RESEARCH PLATFORM
The activities of Land Green Technology ( LAGRE ) are focused on the intersection of plant biology, nanotechnology, precision hydropneumatics, optical technologies, automation, and digital robotics.
We conduct fundamental and applied research aimed at understanding the mechanisms of early plant development and realizing their genetic potential under controlled-environment conditions (CEA/HPA).
The rapid development of artificial intelligence, sensor technologies, and digital data analysis is becoming an important new component of our research platform, opening additional directions for identifying effective combinations of biological and physical signals.
The LAGRE™ research approach is protected by:
U.S. Patent US 12,600,768 B2
Taiwan Patent I 803123
Cybernetic System for Plant Growth Control

OUR RESEARCH METHODOLOGY
Unlike conventional agronomic trials that primarily investigate individual factors, the Formula G1 research platform studies the synergistic effects created through the synchronization of multiple biological, physical, and technological signals.
- Nutritional Signal
Research into individual and combined nano-nutrient formulations for controlling early plant development. - Water Environment Signal — Isotopic Control
Research into water with controlled deuterium content, including extremely low deuterium concentrations. - Optical Signal
Programmable LED systems with up to 16 spectral ranges and 256 intensity levels for creating individualized light programs. - Physicochemical Environment Signal
Real-time monitoring and synchronization of pH, Redox (ORP), EC, and dissolved oxygen (DO). - Electrical Signal
Research into the effects of electric fields and controlled parameters of electrical current, power, and exposure duration on root-system development. - Gas Signal
Programmable control of atmospheric gas composition and individual gas concentrations. - Ultrasonic and Acoustic Signal
Research into different frequencies and multifrequency acoustic programs as additional physical factors influencing plant development. - Atmospheric Pressure Signal
Research into programmable changes in atmospheric pressure, including their combination with different atmospheric gas compositions. - Temperature and Humidity Signal
Research into temperature and humidity regimes synchronized with other controlled-environment parameters. - New Combined Signals
Identification and experimental evaluation of new combinations of factors aimed primarily at developing and strengthening plant root architecture.
INTERNATIONAL ACADEMIC RECOGNITION AND PUBLICATIONS
The research results of Land Green Technology have been presented in scientific publications and at international forums in the fields of nanotechnology, plant science, horticulture, and controlled-environment technologies.
The company’s research has received international academic exposure, including:
- International Symposium on Nanoscience and Technology 2024 — Osaka, Japan — Nanotechnology in Agriculture and Food;
- The 32nd International Horticultural Congress — IHC2026, Kyoto, Japan — oral scientific presentation on the combined application of nano-nutrient solutions, water with controlled deuterium content, and light spectrum during the early development of rice;
- scientific publications on the application of nano-nutri-priming and hydro-priming to improve germination and early development of rice;
- publications and research addressing the role of nanotechnology in the development of new technological approaches to agriculture.
The LAGRE™ research program integrates patent-protected technologies, proprietary experimental infrastructure, long-term research, international scientific publications, and the presentation of research results at international scientific forums.
Our goal is not simply to study individual factors.
Our goal is to understand the language of plant signals and learn how to synchronize them.

