日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Democratizing Organ-On-Chip Technologies With a Modular, Reusable, and Perfusion-Ready Microphysiological System

利用模块化、可重复使用且可灌注的微生理系统,实现芯片器官技术的普及化。

Minahan, Daniel J; Nelson, Katherine M; Ribeiro, Filipa; Ferrick, Bryan J; Zurzolo, Alexandra M; Byers, Kira; Mckeown, Victoria; Gleghorn, Jason P

Modular parallel plate flow chamber with tunable substrate mechanics and defined shear stress

具有可调基底力学特性和可控剪切应力的模块化平行板流动腔

Ferrick, Bryan J; Gleghorn, Jason P

Stochastic to Deterministic: A Straightforward Approach to Create Serially Perfusable Multiscale Capillary Beds

从随机到确定性:一种构建串联灌注多尺度毛细血管床的简便方法

Donzanti, Michael J; Ferrick, Bryan J; Mhatre, Omkar; Chernokal, Brea; Renteria, Diana C; Gleghorn, Jason P

A straightforward cell culture insert model to incorporate biochemical and biophysical stromal properties into transplacental transport studies.

一种简单的细胞培养插入模型,可将生物化学和生物物理基质特性纳入跨胎盘转运研究

Nelson Katherine M, Ferrick Bryan J, Karimi Hassan, Hatem Christine L, Gleghorn Jason P

Modular Parallel Plate Flow Chamber with Tunable Substrate Mechanics and Defined Shear Stress

具有可调基底力学和可控剪切应力的模块化平行板流动腔

Ferrick, Bryan J; Gleghorn, Jason P

Democratizing Organ-on-Chip Technologies with a Modular, Reusable, and Perfusion-Ready Microphysiological System

利用模块化、可重复使用且可灌注的微生理系统,实现芯片器官技术的普及化。

Minahan, Daniel J; Nelson, Katherine M; Ribeiro, Filipa; Ferrick, Bryan J; Zurzolo, Alexandra M; Byers, Kira; Gleghorn, Jason P

Zonal patterning of extracellular matrix and stromal cell populations along a perfusable cellular microchannel

可灌注细胞微通道中细胞外基质和基质细胞群的区域性分布

Chernokal, Brea; Ferrick, Bryan J; Gleghorn, Jason P

A Dual-Screw Technique for Vertebral Compression Fractures via Robotic Navigation in the Osteopenic Lumbar Spine: An In-Vitro Biomechanical Analysis

骨质疏松腰椎椎体压缩性骨折机器人导航双螺钉固定术:体外生物力学分析

Steinmetz, Michael P; Riggleman, Jessica R; Mahoney, Jonathan M; Harris, Jonathan A; Butler, John B; Ferrick, Bryan J; Bucklen, Brandon S

A straightforward cell culture insert model to incorporate biochemical and biophysical stromal properties into transplacental transport studies

一种简便的细胞培养插入模型,可将基质的生化和生物物理特性纳入跨胎盘转运研究中。

Nelson, Katherine M; Ferrick, Bryan J; Karimi, Hassan; Hatem, Christine L; Gleghorn, Jason P