Correction: Utilizing layer-parameter of shear horizontal surface acoustic wave biosensor for lipoprotein particle
Chia-Hsuan Cheng1,2, Hiromi Yatsuda1, Jun Kondoh1
1Graduate School of Science and Technology, Shizuoka University, Hamamatsu 432-8561, Japan. kondoh.jun@shizuoka.ac.jp.
Lab on a Chip
|August 15, 2025
Summary
This correction clarifies the use of layer-parameter in shear horizontal surface acoustic wave biosensors for accurate lipoprotein particle sizing. It ensures precise measurements for cardiovascular disease risk assessment.
Area of Science:
- Surface Acoustic Wave (SAW) biosensing technology.
- Biomolecular interaction analysis.
- Nanoparticle characterization.
Context:
- Accurate measurement of lipoprotein particle size is crucial for assessing cardiovascular disease risk.
- Shear horizontal surface acoustic wave (SH-SAW) biosensors offer label-free detection.
- Previous studies highlighted the potential of SH-SAW devices for sizing.
Purpose:
- To correct and refine the methodology for utilizing the layer-parameter in SH-SAW biosensors.
- To enhance the accuracy of lipoprotein particle sizing using SH-SAW devices.
- To provide a more robust framework for biosensor application in clinical diagnostics.
Summary:
- The correction focuses on the precise application of the layer-parameter in SH-SAW biosensor design.
- This refinement improves the resolution and accuracy of detecting varying lipoprotein particle sizes.
- The adjusted methodology ensures reliable quantification of lipoprotein subclasses.
Impact:
- Improved accuracy in lipoprotein particle sizing directly impacts cardiovascular risk prediction.
- Enhanced SH-SAW biosensor performance facilitates earlier and more precise disease detection.
- This work advances the development of point-of-care diagnostic tools for lipid profiling.


