Results 141 to 150 of about 143,515 (296)
A rare de novo IFT122‐A773E variant is identified in idiopathic pediatric uveitis and shown to exacerbate retinal inflammation and barrier dysfunction. Mechanistically, the variant enhances IFT43 interaction, elevates calcium signaling, and activates the MEK/ERK/FRA1 axis, revealing a previously unrecognized cilia‐associated pathway that may increase ...
Qian Zhou +18 more
wiley +1 more source
Wandering Wheels Newsletter, December 2000 [PDF]
https://pillars.taylor.edu/wanderingwheels-newsletter/1010/thumbnail ...
Wandering Wheels
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A Robotic Testing Platform for Pipelined Discovery of Resilient Dielectric Elastomer Actuators
This work introduces a robotic testing platform enabling high‐throughput, multi‐parameter lifetime mapping of linear dielectric elastomer actuators (DEAs). By integrating programmable high‐voltage control and automated electromechanical measurements, the system identifies material and operating conditions that double actuator lifetime.
Ang (Leo) Li +10 more
wiley +1 more source
Research Progress of Abrasive Groups Ordered Grinding Wheels
Because the grinding temperature is high when grinding using conventional disordered grinding wheels, the grinding quality improvement is limited when using single abrasive ordered grinding wheels, and the wheel preparation process is complex and costly ...
Ye Guo +5 more
doaj +1 more source
Wandering Wheels Newsletter, December 2012 [PDF]
https://pillars.taylor.edu/wanderingwheels-newsletter/1022/thumbnail ...
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Origami has inspired numerous soft deployable mechanisms for safe human‐robot interaction, while its intrinsic kinematic instability at arbitrary configurations limited their practical robotic application. This work presents a 3D printed meter‐scale origami robotic actuator capable of load‐bearing deformation through creaseline stiffness modulation.
Sung Yol Yu +5 more
wiley +1 more source
Wandering Wheels Newsletter, October 1982 [PDF]
https://pillars.taylor.edu/wanderingwheels-newsletter/1041/thumbnail ...
Wandering Wheels
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A high‐power hybrid nanogenerator (HP‐HNG) with multi‐degree‐of‐freedom mechanical coupling is reported, integrating multi‐directional wave energy for output to achieve 1 + 1 > 2 energy harvesting. The HP‐HNG achieves a peak output power of 0.764 W, corresponding to a peak power density of 127.303 W m−3. At a wave frequency of 1 Hz, the HP‐HNG delivers
Shuai Ding +9 more
wiley +1 more source
Wandering Wheels Newsletter, June 1989 [PDF]
https://pillars.taylor.edu/wanderingwheels-newsletter/1032/thumbnail ...
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