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Journal of Biomedical Optics
基本信息
期刊名称 | Journal of Biomedical Optics J BIOMED OPT |
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期刊ISSN | 1083-3668 |
期刊官方网站 | http://spie.org/x866.xml |
是否OA | Yes |
出版商 | SPIE |
出版周期 | Bimonthly |
文章处理费 | 登录后查看 |
始发年份 | 1996 |
年文章数 | 167 |
影响因子 | 3.0(2023) scijournal影响因子 greensci影响因子 |
中科院SCI期刊分区
大类学科 | 小类学科 | Top | 综述 |
---|---|---|---|
医学3区 | BIOCHEMICAL RESEARCH METHODS 生化研究方法3区 | 否 | 否 |
OPTICS 光学3区 | |||
RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING 核医学3区 |
CiteScore
CiteScore排名 | CiteScore | SJR | SNIP | ||
---|---|---|---|---|---|
学科 | 排名 | 百分位 | 6.4 | 0.779 | 1.392 |
Materials Science Electronic, Optical and Magnetic Materials |
73/284 | 74% |
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Physics and Astronomy Atomic and Molecular Physics, and Optics |
58/224 | 74% |
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Engineering Biomedical Engineering |
107/303 | 64% |
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Materials Science Biomaterials |
60/137 | 56% |
补充信息
自引率 | 10% |
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H-index | 123 |
SCI收录状况 | Science Citation Index Expanded |
官方审稿时间 | 登录后查看 |
网友分享审稿时间 | 数据统计中,敬请期待。 |
接受率 | 登录后查看 |
PubMed Central (PMC) | http://www.ncbi.nlm.nih.gov/nlmcatalog?term=1083-3668%5BISSN%5D |
投稿指南
期刊投稿网址 | http://jbo.msubmit.net/cgi-bin/main.plex |
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收稿范围 | Journal of Biomedical Optics (JBO) is a Gold Open Access journal that publishes peer-reviewed papers on innovations in optical systems and techniques that will improve health care and lead to discoveries in biomedical research. Growth in the capabilities of biomedical optical technology has fueled new areas of contrast, resolution, and spectral capacity in imaging and sensing, which have enabled widespread applications throughout biology and medicine. Topics suitable for JBO include significant in-depth studies of: fundamentally new discoveries in biomedical optical devices for imaging or sensing using: optical spectroscopy, near infrared spectroscopy, photoacoustics, microscopy, optical coherence, tomography, fluorescence, phosphorescence, elastography, hyperspectral, using features unique to optics such as spatial, spectral, temporal, interference, polarization, or quantum nature; increasing knowledge of light-tissue interaction, through theoretical transport models such as Monte Carlo, diffusion, electromagnetic and empirical methods, and through physical methods to model light–tissue interactions such as tissue-simulating phantoms; computational advances in optical image and signal processing, and image reconstruction, including new methods in machine learning and artificial intelligence that improve insight into the utility, detection, or performance value; novel medical optical systems used in definitive animal or human studies or clinical trial testing that can impact the field by their design or the optical innovation, including discoveries and technical advances in optics emerging from mobile, remote, wearable, or implantable technologies that can improve health and wellness; discoveries in photonics, nanophotonics, plasmonics, biosensors, and optical reporters that have direct relevance to biomedical needs or utility; hybrid imaging or interventional systems where optics are combined with other tools such as ultrasound, x-rays, magnetic resonance, molecular sensing, or electromagnetics. |
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