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A Soft Electronic-Instrumented Cardi...
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Shin, Jane Hae Soo.
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A Soft Electronic-Instrumented Cardiac Patch for Minimally Invasive Delivery and Tissue Healing.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
A Soft Electronic-Instrumented Cardiac Patch for Minimally Invasive Delivery and Tissue Healing./
作者:
Shin, Jane Hae Soo.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2019,
面頁冊數:
56 p.
附註:
Source: Masters Abstracts International, Volume: 81-02.
Contained By:
Masters Abstracts International81-02.
標題:
Biomedical engineering. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=13814615
ISBN:
9781085571784
A Soft Electronic-Instrumented Cardiac Patch for Minimally Invasive Delivery and Tissue Healing.
Shin, Jane Hae Soo.
A Soft Electronic-Instrumented Cardiac Patch for Minimally Invasive Delivery and Tissue Healing.
- Ann Arbor : ProQuest Dissertations & Theses, 2019 - 56 p.
Source: Masters Abstracts International, Volume: 81-02.
Thesis (M.S.)--Boston University, 2019.
This item must not be sold to any third party vendors.
Engineering cardiac tissues has attracted increasing attention in regenerative medicine. Human cardiac tissue has a complex and unique structure with intricately embedded vasculature network, making engineering cardiac tissue a challenge. This work aims to ultimately use three-dimensional (3D) extrusion bioprinting to engineer a myocardium that closely mimics the structure of its native counterpart with an embedded sensor for monitoring. We have specifically optimized the bioprinting parameters and the bioink composition. We also modified surface chemistry in order to bind two different materials. This provides a way to chemically attach the sensor mesh to a bioprinted cardiac construct. The developed cardiac patch can be used to replace the damaged or diseased cardiac tissues with the potential for non-invasive monitoring.
ISBN: 9781085571784Subjects--Topical Terms:
535387
Biomedical engineering.
Subjects--Index Terms:
Human cardiac tissue
A Soft Electronic-Instrumented Cardiac Patch for Minimally Invasive Delivery and Tissue Healing.
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