Mysterious Stone Secrets in Saudi Arabia Uncovered

Mysterious stone structures known as ‘Mustatil’ in northwestern Saudi Arabia, are among the oldest archeological ruins in the world
Mysterious stone structures known as ‘Mustatil’ in northwestern Saudi Arabia, are among the oldest archeological ruins in the world
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Mysterious Stone Secrets in Saudi Arabia Uncovered

Mysterious stone structures known as ‘Mustatil’ in northwestern Saudi Arabia, are among the oldest archeological ruins in the world
Mysterious stone structures known as ‘Mustatil’ in northwestern Saudi Arabia, are among the oldest archeological ruins in the world

KAUST scientists have used deep learning algorithms to accelerate the examination of thousands of years old, giant, stone rectangles in the Saudi desert.

“An international study showed that the huge, mysterious stone structures known as ‘Mustatil’ (Arab word for ‘Rectangle’) in northwestern Saudi Arabia, are among the oldest archeological ruins in the world,” Saudi Minister of Culture, Prince Badr bin Abdullah bin Farhan, said in a tweet in 2021.

These historic sites, which are around 7,000 years old, bewildered researchers and scientists who have long sought to determine their nature and the reasons behind their construction. A recent study by the University of Cambridge suggested that these huge structures, comprising chambers, entrances, and seats, are more complicated than expected.

‘Smart’ archeological survey

For quicker results, researchers at the King Abdullah University of Science and Technology (KAUST) have used an artificial intelligence network to carry out a detailed geological survey in the region, which hasn’t been sufficiently studied so far.

The team is composed of Dr. Silvio Giancola, researcher at KAUST’s Image and Video Understanding Lab (IVUL) and the Artificial Intelligence Initiative; Dr. Laurence Hapiot, archaeological research and cultural outreach fellow at KAUST; and Prof. Bernard Ghanem, IVUL senior researcher, and vice president of the Artificial Intelligence Initiative. The project is funded by the president bureau, dean bureau, and IVUL at KAUST.

AI tools are among the best methods used to assess archaeological sites and process general archaeological data, especially when it comes to spatial analyses such as the view field, which can be highly complicated without computers.

Rectangles of the desert

In 2020, the Saudi Heritage Commission announced that a scientific team discovered stone structures in the Nefud Desert, and identified the discovery as the oldest animal traps in the world, dating to 7,000 years.

According to the commission, the findings confirmed that the northern regions of the kingdom witnessed a cultural evolution in around 5,000 years BC. At the time, inhabitants built hundreds of large, stone constructions, which indicates cultural advancement in the region.

The fieldwork explored the archeological and environmental contexts of the stone constructions, especially the rectangle-shaped structure described as animal traps. These stone rectangles played a similar role and reflected a behavioral evolution that suggests a competition over pastures in complex, unstable environments in the Arabian Peninsula, even in periods of humidity like the Holocene era, during which people struggled with drought.

New research field

Inspired by a new research field known as ‘Computational archaeology’, this initiative used an AI software to model the exploration of stone structures with the help of satellites images.

Computational archaeology uses accurate, computer-based analytical methods including geographical information systems (GIS) to study data on long-term human behavior and behavioral evolution. Over more than a decade, archaeologists used available sources to manually analyze satellite images, and tools like Google Maps to search for possible archaeological sites.

In this project, KAUST’s researchers used automation to scan the unfamiliar, large rectangular stones in the Saudi Nefud Desert, in addition to other archaeological sites of circular and triangular shapes. The approach relies on machine learning algorithms fed with data sorted by Dr. Hapiot. Once the algorithms were trained, scientists became able to filter hundreds of similar characteristics on a wide scale. Now, when archaeologists discover a new structure, they can use the tool to convert similar pixels into geodetic data via GPS, and then combine results in a digital map and database for analysis.

“This demonstrates that KAUST is a unique research facility that excels in different faculties. Few environments can achieve an accelerated integration of deep, technical approaches like Artificial Intelligence in cooperation with archaeologists. This helped reach a different understanding of Nefud’s stone structures,” said Hapiot.

The extensively studied field in Nefud features thousands of massive, stone structures. Given that Saudi Arabia’s area is approximately two million square kilometers, geological surveys using conventional research operations and exploration methods could take months, or maybe years. But the new AI-based approach used by KAUST’s team took only five hours.

Commenting on the modern techniques used in this field, Dr. Jaser Suleiman al-Harbash, executive director of the Saudi Heritage Commission, said: “AI and machine learning processed huge sets of data from the Saudi archeological sites with an amazing speed. The commission hails the efforts made by KAUST to use the latest techniques in studying those ancient, stone structures. This can help us find more about the stones’ function and distribution, as well as the ancient civilization that built them.”

In addition to accelerating archaeological exploration, the new technique could provide answers to many questions about the size, capacity, and distribution of the stones, as well as determining whether exploring an ancient structure in a given region can help find other similar or linked structures in neighboring regions.

Other benefits

The benefits of the new deep learning technique used by KAUST are not limited to exploring archaeologic sites, as they can also help achieve the Vision 2030 goals, by preserving and documenting the unique heritage of Saudi Arabia, and promoting tourism. The new technique can be used in other regions with similar soil characteristics and topography. An initiative should be launched to help enhance the benefits of AI in archaeology, so archaeologists and data scientists can exchange their knowledge and achieve promising results.

Archaeology studies the whole activity of our ancestors in a given place and time. These activities include the tools made by humans to meet basic needs, construction, social and economic behaviors, written texts and architecture, and artistic and scientific works.

Archaeology also focuses on studying the origins of human civilizations, using the latest techniques that analyze the tiniest details related to our ancestors. The second half of the 20th century saw the emergence of the “New Archaeology” term, which indicates studying the organization of human communities in their locations, and defining their social structure in order to connect all these findings in a universal system on human behavior.



Blood Tests Allow 30-year Estimates of Women's Cardio Risks, New Study Says

A woman jogs in a park in Saint-Sebastien-sur-Loire near Nantes, France January 19, 2024. REUTERS/Stephane Mahe/File Photo Purchase Licensing Rights
A woman jogs in a park in Saint-Sebastien-sur-Loire near Nantes, France January 19, 2024. REUTERS/Stephane Mahe/File Photo Purchase Licensing Rights
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Blood Tests Allow 30-year Estimates of Women's Cardio Risks, New Study Says

A woman jogs in a park in Saint-Sebastien-sur-Loire near Nantes, France January 19, 2024. REUTERS/Stephane Mahe/File Photo Purchase Licensing Rights
A woman jogs in a park in Saint-Sebastien-sur-Loire near Nantes, France January 19, 2024. REUTERS/Stephane Mahe/File Photo Purchase Licensing Rights

Women’s heart disease risks and their need to start taking preventive medications should be evaluated when they are in their 30s rather than well after menopause as is now the practice, said researchers who published a study on Saturday.

Presenting the findings at the European Society of Cardiology annual meeting in London, they said the study showed for the first time that simple blood tests make it possible to estimate a woman’s risk of cardiovascular disease over the next three decades.

"This is good for patients first and foremost, but it is also important information for (manufacturers of) cholesterol lowering drugs, anti-inflammatory drugs, and lipoprotein(a)lowering drugs - the implications for therapy are broad," said study leader Dr. Paul Ridker of Brigham and Women’s Hospital in Boston, Reuters reported.

Current guidelines “suggest to physicians that women should generally not be considered for preventive therapies until their 60s and 70s. These new data... clearly demonstrate that our guidelines need to change,” Ridker said. “We must move beyond discussions of 5 or 10 year risk."

The 27,939 participants in the long-term Women’s Health Initiative study had blood tests between 1992 and 1995 for low density lipoprotein cholesterol (LDL-C or “bad cholesterol”), which are already a part of routine care.

They also had tests for high-sensitivity C-reactive protein (hsCRP) - a marker of blood vessel inflammation - and lipoprotein(a), a genetically determined type of fat.

Compared to risks in women with the lowest levels of each marker, risks for major cardiovascular events like heart attacks or strokes over the next 30 years were 36% higher in women with the highest levels of LDL-C, 70% higher in women with the highest levels of hsCRP, and 33% higher in those with the highest levels of lipoprotein(a).

Women in whom all three markers were in the highest range were 2.6 times more likely to have a major cardiovascular event and 3.7 times more likely to have a stroke over the next three decades, according to a report of the study in The New England Journal of Medicine published to coincide with the presentation at the meeting.

“The three biomarkers are fully independent of each other and tell us about different biologic issues each individual woman faces,” Ridker said.

“The therapies we might use in response to an elevation in each biomarker are markedly different, and physicians can now specifically target the individual person’s biologic problem.”

While drugs that lower LDL-C and hsCRP are widely available - including statins and certain pills for high blood pressure and heart failure - drugs that reduce lipoprotein(a) levels are still in development by companies, including Novartis , Amgen , Eli Lilly and London-based Silence Therapeutics.

In some cases, lifestyle changes such as exercising and quitting smoking can be helpful.

Most of the women in the study were white Americans, but the findings would likely “have even greater impact among Black and Hispanic women for whom there is even a higher prevalence of undetected and untreated inflammation,” Ridker said.

“This is a global problem,” he added. “We need universal screening for hsCRP ... and for lipoprotein(a), just as we already have universal screening for cholesterol.”