Results 191 to 200 of about 71,751 (310)

Automating Vascular Biology: An End‐to‐End Automated Workflow for High‐Throughput Blood Vessel‐on‐a‐Chip Production and Multi‐Site Validation

open access: yesAdvanced Healthcare Materials, EarlyView.
AngioPlate384 is a 384‐well open‐top platform that automates production of more than 100 miniaturized, perfusable blood vessels embedded in hydrogel and supported by stromal cells. Stromal‐endothelial co‐culture strengthens blood vessel barrier function and yields responses useful for translational planning. Scalable and automation‐ready, it suits drug
Dawn S. Y. Lin   +14 more
wiley   +1 more source

3D‐Printed Gastrointestinal Stents: In Vivo Evaluation in a Swine Small Bowel Perforation Model

open access: yesAdvanced Healthcare Materials, EarlyView.
Gastrointestinal fistulae and perforations can lead to severe complications including sepsis and patient death. In this work, the efficacy of 3D‐printed gastrointestinal stents composed of poly‐lactic‐acid (PLA) was evaluated in an in vivo swine model.
Gweniviere Capron   +9 more
wiley   +1 more source

A list of DEGs from tumor vs. tumor-adjacent tissue comparisons that are labeled as secretome proteins according to the human protein atlas (HPA).

open access: green
Helvijs Niedra (7397573)   +20 more
openalex   +1 more source

Repetition path destination index for repeated graph traversal using adjacency lists

open access: yesRepetition path destination index for repeated graph traversal using adjacency lists
グラフデータベース管理システム(GDBMS)はグラフ専門のデータベースであるが,高次ノード(HDN)を経由してエッジを繰り返し辿ることにより,計算コストが著しく高くなる.本研究では,HDNを区別する新しいグラフ索引を提案し,これらの特定のグラフ走査を最適化する.また,索引を効率的に構築するために,再帰的スキャン操作を構築効率化の方法として提案する.本研究における評価実験は大きな結果を示した.繰返し経路の索引により巨大なグラフに対する走査性能が最大1.176倍向上した.さらに,再帰的スキャン操作は,ベースライン手法と比較して索引構築に要する時間を最大64.6%短縮した. Graph Database Management Systems (GDBMSs) suffer from costly ...
openaire  

Biofilm‐Antagonist Ginger‐Based 3D‐Printable Photoresins for Complex Implant Designs Exhibiting Advanced Multifunctional Biomedical Applications

open access: yesAdvanced Materials, EarlyView.
This work offers unique Ginger‐based 3D‐printable resins that can print customizable high‐resolution complex designs. The customizable printing backbone of Zingerol prints also mimics various human bones' strength. Acquisition of in‐vivo biocompatibility in rat model with no severe inflammatory response, along with in‐vitro antioxidant and ex‐vivo anti‐
Simran Jindal   +9 more
wiley   +1 more source

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