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Photoacoustics

Photoacoustics Q1

  • 期刊收录:
  • SCIE
  • Scopus
  • DOAJ
基本信息
  • 期刊ISSN:

    2213-5979

  • 期刊简拼:

    PHOTOACOUSTICS

  • 年发文章数:

    129

  • E-ISSN:

  • Gold OA文章占比

    92.60%

  • 研究文章占比:

    100.00%

  • 是否OA:

    Yes

  • Jcr分区:

    Q1

  • 中科院分区:

    1区

出版信息
  • 出版商:

    Elsevier GmbH

  • 涉及研究方向:

    Physics and Astronomy-Atomic and Molecular Physics, and Optics

  • 出版国家:

    Germany

  • 出版语言:

    English

  • 出版周期:

    Quarterly

  • 出版年份:

    2013

  • 2023-2024最新影响因子:7.1
  • 自引率:19.70%
  • 五年影响因子:7.2
  • JCI期刊引文指标:2.11
  • h-index:暂无h-index数据
  • CiteScore:11.40

期刊简介

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-thermoacoustics, which exploits acoustical and ultrasonic phenomena excited by electromagnetic radiation for purposes of detection, visualization, and characterization of a variety of materials and biological tissues, including living organisms.

Many research directions in photoacoustics, especially biomedical optoacoustic imaging experience explosive growth in the 21st century. The wealth of investigated topics 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 of molecular absorption available to photoacoustic - optoacoustic - thermoacoustic methods. These include pre-clinical research and clinical imaging of vasculature, tissue and disease physiology, drug efficacy, surgery guidance, and therapy monitoring. Correspondingly applications span the entire range of medical imaging and sensing applications including cancer, vascular diseases, brain neurophysiology, ophthalmology, and diabetes. Recent technological advances enabled cell trafficking applications and measurements of a multitude of other biological functions. The multidisciplinary nature of photoacoustics - optoacoustics - thermoacoustics is also evidenced by the growing contribution from chemistry and nanotechnology where a variety of novel biodegradable materials from nanoparticles to organic dyes, to targeted agents, theranostic probes and genetically expressed markers are being actively developed. Significant enhancement of the signal-to-noise ratio and tissue contrast in photoacoustic methods has been achieved employing these advanced materials.

While some of the spectroscopic and sensing applications in non-biomedical materials have reached a mature state, Photoacoustics supports the research community that develops novel industrial and environmental applications, nondestructive evaluation of materials and new ultrawideband transducers (piezoelectric, capacitive and optical) for sensitive detection of photoacoustic - optoacoustic - thermoacoustic signals.

The list of topics of interest includes (but is not limited to) the following:
● Tomography and deep-tissue imaging

● Mesoscopy, microscopy, and nanoscopy

● Functional and molecular imaging and sensing

● Contrast agents, molecular probes, and nanoparticles

● Interactions with cells and tissues

● Pre-clinical imaging, clinical translation, and clinical applications

● Multi-modality systems involving light and sound

● Microwave induced ultrasound imaging and sensing

● Laser ultrasound methods and applications

● Physics and modeling of photoacoustic generation, propagation and detection

● Signal processing, advanced filtering and artifact removal

● Image reconstruction algorithms including deep learning

● Computer assisted diagnostics based on artificial intelligence

● Ultrawide-band ultrasound detectors, optical detectors of ultrasound

● Novel lasers and light delivery technologies for the generation of ultrasound

● Photoacoustics spectroscopy and sensing for analysis of gases, liquids and solids

● Nondestructive testing of materials

● Brillouin spectroscopy, sensing and imaging based on optically induced coherent acoustic waves

《Photoacoustics》期刊已被查看:
期刊简写:PHOTOACOUSTICS

此期刊被最新的JCR期刊SCIE收录

期刊信息

  • 通讯地址
  • HACKERBRUCKE 6, MUNICH, GERMANY, 80335
  • 中国科学院《国际期刊预警名单(试行)》名单
  • 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
    此期刊被最新的JCR期刊SCIE收录
  • 审稿速度
  • 收录数据库
  • 是否oa
  • 研究方向
  • 期刊官网数据:平均Publication Time: 0.9 weeks22 Weeks
  • SCIE,Scopus,DOAJ
  • Yes
  • Physics and Astronomy-Atomic and Molecular Physics, and Optics

分区信息

中科院分区
  • 大类学科
  • 分区
  • 小类学科
  • Top期刊
  • 综述期刊
  • 医学
  • 1区
  • ENGINEERING
    BIOMEDICAL
    工程:生物医学
    INSTRUMENTS & INSTRUMENTATION
    仪器仪表
    RADIOLOGY
    NUCLEAR MEDICINE & MEDICAL IMAGING
    核医学
WOS分区等级:1区
  • 版本
  • 按学科
  • 分区
  • 影响因子
  • WOS期刊SCI分(2023-2024年最新版)
  • ENGINEERING
    BIOMEDICAL
    INSTRUMENTS & INSTRUMENTATION
    RADIOLOGY
    NUCLEAR MEDICINE & MEDICAL IMAGING
  • Q1
  • 7.1
IF值(影响因子)趋势图
年发文量趋势图
自引率趋势图
中科院分区

常见问题

  • sci四区价格多少算合理?

     一篇sci4区是sci里最便宜的了 价格一般在3-4左右,如果有人告诉你几k就能发或者五位数出头,个人建议谨慎一点,不能因为贪小便宜吃大亏如果四区就能满足学