gkd加速器安卓下载-快连加速器app

Nearly every tissue in the body needs a blood supply, and that demand is met by a network of interconnected blood vessels called the microcirculation. The microcirculation is a highly adaptable system of small blood vessels that are a tenth of the diameter of a human hair–-you need a microscope to see them–-and there are over a million microvessels in a single gram of tissue. Microvascular growth and remodeling are important processes in nearly every major disease, including diabetes, heart disease, peripheral vascular disease, stroke, neurodegenerative diseases, and cancer. In our lab, we develop and use experimental and computational techniques to study and design new approaches for growing and regenerating injured and diseased tissues by manipulating the structure and composition of the microvasculature.

gkd加速器安卓下载-快连加速器app

gkd加速器安卓下载-快连加速器app

Amongst Medical and Biological Engineering Elite
02.23.2016
DETAILS
New $2.5M Collaborative NIH Grant Awarded
02.23.2017 
DETAILS
Pioneering Agent-Based Modeling
04.19.2016
DETAILS

gkd加速器安卓下载-快连加速器app

With the recent acquisition of two state-of-the-art 3D-bioprinters, we have begun to explore how 3D-printing technology can be used to produce engineered tissues for use as model systems for studying disease and for generating implantable tissue constructs. Our current 3D-bioprinting projects involve collaborations with biomaterials experts at UVA in Chemical Engineering and make use of cutting-edge polymers for oxygen sensing developed by the Fraser Lab in the Dept. of Chemistry. Current work is focused on printing mini-pancreas tissue chips and skeletal muscle. These studies have been fueled by funds from the Jefferson Trust and have seeded a brand new "Center for Advanced Biomanufacturing" at UVA, with BME collaborator, Dr. George Christ. 

We use a parallel approach that combines experimental models with agent-based computational models to guide the development of new methods in tissue engineering and regenerative medicine. We are particularly interested in the microcirculatory system and how microvascular networks structurally adapt, through active growth and remodeling in health and disease. Our research is relevant to a variety of medical problems including heart disease, peripheral limb ischemia, wound healing, cancer and diabetes.

Learn More
Learn More

国内ipad怎么看youtube

Department of Biomedical Engineering

University of Virginia

gkd加速器安卓下载-快连加速器app

  • mac怎么上youtube
  • 国内ios如何使用youtube
  • Grey Google+ Icon
  • 苹果怎么看youtube
  • 苹果用什么翻墙上youtube
SNK最新版,SNK免费试用,SNKvp,SNKvqn  蓝鲸加速器mac下载,蓝鲸加速器2024,蓝鲸加速器不能用了,蓝鲸加速器vn  instagram的免费加速软件,苹果ins加速软件免费,ins登入免费,ins免费加速器软件  长沙去海南飞机票多少钱一张,南京去海南飞机票多少钱一张,海南飞机票多少钱,郑州去海南飞机票多少钱一张  1元机场加速器官网,国外加速器app,shadowrock官方版,小飞机节点购买网站  黑洞加速下载器下载免费版ins,下载黑洞加速山海手游,黑洞app加速下载,黑洞加速器app官网下载免费3小时  十大破解版平台,平台入口,ios十大破解版平台韩漫日漫,ios手游破解版  喵云怎么注册,喵云加速器邀请码,喵云加速器官网,喵云下载