Results 191 to 200 of about 79,187 (302)
Single-Atom and Subnanocluster Platforms for Next-Generation Clinical Practice: A Bench-to-Bedside Approach. [PDF]
Mondal S, Sahoo P.
europepmc +1 more source
MetaboSense is a first‐of‐its‐kind microfluidic platform enabling continuous, in‐line monitoring of glucose and lactate during ex vivo lung perfusion. Combining a quantum dot–mediated aptamer assay with mixing, depletion, and optofluidic detection modules, it achieves 60–s temporal resolution and shows strong agreement with standard blood gas analyzers,
Sanjana Srikant +14 more
wiley +1 more source
Regulating the Nano-Bio Interface: Converging Electrochemical and Photonic Biosensing for Wearable Diagnostics. [PDF]
Kamat V +5 more
europepmc +1 more source
Beyond the 2D Plane: Interfacing Microwave Resonators with Bioreceptor-Functionalized Hydrogel Micropillars for Label-Free Enhanced Sensitivity Biosensing. [PDF]
Abuhaimed GN +6 more
europepmc +1 more source
Hydraulic Pressure‐Programmed Molecular Transport in Tough Hydrogels
Hydraulic pressure is introduced as a programmable parameter for regulating molecular transport in tough hydrogel membranes. Reversing the pressure direction accelerates or slows transport, tuning characteristic transport times over a 65‐fold range while achieving molecular separation and controlled delivery.
Yijie Cheng +7 more
wiley +1 more source
Research Advances in Diagnostic Methods for Prevalent Neurological Diseases. [PDF]
Lv M, Sun X, Wang X.
europepmc +1 more source
A damage‐free iCVD fluoropolymer passivation strategy is introduced for ambipolar vertical OECTs. Vapor‐phase infiltration and thermal annealing induce nanoscale phase separation in the OMIEC channel, enhancing overall device performance. A single‐channel bipolar event‐driven spiking encoder is also demonstrated for electrocardiogram signal encoding ...
Junyeong Yang +7 more
wiley +1 more source
Aluminium nitride thin film acoustic wave device for microfluidic and biosensing applications [PDF]
Li, Yifan +6 more
core
Entropy‐Driven Physical Amplification in Multivalent Biosensing
Detecting scarce molecules usually demands enzymatic amplification such as PCR. A statistical‐mechanical theory now reveals a purely physical alternative: distributing a fixed binding strength over more linker arms exponentially lowers the concentration at which multivalent sensors switch on.
Yuhan Peng, Xiuyang Xia, Ran Ni
wiley +1 more source

