3D Modeling, Now at Your Fingertips! JLM-Lifetech Officially Releases the 3DDS 3D Digital Specimen Rapid Construction Sy

On June 10, at the "AI Morphology Frontier Application Seminar & JLM-Lifetech 3D Digitization New Product Launch Event"—co-hosted by JLM-Lifetech and Instrument.com.cn online classroom—JLM-Lifetech officially released its latest imaging product: the 3DDS 3D Digital Specimen Rapid Construction System. This is a one-click, fast, and automated 3D modeling system designed to make 3D modeling effortless for everyone.

Traditional 3D modeling for specimens heavily relies on manual multi-angle photography, complex calibration, and professional modeling software. This tedious process can take days, often yields inconsistent accuracy, and poses potential risks to valuable and fragile specimens. Achieving rapid, precise, and specimen-friendly 3D modeling has been a common pain point in museums, scientific research, and biodiversity conservation.

The independently developed JLM-Lifetech 3DDS 3D Digital Specimen Rapid Construction System integrates high-precision optical imaging arrays, automated image acquisition, and smart 3D reconstruction algorithms. It simplifies professional-grade 3D modeling into a straightforward three-step workflow: "Place SampleOne-Click LaunchView Model." In as fast as 15 minutes, it generates a 720-degree high-fidelity color 3D model, granting the specimen "digital immortality" in the virtual world.

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JLM-Lifetech 3D Digital Specimen Rapid Construction System: High-Definition 3D Models at Your Fingertips!

One-Click Fully Automated Modeling · Extremely Fast & Efficient: With no manual parameter adjustments or human intervention required, the system automatically handles the entire workflow—from image acquisition and point cloud construction to mesh generation and texture mapping. The modeling process takes only about 15 minutes, boosting efficiency dozens of times over traditional methods to satisfy the demand for high-volume digital archiving.

720° True 3D Panorama · Ultimate Fidelity: Thanks to a unique lens array and light-field design, the system captures all-angle data in a single scan without needing to flip the sample, preventing wear and tear on precious specimens. It supports samples ranging from 5 mm to 150 mm, achieves high-fidelity rendering of fine morphological details (such as wing veins, textures, and engravings), and supports 3D measurements and annotations.

Universal Format Output · Seamless Integration: It directly exports universal 3D formats such as OBJ without requiring manual post-editing or texture patching, and fully supports 3D printing. With its integrated digital specimen museum management module, it allows online display and sharing across multiple terminals, and can interface with immersive interactive devices to expand the scope of scientific research and public science education.

Wide Range of Application Scenarios

Biodiversity & Germplasm Resource Conservation: Build 3D digital archives for biological specimens such as seeds, plants, and insects, supporting biodiversity databases and precise phenotypic research.

Museums & Archaeology: Achieve non-destructive 3D archiving of cultural relics and fossils, providing a solid data foundation for virtual exhibition halls, artifact research, and restoration previews.

Geology & Materials Science: Conduct high-precision 3D morphology and parameter measurements on ores, crystals, and specialized materials.

Modernization of Traditional Chinese Medicine (TCM): Establish a 3D standard database of TCM herbal specimens to aid in herbal identification, heritage teaching, and scientific research.

Voice of the Users
Plant Quarantine, China Academy of Customs Science and Technology (CACST)
Application of 3D Digital Specimens in Customs Prevention and Control of Invasive Species

"Customs prevention and control of invasive species face multiple challenges, including difficult specimen preservation, scarce physical resources, a shortage of identification experts, and limited information from traditional images. The introduction of the 3D Digital Specimen Rapid Construction System enables the rapid construction of a 3D digital specimen library for invasive species. This achieves permanent preservation and remote sharing of resources, effectively compensating for the lack of physical specimens. It significantly improves the accuracy and efficiency of quarantine identification, providing crucial technical support for safeguarding national biosecurity."

Health Quarantine, China Academy of Customs Science and Technology (CACST)
Innovative Application of High-Precision Imaging Technology in Vector Identification at Ports of Entry

"Vectors encompass a wide range of groups, including mosquitoes and rodents, featuring massive species diversity and tiny morphological traits that are hard to distinguish. Coupled with a shortage of expert resources, traditional identification models struggle to meet growing demands. This 3D modeling system opens a new path for vector identification: high-definition 3D models preserve all features and allow rotation and observation from any angle, facilitating precise identification. At the same time, it can convert key diagnostic features identified by experts into shareable data, driving the development of AI-powered recognition and collaborative expert identification systems."

Northwest Institute of Plateau Biology, Chinese Academy of Sciences (CAS)
3D Digitization Empowering the Construction of the Qinghai-Tibet Plateau Germplasm Resource Bank

"The unique natural environment of the Qinghai-Tibet Plateau harbors extremely precious biodiversity, and building the 'Qinghai-Tibet Plateau National Germplasm Resource Bank' is an essential requirement for implementing national biodiversity conservation strategies. The 3D Specimen Rapid Construction System can quickly capture the real-time state of fresh specimens, creating unfading digital twins. By building a digital specimen museum, it provides a robust data foundation for scientific identification, long-term conservation of germplasm resources, and public science education."