Research in Okazaki
Science Explorer records 27 research institutions in Okazaki, Japan. The highest-ranked on research quality in 2022–2025 are Institute for Molecular Science, National Institute for Physiological Sciences and National Institute for Basic Biology.
- Research institutions
- 27 6 of them ranked worldwide
- Research works
- 14k ▼ 11% vs 2013–17
- Top-10% rate, 2022–2025
- 12.9% record average 16.5%
A city carries no overall standing here. The composite score is built for institutions and countries, the units its floors and field normalisation were designed around. An empty rank on this page is a statement about the measure, not about the place.
Which research institutions are in Okazaki?
By fractional works over the whole record; world rank on research quality in 2022–2025. Bars are scaled to the largest institution in this city, not to anything off the page.
How concentrated the city is
The same institutions as shares of everything the list accounts for. A city that is one university and a city that is twelve read alike as a table and not at all alike here.
Shares of the rows listed above, not of the whole node.
What is Okazaki strongest at in research?
Relative to its size, research in Okazaki is most concentrated in Cellular and Molecular Neuroscience and Atomic and Molecular Physics, and Optics (8.5× the world share in Cellular and Molecular Neuroscience).
- Cellular and Molecular NeuroscienceSubfield · 29.6 works8.5×
- Atomic and Molecular Physics, and OpticsSubfield · 49.4 works6.2×
Location quotient against the world baseline. Inside a single field a city is a meaningful unit, which is why this is where a city is measured at all.
Which keywords describe research in Okazaki?
By fractional works in 2022–2025, weighted toward what it does more of than the world: Molecular Dynamics, Neurological Disorders, Catalysis, Electron Transport, Hydrogen Bonding, Inflammation, Superconductivity and Epidemiology.
- Neural Control
- Channelrhodopsin
- Photosystem II
- Transition Metal Complexes
- Cortical Networks
- Quantum Coherence
- Photosynthesis
- Working Memory
- Neuronal Oscillations
- Frequency Conversion
- Cognitive Functions
- Synaptic Plasticity
- Vibrational Spectroscopy
- Self-Assembly
- Aging
- Electron Transport
- Nanoparticles
- Molecular Dynamics
- Oxidative Stress
- Inflammation
- Epidemiology
- Neurological Disorders
- Catalysis
- Biomedical Applications
- Gene Expression
- Hydrogen Bonding
- Superconductivity
- Crystal Growth
- Metabolic Regulation
- Functional Connectivity
- Electronic Structure
- Supramolecular Chemistry
- Optogenetics
- Neuronal Circuits
- Aqueous Systems
- Synchronization
- Gamma Rhythms
- Light Harvesting
- Brain-Computer Interfaces
- EEG Analysis
Size is fractional works in 2022–2025 in the topics tagged with each word; colour is the word's share of this city's work against its share of the world's. The 40 words are chosen for being large and distinctive. Each links to the topic it comes from most.
All 40 words, with their numbers
- Epidemiology41◆ 0.93×97 topics
- Inflammation33▲ 1.43×68 topics
- Neurological Disorders27▲ 4.3×17 topics
- Oxidative Stress25▲ 1.37×47 topics
- Catalysis25▲ 3.4×24 topics
- Molecular Dynamics23▲ 12×6 topics
- Biomedical Applications22▲ 1.67×30 topics
- Nanoparticles21▲ 1.52×32 topics
- Gene Expression18▲ 2.7×18 topics
- Electron Transport16▲ 17×3 topics
- Hydrogen Bonding16▲ 17×5 topics
- Aging15▲ 2.6×15 topics
- Superconductivity14▲ 7.2×9 topics
- Self-Assembly14▲ 3.7×12 topics
- Crystal Growth13▲ 4.2×11 topics
- Vibrational Spectroscopy12▲ 14×3 topics
- Metabolic Regulation12▲ 6.3×5 topics
- Synaptic Plasticity12▲ 4.8×6 topics
- Functional Connectivity12▲ 7.9×3 topics
- Cognitive Functions11▲ 14×2 topics
- Electronic Structure11▲ 5.7×8 topics
- Frequency Conversion11▲ 24×3 topics
- Supramolecular Chemistry11▲ 12×4 topics
- Neuronal Oscillations11▲ 13×2 topics
- Optogenetics11▲ 19×2 topics
- Working Memory11▲ 11×3 topics
- Neuronal Circuits11▲ 12×2 topics
- Photosynthesis11▲ 20×2 topics
- Aqueous Systems10▲ 30×1 topic
- Quantum Coherence10▲ 30×1 topic
- Synchronization10▲ 7.8×3 topics
- Cortical Networks10▲ 15×1 topic
- Gamma Rhythms10▲ 15×1 topic
- Transition Metal Complexes9▲ 9.0×4 topics
- Light Harvesting9▲ 20×1 topic
- Photosystem II9▲ 20×1 topic
- Brain-Computer Interfaces9▲ 8.0×1 topic
- Channelrhodopsin9▲ 23×1 topic
- EEG Analysis9▲ 8.0×1 topic
- Neural Control9▲ 23×1 topic
What research is done in Okazaki?
Area is fractional works; colour is the subfield each topic belongs to.
- 1 Spectroscopy and Quantum Chemical Studies Atomic and Molecular Physics, and Optics 10 works
- 2 Neural dynamics and brain function Cognitive Neuroscience 10 works
- 3 Photosynthetic Processes and Mechanisms Molecular Biology 9 works
- 4 EEG and Brain-Computer Interfaces Cognitive Neuroscience 9 works
- 5 Photoreceptor and optogenetics research Cellular and Molecular Neuroscience 9 works
- 6 Functional Brain Connectivity Studies Cognitive Neuroscience 8 works
- 7 Protein Structure and Dynamics Molecular Biology 6 works
- 8 Solid State Laser Technologies Electrical and Electronic Engineering 6 works
- 9 Neuroscience and Neuropharmacology Research Cellular and Molecular Neuroscience 6 works
- 10 Neurobiology and Insect Physiology Research Cellular and Molecular Neuroscience 5 works
Research output over time
The same series as a ribbon — one cell per year, darker for more.