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The U.S. government's global hunger and food security initiative, Feed the Future, has prevented 2.2 million children from experiencing malnutrition in sub-Saharan Africa, according to new research led by Stanford Health Policy's PhD candidate Tess Ryckman.

The researchers compared children’s health in 33 low- and middle-income countries in sub-Saharan Africa. In 12 of those countries, Feed the Future provided services such as agricultural assistance and financial services for farmers, as well as direct nutrition support, such as nutrient supplementation. 

The study, published online Dec. 11 in The BMJ, found a 3.9 percentage point decrease in chronic malnutrition among children served by Feed the Future, leading to 2.2 million fewer children whose development has been harmed by malnourishment.

“What we see with stunting rates is striking,” Ryckman said. “I would argue that 2 million fewer children stunted over seven years is major progress and puts a substantial dent in total stunting levels. And that’s 2 million children who will now have the levels of physical and cognitive development to allow them to reach their full potential.”

Stunting, or having a low height for a particular age, is a key indicator of child malnutrition. Children who aren’t properly nourished in their first 1,000 days are more likely to get sick more often, to perform poorly in school, grow up to be economically disadvantaged and suffer from chronic diseases, according to the World Health Organization.

A Controlled Study

Feed the Future is thought to be the world’s largest agricultural and nutrition program, with around $6 billion in funding from USAID (plus more from other federal agencies) between 2010 and 2015. Despite its size, much remains unknown about the effectiveness of the program.

The researchers analyzed survey data on almost 900,000 children younger than 5 in sub-Saharan Africa from 2000 to 2017. They compared children from the Feed the Future countries with those in countries that are not participants in the program, both before and after the program’s implementation in 2011.

The researchers found the results were even more pronounced — a 4.6 percentage point decline in stunting — when they restricted their sample to populations most likely to have been reached by program. These included children who were younger when the program began, rural areas where Feed the Future operated more intensively, and in countries where the program had greater geographic coverage.

“Our findings are certainly encouraging because it has been difficult for other programs and interventions to demonstrate impact on stunting, and this program has received a lot of funding, so it’s good to see that it’s having an impact,” Ryckman said.

Multifaceted Approach to Nutrition

Experts are divided about the best way to help the world’s 149 million malnourished children: Is assistance that directly targets nutrition, such as breastfeeding promotion or nutrient supplementation, more effective? Or is it also beneficial to tackle the problem at its root by supporting agriculture and confronting household poverty?

The authors, including Stanford Health Policy’s Eran Bendavid, MD, associate professor of medicine, and Jay Bhattacharya, MD, PhD, professor of medicine, a senior fellow (by courtesy) at the Freeman Spogli Institute of International Studies and a senior fellow senior fellow at the Stanford Institute for Economic Policy Research, said their analysis supports the value of a multifaceted approach to combating malnutrition among children, namely leveraging agriculture and food security interventions.

“Independent evaluations of large health policy programs such as Feed the Future help build the evidence base needed to tackle persistent patterns of undernutrition,” said Bendavid, an epidemiologist. “The widespread prevalence of stunting and chronic undernutrition is among the most common and yet most stubborn cause of underdevelopment in the world, and learning what works in this space is sorely needed.”

The researchers, including Stanford medical students Margot Robinson and Courtney Pederson, speculated that possible drivers of the program’s effectiveness include three features of Feed the Future’s design: its country-tailored approach; its focus on underlying drivers of nutrition, such as empowering female farmers; and its large scale and adequate funding.

The authors hope their independent evaluation of the program might lead to more funding and support for it. At the very least, they said, it should demonstrate to people working on Feed the Future and the broader global nutrition program community that programs focused mostly on agriculture and food security — indirect contributors to malnutrition — can lead to success.

Value Unknown

Feed the Future has been scaled back in recent years — it once served 19 countries and now reaches only 12. The program’s budget also remains somewhat murky.

“While there isn’t much data on the program’s funding under the Trump administration, the program appears to have been scaled back, at least in terms of the countries where it operates,” Ryckman said. “It’s possible that some of these gains could be lost, absent longer-term intervention from Feed the Future.”

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The researchers also did not look at whether the program provided high value for the money spent.

“While we find that it has been effective, it hasn’t led to drastic declines in stunting and it is unclear whether it is good value for money,” she said.

Ryckman also noted that USAID’s own evaluation of its program is tenuous because it looked only at before-and-after stunting levels in Feed the Future countries without comparing the results to a control group or adjusting for other sources of bias, which is problematic because stunting is slowly declining in most countries.

“These types of evaluations are misleading,” Ryckman said. “The U.S. government really needs to prioritize having their programs independently evaluated using more robust methods. That was part of our motivation for doing this study.”

Support for the study was provided by the National Institutes of Health (grant P20-AG17253), the National Science Foundation and the Doris Duke Charitable Foundation.

 

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Fighting to End Hunger at Home & Abroad:  Ambassador Ertharin Cousin shares her journey & lessons learned

A Conversation in Global Health with Ertharin Cousin

FSI Payne Distinguished Lecturer | Former Executive Director of the World Food Programme | TIME's 100 Most Influential People

RSVP for conversation & lunch: www.tinyurl.com/CIGHErtharinCousin (please arrive at 11:45 am for lunch)

Professor Ertharin Cousin has been fighting to end global hunger for decades. As executive director of the World Food Programme from 2012 until 2017, she led the world’s largest humanitarian organization with 14,000 staff serving 80 million vulnerable people across 75 countries. As the US ambassador to the UN Agencies for Food and Agriculture, she served as the US representative for all food, agriculture, and nutrition related issues.

Prior to her global work, Cousin lead the domestic fight to end hunger. As chief operating officer at America’s Second Harvest (now Feeding America), she oversaw operations for a confederation of 200 food banks across America that served more than 50,000,000 meals per year.

Stanford School of Medicine Senior Communications Strategist Paul Costello will interview Professor Cousin about her experiences, unique pathway, and the way forward for ending the global hunger crisis.

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Li Ka Shing Room 320 

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Massive changes in the global food sector over the next few decades – driven by climate change and other environmental stresses, growing population and income, advances in technology, and shifts in policies and trade patterns – will have profound implications for the oceans. Roz Naylor, Senior Fellow and Founding Director of Stanford’s Center on Food Security and the Environment,  will discuss the interplay between terrestrial and marine food systems, highlighting the rising role of aquaculture in helping to meet the nutritional demands of 9-10 billion people by 2050. As a platform for her talk, she will introduce a new research initiative at Stanford on “Oceans and the Future of Food”, co-led by the Center for Oceans Solutions (COS) and the Center on Food Security and the Environment (FSE).

Free Admission is by reservation only. Please call 831-655-6200 between 8:30AM – 5:00PM, Mon-Fri, or RSVP at the Friends of Hopkins web page.

Contact:
Amanda Whitmire
831-655-6200
thalassa@stanford.edu

Boat Works Lecture Hall, Hopkins Marine Station

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Twelve-year-old Lena is growing up poor and malnourished on Chicago’s West Side. She buys Blue Juice and Hot Chips from the corner store on her way to school. She and her classmates can afford the flavoured sugar water and salty starch, but this cheap “food” that fills up her stomach provides no nutritional value. 

Lena is one of over 20 million Americans living in food deserts, places without access to a full-service grocery store within two miles. Yet while Lena buys her Hot Chips, an affluent family nearby uses an online retail platform to order their weekly delivery of fresh, nutritious food – at prices that Lena and her family can’t afford. Despite a surge of technology innovations in food retail, Lena and her family represent a growing number of underserved customers around the world.

Read full story.

 

 

 

 

 

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Stefania joined FSE as a research data analyst in March 2018 where she works with David Lobell on designing, implementing, and applying new satellite-based monitoring techniques to study several aspects of food security. 

Her current focuses include estimates of crop yields, crop classification, and detection of management practices in Africa and India using a variety of satellite sensors including Landsat (NASA/USGS), Sentinel 1 and 2 (ESA), combined with crop modeling and machine learning techniques.

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Scientists have already warned that climate change likely will impact the food we grow. From rising global temperatures to more frequent "extreme" weather events like droughts and floods, climate change is expected to negatively affect our ability to produce food for a growing human population.

But new research is showing that climate change is expected to accelerate rates of crop loss due to the activity of another group of hungry creatures — insects. A paper published Aug. 31 in the journal Science reports that insect activity in today's temperate, crop-growing regions will rise along with temperatures. Researchers project that this activity, in turn, will boost worldwide losses of rice, corn and wheat by 10-25 percent for each degree Celsius that global mean surface temperatures rise. Just a 2-degree Celsius rise in surface temperatures will push the total losses of these three crops each year to approximately 213 million tons.

"Global warming impacts on pest infestations will aggravate the problems of food insecurity and environmental damages from agriculture worldwide," said co-author Rosamond Naylor, a professor in the Department of Earth System Science at Stanford University and founding director of the Center on Food Security and the Environment. "Increased pesticide applications, the use of GMOs, and agronomic practices such as crop rotations will help control losses from insects. But it still appears that under virtually all climate change scenarios, pest populations will be the winners, particularly in highly productive temperate regions, causing real food prices to rise and food-insecure families to suffer."

In 2016, the United Nations estimated that at least 815 million people worldwide don't get enough to eat. Corn, rice and wheat are staple crops for about 4 billion people, and account for about two-thirds of the food energy intake, according to the UN Food and Agriculture Organization. 

To investigate how insect herbivory on crops might affect our future, the team looked at decades of laboratory experiments of insect metabolic and reproductive rates, as well as ecological studies of insects in the wild. Unlike mammals, insects are ectothermic, which means that their body temperature tracks the temperature of their environment. Thus, the air temperature affects oxygen consumption, caloric requirements and other metabolic rates.

The past experiments that the team studied show conclusively that increases in temperature will accelerate insect metabolism, which boosts their appetites, at a predictable rate. In addition, increasing temperatures boost reproductive rates up to a point, and then those rates level off at temperature levels akin to what exist today in the tropics.

"We expect to see increasing crop losses due to insect activity for two basic reasons," said co-lead and corresponding author Curtis Deutsch, a University of Washington associate professor of oceanography. "First, warmer temperatures increase insect metabolic rates exponentially. Second, with the exception of the tropics, warmer temperatures will increase the reproductive rates of insects. You have more insects, and they're eating more."

The researchers found that the effects of temperature on insect metabolism and demographics were fairly consistent across insect species, including pest species such as aphids and corn bores. They folded these metabolic and reproductive effects into a model of insect population dynamics, and looked at how that model changed based on different climate change scenarios. Those scenarios incorporated information based on where corn, rice and wheat — the three largest staple crops in the world — are currently grown.

For a 2-degree Celsius rise in global mean surface temperatures, their model predicts that median losses in yield due to insect activity would be 31 percent for corn, 19 percent for rice and 46 percent for wheat. Under those conditions, total annual crop losses would reach 62, 92 and 59 million tons, respectively.

The researchers observed different loss rates due to the crops' different growing regions, Deutsch said. For example, much of the world's rice is grown in the tropics. Temperatures there are already at optimal conditions to maximize insect reproductive and metabolic rates. So, additional increases in temperature in the tropics would not boost insect activity to the same extent that they would in temperate regions – such as the United States' "corn belt."

The team notes that farmers and governments could try to lessen the impact of increased insect metabolism, such as shifting where crops are grown or trying to breed insect-resistant crops. But these alterations will take time and come with their own costs.

"I hope our results demonstrate the importance of collecting more data on how pests will impact crop losses in a warming world — because collectively, our choice now is not whether or not we will allow warming to occur, but how much warming we're willing to tolerate," said Deutsch.

Co-lead author is Joshua Tewksbury, director of Future Earth at the University of Colorado, Boulder. Additional co-authors are Michelle Tigchelaar, a UW research scientist in the Department of Atmospheric Sciences; David Battisti, a UW professor of atmospheric sciences; Scott Merrill, a research assistant professor of agriculture and life sciences at the University of Vermont; and Raymond Huey, a UW professor emeritus of biology. The research was funded by the National Science Foundation and the Gordon and Betty Moore Foundation.

By James Urton, University of Washington

 

 

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The rising level of carbon dioxide in the atmosphere means that crops are becoming less nutritious, and that change could lead to higher rates of malnutrition that predispose people to various diseases.

That conclusion comes from an analysis published Tuesday in the journal PLOS Medicine, which also examined how the risk could be alleviated. In the end, cutting emissions, and not public health initiatives, may be the best response, according to the paper's authors, which includes Stanford Health Policy's Eran Bendavid and Sanjay Basu.

Research has already shown that crops like wheat and rice produce lower levels of essential nutrients when exposed to higher levels of carbon dioxide, thanks to experiments that artificially increased CO2 concentrations in agricultural fields. While plants grew bigger, they also had lower concentrations of minerals like iron and zinc.

 

Read the story at NPR

 

 

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Roz Naylor, Director of the Center on Food Security and the Environment talks how technology will help meet the growing demand for food and water in the developing world and why tech companies should invest in Africa.

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Roz Naylor and Russ Altman talk the future of food security.
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