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Zhejiang Top Cloud Agriculture Technology Co., Ltd

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    yangli@top17.net

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    19032001373

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    No. 182 Xijiu Road, Gongshu District, Hangzhou City, Zhejiang Province

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High throughput plant root phenotype collection and analysis system (root tube type)

NegotiableUpdate on 12/20
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Overview
The high-throughput plant root phenotype collection and analysis system (root tube type) is an automated imaging system designed specifically for the collection and analysis of root phenotypes in fibrous plants. The system adopts a fully automatic rotating positioning mechanism, supports multi angle non-destructive imaging, is equipped with high-resolution CMOS cameras and near-infrared spectroscopy modules, and can synchronously obtain root morphology, biomass, and water distribution parameters.
Product Details

1、 Product Introduction

High throughput plant root phenotype collection and analysis system (root tube type)It is an automated imaging system designed specifically for the collection and analysis of root phenotype in fibrous root plants.High throughput plant root phenotype collection and analysis system (root tube type)Adopting a fully automatic rotating positioning mechanism, supporting multi angle non-destructive imaging, equipped with high-resolution CMOS camera and near-infrared spectroscopy module, it can synchronously obtain root morphology, biomass, and water distribution parameters. Automated extraction of root phenotype parameters through AI algorithms, supporting long-term continuous operation, suitable for laboratory and greenhouse environments. The system has high positioning accuracy, high-resolution imaging, and intelligent data analysis functions, providing precise data support for plant root system research.


2、 Applicable crops

Grain crops: wheat, rice, corn, etc

Vegetable crops: tomatoes, peppers, cucumbers, etc

Other crops: tobacco, traditional Chinese medicine and other plants with fibrous roots


3、 Applicable scenarios

Root morphology research: analysis of root growth dynamics, morphological construction, etc

Research on stress resistance mechanism: exploring the response of roots to adversity such as drought and salinity

Breeding screening: Screening excellent root genotypes to accelerate crop breeding process

Ecological research: Quantifying the role of root systems in soil ecology

Precision agriculture: optimizing root management strategies and improving nutrient utilization efficiency

Laboratory and greenhouse: support indoor root phenotype monitoring and analysis


4、 Functional Features

High precision imaging system

1. High resolution CMOS camera (≥ 20 million pixels), supporting high-precision imaging of root morphology, biomass, and water distribution

2. Near infrared spectroscopy module (800~1700nm) for non-invasive detection of root physiological status

Automated collection and analysis

1. Automatic extraction of root phenotype parameters, data visualization, and multi file comparative analysis; Measurable parameters: root length, number of bifurcations, diameter distribution, surface area, volume, root tip density, etc

2. Fully automatic rotating positioning mechanism, supporting 360 ° rotation and lifting functions, achieving non-destructive imaging of root systems from multiple angles

3. High precision imaging: high-resolution camera and near-infrared spectroscopy module for precise monitoring of root morphology and physiological status

4. High degree of automation: Fully automatic rotation and lifting functions, combined with AI algorithms, greatly improve collection and analysis efficiency

5. Strong data fusion capability: supports the generation of root environment interaction models, providing multidimensional data support for root research

6. Personalized customization: flexible root tube size and functional module configuration to meet different research needs

7. AI algorithm automatically extracts root phenotype parameters, with a single scan analysis time of less than 5 minutes and a daily processing capacity of over 500 plants

Wide adaptability to the environment

1. Environmental light shielding cabin and LED array supplementary lighting system ensure imaging uniformity (brightness error<5%)

2. Working temperature 10-40 ℃, protection level IP65, suitable for laboratory and greenhouse environments

Data Fusion and Expansion

1. Combining soil moisture sensors to generate a dynamic model of root environment interaction

2. Support docking with Laboratory Information Management System (LIMS) to achieve data integration and sharing

3. Optional RGB and multispectral cameras for synchronous measurement of aboveground and root systems

4. Support AI visual robotic arm to achieve intelligent autonomous mobile data collection

Personalized customization

1. Support customized root tube size (diameter 10-50cm), suitable for different plant root systems

2. Optional modular design, supporting functional expansion and technical parameters


5、 Technical parameters

imaging system

Spectral range: visible light (400~700nm)+near-infrared (800~1700nm)

Resolution: ≤ 0.1mm

Support 3D point cloud reconstruction

performance parameters

Root tube size range: diameter 10-50cm (customizable)

Standard configuration: 10 root tubes

Material: Corrosion resistant, high transparency material

Rotation positioning accuracy: ± 0.5mm

Lifting stroke: ≥ 1.5m

Power supply: AC 220V ± 10%, 50/60Hz, power ≤ 500W