Biological Cell Sorting
Optical Sorting

Biological Cell Sorting for Beihang University

Efficiently screening and analyzing antibody discovery is crucial for reducing time and costs in antibody drug development. Traditional hybridoma technology faces challenges like long cycles, limited diversity, and inadequate functional analysis, hindering progress. The AI nanobiochip technology in the Light Workbench can rapidly separate, analyze, culture, and export tens of thousands of single cells simultaneously, completing positive plasma cell screening in one day.

Beihang University 2025 Collaboration Golden Press Kit № 166755

Download Press Kit № 166755

Download Press Kit № 166755 Biological Cell Sorting for Beihang University by Beihang University to access high-res images, essential texts, translations, and exclusive interviews—all in one.


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Optical Sorting by Beihang University
Optical Sorting by Beihang University

Download 1800 Pixels JPEG Image.

Maximize the potential of this 1800-pixel image: at 300 DPI, it delivers exceptional detail up to 6 inches, while at 150 DPI, it offers clarity for prints up to 12 inches. Press pass? Download high-res, watermark-free images. Or, get immediate access to low-res images without accreditation. Details on photo contributions are located in the Image Credits Section.

Biological Cell Sorting by Beihang University
Biological Cell Sorting by Beihang University

Download 1800 Pixels JPEG Image.

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Beihang University Optical Sorting
Beihang University Optical Sorting

Download 1800 Pixels JPEG Image.

For precise, vibrant prints up to 6 inches, use this 1800-pixel image at 300 DPI. For larger visuals up to 12 inches, 150 DPI ensures the image remains clear and impactful. With press accreditation, enjoy watermark-free, high-res downloads. Low-res images are available immediately for all. Image Credits Section holds all necessary photo accreditation details.

Beihang University Biological Cell Sorting
Beihang University Biological Cell Sorting

Download 1800 Pixels JPEG Image.

Leverage the high resolution of this 1800-pixel image for detailed, vibrant prints. At 300 DPI, it's ideal for up to 6 inches; at 150 DPI, it scales beautifully to 12 inches. Accredited press members can download high-res images free of watermarks. Alternatively, low-res images are instantly available. Consult the Image Credits Section for information on photo credits.

Design Newswire
Optical Sorting Biological Cell Sorting Press Releases

Access press releases crafted for Optical Sorting in these languages: English.


Press Kit
Optical Sorting Biological Cell Sorting Media Articles

Our Optical Sorting articles are prepped and available in these languages: Arabic (Standard), Hindi, German, Spanish, Turkish, Indonesian, Dutch, Italian, English, Korean, Russian, Japanese, Portuguese, Chinese (Mandarin) and French, ready for your use.


Unique Properties

Efficiently screening and analyzing antibody discovery is crucial for reducing time and costs in antibody drug development. Traditional hybridoma technology faces challenges like long cycles, limited diversity, and inadequate functional analysis, hindering progress. The AI nanobiochip technology in the Light Workbench can rapidly separate, analyze, culture, and export tens of thousands of single cells simultaneously, completing positive plasma cell screening in one day.

Tags

cell, instrument, Biological

Production Technology

Such products may utilize a variety of production technologies, including optical-induced dielectrophoresis, microfluidics, micro-nano fabrication, laser technology, imaging and detection, as well as automation and control. These technologies work in concert to achieve precise manipulation, efficient sorting, rapid analysis, and automated processing of cells, thereby providing powerful tools for biomedical research.

Project Duration

The project started in December 2020 in Beijing and finished in August 2023 in Beijing.

Operation Flow

First, the cells or other biological samples to be sorted are prepared and loaded into the microfluidic chip of the system. Then, the optical-induced dielectrophoresis technology is used to manipulate and sort the cells based on their properties. During this process, the imaging system captures the images of the cells, and the software analyzes the images in real-time to identify and classify the cells. Finally, the sorted cells are collected, and the results are output and processed for subsequent research.

Research

In our research, we looked into a particular topic to gain more insights. We conducted experiments or studies, using various tools like scientific instruments or software, depending on what we were focusing on. If it involved people, we had participants; if it was about animals or cells, those were our subjects. Through our methods, we observed, collected data, and tested different conditions. The results revealed interesting findings, such as a new relationship or a significant change. These findings gave us new understandings and could point the way for future research.

Inspiration

The Optical Cell Sorting System is a breakthrough in cell sorting for biomedical research. It replaces time-consuming, sample-damaging manual sorting with optoelectronic dielectrophoresis, which precisely controls cells for efficient, undamaged sorting. This technology boosts accuracy and speed, providing a reliable, streamlined cell sorting and culture process. The Light Operator enhances lab efficiency, enabling scientists to advance cell research.

Project Overview

Optical Sorting Biological Cell Sorting has been a Golden winner in the Scientific Instruments and Research Equipment Design award category in the year 2024 organized by the prestigious A' Design Award & Competition. The Gold A' Design Award is granted to designs that demonstrate a high level of innovation and a significant impact on their intended audience. Recognized as a major achievement by the A' Design Awards, these designs are characterized by their visionary approach and the exceptional skill of their creators. Winners of the Gold A' Design Award are noted for their ability to push the envelope in art, science, design, and technology, delivering solutions that not only meet but exceed expectations. These designs serve as benchmarks for excellence, encouraging further innovation and inspiring future generations of designers.

Image Credits

For design images and photos please credit Beihang University.

 Award Logo
Golden Recognition

Beihang University was recognized with the coveted Golden A' Design Award in 2025, a testament to excellence of their work Optical Sorting Biological Cell Sorting.

DesignPRWire
Beihang University Press Releases

Access a rich repository of press releases on Beihang University, offered to press and media professionals for unrestricted use in their stories. Journalists, gain instant access to 2 press releases today.


Beihang University's Optical Sorting System Wins Golden A' Design Award for Revolutionizing Biological Cell Sorting

Beihang University's Optical Sorting System, developed in Beijing from December 2020 to August 2023, has been awarded the prestigious Golden A' Design Award 2025 for its groundbreaking approach to biological cell sorting, dramatically improving efficiency and accuracy in biomedical research.


Newsroom
Beihang University Newsroom

Visit Beihang University Newsroom for an inside look at exceptional design and award-winning projects.

You are currently viewing Media Showcase № 166755. Beihang University's newsroom is your gateway to exploring their acclaimed work, complete with all the high-resolution images and interviews you need. You are currently viewing Press Kit / Media Showcase 166755 for the Optical Sorting, with further content available in Newsroom 358985.

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