimma, M.S.; et al. The effect of mHealth application on improving childhood immunization coverage and timeliness: A case of the Gurage Zone, SNNPR, Ethiopia, a randomized controlled trial. BMC Public Health 2025, 25, 4424. [Google Scholar] [CrossRef]
- Onigbogi, O.; Ojo, O.Y.; Kinnunen, U.M.; Saranto, K. Mobile health interventions on vaccination coverage among children under 5 years of age in Low and Middle-Income countries; a scoping review. Front. Public Health 2025, 13, 1392709. [Google Scholar] [CrossRef]
- Ministry of Health-Ethiopia. Health Care Financing Strategy 2022–2031; 2022. pp. 1–39. Available online: https://p4h.world/app/uploads/2024/04/Health-Care-Financing-Strategy-English-30May2022.x23411.pdf (accessed on 2 November 2025).
- Downs, S.M.; Gueye, D.; Sall, M.; Ndoye, B.; Sarr, N.N.; Sarr, M.; Mboup, S.; Alam, N.A.; Diouf, A.; Merchant, E.V.; et al. The impact and implementation of an mHealth intervention to improve infant and young child feeding in Senegal: IIMAANJE protocol for a cluster randomized control trial. Front. Public Health 2023, 11, 1258963. [Google Scholar] [CrossRef]
- Adam, M.; Tomlinson, M.; Le Roux, I.; Lefevre, A.E.; McMahon, S.A.; Johnston, J.; Kirton, A.; Mbewu, N.; Strydom, S.-L.; Prober, C.; et al. The Philani MOVIE study: A cluster-randomized controlled trial of a mobile video entertainment-education intervention to promote exclusive breastfeeding in South Africa. BMC Health Serv. Res. 2019, 19, 211. [Google Scholar] [CrossRef]
- Lee, S.H.; Nurmatov, U.B.; Nwaru, B.I.; Mukherjee, M.; Grant, L.; Pagliari, C. Effectiveness of mHealth interventions for maternal, newborn and child health in low- and middle-income countries: Systematic review and meta-analysis. J. Glob. Health 2016, 6, 010401. [Google Scholar] [CrossRef] [PubMed]
- Aranda-Jan, C.B.; Mohutsiwa-Dibe, N.; Loukanova, S. Systematic review on what works, what does not work and why of implementation of mobile health (mHealth) projects in Africa. BMC Public Health 2014, 14, 188. [Google Scholar] [CrossRef]
- Victora, C.G.; Bahl, R.; Barros, A.J.D.; França, G.V.A.; Horton, S.; Krasevec, J.; Murch, S.; Sankar, M.J.; Walker, N.; Rollins, N.C.; et al. Breastfeeding in the 21st century: Epidemiology, mechanisms, and lifelong effect. Lancet 2016, 387, 475–490. [Google Scholar] [CrossRef]
- Sinha, B.; Chowdhury, R.; Sankar, M.J.; Martines, J.; Taneja, S.; Mazumder, S.; Bahl, R. Interventions to improve breastfeeding outcomes: A systematic review and meta-analysis. Acta Paediatr. 2015, 104, 114–134. [Google Scholar] [CrossRef]
- Arora, S.; McJunkin, C.; Wehrer, J.; Kuhn, P. Major factors influencing breastfeeding rates: Mother’s perception of father’s attitude and milk supply. Pediatrics 2017, 106, e67. [Google Scholar] [CrossRef] [PubMed]
- Lutter, C.K.; Morrow, A.L. Protection, promotion, and support and global trends in breastfeeding. Adv. Nutr. 2013, 4, 213–219. [Google Scholar] [CrossRef] [PubMed]
- Mildon, A.; Sellen, D. Use of mobile phones for behavior change communication to improve maternal, newborn and child health: A scoping review. J. Glob. Health 2019, 9, 020425. [Google Scholar] [CrossRef] [PubMed]
- Yadav, P.; Kant, R.; Kishore, S.; Barnwal, S.; Khapre, M. The Impact of Mobile Health Interventions on Antenatal and Postnatal Care Utilization in Low- and Middle-Income Countries: A Meta-Analysis. Cureus 2022, 14, 8–15. [Google Scholar] [CrossRef]
- Chen, H.; Chai, Y.; Dong, L.; Niu, W.; Zhang, P. Effectiveness and appropriateness of mhealth interventions for maternal and child health: Systematic review. JMIR mHealth uHealth 2018, 6, e8998. [Google Scholar] [CrossRef]
- Sondaal, S.F.V.; Browne, J.L.; Amoakoh-Coleman, M.; Borgstein, A.; Miltenburg, A.S.; Verwijs, M.; Klipstein-Grobusch, K. Assessing the Effect of mHealth Interventions in Improving Maternal and Neonatal Care in Low- and Middle-Income Countries: A Systematic Review. PLoS ONE 2016, 11, e0154664. [Google Scholar] [CrossRef]
- Belay, A.T.; Fenta, S.M.; Birhan Biresaw, H.; Abebaw Moyehodie, Y.; Melkam Yelam, M.; Mekie, M. The Magnitude of Optimal Antenatal Care Utilization and Its Associated Factors among Pregnant Women in South Gondar Zone, Northwest Ethiopia: A Cross-Sectional Study. Int. J. Reprod. Med. 2022, 2022, 1415247. [Google Scholar] [CrossRef]
- Seidu, A.A.; Ameyaw, E.K.; Sambah, F.; Baatiema, L.; Oduro, J.K.; Budu, E.; Appiah, F.; Ahinkorah, B.O. Type of occupation and early antenatal care visit among women in sub-Saharan Africa. BMC Public Health 2022, 22, 1118. [Google Scholar] [CrossRef]
- Shiferaw, S.; Spigt, M.; Tekie, M.; Abdullah, M.; Fantahun, M.; Dinant, G. The Effects of a Locally Developed mHealth Intervention on Delivery and Postnatal Care Utilization; A Prospective Controlled Evaluation among Health Centres in Ethiopia. PLoS ONE 2016, 11, e0158600. [Google Scholar] [CrossRef]
- Assefa, Y.; Gelaw, Y.A.; Hill, P.S.; Taye, B.W.; Van Damme, W. Community health extension program of Ethiopia, 2003–2018: Successes and challenges toward universal coverage for primary healthcare services. Glob. Health 2019, 15, 24. [Google Scholar] [CrossRef]
- Awoke, S.M.; Getaneh, F.T.; Derebe, M.A. Spatial patterns and determinants of low utilization of delivery care service and postnatal check-up within 2 months following birth in Ethiopia: Bivariate analysis. PLoS ONE 2024, 19, e0297038. [Google Scholar] [CrossRef]



| Variables | Intervention | Controls | χ2 | |
|---|---|---|---|---|
| Number (%) | Number (%) | Df (p-Value) | ||
| GA at recruitment | 16 wks | 3 (0.89) | 11 (3.25) | 5.37 (0.147) |
| 20 wks | 94 (27.81) | 101 (29.88) | ||
| 24 wks | 224 (66.27) | 208 (61.54) | ||
| 28 wks | 17 (5.03) | 18 (5.33) | ||
| Family size | 2–3 | 84 (24.85) | 75 (22.19) | 22.28 (0.000) |
| 4–5 | 129 (38.17) | 104 (30.77) | ||
| 6–7 | 78 (23.08) | 132 (39.05) | ||
| 8+ | 47 (13.90) | 27 (7.99) | ||
| Maternal education | Read/write | 37 (10.95) | 26 (7.69) | 3.76 (0.28) |
| Primary school (1–8) grade | 154 (45.56) | 152 (44.97) | ||
| Secondary school (9–12) grade | 93 (27.51) | 111 (32.84) | ||
| College & above | 54 (15.98) | 49 (14.50) | ||
| Residences | Rural | 229 (67.75) | 229 (67.75) | 0.02 (0.86) |
| Urban | 109 (32.25) | 109 (32.25) | ||
| Maternal occupation | Farmer | 136 (40.24) | 154 (45.56) | 2.07 (0.73) |
| Housewife | 112 (33.14) | 104 (30.77) | ||
| Government employee | 56 (16.57) | 50 (14.79) | ||
| Marchant | 26 (7.69) | 24 (7.10) | ||
| Self-employed | 8 (2.37) | 6 (1.78) | ||
| Number of children | 1 | 51 (16.84) | 49 (15.56) | 19.93 (0.000) |
| 2–3 | 132 (43.56) | 107 (33.97) | ||
| 4–6 | 92 (30.36) | 146 (46.35) | ||
| 7+ | 28 (9.24) | 13 (4.13) | ||
| Religion | Ethiopian Orthodox Church | 90 (26.63) | 150 (44.38) | 24.10 (0.000) |
| Protestant | 242 (71.60) | 186 (55.03) | ||
| Muslims | 6 (1.78) | 2 (0.59) | ||
| Random Effect Model Comparison | Model 0 | Model 1 | Model 2 | Model 3 |
|---|---|---|---|---|
| Group-level Variance | 1.54 | 0.38 | 0.85 | 0.63 |
| Inter-cluster correlation (ICC) | 0.32 | 0.10 | 0.20 | 0.16 |
| Log-likelihood ratio (LLR) | −244.70 | −234.23 | −181.20 | −180.68 |
| Deviance | 489.04 | 468.46 | 362.4 | 361.36 |
| Proportional change in variance (PCV) | Ref | 0.75 | 0.45 | 0.59 |
| Media odds ratio (MOR) | 3.30 | |||
| AIC | 493.41 | 480.46 | 402.40 | 395.38 |
| BIC | 502.44 | 507.55 | 492.70 | 472.15 |
| Variables | Model 0 | Model 1 | Model 2 | Model 3 | |
|---|---|---|---|---|---|
| Maternal education | Read/write | - | - | 1 | 1 |
| Primary school (1–8 grade) | - | - | 0.48 (0.18–1.31) | ||
| Secondary school (9–12 grade) | - | - | 0.29 (0.10–0.84) * | ||
| College & above | - | - | 0.26 (0.08–0.85) * | 0.31 (0.09–0.99) * | |
| Partner occupation | Farmer | - | - | 1 | 1 |
| Government employ | - | - | 7.26 (1.50–34.95) * | ||
| Merchant | - | - | 1.5 (0.59–3.91) | ||
| Self-employ | - | - | 0.79 (0.17–3.5) | ||
| Others | - | 0.40 (0.04–3.80) | |||
| Partner Education | Read/write | - | - | 1 | |
| Primary school(1–8 grade) | - | - | 0.5 (0.11–2.15) | ||
| Secondary school (9–12 grade) | - | - | 0.75 (0.18–3.10) | ||
| College & above | - | - | 0.08 (0.01–0.56) * | 0.11 (0.02–0.71) * | |
| Ethnicity | Gamo/Gofa | - | - | 1 | |
| Kore | - | - | 1.96 (0.79–4.89) | ||
| Wolayta | - | - | 1.31 (0.36–4.80) | ||
| Amhara | - | - | 2.27 (0.57–8.89) | ||
| Food before breastfeeding | No | - | - | 1 | |
| Yes | - | - | 1.64 (0.54–5.02) | ||
| I don’t know | - | - | 0.52 (0.20–1.40) | ||
| Time to 1st PNC | - | - | 1.02 (1.00–1.05) * | 1.00 (1.00–1.01) * | |
| ANC | - | - | 0.27 (0.19–0.38) *** | 0.28 (0.21–0.39) *** | |
| Bottle feeding | No | - | - | 1 | |
| Yes | - | - | 0.44 (0.16–1.15) | ||
| Community and group-level variables | |||||
| Residences | Rural | - | 1 | - | |
| Urban | - | 1.13 (0.50–2.53) | - | ||
| Treatment | Control | - | 1 | - | |
| Intervention | - | 0.09 (0.03–0.24) *** | - | 0.19 (0.06–0.58) ** | |
| community education | Low | - | 1 | - | |
| High | - | 1.96 (0.83–4.61) | - | ||
| Community occupation | No | - | 1 | - | |
| Yes | - | 1.60 (0.65–3.96) | - | ||
| Variables | Categories | IRR (95% CI) |
|---|---|---|
| Treatment group | Controls | 1 |
| Intervention | 1.15 (1.06–1.25) *** | |
| Maternal occupation | Farmer | 1 |
| Housewife | 0.90 (0.83–0.99) * | |
| Government employee | 0.93 (0.83–1.05) | |
| Merchant | 0.87 (0.73–1.02) | |
| Self-employed | 0.99 (0.75–1.03) | |
| BF initiation in 1 h | No | 1 |
| Yes | 1.13 (1.03–1.25) * |
| Variables | Categories | St Err | β-Coefficient (95% CI) |
|---|---|---|---|
| Treatment group | Controls | 1 | 1 |
| Intervention | 0.32 | −2.05 (−2.66–−1.42) *** | |
| Use media | No | 1 | 1 |
| Yes | 0.28 | 0.54 (−0.01–1.10) | |
| Number of children | 1 | 1 | |
| 2–3 | 0.40 | −1.08 (−1.88–−0.29) * | |
| 4–6 | 0.41 | −1.35 (−2.15–−0.54) ** | |
| 7+ | 0.63 | −0.46 (−1.72–0.78) | |
| Provider | Nurse | 0.45 | −1.35 (−2.25–−0.45) ** |
| Midwife | 0.38 | −1.10 (−1.77–−0.27) ** | |
| HO | 0.43 | −1.10 (−1.94–−0.24) * | |
| Doctors | 0.60 | −0.98 (−2.15–−0.19) | |
| HEWs | 1 | 1 |
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Gilano, G.; Dekker, A.; Fijten, R. The Effect of Mobile Health Intervention on Prelacteal Feeding Among Mothers in the First Month After Birth in South Ethiopia: A Cluster-Randomized Controlled Trial. Nutrients 2026, 18, 1795. https://doi.org/10.3390/nu18111795
Gilano G, Dekker A, Fijten R. The Effect of Mobile Health Intervention on Prelacteal Feeding Among Mothers in the First Month After Birth in South Ethiopia: A Cluster-Randomized Controlled Trial. Nutrients. 2026; 18(11):1795. https://doi.org/10.3390/nu18111795
Chicago/Turabian StyleGilano, Girma, Andre Dekker, and Rianne Fijten. 2026. "The Effect of Mobile Health Intervention on Prelacteal Feeding Among Mothers in the First Month After Birth in South Ethiopia: A Cluster-Randomized Controlled Trial" Nutrients 18, no. 11: 1795. https://doi.org/10.3390/nu18111795
APA StyleGilano, G., Dekker, A., & Fijten, R. (2026). The Effect of Mobile Health Intervention on Prelacteal Feeding Among Mothers in the First Month After Birth in South Ethiopia: A Cluster-Randomized Controlled Trial. Nutrients, 18(11), 1795. https://doi.org/10.3390/nu18111795

