Biointerphases

Biointerphases

BIOINTERPHASES
影响因子:1.9
是否综述期刊:
是否预警:不在预警名单内
是否OA:
出版国家/地区:UNITED STATES
出版社:Springer Berlin Heidelberg
发刊时间:2006
发刊频率:Quarterly
收录数据库:SCIE/Scopus收录
ISSN:1559-4106

期刊介绍

Biointerphases emphasizes quantitative characterization of biomaterials and biological interfaces. As an interdisciplinary journal, a strong foundation of chemistry, physics, biology, engineering, theory, and/or modelling is incorporated into originated articles, reviews, and opinionated essays. In addition to regular submissions, the journal regularly features In Focus sections, targeted on specific topics and edited by experts in the field. Biointerphases is an international journal with excellence in scientific peer-review. Biointerphases is indexed in PubMed and the Science Citation Index (Clarivate Analytics). Accepted papers appear online immediately after proof processing and are uploaded to key citation sources daily. The journal is based on a mixed subscription and open-access model: Typically, authors can publish without any page charges but if the authors wish to publish open access, they can do so for a modest fee.Topics include:bio-surface modificationnano-bio interfaceprotein-surface interactionscell-surface interactionsin vivo and in vitro systemsbiofilms / biofoulingbiosensors / biodiagnosticsbio on a chipcoatingsinterface spectroscopybiotribology / biorheologymolecular recognitionambient diagnostic methodsinterface modellingadhesion phenomena.
生物界面强调生物材料和生物界面的定量表征。作为一个跨学科期刊,化学、物理、生物、工程、理论和/或建模的坚实基础被纳入原创文章、评论和固执己见的论文。除了定期投稿外,该杂志还定期推出专门针对特定主题并由该领域专家编辑的“焦点”部分。《生物界面》是一本国际性的学术期刊。生物界面在PubMed和科学引文索引(Clarivate Analytics)中被编入索引。被接受的论文在证明处理后立即出现在网上,并每天上传到关键的引用源。该期刊基于混合订阅和开放获取模式:一般来说,作者可以免费出版,但如果作者希望出版开放获取,他们可以支付适度的费用。主题包括:生物表面修饰纳米生物界面蛋白质表面相互作用细胞表面相互作用体内和体外系统生物膜/生物污染生物传感器/生物诊断芯片上的生物涂层界面光谱生物摩擦学/生物流变学分子识别环境诊断方法界面建模粘附现象。
年发文量 36
国人发稿量 6
国人发文占比 0.17%
自引率 -
平均录取率0
平均审稿周期 -
版面费 -
偏重研究方向 生物-材料科学:生物材料
期刊官网 https://www.springer.com/journal/13758
投稿链接 http://biointerphases.peerx-press.org/cgi-bin/main.plex

期刊高被引文献

Calcium phosphate nanoparticles as intrinsic inorganic antimicrobials: In search of the key particle property.
来源期刊:BiointerphasesDOI:10.1116/1.5090396
Bioink formulations to ameliorate bioprinting-induced loss of cellular viability.
来源期刊:BiointerphasesDOI:10.1116/1.5111392
Biological actions of Cu/Zn coimplanted TiN on Ti-6Al-4V alloy.
来源期刊:BiointerphasesDOI:10.1116/1.5116640
Biofunctionalized silk fibroin nanofibers for directional and long neurite outgrowth.
来源期刊:BiointerphasesDOI:10.1063/1.5120738
Loading the dice: The orientation of virus-like particles adsorbed on titanate assisted organosilanized surfaces.
来源期刊:BiointerphasesDOI:10.1116/1.5077010
Layer-by-layer constructed hyaluronic acid/chitosan multilayers as antifouling and fouling-release coatings.
来源期刊:BiointerphasesDOI:10.1116/1.5110887
Toxicity and photosensitizing assessment of gelatin methacryloyl-based hydrogels photoinitiated with lithium phenyl-2,4,6-trimethylbenzoylphosphinate in human primary renal proximal tubule epithelial cells.
来源期刊:BiointerphasesDOI:10.1116/1.5095886
Effect of TiO2 and Fe doped TiO2 nanoparticles on mitochondrial membrane potential in HBL-100 cells.
来源期刊:BiointerphasesDOI:10.1116/1.5097643
Amyloid-like peptide nanofibrils as scaffolds for tissue engineering: Progress and challenges (Review).
来源期刊:BiointerphasesDOI:10.1116/1.5098332
Titanium surface modifications and their soft-tissue interface on nonkeratinized soft tissues-A systematic review (Review).
来源期刊:BiointerphasesDOI:10.1116/1.5113607
Early-stage corrosion, ion release, and the antibacterial effect of copper and cuprous oxide in physiological buffers: Phosphate-buffered saline vs Na-4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid.
来源期刊:BiointerphasesDOI:10.1063/1.5123039
Impacts of cross-linker chain length on the physical properties of polyampholyte hydrogels.
来源期刊:BiointerphasesDOI:10.1116/1.5097412
Influence of chlorides and phosphates on the antiadhesive, antibacterial, and electrochemical properties of an electroplated copper-silver alloy.
来源期刊:BiointerphasesDOI:10.1116/1.5088936
Effect of monophasic pulsed stimulation on live single cell de-adhesion on conducting polymers with adsorbed fibronectin as revealed by single cell force spectroscopy.
来源期刊:BiointerphasesDOI:10.1116/1.5082204
Combining the geometry of folded paper with liquid-infused polymer surfaces to concentrate and localize bacterial solutions.
来源期刊:BiointerphasesDOI:10.1116/1.5114804
Protein adsorption dynamics to polymer surfaces revisited-A multisystems approach.
来源期刊:BiointerphasesDOI:10.1116/1.5121249
Submicron polymeric particles accelerate insulin fibrillation by surface adsorption.
来源期刊:BiointerphasesDOI:10.1116/1.5083821
ToF-SIMS and TIRF microscopy investigation on the effects of HEMA copolymer surface chemistry on spatial localization, surface intensity, and release of fluorescently labeled keratinocyte growth factor.
来源期刊:BiointerphasesDOI:10.1116/1.5119871
Combined influence of nitric oxide and surface roughness in biofilm reduction across bacteria strains.
来源期刊:BiointerphasesDOI:10.1116/1.5089246
Comparison of the linking arm effect on the biological performance of a CD31 agonist directly grafted on L605 CoCr alloy by a plasma-based multistep strategy.
来源期刊:BiointerphasesDOI:10.1116/1.5120902
Rapid evaluation of immobilized immunoglobulins using automated mass-segmented ToF-SIMS.
来源期刊:BiointerphasesDOI:10.1063/1.5121450
Analysis of early cellular responses of anterior cruciate ligament fibroblasts seeded on different molecular weight polycaprolactone films functionalized by a bioactive poly(sodium styrene sulfonate) polymer.
来源期刊:BiointerphasesDOI:10.1116/1.5102150
Replica moulded poly(dimethylsiloxane) microwell arrays induce localized endothelial cell immobilization for coculture with pancreatic islets.
来源期刊:BiointerphasesDOI:10.1116/1.5087737
Cytoskeletal synchronization of CHO cells with polymer functionalized fullerene C60.
来源期刊:BiointerphasesDOI:10.1116/1.5084002
Direct immobilization of sugar probes on bovine serum albumin-coated gold substrate for the development of glycan biosensors.
来源期刊:BiointerphasesDOI:10.1116/1.5082005
Advances in materials for cellular applications (Review).
来源期刊:BiointerphasesDOI:10.1116/1.5083803
Alternating electric fields induce a period-dependent motion of Escherichia coli in three-dimension near a conductive surface.
来源期刊:BiointerphasesDOI:10.1116/1.5078543
Peak selection matters in principal component analysis: A case study of syntrophic microbes.
来源期刊:BiointerphasesDOI:10.1116/1.5118237
Predominant surface property of an anodized titanium that enhances the cell response.
来源期刊:BiointerphasesDOI:10.1116/1.5108542
Mechanistic predictions of the influence of collagen-binding domain sequences on human LL37 interactions with model lipids using quartz crystal microbalance with dissipation.
来源期刊:BiointerphasesDOI:10.1116/1.5089759
Preparation and characterization of DNA array slides via surface Michael addition.
来源期刊:BiointerphasesDOI:10.1063/1.5124411
Improved ion imaging of slowly dried neurons and skin cells by graphene cover in time-of-flight secondary ion mass spectrometry.
来源期刊:BiointerphasesDOI:10.1116/1.5118259
Atmospheric pressure mass spectrometric imaging of bio-tissue specimen using electrospray-assisted CW laser desorption and ionization source.
来源期刊:BiointerphasesDOI:10.1116/1.5099563
Effect of the nonspecific binding in differential impedance biosensing.
来源期刊:BiointerphasesDOI:10.1116/1.5082717
Bioprospecting solid binding polypeptides for lithium ion battery cathode materials.
来源期刊:BiointerphasesDOI:10.1116/1.5111735
Highly-reactive haloester surface initiators for ARGET ATRP readily prepared by radio frequency glow discharge plasma.
来源期刊:BiointerphasesDOI:10.1116/1.5110163

质量指标占比

研究类文章占比 OA被引用占比 撤稿占比 出版后修正文章占比
83.33%14.96%--

相关指数

影响因子
影响因子
年发文量
自引率
Cite Score

预警情况

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时间 预警情况
2025年03月发布的2025版不在预警名单中
2024年02月发布的2024版不在预警名单中
2023年01月发布的2023版不在预警名单中
2021年12月发布的2021版不在预警名单中
2020年12月发布的2020版不在预警名单中
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WOS分区等级:Q3区
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WOS期刊SCI分区
WOS期刊SCI分区是指SCI官方(Web of Science)为每个学科内的期刊按照IF数值排 序,将期刊按照四等分的方法划分的Q1-Q4等级,Q1代表质量最高,即常说的1区期刊。
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BIOPHYSICS
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版本 大类学科 小类学科 Top期刊 综述期刊
2025年3月最新升级版
医学4区
BIOPHYSICS 生物物理
4区
MATERIALS SCIENCE, BIOMATERIALS 材料科学:生物材料
4区
2023年12月升级版
医学4区
BIOPHYSICS 生物物理
4区
MATERIALS SCIENCE, BIOMATERIALS 材料科学:生物材料
4区
2022年12月旧的升级版
工程技术4区
BIOPHYSICS 生物物理
4区
MATERIALS SCIENCE, BIOMATERIALS 材料科学:生物材料
4区