Results 171 to 180 of about 6,251,460 (310)
Automated identification and assessment of environmental noise sources. [PDF]
Murovec J +3 more
europepmc +1 more source
A unidirectional cerebral organoid–organoid neural circuit is established using a microfluidic platform, enabling controlled directional propagation of electrical signals, neuroinflammatory cues, and neurodegenerative disease–related proteins between spatially separated organoids.
Kyeong Seob Hwang +9 more
wiley +1 more source
Thermoelectric temperature sensors are developed that directly measure heat changes during optical‐based neural stimulation with millisecond precision. The sensors reveal the temperature windows for safe reversible neural modulation: 1.4–4.5 °C enables reversible neural inhibition, while temperatures above 6.1 °C cause permanent thermal damage.
Junhee Lee +9 more
wiley +1 more source
Environmental Noise Dataset for Sound Event Classification and Detection. [PDF]
Fredianelli L +5 more
europepmc +1 more source
Crack‐Growing Interlayer Design for Deep Crack Propagation and Ultrahigh Sensitivity Strain Sensing
A crack‐growing semi‐cured polyimide interlayer enabling deep cracks for ultrahigh sensitivity in low‐strain regimes is presented. The sensor achieves a gauge factor of 100 000 at 2% strain and detects subtle deformations such as nasal breathing, highlighting potential for minimally obstructive biomedical and micromechanical sensing applications ...
Minho Kim +11 more
wiley +1 more source
City-wide space-time patterns of environmental noise pollution in Kigali, Rwanda. [PDF]
Kubwimana JR +14 more
europepmc +1 more source
Evaluation of fetal exposure to environmental noise using a computer-generated model. [PDF]
Gélat P +8 more
europepmc +2 more sources
Occupational and Environmental Noise Exposure and Extra-Auditory Effects on Humans: A Systematic Literature Review. [PDF]
Lee Y, Lee S, Lee W.
europepmc +1 more source
Two‐Dimensional Materials as a Multiproperty Sensing Platform
Various sensing modalities enabled and/or enhanced by two‐dimensional (2D) materials are reviewed. The domains considered for sensing include: 1) optoelectronics, 2) quantum defects, 3) scanning probe microscopy, 4) nanomechanics, and 5) bio‐ and chemosensing.
Dipankar Jana +11 more
wiley +1 more source

