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

Vitrification and rapid rewarming of precision-cut liver slices for pharmacological and biomedical research

用于药理学和生物医学研究的精确切割肝片的玻璃化和快速复温

Ramesh, Srivasupradha; Rao, Joseph Sushil; Namsrai, Bat-Erdene; Fisher, Benjamin; Tobolt, Diane K; Megaly, Michael; Etheridge, Michael L; Pruett, Timothy L; Seelig, Davis; Murugan, Paari; Aldaraiseh, Bashar; Finger, Erik B; Bischof, John C

Physical vitrification and nanowarming at liter-scale CPA volumes: toward organ cryopreservation

升级冷冻保护液体积的物理玻璃化和纳米升温:迈向器官冷冻保存

Gangwar, Lakshya; Han, Zonghu; Scheithauer, Cameron; Namsrai, Bat-Erdene; Kantesaria, Saurin; Goldstein, Rob; Etheridge, Michael L; Finger, Erik B; Bischof, John C

Scalable Purification of Iron Oxide Nanoparticles for Organ Cryopreservation and Transplantation

用于器官冷冻保存和移植的氧化铁纳米颗粒的可扩展纯化

Oziri, Onyinyechukwu Justina; Rao, Joseph Sushil; Scheithauer, Cameron; Han, Zonghu; Kantesaria, Saurin; Tobolt, Diane; Liang, Haopu; Etheridge, Michael L; Yin, Yadong; Finger, Erik B; Bischof, John C

Governing new technologies that stop biological time: Preparing for prolonged biopreservation of human organs in transplantation

驾驭终结生物时间的新技术:为移植中人体器官的长期生物保存做好准备

Pruett, Timothy L; Wolf, Susan M; McVan, Claire Colby; Lyon, Peter; Capron, Alexander M; Childress, James F; Evans, Barbara J; Finger, Erik B; Hyun, Insoo; Isasi, Rosario; Marchant, Gary E; Maynard, Andrew D; Oye, Kenneth A; Toner, Mehmet; Uygun, Korkut; Bischof, John C

The need for an organoid manufacturing, preservation, and distribution center

需要建立类器官制造、保存和分发中心

Atala, Anthony; Bischof, John C; Chen, Christopher S; Fisher, John P; Hermanson, David L; Howe, Charles L; Low, Walter C; Ma, Zhen; McKenna, David H; Palecek, Sean P; Temenoff, Johnna S; Ogle, Brenda M

Dielectric properties of individual cryoprotective agents and cocktails VS55, M22, DP6 at subzero temperatures for cryopreservation

低温下单个冷冻保护剂和混合物VS55、M22、DP6的介电性能

Gangwar, Lakshya; Jiang, Yicheng; Thunberg, Dametre; Scheithauer, Cameron; Etheridge, Michael L; Bischof, John C; Franklin, Rhonda R

Conduction-Dominated Cryomesh for Organism Vitrification

用于生物体玻璃化的传导主导型冷冻网

Guo, Zongqi; Zuchowicz, Nikolas; Bouwmeester, Jessica; Joshi, Amey S; Neisch, Amanda L; Smith, Kieran; Daly, Jonathan; Etheridge, Michael L; Finger, Erik B; Kodandaramaiah, Suhasa B; Hays, Thomas S; Hagedorn, Mary; Bischof, John C

3D Printed Organisms Enabled by Aspiration-Assisted Adaptive Strategies.

利用吸气辅助适应策略实现的3D打印生物体

Han Guebum, Khosla Kanav, Smith Kieran T, Ng Daniel Wai Hou, Lee JiYong, Ouyang Xia, Bischof John C, McAlpine Michael C

Reply to Kaestner et al.: Pioneering quantitative platforms for stored red blood cell assessment open the door for precision transfusion medicine

回复 Kaestner 等人:开创性的储存红细胞定量评估平台为精准输血医学打开了大门。

Isiksacan, Ziya; D'Alessandro, Angelo; McKenna, David H; Tessier, Shannon N; Kucukal, Erdem; Gokaltun, A Aslihan; William, Nishaka; Sandlin, Rebecca D; Bischof, John; Mohandas, Narla; Busch, Michael P; Elbuken, Caglar; Gurkan, Umut A; Toner, Mehmet; Acker, Jason P; Yarmush, Martin L; Usta, O Berk

A Low-Cost, Tabletop LOD-EPR System for Nondestructive Quantification of Iron Oxide Nanoparticles in Tissues

一种低成本、台式LOD-EPR系统,用于无损定量分析组织中的氧化铁纳米颗粒

Kantesaria, Saurin; Tang, Xueyan; Suddarth, Steven; Pasek-Allen, Jacqueline; Namsrai, Bat-Erdene; Goswitz, Arjun; Hintz, Mikaela; Bischof, John; Garwood, Michael