Advances in functional polymer nanofibers: From spinning fabrication techniques to recent biomedical applications
Functional polymeric micro-/nanofibers have emerged as promising materials for the
construction of structures potentially useful in biomedical fields. Among all kinds of …
construction of structures potentially useful in biomedical fields. Among all kinds of …
Graphene-enabled wearable sensors for healthcare monitoring
H Zhang, R He, Y Niu, F Han, J Li, X Zhang… - Biosensors and …, 2022 - Elsevier
Wearable sensors in healthcare monitoring have recently found widespread applications in
biomedical fields for their non-or minimal-invasive, user-friendly and easy-accessible …
biomedical fields for their non-or minimal-invasive, user-friendly and easy-accessible …
Inversely engineered biomimetic flexible network scaffolds for soft tissue regeneration
Graft-host mechanical mismatch has been a longstanding issue in clinical applications of
synthetic scaffolds for soft tissue regeneration. Although numerous efforts have been …
synthetic scaffolds for soft tissue regeneration. Although numerous efforts have been …
Controlled vertically aligned structures in polymer composites: natural inspiration, structural processing, and functional application
C Lei, Z **e, K Wu, Q Fu - Advanced Materials, 2021 - Wiley Online Library
Vertically aligned structures, which are a series of characteristic conformations with
thickness‐direction alignment, interconnection, or assembly of filler in polymeric composite …
thickness‐direction alignment, interconnection, or assembly of filler in polymeric composite …
[HTML][HTML] Conductive fibers for biomedical applications
L Wei, S Wang, M Shan, Y Li, Y Wang, F Wang… - Bioactive Materials, 2023 - Elsevier
Bioelectricity has been stated as a key factor in regulating cell activity and tissue function in
electroactive tissues. Thus, various biomedical electronic constructs have been developed …
electroactive tissues. Thus, various biomedical electronic constructs have been developed …
Microfluidics for flexible electronics
Flexible electronics has extensively drawn attention in an extremely wide range of areas due
to its unique advantages like portability, biocompatibility, wearability, and superior …
to its unique advantages like portability, biocompatibility, wearability, and superior …
Rational design of electrically conductive biomaterials toward excitable tissues regeneration
Cells in vivo are situated in a complicated microenvironment composed of diverse
biochemical and biophysical cues. To regulate biological functions of cells, tissues and …
biochemical and biophysical cues. To regulate biological functions of cells, tissues and …
[HTML][HTML] Electrospinning and 3D printed hybrid bi-layer scaffold for guided bone regeneration
J Liu, Q Zou, C Wang, M Lin, Y Li, R Zhang, Y Li - Materials & Design, 2021 - Elsevier
The guided bone regeneration (GBR) concept has been extensively utilized to treat
periodontal defects in clinical practice. However, the repair efficacy of the currently available …
periodontal defects in clinical practice. However, the repair efficacy of the currently available …
A focused review on three-dimensional bioprinting technology for artificial organ fabrication
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest
because it can be easily adapted to many industries and research sectors, such as …
because it can be easily adapted to many industries and research sectors, such as …
High-resolution electrohydrodynamic bioprinting: a new biofabrication strategy for biomimetic micro/nanoscale architectures and living tissue constructs
J He, B Zhang, Z Li, M Mao, J Li, K Han, D Li - Biofabrication, 2020 - iopscience.iop.org
Electrohydrodynamic (EHD) printing is a newly emerging additive manufacturing strategy for
the controlled fabrication of three-dimensional (3D) micro/nanoscale architectures. This …
the controlled fabrication of three-dimensional (3D) micro/nanoscale architectures. This …