高级检索
当前位置: 首页 > 详情页

Embedded 3D printing of engineered lung cancer model for assisting fine-needle aspiration biopsy

文献详情

资源类型:
WOS体系:
Pubmed体系:

收录情况: ◇ SCIE

机构: [1]Department of Mechanical Engineering, University of Nevada, Reno, Reno, NV, USA [2]State Key Laboratory of High-Performance Precision Manufacturing, School of Mechanical Engineering, Dalian University of Technology, Dalian, Liaoning, China [3]Department of Thoracic Surgery, Affiliated Hospital of Hebei University, Baoding, Hebei, China [4]Department of Chemistry, University of Nevada, Reno, Reno, NV, USA [5]Department of Medical Oncology, Affiliated Hospital of Hebei University, Baoding, Hebei, China
出处:
ISSN:

关键词: embedded 3D printing respiratory tract-blood vessel system yield-stress fluid lung cancer fine-needle aspiration biopsy

摘要:
Lung cancer is a serious global health issue that requires the development of patient-specific, lung cancer model for surgical planning to train interventionalists and improve the accuracy of biopsies. Although the emergence of three-dimensional (3D) printing provides a promising solution to create customized models with complicated architectures, current 3D printing methods cannot accurately duplicate anatomical-level lung constructs with tumor(s) which are applicable for hands-on training and procedure planning. To address this issue, an embedded printing strategy is proposed to create respiratory bronchioles, blood vessels, and tumors in a photocurable yield-stress matrix bath. After crosslinking, a patient-specific lung cancer analogous model is produced, which has tunable transparency and mechanical properties to mimic lung parenchyma. This engineered model not only enables the practical training of fine-needle aspiration biopsy but also provides the necessary information, such as coordinates of aspiration, wound depth, and interference with surrounding tissues, for procedure optimization.© 2024 IOP Publishing Ltd. All rights, including for text and data mining, AI training, and similar technologies, are reserved.

基金:
语种:
WOS:
PubmedID:
中科院(CAS)分区:
出版当年[2026]版:
最新[2025]版:
大类 | 2 区 医学
小类 | 2 区 工程:生物医学 2 区 材料科学:生物材料
JCR分区:
出版当年[2025]版:
最新[2023]版:
Q1 ENGINEERING, BIOMEDICAL Q1 MATERIALS SCIENCE, BIOMATERIALS

影响因子: 最新[2023版] 最新五年平均 出版当年[2025版] 出版当年五年平均 出版前一年[2024版]

第一作者:
第一作者机构: [1]Department of Mechanical Engineering, University of Nevada, Reno, Reno, NV, USA
共同第一作者:
通讯作者:
推荐引用方式(GB/T 7714):
APA:
MLA:

资源点击量:15679 今日访问量:0 总访问量:1035 更新日期:2025-06-01 建议使用谷歌、火狐浏览器 常见问题

版权所有©2020 河北大学附属医院 技术支持:重庆聚合科技有限公司 地址:保定市莲池区裕华东路212号