1932-1058
生物
Quarterly
No
1932-1058
BIOMICROFLUIDICS
2007
114
UNITED STATES
約1.0個月審稿時間
3區(qū)中科院分區(qū)
較易平均錄用比例
2.531影響因子
生化研究方法小學(xué)科
《生物微流體學(xué)》(BMF)是由AIP出版社出版的在線期刊,旨在快速傳播與微流體和納米流體現(xiàn)象相關(guān)的基本物理化學(xué)機(jī)制的研究。BMF還發(fā)表了獨(dú)特的微流體和納米流體技術(shù)的研究,用于診斷、醫(yī)學(xué)、生物、制藥、環(huán)境和化學(xué)應(yīng)用。BMF提供快速出版,多媒體能力,并在學(xué)術(shù),國家和工業(yè)實(shí)驗(yàn)室之間的全球流通。主要關(guān)注高質(zhì)量的原創(chuàng)研究文章,BMF還組織了特殊的章節(jié),幫助解釋和定義生物微流體跨學(xué)科領(lǐng)域特有的特定挑戰(zhàn)。微流體和納米流體驅(qū)動(電動力學(xué)、聲流體、光流體、毛細(xì)管)液體活檢(microRNA profiling,循環(huán)腫瘤細(xì)胞分離,外泌體分離,循環(huán)腫瘤DNA定量)細(xì)胞分類、操作和轉(zhuǎn)染(di/電泳、磁珠、光學(xué)陷阱、電穿孔)分子分離與濃度(等速電泳、濃差極化、di/電泳、磁珠、納米粒子)細(xì)胞培養(yǎng)與分析(單細(xì)胞檢測、刺激反應(yīng)、干細(xì)胞轉(zhuǎn)染)基因組和蛋白質(zhì)組分析(快速基因測序,DNA/蛋白質(zhì)/碳水化合物陣列)生物傳感器(免疫測定、核酸熒光測定、比色測定、酶擴(kuò)增、等離子體和拉曼納米報(bào)告子、分子信標(biāo)、熒光共振峰、適配體、納米孔、光纖)生物物理運(yùn)輸和特性(DNA,單蛋白,離子通道和膜動力學(xué),細(xì)胞運(yùn)動和通訊機(jī)制,電生理學(xué),貼片夾緊)潤濕、納米流變和液滴平臺(數(shù)字PCR和數(shù)字液滴平臺、表面聲波、表面圖案)病原體檢測和定點(diǎn)診斷(分子診斷、聚合物生物芯片、紙基檢測、薄膜芯片、試紙棒、混合設(shè)計(jì))離子團(tuán)傳感器(膜、凝膠、電化學(xué))生物芯片制造與制造(3D架構(gòu)、3D原型、紙制品、聚合物芯片、玻璃芯片、橫向流芯片)藥物傳遞與發(fā)現(xiàn)平臺(高通量篩選平臺、生物標(biāo)志物/通路發(fā)現(xiàn)、基因/細(xì)胞治療)生物材料合成與組織工程(流體聚焦、納米纖維靜電紡絲、水凝膠支架、可穿戴傳感器)燃料和太陽能電池(生物燃料電池、染料敏化太陽能電池、直接甲醇燃料電池、能量收集裝置)主要關(guān)注高質(zhì)量、原創(chuàng)的研究文章,BMF組織了特殊的章節(jié),幫助解釋和定義生物微流體跨學(xué)科領(lǐng)域特有的特殊挑戰(zhàn)。
http://bmf.peerx-press.org/cgi-bin/main.plex
Biomicrofluidics (BMF) is an online-only journal published by AIP Publishing to rapidly disseminate research in fundamental physicochemical mechanisms associated with microfluidic and nanofluidic phenomena. BMF also publishes research in unique microfluidic and nanofluidic techniques for diagnostic, medical, biological, pharmaceutical, environmental, and chemical applications.BMF offers quick publication, multimedia capability, and worldwide circulation among academic, national, and industrial laboratories. With a primary focus on high-quality original research articles, BMF also organizes special sections that help explain and define specific challenges unique to the interdisciplinary field of biomicrofluidics.Microfluidic and nanofluidic actuation (electrokinetics, acoustofluidics, optofluidics, capillary)Liquid Biopsy (microRNA profiling, circulating tumor cell isolation, exosome isolation, circulating tumor DNA quantification)Cell sorting, manipulation, and transfection (di/electrophoresis, magnetic beads, optical traps, electroporation)Molecular Separation and Concentration (isotachophoresis, concentration polarization, di/electrophoresis, magnetic beads, nanoparticles)Cell culture and analysis(single cell assays, stimuli response, stem cell transfection)Genomic and proteomic analysis (rapid gene sequencing, DNA/protein/carbohydrate arrays)Biosensors (immuno-assay, nucleic acid fluorescent assay, colorimetric assay, enzyme amplification, plasmonic and Raman nano-reporter, molecular beacon, FRET, aptamer, nanopore, optical fibers)Biophysical transport and characterization (DNA, single protein, ion channel and membrane dynamics, cell motility and communication mechanisms, electrophysiology, patch clamping)Wetting, nano-rheology, and droplet platforms (digital PCR and digital droplet platforms, surface acoustic waves, surface patterning)Pathogen detection and point-of-care diagnostics (molecular diagnostics, polymer biochips, paper-based assays, membrane chips, dip-stick, hybrid designs)Ionophore sensors(membranes, gel, electrochemical)Biochip fabrication and manufacturing (3D architecture, 3D prototyping, paper devices, polymer chips, glass chips, lateral flow chips)Drug delivery and discovery platforms (high throughput screening platforms, biomarker/pathway discovery, gene/cell therapy)Biomaterials synthesis and tissue engineering (flow focusing, nanofiber electrospinning, hydrogel scaffolds, wearable sensors)Fuel and solar cells (biofuel cells, dye-sensitized solar cells, direct methanol fuel cells, energy harvesting devices)With a primary focus on high-quality, original research articles, BMF organizes special sections that help explain and define specific challenges unique to the interdisciplinary field of biomicrofluidics.
大類學(xué)科 | 分區(qū) | 小類學(xué)科 | 分區(qū) | Top期刊 | 綜述期刊 |
工程技術(shù) | 3區(qū) | BIOCHEMICAL RESEARCH METHODS 生化研究方法 BIOPHYSICS 生物物理 NANOSCIENCE & NANOTECHNOLOGY 納米科技 PHYSICS, FLUIDS & PLASMAS 物理:流體與等離子體 | 3區(qū) 4區(qū) 4區(qū) 4區(qū) | 否 | 否 |
JCR分區(qū)等級 | JCR所屬學(xué)科 | 分區(qū) | 影響因子 |
Q2 | PHYSICS, FLUIDS & PLASMAS | Q2 | 3.258 |
BIOCHEMICAL RESEARCH METHODS | Q3 | ||
NANOSCIENCE & NANOTECHNOLOGY | Q3 | ||
BIOPHYSICS | Q3 |
CiteScore | SJR | SNIP | 學(xué)科類別 | 分區(qū) | 排名 | 百分位 |
5.50 | 0.584 | 0.708 | 大類:Chemical Engineering 小類:Fluid Flow and Transfer Processes | Q1 | 16 / 87 |
82% |
大類:Chemical Engineering 小類:Condensed Matter Physics | Q1 | 100 / 415 |
76% |
|||
大類:Chemical Engineering 小類:General Materials Science | Q2 | 135 / 455 |
70% |
|||
大類:Chemical Engineering 小類:Biomedical Engineering | Q2 | 89 / 252 |
64% |
|||
大類:Chemical Engineering 小類:Colloid and Surface Chemistry | Q2 | 9 / 20 |
57% |
影響因子 | h-index | Gold OA文章占比 | 研究類文章占比 | OA開放訪問 | 平均審稿速度 |
3.258 | 51 | 11.15% | 86.36% | 未開放 | 約1.0個月 |
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立即咨詢大類學(xué)科同領(lǐng)域優(yōu)質(zhì)期刊 | 大類學(xué)科 | 小類學(xué)科 | 影響因子 | 分區(qū) | ISSN |
---|---|---|---|---|---|
Algorithms for Molecular Biology | 生物 | 生化研究方法 | 1.585 | N/A | 1748-7188 |
ANALYTICAL BIOCHEMISTRY | 生物 | 生化研究方法 | 2.507 | 3區(qū) | 0003-2697 |
BioChip Journal | 生物 | 生化研究方法 | 1.95 | N/A | 1976-0280 |
BIOCONJUGATE CHEMISTRY | 生物 | 生化研究方法 | 4.349 | N/A | 1043-1802 |
BIOINFORMATICS | 生物 | 生化研究方法 | 4.531 | 2區(qū) | 1367-4803 |
BIOLOGICAL PROCEDURES ONLINE | 生物 | 生化研究方法 | 4.094 | N/A | 1480-9222 |
BIOLOGICALS | 生物 | 生化研究方法 | 1.96 | 4區(qū) | 1045-1056 |
BIOMEDICAL CHROMATOGRAPHY | 生物 | 生化研究方法 | 1.748 | N/A | 0269-3879 |
Biomicrofluidics | 生物 | 生化研究方法 | 2.531 | 3區(qū) | 1932-1058 |
Biotechnology Journal | 生物 | 生化研究方法 | 3.543 | 2區(qū) | 1860-6768 |
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