Research Areas

This research focuses on the archaeological and architectural analysis of the Giza Plateau, with particular attention to structural systems, underground contexts, and non-invasive field methodologies.

  • Osiris Shaft and underground structures
  • Khafre Causeway and architectural systems
  • Western Escarpment rock-cut features
  • Non-invasive field observation and analysis
Selected Publications

Open-Access Archaeological Research

Architectural Constraints and Interface Anomalies in the Osiris Shaft Complex

Osiris Shaft · Non-invasive documentary assessment

A non-invasive archaeological–architectural assessment focused on wall–floor junctions, interface discontinuities, and localized moisture signatures within the Osiris Shaft complex.

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Reconsidering the Osiris Shaft: Evidence for a Connected Subterranean Network

Giza Plateau · Subterranean architecture

Study exploring the Osiris Shaft within a broader subsurface architectural framework through photographic documentation and limited tomographic correlation.

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A Rock-Cut Cavity in the Western Escarpment of the Giza Plateau

Western Escarpment · Preliminary observational study

Preliminary documentation and contextual analysis of an isolated rock-cut cavity within the western escarpment of the Giza Plateau.

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Field Work

Ongoing field research conducted directly on the Giza Plateau, focused on structural observation, architectural analysis, and documentation of anomalies within complex archaeological contexts.

The work is based on direct, non-invasive observation and aims to identify architectural constraints, discontinuities, and contextual patterns often overlooked in conventional interpretations.

Contact & Collaboration

For research collaborations, institutional dialogue, or project-related inquiries, please get in touch directly.

Email: dott.armandomei@gmail.com

All research is conducted within a non-invasive, evidence-based framework grounded in direct field observation.

Support the Foundation

Support the development of the Egyptian Heritage Research Foundation – Preparatory Initiative, an independent project focused on non-invasive archaeological research, field documentation, and heritage preservation in Egypt.

Contributions help sustain:

  • Field documentation and on-site research
  • Open-access publications and reports
  • Non-invasive methodological development
  • Institutional preparation and legal structuring in Egypt
  • Long-term archaeological continuity

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Technology Reveals Significant Archaeological Discovery at the Springs Preserve

Remote Sensing Technologies indicate new evidence of ancient humans at the Big Springs

LAS VEGAS/PRNewswire/ - In addition to the more traditional archaeological excavation of a pre-historic pithouse currently underway at the Springs Preserve, remote sensing technologies have revealed the possible existence of two additional pithouses in close proximity. This new archaeological find indicates evidence of an ancestral Puebloan human settlement at the Springs Preserve.
"We believe we've found a small intact community near the center of Las Vegas in an area that has been virtually undisturbed by urban growth. This is a prime example of the value of protecting and preserving our links with the past," said Springs Preserve Archaeologist Dr. Patti Wright.
The partially excavated pre-historic pithouse is believed to have been a dwelling constructed by the Ancestral Puebloans. Plant charcoal remnants found in the pithouse hearth have been carbon dated at 700 AD. The excavation has also uncovered chipped and ground stone, ceramics, and a shell bead from the California coast, which indicate that these ancient peoples engaged in trade.
A noted expert in development and use of remote sensing technology Dr. Michael "Bodhi" Rogers, Professor in the Physics Department at Ithaca College is conducting remote sensing research at the Springs Preserve. "Depending on the scope of the project, we can obtain information much more quickly with remote sensing technology," says Dr. Rogers, "accomplishing in days what might take years using traditional methods."
Rarely utilized in Southern Nevada, remote sensing techniques such as ground-penetrating radar (GPR), magnetometry and electric resistivity use non-destructive energy waves to locate subterranean archaeological remnants. The process began with laying out a grid system on the ground's surface to map out their subsurface findings obtained with the remote sensing technologies.
"This collaborative effort between geophysicists and archaeologists may uncover an extremely significant find which highlights the transition from nomadic to semi-sedentary," says Dr. Alan Simmons, Professor Anthropology and Archaeology at the University of Nevada, Las Vegas.

FOR MORE INFORMATION:
Jim Johnson
Las Vegas Springs Preserve
702.822.7737
jim.johnson@springspreserve.org
Dawn Barraclough
Las Vegas Springs Preserve
702.822.7733
dawn.barraclough@springspreserve.org