Logo image
Progress in paper-based microfluidic diagnostics: toward AI-enhanced, multiplexed detection of pathogens for point-of-care use
期刊文章   開放取用(OA)

Progress in paper-based microfluidic diagnostics: toward AI-enhanced, multiplexed detection of pathogens for point-of-care use

Y.-L. Wang 和 C.-M. Cheng
Microfluidics and Nanofluidics, 卷.30(2)
2026
Web of Science ID: WOS:001660613400001

摘要

Deep Learning Multiplex diagnostics Paper-based Analytical Devices (PADs) Point-of-care Testing (POCT) Smartphone diagnostics Surgical Site Infections (SSI) Analytic equipment Biofilms Diagnosis Drilling platforms Integration testing mHealth Pathogens Smartphones Surgery Surgical equipment Viruses Deep learning Multiplex diagnostic Paper-based analytical device Paper-based analytical devices Point-of-care testing Smart phones Smartphone diagnostic Surgical site infection Surgical site infections Deep learning
Postoperative infections remain a critical concern in surgical care, particularly in resource-limited or field-based operating environments. Paper-based microfluidic diagnostics offer a practical solution for rapid, on-site pathogen detection to support sterile conditions and timely clinical decisions. This review outlines key developments in paper-based testing, from early use of cellulosic substrates and colorimetric assays to more recent integration with smartphone imaging and artificial intelligence (AI). We examine the progression from single-analytic tools to multiplexed systems capable of detecting bacteria, viruses, and biofilms. Highlighted examples include enzyme-linked immunoassays, biofilm-specific staining techniques, and IL-6–based inflammatory markers. We further discuss how convolutional neural networks (CNNs) enhance interpretive accuracy and enable semi-quantitative analysis via mobile platforms. We summarize recent advances in paper-based analytical devices for rapid on-site pathogen detection in resource-limited surgical environments, with a focus on sensitivity, operational simplicity, and readiness for field deployment. In addition, we highlight emerging multiplexing capabilities that enable simultaneous detection of multiple pathogens, representing an important direction for perioperative infection prevention. © The Author(s) 2026.

檔案與連結 (2)

url
https://www.scopus.com/inward/record.uri?eid=2-s2.0-105027372264&doi=10.1007%2fs10404-025-02870-z&partnerID=40&md5=f319295d94166d04b071c0d29bd37f75檢視
url
https://doi.org/10.1007/s10404-025-02870-z檢視
已出版(紀錄版本) 開放

相關連結

InCites亮點

本研究成果之相關指標(擷取自 InCites Benchmarking & Analytics)

引用書目主題
1 Clinical & Life Sciences
1.219 Cancer Drugs
1.219.2080 Bacterial Cancer Therapy
Web Of Science研究領域
Instruments & Instrumentation
Nanoscience & Nanotechnology
Physics, Fluids & Plasmas
ESI研究領域
Engineering

聯合國永續發展目標(SDGs)

此研究成果有助於達成以下目標:

#3 Good Health and Well-Being

來源:來自InCites的SDGs

詳細資料

Logo image