Effect of 980nm Low-Level Laser Therapy on Matrix Metalloproteinase-1 Levels in Gingival Crevicular Fluid During Fixed Orthodontic Treatment. [PDF]
Agha Aghili H +3 more
europepmc +1 more source
Hydrogel‐Based Airway‐on‐Tube With Perfusable Endothelial Lumen and Outward Epithelialization
A hydrogel‐based airway‐on‐tube platform featuring a perfusable endothelial lumen and outward epithelialization is presented. The system supports primary human bronchial epithelial and lung microvascular endothelial coculture under air‐liquid interface conditions.
Ali Doryab +8 more
wiley +1 more source
Evaluation of the Effect of Low-level Laser Therapy on Leveling Mandibular Anterior Crowding. [PDF]
Tunca Y, Kaya Y.
europepmc +1 more source
AI–Guided 4D Printing of Carnivorous Plants–Inspired Microneedles for Accelerated Wound Healing
This work presents an artificial intelligence (AI)‐guided 4D‐printed microneedle platform inspired by carnivorous plants for wound healing. A thermo‐responsive shape memory polymer enables body temperature–triggered self‐coiling for autonomous wound closure.
Hyun Lee +21 more
wiley +1 more source
Auricular neuromodulation by low level laser therapy versus placebo laser therapy in prophylactic treatment of episodic migraine: a randomized controlled study protocol. [PDF]
Sagui E +6 more
europepmc +1 more source
ABSTRACT Biohybrid microswimmers, which integrate the unique mobility and taxis of living cells with the versatility of synthetic cargo, offer exciting opportunities for targeted delivery. However, current biohybrids lack autonomous decision‐making capabilities due to the absence of communication between living and synthetic components. Here, we report
Xiaoran Zheng +3 more
wiley +1 more source
Low Level Laser Therapy: A Concise Review on its Applications
Aneetha Raman +5 more
doaj
Correction: The immediate pain relief of low-level laser therapy for burning mouth syndrome: a retrospective study of 94 cases. [PDF]
Mu W, Li S, Lu Q, Wang J, Tao X.
europepmc +1 more source
Plasmonic Nanomachines: Creating Local Potential Gradients and Motions
Plasmonic nanomachines can generate optical, thermal, and chemical potential gradients to drive directional rectilinear, rotational, and twisting motions at the nanometer scale. The integration of multimodal plasmonic forces with functional materials and programmed structural distortions enables precise spatiotemporal actuation, thereby providing a ...
Yoonhee Kim +3 more
wiley +1 more source

