
Academic Journal
Q1Annual Review of Biophysics
About Annual Review of Biophysics
Annual Review of Biophysics is a scholarly journal published by Annual Reviews Inc.. SCImago 2025 places it in Q1 with an SJR of 5.442 and an H-index of 181.
Its listed coverage is 2008-2025 and its research categories include Biochemistry (Q1); Bioengineering (Q1); Biophysics (Q1); Cell Biology (Q1); Structural Biology (Q1). The 2025 dataset reports 19 documents and 998 citations across the latest three-year reporting window.
Annual Review of Biophysics: A Leading Source of Insightful Scientific Research
The Annual Review of Biophysics is a prestigious, peer-reviewed scientific journal that plays a vital role in the advancement of biophysical research. Published annually by Annual Reviews, this journal serves as a critical resource for scientists, researchers, and academics who seek comprehensive, authoritative, and up-to-date information on the latest developments in the field of biophysics. Since its inception in 1972, the Annual Review of Biophysics has been recognized for its high-impact articles and scholarly contributions that bridge the gap between biology, chemistry, and physics.
What is the Annual Review of Biophysics?
The Annual Review of Biophysics publishes review articles that summarize and synthesize recent research across a broad spectrum of biophysical topics. These topics often include molecular biophysics, structural biology, membrane dynamics, protein folding, computational biology, and advanced imaging techniques. Unlike typical research journals that publish original studies, the Annual Review of Biophysics focuses on reviewing existing research, offering critical analysis, and identifying future directions for scientific exploration.
Why the Annual Review of Biophysics is Important
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Authoritative Reviews: The journal features articles written by leading experts in biophysics. Each review offers deep insights, historical context, and comprehensive coverage of the topic.
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Interdisciplinary Approach: Biophysics is inherently interdisciplinary, and the Annual Review of Biophysics reflects this by including research relevant to biologists, chemists, physicists, and computational scientists.
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Trusted by the Scientific Community: With a high impact factor and rigorous editorial standards, this journal is widely cited and respected. It provides readers with reliable summaries of recent advancements and emerging trends.
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Ideal for Researchers and Students: Whether you're a seasoned scientist or a student new to the field, the Annual Review of Biophysics offers clear, detailed explanations that can enhance understanding and support further research.
Key Topics Covered
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Protein and nucleic acid structure and dynamics
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Membrane biophysics and cellular mechanics
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Biophysical methods such as cryo-electron microscopy, NMR, and fluorescence spectroscopy
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Computational and theoretical biophysics
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Single-molecule techniques
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Systems biology and biomolecular modeling
Accessibility and Publication Format
The Annual Review of Biophysics is available in both print and digital formats. Institutions and individuals can access the journal through subscription, and many universities provide access via academic libraries. Selected articles may also be made available open access, ensuring broader dissemination of critical scientific knowledge.
Staying Current with the Annual Review of Biophysics
For those in the scientific community, staying informed of the latest review articles in the Annual Review of Biophysics is essential. Subscribing to updates or following the journal on platforms like PubMed, Google Scholar, or ResearchGate can help readers keep pace with this rapidly evolving field.
Journal Metrics
Metrics can change by reporting year. Verify time-sensitive values with the publisher or indexing service.
Aims & Scope
Scope of the Annual Review of Biophysics
The Annual Review of Biophysics is a leading publication that delivers comprehensive, authoritative reviews in the field of biophysics. With a strong emphasis on interdisciplinary research and scientific rigor, this journal plays a vital role in advancing our understanding of the physical principles underlying biological processes. Researchers, educators, and students across biophysics, structural biology, computational biology, and related disciplines turn to this annual review for insightful summaries and forward-thinking perspectives.
Interdisciplinary Focus
Biophysics is a dynamic field that bridges biology, physics, chemistry, and computational science. The Annual Review of Biophysics embraces this interdisciplinary nature by featuring reviews that integrate knowledge across disciplines. From the molecular mechanisms of protein folding and membrane dynamics to cutting-edge advances in cryo-electron microscopy and molecular modeling, the journal highlights research that pushes the boundaries of our understanding of life at the molecular and atomic levels.
Key Topics Covered
The scope of the Annual Review of Biophysics is broad yet focused on impactful scientific progress. Each volume includes in-depth reviews on topics such as:
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Structural Biology: High-resolution structures of biomolecules, protein-DNA complexes, and large macromolecular assemblies.
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Molecular and Cellular Biophysics: Mechanisms of molecular motors, ion channels, and signal transduction pathways.
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Computational Biophysics: Simulation and modeling of biomolecular systems, including machine learning applications in structural prediction.
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Biophysical Techniques: Developments in NMR, X-ray crystallography, single-molecule spectroscopy, and fluorescence imaging.
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Membrane Biophysics: Lipid-protein interactions, membrane transport, and membrane remodeling mechanisms.
The journal ensures that each article not only reviews the current state of knowledge but also outlines future directions and unresolved questions in the field.
Target Audience
The Annual Review of Biophysics is designed for a wide audience of scientists and academics. Its accessible yet rigorous content makes it a valuable resource for:
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Researchers seeking up-to-date overviews of specific areas within biophysics.
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Graduate students and educators looking for foundational reviews to support teaching and learning.
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Industry professionals interested in biophysical methods and applications in biotechnology and pharmaceuticals.
Commitment to Quality
Each article in the Annual Review of Biophysics is commissioned from leading scientists and undergoes a thorough editorial and peer-review process. This ensures the publication maintains high standards of scientific accuracy, clarity, and relevance. The editorial board consists of distinguished biophysicists who guide the content and thematic focus of each volume.
SEO Relevance
As biophysics continues to evolve with rapid advancements in technology and interdisciplinary approaches, the Annual Review of Biophysics remains a cornerstone resource. With topics like protein structure prediction, drug discovery, and biomolecular simulations gaining increasing attention, the journal is well-positioned in search engine visibility for researchers and institutions searching for credible, in-depth reviews in biophysics.
Recent Research Articles
Latest publications matched automatically by ISSN.
Imaging Dynamic Subcellular Organization at High Spatiotemporal Resolution
Francesca W. van Tartwijk, Liuba Dvinskikh, Edward N. Ward, Meng Lu et al.
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-011728Structures of Photosynthetic Supramolecular Complexes
Zhenfeng Liu, Xin You, Mei Li, Sen-Fang Sui et al.
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-011156A Tubules-First Model for the Origin of Eukaryotic Membrane Traffic
Mukund Thattai
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-013933Nonequilibrium Thermodynamics for Biochemical Networks: Energetic Principles of Cellular Function
Yuhai Tu
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-112247Rigidity and Mechanical Response in Biological Structures
Kelly Aspinwall, Tyler Hain, M. Lisa Manning
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-014456The Expanding Histone Universe: Histone-Based DNA Organization in Noneukaryotic Organisms
Alejandro Villalta, Sashi R. Weerawarana, Michael L. Nosella, Nathaniel L. Hamel et al.
2026-05-06 · DOI: 10.1146/annurev-biophys-091125-045046Hopfield Networks as Models of Emergent Function in Biology
Maria Yampolskaya, Pankaj Mehta
2026-05-06 · DOI: 10.1146/annurev-biophys-101425-023356The Mitochondrial Permeability Transition Pore: Past, Present, and Future
Michela Carraro, Christoph Gerle, Paolo Bernardi
2026-05-06 · DOI: 10.1146/annurev-biophys-030722-020832Seeking Biology's Physics Stories: Simplify, Simplify
Ken A. Dill
2026-05-06 · DOI: 10.1146/annurev-biophys-022224-110227Size Matters: A Biophysical Perspective on Biomolecular Condensates in Bacteria
Lydia Hodgins, Baljyot Singh Parmar, Rodrigo Reyes-Lamothe, Stephanie C. Weber et al.
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-010232Pattern Formation in Cell Cultures
Kaushik Roy, Aryeh Warmflash
2026-05-06 · DOI: 10.1146/annurev-biophys-030822-031838Single-Cell Proteomic Technologies: Tools in the Quest for Principles
Nikolai Slavov
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-011450Fold-Switching Proteins
Devlina Chakravarty, Lauren L. Porter
2026-05-06 · DOI: 10.1146/annurev-biophys-022924-012038Ligand Binding Dynamics of Ion Channels and GPCRs Using Single-Molecule Fluorescence
Susovan Roy Chowdhury, Randall H. Goldsmith, Baron Chanda
2026-05-06 · DOI: 10.1146/annurev-biophys-030722-113838Learning the Principles of T Cell Antigen Discernment
François X.P. Bourassa, Sooraj Achar, Grégoire Altan-Bonnet, Paul François et al.
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-013707Mitochondrial Outer Membrane Voltage-Dependent Anion Channels: Unique Structures, Distinct Functions, and Novel Therapeutic Targets
Shashank Ranjan Srivastava, Aadish Rawat, Radhakrishnan Mahalakshmi
2026-05-06 · DOI: 10.1146/annurev-biophys-061124-102155Tethered Signaling Proteins
Jun Allard, Omer Dushek
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-125547Pattern Formation Beyond Turing: Physical Principles of Mass-Conserving Reaction–Diffusion Systems
Erwin Frey, Henrik Weyer
2026-05-06 · DOI: 10.1146/annurev-biophys-030822-031638Nanopore Single-Molecule Chemistry
Yao Liu, Xinmeng Gao, Shuo Huang
2026-05-06 · DOI: 10.1146/annurev-biophys-021424-125106Reviews
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Version History
April 20, 2025 at 11:28 am
April 20, 2025