出版國家:United States
出版周期:雙月刊
影響因子:2.368
研究領域:生物醫(yī)學工程
5年影響因子:3.076
國外數(shù)據(jù)庫收錄:IM,2.368" />
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您現(xiàn)在的位置: 醫(yī)學全在線 > 醫(yī)學論文 > SCI期刊 > 正文:BIOMEDICAL MICRODEVICES if:2.368
    

BIOMEDICAL MICRODEVICES


BIOMEDICAL MICRODEVICES
影響因子: 2.368
I S S N: 1387-2176
出 版 社: Kluwer Academic Publishers
出 版 地: Boston
出版國家: United States
刊  期: 雙月刊
創(chuàng)刊時間: 1998
語  種: 英文
審稿周期: 偏慢,4-8周
中科院分區(qū): 3
投稿命中率: 較易
國外數(shù)據(jù)庫收錄: IM
中國收錄文章數(shù): 45
5年影響因子: 3.076
研究領域: 生物醫(yī)學工程
官方鏈接: http://link.springer.com/journal/10544
投稿須知: http://link.springer.com/journal/10544

期刊介紹:

Biomedical Microdevices is an interdisciplinary periodical devoted to all aspects of research in the diagnostic and therapeutic applications of Micro-Electro-Mechanical Systems (MEMS) microfabrication and nanotechnology. General subjects of interest include the design characterization testing modeling and clinical validation of microfabricated systems and their integration on-chip and in larger functional units. The specific interests of the Journal include systems for neural stimulation and recording bioseparation technologies such as nanofilters and electrophoretic equipment miniaturized analytic and DNA identification systems biosensors and microtechnologies for cell and tissue research tissue engineering cell transplantation and the controlled release of drugs and therapeutic proteins. Contributions reporting on fundamental and applied investigations of the material science biochemistry and physics of biomedical microdevices are encouraged. A non-exhaustive list of fields of interest includes: biochemical modification with reference to non-specific protein adsorption and the active immobilization and patterning of proteins on microfabricated surfaces; the dynamics of fluids in micro-and-nano-fabricated channels; the electromechanical and structural response of microfabricated systems; the interactions of microdevices with cells and tissues including biocompatibility and biodegradation studies; the variation of the characteristics of the systems as function of the microfabrication parameters.
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