Results 141 to 150 of about 3,460 (254)
Autonomous AI‐Driven Design for Skin Product Formulations
This review presents a comprehensive closed‐loop framework for autonomous skin product formulation design. By integrating artificial intelligence‐driven experiment selection with automated multi‐tiered assays, the approach shifts development from trial‐and‐error to intelligent optimisation.
Yu Zhang +5 more
wiley +1 more source
A Two‐Stage Characterization Pipeline and Open‐Source Framework for Reproducible Tactile Sensing
The same soft tactile sensor returns different numbers when embodied in different robots. This is an Embodiment Gap that no shared framework currently captures transparently. A two‐stage characterization pipeline, paired with a FAIR open‐source digital datasheet, decouples intrinsic sensor behavior from embodiment effects and condenses cross‐laboratory
Matteo Lo Preti +6 more
wiley +1 more source
Porcine kidney xenotransplantation: From primate models to clinical reality
In the face of a critical shortage of human donor kidneys for end‐stage renal disease patients, porcine kidney xenotransplantation has emerged as a viable solution. This field has navigated major hurdles, including immune rejection, physiological incompatibilities, potential biomechanical differences and the risk of cross‐species infection. To overcome
Zihang Guo +3 more
wiley +1 more source
Stretchable inertial microfluidics for isolation of cancer cells with large size distributions
Rare-cell isolation is an effective method for early detection and monitoring of cancer. To date, inertial microfluidic devices for rare-cell isolation lack tunability and high resolution due to their fixed geometries.
Nguyen, NT +5 more
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Natural Aging of Biomaterials in Ambient and Physiological Environments
Biomaterials used in biomedical applications can change their physical properties over time, even under ambient and physiological conditions. This review highlights key studies on the natural aging of materials ranging from soft hydrogels to metals and ceramics, emphasizing how time‐dependent changes influence function and performance.
Shuyu Zhang, Anne E. Staples
wiley +1 more source
Low cost, ultra-high throuhput particle counting using inertial microfluidics [PDF]
Date of Conference: 9-13 October 2016Conference Name: 20th International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2016In this work, an ultra-high throughput microfluidic particle counting system is demonstrated.
Çetin, Barbaros +3 more
core
Manipulation of colloidal particles in a microchannel using inertial microfluidics
The precise control and manipulation of small particles in the microscale using inertial flow has various applications such as in high-throughput separation and filtration of biological cells.
Dhamiri Zulhusmi Thahir
core
ABSTRACT This study investigates the flow of a magnetized hybrid nanofluid over a permeable stretching surface. The mass and thermal transport within the system is regulated using the Cattaneo–Christov flux theory. The fluid is additionally subjected to thermophoresis, chemical reaction, Brownian motion, and activation energy effects.
Ebrahem A. Algehyne +6 more
wiley +1 more source
ABSTRACT The global trend toward sustainable and intensified bioprocesses is driving innovation in the design and scalable synthesis of liposomal nanocarriers, a cornerstone of modern drug delivery. For decades, these nanosystems have relied exclusively on polyethylene glycol (PEG) for their sustained circulation in vivo, but they are currently ...
Chandra Has
wiley +1 more source

