Results 291 to 300 of about 3,023,998 (402)
Distribution of acyclovir in central nervous system compartments: a porcine pharmacokinetic model. [PDF]
Mariager T+11 more
europepmc +1 more source
Buckling‐resistant and trace‐stacked (BRATS) intracortical microelectrode arrays (MEAs) eliminate the need for insertion aid and complex surgical setup, resulting in minimal inflammatory tissue response, compared to conventional flexible MEAs inserted with aid. Trace stacking effectively doubled the channel count without increasing the MEA shank width,
May Yoon Pwint, Delin Shi, X. Tracy Cui
wiley +1 more source
Circadian influences on central nervous system barriers and the glymphatic system. [PDF]
Elliott BD+4 more
europepmc +1 more source
Integrating polyethyleneimine and carbon black into polyurethane enhances electron transport and mechanical durability. The resulting sensor achieves significantly improved electrical signal and sensitivity, enabling efficient machine learning‐based tactile signal recognition in bionic applications.
Xiangkun Bo+4 more
wiley +1 more source
The distribution of acetylcholine in the peripheral and the central nervous system
F. C. MacIntosh
openalex +1 more source
Reihs et al. present the development of a humanized, animal‐free synovial membrane model for osteoarthritis. Methods include 3D biochip cultures of human‐primary OA synoviocytes with matrix and serum surrogates. Results show replication of synovial architecture and increased Yap1 expression.
Eva I. Reihs+17 more
wiley +1 more source
Rapid Deep Vat Printing Using Photoclickable Collagen‐Based Bioresins
Collagen‐based resin formulations based on thiol‐ene photoclick chemistry are demonstrated. These resins enable easy handleability under neutral conditions and further allow facile fabrication of multicellular tissue constructs via tomographic or FLight printing.
Michael Winkelbauer+8 more
wiley +1 more source
Fiber orientation in electrospun scaffolds affects permeability and fluid dynamics in microfluidic devices. Combining experimental data with computational fluid dynamic simulations, we show that aligned fibers enhance flow uniformity, reduce pressure and shear stress variability.
Elisa Capuana+4 more
wiley +1 more source