On textile biomedical engineering

被引:11
|
作者
Li Yi [1 ,2 ]
Zhang Xin [3 ]
Ying BaoAn [3 ]
机构
[1] Xian Polytech Univ, Coll Text Sci & Engn, Xian 710048, Shaanxi, Peoples R China
[2] Univ Manchester, Sch Mat, Manchester M13 9PL, Lancs, England
[3] Xian Polytech Univ, Res Ctr Clothing Engn & Technol, Apparel & Art Design Coll, Xian 710048, Shaanxi, Peoples R China
基金
欧盟地平线“2020”;
关键词
biomaterials; fibers; textile; biomedical; engineering; healthcare; smart; functions; nano; SOLUTION-ENHANCED DISPERSION; MOISTURE TRANSFER; COUPLED HEAT; SUPERCRITICAL CO2; MATHEMATICAL SIMULATION; PHYSICAL-MECHANISMS; LIQUID MOISTURE; POROUS TEXTILES; TACHYPLESIN-I; MODEL;
D O I
10.1007/s11431-018-9504-5
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The demand for advanced fiber biomaterials and medical devices has risen rapidly with the increasing of aging population in the world. To address this grand societal challenge, textile biomedical engineering (TBE) has been defined as a holistic and integrative approach of designing and engineering advanced fiber materials for fabricating textile structures and devices to achieve various functions such as drug delivery, tissue engineering and artificial implants, pressure therapy and thermal therapy, bioelectric/magnetic detection and stimulation for the medical treatment and rehabilitation of human body. TBE is multidisciplinary in nature and needs integration of cross disciplinary expertise in medical science, healthcare professionals, physiologists, scientists and engineers in chemistry, materials, mechanics, electronics, computing, textile and designers. Engineering fiber materials and designing textile devices for biomedical applications involve the integration of the fundamental research in physics, chemistry, mathematics, and computational science with the development of engineering principles and understanding on the relationship between textile materials/devices and human physiology, behaviour, medicine and health. Theoretical concepts have been advanced together with creating new knowledges created from molecules to cells, organs and body-textile systems, and developing advanced fiber materials, innovative textile devices and functional apparel products for healthcare, comfort, protection against harmful external environment, diseases prevention, diagnosis and treatment, as well as rehabilitations. A holistic, integrative and quantitative approach has been adopted for deriving the technical solutions of how to engineer fibers and textiles for the benefits of human health. This paper reviews the theoretical foundations for textile biomedical engineering and advances in the recent years.
引用
收藏
页码:945 / 957
页数:13
相关论文
共 50 条
  • [21] BIOMEDICAL ENGINEERING AND NATIONAL ACADEMY OF ENGINEERING
    TRUXAL, JG
    DEVEY, GB
    JOURNAL OF ENGINEERING EDUCATION, 1968, 59 (2P1) : 132 - &
  • [22] Bioethics in Biomedical Engineering
    Rondon, Jairo
    Muniz, Cristina
    Lugo, Claudio
    Farinas-Coronado, Wilfredo
    Gonzalez-Lizardo, Angel
    CIENCIA E INGENIERIA, 2024, 45 (02): : 159 - 168
  • [23] Biomedical engineering in China
    Huang, YC
    IEEE ENGINEERING IN MEDICINE AND BIOLOGY MAGAZINE, 1999, 18 (05): : 13 - 14
  • [24] BIOMEDICAL-ENGINEERING
    DRUEN, B
    DITTRICH, H
    HERZ KREISLAUF, 1977, 9 (05): : 332 - 333
  • [25] EDUCATION FOR BIOMEDICAL ENGINEERING
    JACOBS, JE
    ELECTRO-TECHNOLOGY, 1969, 84 (03): : 55 - &
  • [26] ADVANCING BIOMEDICAL ENGINEERING
    Falcioni, John G.
    MECHANICAL ENGINEERING, 2017, 139 (05) : 6 - 6
  • [27] BIOMEDICAL ENGINEERING AT KINGS
    不详
    BMJ-BRITISH MEDICAL JOURNAL, 1972, 4 (5840): : 604 - +
  • [28] BIOMEDICAL ENGINEERING MANPOWER
    DICKSON, JF
    AMERICAN JOURNAL OF SURGERY, 1967, 114 (01): : 167 - &
  • [29] BIOMEDICAL ENGINEERING TRAINING
    CROISSET.DH
    SUN, HH
    JACOBS, JE
    AMERICAN JOURNAL OF MEDICAL ELECTRONICS, 1965, 4 (02): : 19 - &
  • [30] Biomedical engineering in Israel
    Walker, CF
    IEEE ENGINEERING IN MEDICINE AND BIOLOGY MAGAZINE, 1998, 17 (05): : 6 - 9