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Mikhuna intervention increases subcortical fetal brain structure growth in pregnant women in EcuadorSpecialized nutrition during pregnancy may support fetal brain growth

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Key Takeaway
Note that the Mikhuna intervention associated with increased subcortical fetal brain structure growth in this trial.

This randomized controlled trial enrolled 215 pregnant women in their first trimester in Ecuador. Participants were assigned to either the Mikhuna intervention or a control group. The Mikhuna intervention consisted of weekly food deliveries including 8 eggs, 500 g fish, and various fruits and vegetables, combined with a behavior change communication strategy. Longitudinal data were collected at 12 wk, 21 wk, 35 wk gestation, and 2 wk postpartum.

Primary outcomes focused on the growth of subcortical fetal brain structures. The Mikhuna group achieved a 74.5% minimum dietary diversity threshold compared to 55.8% in the control group (p = 0.004). Between 21 wk and 35 wk gestation, the Mikhuna group showed a 0.19 cm increase in corpus callosum length (95% CI [0.02, 0.35]) and a 0.15 cm increase in gangliothalamic ovoid height (95% CI [0.03, 0.26]). At 35 wk, the corpus callosum Z score was 0.56 (95% CI [0.03, 1.09]).

Secondary outcomes showed a -0.10 cm difference in femur length (95% CI [-0.19, -0.02]) and a -0.21 difference in femur length Z score (95% CI [-0.42, 0.00]) from 21 wk to 35 wk. No safety or tolerability data were reported. The study suggests the Mikhuna intervention may impact structures involved in motor control and cognition, but results should be interpreted with caution due to the lack of reported adverse events and specific safety data.

When a mother is pregnant, the nutrients she consumes play a vital role in how her baby grows. Researchers in Ecuador studied how a specific nutrition program, called Mikhuna, affected fetal development. This program provided pregnant women with weekly deliveries of eggs, fish, and various fruits and vegetables, along with a strategy to help them change their eating habits.

The study followed 215 women during their first trimester. The results showed that women in the nutrition program reached higher dietary diversity goals than those in the control group. More importantly, the babies in the nutrition group showed growth in subcortical brain structures. These are the parts of the brain that help with movement, thinking, and sending signals.

While the study showed positive growth in brain structures like the corpus callosum, it also noted a slight decrease in femur length. Because this was a small study with specific local conditions, these results are early. It shows how targeted nutrition might help a baby's brain develop, but more research is needed to understand the full impact on long-term health.

What this means for you:
A specific nutrition program for pregnant women was linked to increased growth in fetal brain structures.

Common questions

What did the nutrition program include?

The Mikhuna program provided pregnant women with a weekly delivery of 8 eggs, 500 grams of fish, and a variety of sustainably sourced fruits and vegetables. It also included a communication strategy to help women change their eating habits.

How did the program affect the baby's brain?

The program was linked to an increase in the growth of subcortical fetal brain structures. These structures are important for motor control, cognition, and signal transmission. Specifically, the corpus callosum length increased by 0.19 cm and the gangliothalamic ovoid height increased by 0.15 cm.

Were there any other physical changes in the babies?

The study also measured the length of the baby's femur, which is the bone in the upper part of the leg. The results showed a decrease of 0.10 cm in femur length and a -0.21 difference in the femur length Z score for the group receiving the nutrition program.

Study Details

Study typeRct
Sample sizen = 215
EvidenceLevel 2
PublishedSep 2026
View Original Abstract ↓
Evidence on the biological basis for maternal nutrition effects on fetal and newborn neurodevelopment remains limited. This randomized controlled trial in Ecuador tested a maternal dietary pattern-derived from empirical studies of nutrition in human evolution and adapted locally-on offspring growth and brain development. Pregnant women (n = 215) in their first trimester were randomized to: 1) control (n = 104); or 2) Mikhuna ("nourish" in Kichwa) intervention (n = 111). The intervention, from 12 wk gestation to birth, consisted of a weekly food delivery (8 eggs, 500 g fish, and a variety of sustainably sourced fruits and vegetables) and a behavior change communication strategy encouraging diet diversity and limiting highly processed foods. Longitudinal data collection occurred at 12 wk, 21 wk, 35 wk gestation, and 2 wk postpartum, and included ultrasound imaging of fetal bone and brain parameters, maternal dietary intakes, anthropometry, socioeconomic and demographic variables, and other biomarkers. At close of intervention, a significantly higher percentage of women met the minimum dietary diversity threshold in Mikhuna (74.5%) vs. control groups (55.8%) ( = 0.004). Generalized linear regression models showed significant differences in Mikhuna compared to control for: corpus callosum length 0.19 cm (95% CI [0.02, 0.35]), gangliothalamic ovoid height 0.15 cm (95% CI [0.03 to 0.26]), and femur length -0.10 cm (95% CI [-0.19, -0.02]) from 21 wk to 35 wk; and corpus callosum Z 0.56 (95% CI [0.03, 1.09]) and femur length Z -0.21 (95% CI [-0.42, 0.00]) at 35 wk. The Mikhuna intervention increased the growth of subcortical fetal brain structures, which have established roles in motor control, cognition, and signal transmission.
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