Particle manipulation under X-force fields

C Xue, Y Yin, X Xu, K Tian, J Su, G Hu - Lab on a Chip, 2025 - pubs.rsc.org
Particle manipulation is a central technique that enhances numerous scientific and medical
applications by exploiting micro-and nanoscale control within fluidic environments. In this …

In-vitro blood purification using tiny pinch holographic optical tweezers based on deep learning

X Luo, YC Wong, X Chen, H Tan, W Wen - Biosensors and Bioelectronics, 2025 - Elsevier
In-vitro blood purification is essential to a wide range of medical treatments, requiring fine-
grained analysis and precise separation of blood components. Despite existing methods …

Optothermal trapping of microparticles near an absorbing reflective film with an annular beam

D Chen, J Jia, C Meng, P Yu, CX Li… - Review of Scientific …, 2024 - pubs.aip.org
Optothermal manipulation technologies trap and manipulate microparticles under a light-
controlled temperature gradient. In this paper, we demonstrate the possibilities of …

Structural parameter optimization of a fused all-fiber probe for light manipulation and multi-particle capture

S Zhang, Y Chen, S Bi, B Cui, C Wang - Applied Optics, 2025 - opg.optica.org
We propose and experimentally demonstrate an economical optical tweezers probe based
on the fusion of several commercial optical fibers. By optimizing the structural parameters of …

Optical Tweezers for Single-particle Cell Characterization and Their Application in Blood Purification

X Luo - 2024 - search.proquest.com
Optical systems are the eyes of biophysics and medical research. Thanks to the
development of optical tweezers technology, we can manipulate the movement of particles …

[PDF][PDF] Raman-integrated Microfluidic Device for Non-invasive Imaging of Leukaemic Cells

L Derzsi - ichf.edu.pl
Leukaemia ranks as the 13th most prevalent cancer in adults and holds the unfortunate
distinction of being the most common type of cancer in children. According to a report from …