Specifications, workflows and configurations — everything in one PDF.
Archaeology and paleontology have traditionally relied on destructive sampling methods such as sectioning, staining, and thin-section petrography to study fossils and artifacts at the microscopic level. However, these approaches pose risks to…
Biomedical research is experiencing a major shift with the integration of Digital Pathology and Micro-CT solutions, significantly improving tissue analysis, biomarker discovery, and disease modeling. Traditional microscopy methods have inherent limitations, such…
Botany and plant sciences rely on high-resolution imaging and precise analysis of plant tissues to understand disease mechanisms, stress responses, genetic modifications, and ecological changes. Traditional microscopy techniques limit research efficiency due…
Cancer research demands cutting-edge imaging technologies to enhance biomarker discovery, tumor profiling, and immuno-oncology advancements. Traditional histopathology techniques, while fundamental, present challenges such as limited scalability, subjective interpretation, and data fragmentation. Digital…
Geological and mineralogical research relies on high-resolution imaging techniques to analyze mineral composition, rock microstructures, and sedimentary formations. Traditional petrographic microscopy, while effective, is often limited by sample preparation constraints, depth resolution,…
Toxicology and environmental science research requires high-precision imaging, high-throughput analysis, and advanced molecular assessments to evaluate the impact of toxins, chemicals, and environmental pollutants on biological systems. Traditional microscopy and histopathology methods…
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Generate sequencing-ready NGS library material.
Generate sequencing-ready NGS library material.
Generate sequencing-ready NGS library material.