Journal Title:Photoacoustics
The aim of the open access Photoacoustics journal (PACS) is to publish original research and review contributions within the fast growing field of photoacoustics (optoacoustics) and thermoacoustics, which exploits optically and electromagnetically excited acoustical and thermal phenomena for visualization and characterization of a variety of materials and biological tissues, including living organisms. While some of the spectroscopic and photothermal applications have reached a mature state, many other research directions experience an explosive growth, in particular biomedical photoacoustics, which is currently considered the fastest growing bio-imaging modality. The wealth of investigated topics clearly indicates that this field has developed a broad range of tools for fundamental and applied research. The enormous recent progress is greatly supported by the advances in laser technologies, ultrasound detection approaches, development of inverse theory and fast reconstruction algorithms. This progress is also driven by a large number of unmet biological and medical needs that can be addressed by the unique contrast mechanisms available to photoacoustic (optoacoustic) methods. These include pre-clinical research and clinical imaging of vasculature, tissue and disease physiology, drug efficacy and treatment monitoring, optical anatomy and molecular imaging employing fluorochromes, chromophores and nanoparticles. Correspondingly applications span the entire range of biological and medical imaging including cancer, cardiovascular diseases, neuroimaging, ophthalmology or imaging in immunology, diabetes and obesity, cell trafficking application and a multitude of other biological functions. The multi-disciplinarily nature of photoacoustics and thermoacoustics is also evinced by the growing contribution from chemistry and nanotechnology where a multitude of novel contrast materials and agents have been constantly developed, from nanoparticles and organic dyes, to targeted agents and genetically expressed markers.
开放获取光声学期刊 (PACS) 的目的是在快速发展的光声学(光声学)和热声学领域发表原创研究和评论贡献,该领域利用光学和电磁激发的声学和热现象来可视化和表征各种材料和生物组织,包括活的有机体。虽然一些光谱和光热应用已经达到成熟状态,但许多其他研究方向经历了爆炸式增长,特别是生物医学光声学,它目前被认为是增长最快的生物成像方式。丰富的研究主题清楚地表明,该领域已经为基础和应用研究开发了广泛的工具。激光技术、超声检测方法、逆理论的发展和快速重建算法的进步极大地支持了最近的巨大进步。这一进展也受到大量未满足的生物和医学需求的推动,这些需求可以通过光声(光声)方法可用的独特对比机制来解决。这些包括脉管系统、组织和疾病生理学、药物疗效和治疗监测、光学解剖学和使用荧光染料、生色团和纳米粒子的分子成像的临床前研究和临床成像。相应的应用涵盖了整个生物和医学成像范围,包括癌症、心血管疾病、神经成像、眼科或免疫学成像、糖尿病和肥胖症、细胞运输应用以及许多其他生物功能。光声学和热声学的多学科性质也体现在化学和纳米技术的日益增长的贡献中,从纳米粒子和有机染料到靶向剂和基因表达标记物,大量新型对比材料和试剂不断被开发出来。 p>
Photoacoustics创刊于2013年,由ELSEVIER GMBH出版商出版,收稿方向涵盖Physics and Astronomy - Atomic and Molecular Physics, and Optics全领域,在行业领域中学术影响力很大,属于TOP期刊,国际一流期刊,关注度和专业度非常高,所以对原创文章要求创新性很高,过审难度很高,如果您有志于TOP期刊,建议关注此刊。影响因子指数5.87,该期刊近期没有被列入国际期刊预警名单,广大学者值得一试。
大类学科 | 分区 | 小类学科 | 分区 | Top期刊 | 综述期刊 |
工程技术 | 2区 | INSTRUMENTS & INSTRUMENTATION 仪器仪表 ENGINEERING, BIOMEDICAL 工程:生物医学 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING 核医学 | 1区 2区 2区 | 是 | 是 |
名词解释:
中科院分区也叫中科院JCR分区,基础版分为13个大类学科,然后按照各类期刊影响因子分别将每个类别分为四个区,影响因子5%为1区,6%-20%为2区,21%-50%为3区,其余为4区。
WOS分区等级 | JCR所属学科 | 分区 |
Q1 | ENGINEERING, BIOMEDICAL INSTRUMENTS & INSTRUMENTATION RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Q1 Q1 Q1 |
名词解释:
WOS即Web of Science,是全球获取学术信息的重要数据库,Web of Science包括自然科学、社会科学、艺术与人文领域的信息,来自全世界近9,000种最负盛名的高影响力研究期刊及12,000多种学术会议多学科内容。给期刊分区时会按照某一个学科领域划分,根据这一学科所有按照影响因子数值降序排名,然后平均分成4等份,期刊影响因子值高的就会在高分区中,最后的划分结果分别是Q1,Q2,Q3,Q4,Q1代表质量最高。
CiteScore | SJR | SNIP | CiteScore排名 | ||||||||||||
13.40 | 2.134 | 2.433 |
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名词解释:
CiteScore:衡量期刊所发表文献的平均受引用次数。
SJR:SCImago 期刊等级衡量经过加权后的期刊受引用次数。引用次数的加权值由施引期刊的学科领域和声望 (SJR) 决定。
SNIP:每篇文章中来源出版物的标准化影响将实际受引用情况对照期刊所属学科领域中预期的受引用情况进行衡量。
是否OA开放访问: | h-index: | 年文章数: |
开放 | -- | 64 |
Gold OA文章占比: | 2021-2022最新影响因子(数据来源于搜索引擎): | 开源占比(OA被引用占比): |
88.57% | 7.9 | 0.99... |
研究类文章占比:文章 ÷(文章 + 综述) | 期刊收录: | 中科院《国际期刊预警名单(试行)》名单: |
97.87% | SCI、SCIE | 否 |
历年IF值(影响因子):
历年引文指标和发文量:
历年中科院JCR大类分区数据:
历年自引数据:
2019-2021国家/地区发文量统计:
国家/地区 | 数量 |
USA | 52 |
CHINA MAINLAND | 22 |
GERMANY (FED REP GER) | 22 |
England | 12 |
Canada | 11 |
Netherlands | 8 |
Russia | 8 |
South Korea | 5 |
Switzerland | 5 |
Austria | 4 |
2019-2021机构发文量统计:
机构 | 数量 |
HELMHOLTZ ASSOCIATION | 13 |
TECHNICAL UNIVERSITY OF MUNICH | 13 |
CHINESE ACADEMY OF SCIENCES | 7 |
UNIVERSITY OF TORONTO | 7 |
LOMONOSOV MOSCOW STATE UNIVERSIT... | 6 |
RYERSON UNIVERSITY | 6 |
ITHERA MED GMBH | 5 |
RUSSIAN ACADEMY OF SCIENCES | 5 |
SAINT MICHAELS HOSPITAL TORONTO | 5 |
UNIVERSITY OF CALIFORNIA SYSTEM | 5 |
近年引用统计:
期刊名称 | 数量 |
J BIOMED OPT | 181 |
OPT LETT | 109 |
PHOTOACOUSTICS | 92 |
BIOMED OPT EXPRESS | 83 |
SCI REP-UK | 79 |
OPT EXPRESS | 48 |
PHYS MED BIOL | 40 |
J BIOPHOTONICS | 36 |
MED PHYS | 36 |
IEEE T MED IMAGING | 35 |
近年被引用统计:
期刊名称 | 数量 |
PHOTOACOUSTICS | 92 |
J BIOMED OPT | 44 |
BIOMED OPT EXPRESS | 28 |
J BIOPHOTONICS | 25 |
PHYS MED BIOL | 25 |
SENSORS-BASEL | 23 |
OPT LETT | 16 |
APPL SCI-BASEL | 14 |
IEEE T MED IMAGING | 13 |
LIGHT-SCI APPL | 13 |
近年文章引用统计:
文章名称 | 数量 |
Photoacoustic clinical imaging | 59 |
A review of clinical photoacoust... | 35 |
Hand-held optoacoustic imaging: ... | 27 |
Review on practical photoacousti... | 26 |
Photoacoustic tomography of bloo... | 26 |
The characterization of an econo... | 24 |
Current and future trends in pho... | 20 |
Real-time delay-multiply-and-sum... | 19 |
Clinical optoacoustic imaging co... | 19 |
Photoacoustic tomography for hum... | 16 |
同类学科的其他优质期刊 | 影响因子 | 中科院分区 |
Digital Signal Processing | 2.871 | 3区 |
International Journal Of Multiphase Flow | 3.083 | 2区 |
Journal Of Cellular Plastics | 1.925 | 4区 |
Journal Of Simulation | 1.214 | 4区 |
South African Journal Of Industrial Engineering | 0.488 | 4区 |
Propellants Explosives Pyrotechnics | 1.544 | 4区 |
Aiaa Journal | 2.108 | 3区 |
Journal Of Fluid Mechanics | 3.354 | 2区 |
Proceedings Of The Institution Of Mechanical Engineers Part H-journal Of Enginee | 1.282 | 4区 |
Journal Of Microwave Power And Electromagnetic Energy | 1.237 | 4区 |
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