
Digital Pathology Slide Scanner
Digital pathology slide scanner is a sub-field of pathology which uses digital slides instead of live microscopy to evaluate tissue sections in research and in the clinics. Typically, in digital pathology workflows, the steps comprise preparation and barcoding of tissue sections. The tissue sections will then be converted into digital slides using digital pathology slide scanners. Several of these steps can be fully automated and orchestrated in digital pathology systems.
Description
Company Profile
Guangzhou G-Cell Technology Co., Ltd. is an innovative technology enterprise founded by relying on Tsinghua University Shenzhen Graduate School, Southern University of Science and Technology, and South China Normal University, and we focus on the application of optical imaging technology in the field of life sciences. For units in related application directions, we can provide you with professional optical imaging equipment and solutions. We have a complete optical testing experimental platform and a group of high-quality young technical backbones. As a cross-border combination of the laboratory equipment industry and the Internet industry, the company is committed to creating a new generation of laboratory intelligent equipment.
Why Choose Us
Profession team
We specialize in the application of optical imaging technology to the field of cell biology. For cell research, observation and other application fields.We have a complete optical testing experimental platform and a group of high-quality young technical backbones.
Advanced equipment
As a cross-border combination of the laboratory equipment industry and the Internet industry, the company is committed to creating a new generation of laboratory intelligent equipment.
Independent research and development
Under the innovation of a strong technical research and development team, GCell products all adopt independent research and development, independent production, independent patents, and have passed a number of certifications such as software monographs and utility model patents.
Software advantages
Software tuning is carried out based on the usage habits of scientific research users, and the results are exported according to the requirements of scientific research articles and reports. The slice preview information can be retrieved at any time, and the format conversion of panoramic results is supported, which is convenient for the universality of result analysis.
Related Product
There are several key components to a pathology slide scanner, including an optical system for capturing high-resolution images of the slide, an illumination system to illuminate the tissue specimens, a stage for holding the slide in place, and a camera or other imaging sensor for converting the optical information into a digital image. Other components may include software for controlling the scanning process and analyzing the resulting images, as well as hardware for storing and transmitting the digital data.
GCell automatic slide scanner is system which use the imaging technology process of rapidly digitizing slide specimens of substances. A digital slide refers to a high-resolution digital image of a glass slide that contains biological tissue or other types of material. Digitization of slides involves scanning the slide and converting the image into a digital format, which can be easily stored, shared, and analyzed using specialized software.
GCell microscope slide scanner is a device used to digitize glass slides containing tissue specimens. Easy to read make the reading free from the limitations of the microscope, the mouse operation can quickly select any part of the slice for observation, not limited by the field of view under the microscope, its structure is complete, the field of view is comprehensive, the resolution is high, the picture is clear, the color is saturated, and the image is not distorted.
GCell brightfield slide scanner use imaging technology used to digitize glass slides containing tissue specimens. Digital slide is the process of quickly scanning pathological slide specimens into high-resolution electronic images, that is, the process of quickly digitizing the slide specimens of substances. Its essence is to achieve standardized, high-definition, and full-information image acquisition.
GCell Pro series has both brightfield and fluorescence scanning modes. It is compatible with large slides of double standard size. In order to achieve a truly convenient and easy-to-use user experience, the intelligent GScan-Pro allows a variety of different requirements to be automatically completed in a single run. Sections of different requirements and sizes can be inserted into the sample cell at will to achieve automatic scanning in multiple modes.
Digital Pathology Slide Scanner
A digital pathology slide scanner is a device used to digitize glass slides containing tissue specimens.
The scanner captures high-resolution digital images of the entire slide or selected regions of interest, which can then be viewed and analyzed on a computer screen.
GCell digital pathology scanner is a device used to digitize glass slides containing tissue specimens. Slide digitization has the following benefits. Digital slide scanners have high resolution and can capture the tiny details of cells and tissues.
What Is Digital Pathology Slide Scanner
Digital pathology slide scanner is a sub-field of pathology which uses digital slides instead of live microscopy to evaluate tissue sections in research and in the clinics. Typically, in digital pathology workflows, the steps comprise preparation and barcoding of tissue sections. The tissue sections will then be converted into digital slides using digital pathology slide scanners. Several of these steps can be fully automated and orchestrated in digital pathology systems.
Advantages Of Digital Pathology Slide Scanner
Faster speed
The digital pathology slide scanner can scan high-throughput slides automatically. KFBIO digital pathology slide scanner has a maximum speed of 25s/slide, and can scan up to 400 slides one time.
More stable and quiet experience
Digital pathology scanners transforms digital slides into high-resolution images automatically for pathologists to diagnose more efficiently. The scanning process is more stable and quiet. And the success rate of slide scanning can reach 99.85%.
Automatic scanning, intelligent analysis
The digital pathology scanner can scan large-throughput slides automatically with one-click. It allows pathologists to step out. Besides, based on the deep learning of annotated slide database.
High resolution and fidelity
It can restore the original image to the greatest extent through the high-precision seamless image stitching technology. It compares the image gradient ratio of the two images with the preset value to judge whether two images are stitched perfectly.
Why Is Digital Pathology Slide Scanner Becoming More and More Important in Research and Diagnostics?
Depending on the specific interest and focus, the digital slides can then be viewed, shared, analyzed, managed, and archived on any computer connected to the network. Especially for the diagnosis of very difficult and complex cases, pathologists need to discuss the case, based on biopsies or other patient material processed into tissue sections, with other pathologists being experts on a certain organ or disease.
Digital pathology now enables the pathologist to share the digital slides with one or more experts independent of their geographic localization. Therefore, a well-informed diagnosis validated by experts can be made in very short time leading to more effective treatment and saving lives.
Pathology in general evaluates tissue sections based on morphology, and based on specific staining technologies to detect the abundance and distribution of certain marker genes or mutations across the tissue sections to make a diagnosis. In digital pathology as well as Digital Histology, digital slides and software tools are used instead of tissue sections under the microscope.
In contrast, molecular pathology is interested to obtain comprehensive molecular information of a certain tissue area, such as genomic information on cancer mutations. Molecular pathology can thus help to verify diagnoses and to refine treatment options.
Digital pathology is the pre-requisite to utilize artificial intelligence (AI) in pathology. Digital slides can be analyzed by digital pathology software algorithms which are trained to detect, mark and measure defined cell types or structures. AI is already changing the field of pathology as novel digital pathology software including dedicated digital pathology image analysis tools are currently being developed, tested and evaluated in world-wide case studies.
AI tools will be able to reliably identify and quantify malignant structures and therefore AI will help the pathologist to draw well-informed conclusions by obtaining objective and consistent data from the digital images. Thus, the digital pathology market size is increasing and novel digital pathology solutions, such as automated high-throughput digital pathology scanners, are being developed and fully integrated into digital pathology workflows.
How and Where Is Digital Pathology Slide Scanner Being Applied Currently?
Digital pathology slide scanner is currently applied in pathology labs who want to share their knowledge or obtain expertise on difficult cases, who want to evaluate digital images at any time and any place at the desk, at home or even on vacation -, and who would like to archive digital slides without any loss of image quality due to non-optimal storage conditions and bleaching of stains. Moreover, pathologists are now also starting to work with AI software solutions for digital pathology to save hands-on time at the microscope and to make more profound diagnoses. Thus, the digital pathology market is currently growing and new applications will be developed.
We offers the most flexible Whole Slide Imaging system. This digital slide scanner is microscopy-based and is therefore compatible with all objectives as well as with brightfield and fluorescence imaging modes. In addition, the images are saved as files and are compatible with all open format Slide Viewers. Therefore, the can be integrated into existing digital pathology workflows.
We also offers their own software which is able to load large files instantaneously, to view the scanned images at the highest resolution, and which allows to mark and annotate target cells or areas. In addition, the can be seamlessly integrated into the laser microdissection platform to connect digital and molecular pathology and to make the most from one tissue section.
The foundation of a good digital pathology solution starts with a reliable, high-quality scanner that pathology labs can trust. It should be easy to use while also providing high-resolution, high-quality images. Equip your laboratory with slide scanners that provide consistent, reproducible images with color reproduction that maps to glass images seen under microscopes. These high-quality standards are coupled with advanced solutions for efficiency including, but not limited to, an intuitive interface and fast scan time.
Digital pathology slide scanners are a scalable solution that can be optimized to digitize changing slide volumes. Scan whole slide images in under 1 minute per slide, for maximum speed without compromising performance. The tray-based system eliminates slide-handling errors such as breakage and lost slides, and improves reliability. Our scanners use innovative dynamic focus optical technology to produce high resolution, high quality images. Plus, built-in calibration provides you with the trust you need to gain accuracy in your results.
The Digital pathology slide scanner ease of use, flexible workflows and high image quality can maximize laboratory productivity and enable confidence in clinical decisions. The comes with a variety of functions such as image acquisition of fluorescence samples and multilayer acquisition. Scanned data can be viewed on a PC monitor by using the dedicated viewer software, and patented navigation map technique delivers slide viewing environment just as if operating a microscope.
Basic Workflow of Digital Pathology Slide Scanner




Digital pathology slide scanner is revolutionizing pathology evaluation across all fields, from human pathology to veterinary diagnostic pathology and toxicologic pathology. The benefits of going digital include faster turnaround times, increased collaboration, improved accuracy with tissue image analysis decision support tools, and reduced costs. With digital pathology, whole slide images can be easily accessed, shared, and analyzed by pathologists and scientists from anywhere in the world, making it an indispensable tool in modern healthcare.
There are fundamentally two approaches to digital pathology slide scannerworkflows: 'going all in' or 'digitizing incrementally.' Going all in often requires one or multiple high-speed, high-throughput scanners, to achieve both the fastest per slide scan time and largest number of slides per scanner at a time. Alternatively, the incremental approach can be initiated with a low-throughput, small-footprint whole slide scanner that may still have fast scan times but has a much lower capacity of slides, making the instrument more compact and simpler.
Parameters to Focus on When Choosing a Digital Pathology Slide Scanner
Faster scanning speed, higher efficiency. The maximum number of scanning slides per day can be calculated by the scanning speed, which helps the arrangement of workload. The scanning mode determines whether the scanning is stable, whether the working process is quiet, and whether the output file is qualified. The scanning modes of digital slide scanners mainly include flat whole-slide scanning, stack scanning and extended focus scanning.
Flat whole-slide scanning combine a large number of square image frames to form a mosaic pattern. Due to the saccade movement of the slide table, there is typically a 2%–5% overlap in a given tile. Then the tiles are automatically stitched to form a single, huge seamless whole-slide image. The scanner is capable of digitizing slides in various z-axes (vertical focal plane). A servo motor moves along a single acquisition axis in a jitter-free linear way. After it moves at different locations on the slide, a set of images are produced in the form of long, consecutive lines. Then the images are stacked to produce composite multiplanar images. It could simulate the fine focus control of conventional microscopes. This approach greatly simplifies the image stitch process as the number of lines/tiles required is significantly reduced. Multi-layer information can be obtained, and a clearer single-layer image can be obtained through the deconvolution algorithm. It solves the problems of blurred backgrounds and uneven slides.
Extended focus scanning this method combines multiple smaller images (each in the best focus plane) into a composite image. Compared to multi-planar virtual images, image acquisition of this method is faster and the file size is smaller. The objective lens is the core component of a digital slide scanner. Its quality and various indicators determine the quality and accuracy of the output image.
Our Factory
Guangzhou G-Cell Technology Co., Ltd. is an innovative technology enterprise founded by relying on Tsinghua University Shenzhen Graduate School, Southern University of Science and Technology, and South China Normal University, and we focus on the application of optical imaging technology in the field of life sciences. For units in related application directions, we can provide you with professional optical imaging equipment and solutions. We have a complete optical testing experimental platform and a group of high-quality young technical backbones. As a cross-border combination of the laboratory equipment industry and the Internet industry, the company is committed to creating a new generation of laboratory intelligent equipment.
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