Results 101 to 110 of about 1,044,908 (274)
Bone organoid construction and evolution
Organoids, generated through three-dimensional in vitro culture, are cellular aggregates that accurately mimic the complex microenvironment, cell–cell interactions, and signaling mechanisms of native tissues.
Yang Hong +5 more
doaj +1 more source
A 3D holotomography system coupled with a deep learning model distinguishes how cells die—apoptosis, necroptosis or necrosis—without any fluorescent labels. Training on refractive index maps of HeLa cells yields 97% accuracy and flags necroptosis hours before chemical dyes.
Minwook Kim +8 more
wiley +1 more source
Device‐Level Implementation of Reservoir Computing With Memristors
Reservoir computing (RC) is an emerging computing scheme that employs a reservoir and a single readout layer, which can be actualized in the nanoscale with memristors. As a comprehensive overview, the principles of RC and the switching mechanisms of memristors are discussed, followed by actual demonstrations of memristor‐based RC and the remaining ...
Sunbeom Park, Hyojung Kim, Ho Won Jang
wiley +1 more source
Building Immunocompetent Cerebral Organoids From a Developmental Perspective [PDF]
Cerebral organoids derived from human induced pluripotent stem cells (iPSCs) are increasingly becoming essential tools to study the human brain, from understanding pathological mechanisms in neurodevelopmental, neurodegenerative, and infectious diseases ...
Bengoa‐Vergniory, Nora +8 more
core +2 more sources
Droplet‐based microfluidics enables precise, high‐throughput microscale reactions but continues to face challenges in scalability, reproducibility, and data complexity. This review examines how artificial intelligence enhances droplet generation, detection, sorting, and adaptive control and discusses emerging opportunities for clinical and industrial ...
Junyan Lai +10 more
wiley +1 more source
This paper presents an integrated AI‐driven cardiovascular platform unifying multimodal data, predictive analytics, and real‐time monitoring. It demonstrates how artificial intelligence—from deep learning to federated learning—enables early diagnosis, precision treatment, and personalized rehabilitation across the full disease lifecycle, promoting a ...
Mowei Kong +4 more
wiley +1 more source
Transformasi Biomedik Menuju Personalisasi dan Kesehatan Presisi pada Kanker [PDF]
Biomedical transformation is redefining cancer research and clinical practice by integrating experimental and computational approaches, digital technologies, and patient-specific models to realize precision health. Wet lab experiments generate molecular,
Ghanny, Niken Rahmah +2 more
core +2 more sources
An Ethical Analysis of Human Cerebral Organoids
Human cerebral organoids are three-dimensional neural tissues with similar structure and biological function to human brain. Human cerebral organoids can be used to study human brain development, disease mechanisms, and drug screening.
Bin HUANG
doaj +1 more source
Brain organoid methodologies to explore mechanisms of disease in progressive multiple sclerosis. [PDF]
Multiple sclerosis (MS), a debilitating autoimmune disorder targeting the central nervous system (CNS), is marked by relentless demyelination and inflammation.
core +1 more source
This Perspective introduces tumor electrical excitability as a previously overlooked dimension of cancer biology. It proposes that tumor–neural interactions enable malignant cells to acquire neuron‐like properties and form bidirectional chemical and electrical communications with nerves.
Zonghao Liu +9 more
wiley +1 more source

