| name | referee-review |
| description | 审稿人专用技能。当用户提到以下任何场景时必须自动触发:
- "审稿"、"审稿意见"、"审稿信"、"写审稿意见"、"帮我看这篇论文作为审稿人"
- "review this paper"、"referee report"、"peer review"
- "评价这篇稿件"、"给这篇论文写审稿意见"、"作为审稿人"
- 收到期刊审稿邀请、需要提交审稿报告
7阶段系统化审稿流程(初评→逐节→统计→可复现→图表→研究诚信→写作质量)。
生成中英双语标准审稿信,含物理/光学实验特有审查项。
注意:本 skill 是"审别人的论文",不是自审(paper-review)也不是写作诊断(academic-craft)。
|
| tags | ["审稿","referee","peer-review","统计审稿","审稿信","光学","物理期刊"] |
| allowed-tools | Read Write Edit Bash |
| license | MIT license (based on K-Dense scientific-agent-skills) |
| metadata | {"version":"1.0-customized","original-author":"K-Dense Inc.","customized-for":"optics PhD peer review"} |
Referee Review — 审稿人专用审稿技能
定位
作为期刊审稿人(referee)系统评价他人稿件。与以下 skills 互补:
paper-review:投稿前自审工具(检查自己论文格式)
academic-craft:写作质量诊断(6维度 A/B/C 打分)
referee-review(本 skill):审别人的稿件,生成标准审稿信
触发场景
- "帮我审这篇论文" / "作为审稿人评价这篇稿件"
- "生成审稿意见" / "写审稿信"
- "评价这篇论文的方法论/统计分析"
- "审查论文的可复现性"
- Reviewing scientific manuscripts as a referee for journals
适用期刊
物理/光学领域常见期刊:PRL, PRA/B/D, Optica, Light: Sci. Appl., APL, IEEE Photonics, Nat. Photonics, Sci. Rep.
Peer Review Workflow
Conduct peer review systematically through the following stages, adapting depth and focus based on the manuscript type and discipline.
Stage 1: Initial Assessment
Begin with a high-level evaluation to determine the manuscript's scope, novelty, and overall quality.
Key Questions:
- What is the central research question or hypothesis?
- What are the main findings and conclusions?
- Is the work scientifically sound and significant?
- Is the work appropriate for the intended venue?
- Are there any immediate major flaws that would preclude publication?
Output: Brief summary (2-3 sentences) capturing the manuscript's essence and initial impression.
Stage 2: Detailed Section-by-Section Review
Conduct a thorough evaluation of each manuscript section, documenting specific concerns and strengths.
Abstract and Title
- Accuracy: Does the abstract accurately reflect the study's content and conclusions?
- Clarity: Is the title specific, accurate, and informative?
- Completeness: Are key findings and methods summarized appropriately?
- Accessibility: Is the abstract comprehensible to a broad scientific audience?
Introduction
- Context: Is the background information adequate and current?
- Rationale: Is the research question clearly motivated and justified?
- Novelty: Is the work's originality and significance clearly articulated?
- Literature: Are relevant prior studies appropriately cited?
- Objectives: Are research aims/hypotheses clearly stated?
Methods
- Reproducibility: Can another researcher replicate the study from the description provided?
- Rigor: Are the methods appropriate for addressing the research questions?
- Detail: Are protocols, reagents, equipment, and parameters sufficiently described?
- Ethics: Are ethical approvals, consent, and data handling properly documented?
- Statistics: Are statistical methods appropriate, clearly described, and justified?
- Validation: Are controls, replicates, and validation approaches adequate?
Critical elements to verify:
- Sample sizes and power calculations
- Randomization and blinding procedures
- Inclusion/exclusion criteria
- Data collection protocols
- Computational methods and software versions
- Statistical tests and correction for multiple comparisons
Results
- Presentation: Are results presented logically and clearly?
- Figures/Tables: Are visualizations appropriate, clear, and properly labeled?
- Statistics: Are statistical results properly reported (effect sizes, confidence intervals, p-values)?
- Objectivity: Are results presented without over-interpretation?
- Completeness: Are all relevant results included, including negative results?
- Reproducibility: Are raw data or summary statistics provided?
Common issues to identify:
- Selective reporting of results
- Inappropriate statistical tests
- Missing error bars or measures of variability
- Over-fitting or circular analysis
- Batch effects or confounding variables
- Missing controls or validation experiments
Discussion
- Interpretation: Are conclusions supported by the data?
- Limitations: Are study limitations acknowledged and discussed?
- Context: Are findings placed appropriately within existing literature?
- Speculation: Is speculation clearly distinguished from data-supported conclusions?
- Significance: Are implications and importance clearly articulated?
- Future directions: Are next steps or unanswered questions discussed?
Red flags:
- Overstated conclusions
- Ignoring contradictory evidence
- Causal claims from correlational data
- Inadequate discussion of limitations
- Mechanistic claims without mechanistic evidence
References
- Completeness: Are key relevant papers cited?
- Currency: Are recent important studies included?
- Balance: Are contrary viewpoints appropriately cited?
- Accuracy: Are citations accurate and appropriate?
- Self-citation: Is there excessive or inappropriate self-citation?
Stage 3: Methodological and Statistical Rigor
Evaluate the technical quality and rigor of the research with particular attention to common pitfalls.
Statistical Assessment:
- Are statistical assumptions met (normality, independence, homoscedasticity)?
- Are effect sizes reported alongside p-values?
- Is multiple testing correction applied appropriately?
- Are confidence intervals provided?
- Is sample size justified with power analysis?
- Are parametric vs. non-parametric tests chosen appropriately?
- Are missing data handled properly?
- Are exploratory vs. confirmatory analyses distinguished?
Experimental Design:
- Are controls appropriate and adequate?
- Is replication sufficient (biological and technical)?
- Are potential confounders identified and controlled?
- Is randomization properly implemented?
- Are blinding procedures adequate?
- Is the experimental design optimal for the research question?
Computational/Bioinformatics:
- Are computational methods clearly described and justified?
- Are software versions and parameters documented?
- Is code made available for reproducibility?
- Are algorithms and models validated appropriately?
- Are assumptions of computational methods met?
- Is batch correction applied appropriately?
Stage 4: Reproducibility and Transparency
Assess whether the research meets modern standards for reproducibility and open science.
Data Availability:
- Are raw data deposited in appropriate repositories?
- Are accession numbers provided for public databases?
- Are data sharing restrictions justified (e.g., patient privacy)?
- Are data formats standard and accessible?
Code and Materials:
- Is analysis code made available (GitHub, Zenodo, etc.)?
- Are unique materials available or described sufficiently for recreation?
- Are protocols detailed in sufficient depth?
Reporting Standards:
- Does the manuscript follow discipline-specific reporting guidelines (PRISMA for systematic reviews)?
- Are all experimental parameters sufficient for replication?
- Are all elements of the appropriate checklist addressed?
Stage 5: Figure and Data Presentation
Evaluate the quality, clarity, and integrity of data visualization.
Quality Checks:
- Are figures high resolution and clearly labeled?
- Are axes properly labeled with units?
- Are error bars defined (SD, SEM, CI)?
- Are statistical significance indicators explained?
- Are color schemes appropriate and accessible (colorblind-friendly)?
- Are scale bars included for images?
- Is data visualization appropriate for the data type?
Integrity Checks:
- Are there signs of image manipulation (duplications, splicing, inconsistent scale bars)?
- Are representative images/measurements truly representative?
- Are all conditions shown (no selective presentation)?
- Are spectra/plots showing raw data or only processed results?
Clarity:
- Can figures stand alone with their legends?
- Is the message of each figure immediately clear?
- Are there redundant figures or panels?
- Would data be better presented as tables or figures?
Stage 6: 研究诚信与光学实验特有检查
研究诚信(通用):
- 是否存在数据伪造或篡改的嫌疑?
- 作者署名是否合理?
- 利益冲突是否声明?
- 基金来源是否披露?
- 是否存在抄袭或重复发表?
光学/物理实验特有审查项:
- 激光参数是否完整报告?(波长、功率、脉宽、重复频率、光束质量 M²)
- 光学系统校准是否描述?(波长校准、功率计校准、光路对准方法)
- 探测器参数是否明确?(类型、带宽、NEP、响应率、线性范围)
- 实验环境条件是否说明?(温度、湿度、振动隔离、暗室条件)
- 样品制备是否可复现?(材料来源、纯度、厚度、表面处理)
- 数值模拟参数是否完整?(网格分辨率、收敛判据、边界条件、软件版本)
- 误差分析是否系统化?(系统误差 vs 随机误差、不确定度传播、误差棒含义)
- 光谱/图像数据是否提供原始格式?(不只是处理后的图,有无原始数据可用性声明)
- 理论假设的适用范围是否明确讨论?
Stage 7: Writing Quality and Clarity
Assess the manuscript's clarity, organization, and accessibility.
Structure and Organization:
- Is the manuscript logically organized?
- Do sections flow coherently?
- Are transitions between ideas clear?
- Is the narrative compelling and clear?
Writing Quality:
- Is the language clear, precise, and concise?
- Are jargon and acronyms minimized and defined?
- Is grammar and spelling correct?
- Are sentences unnecessarily complex?
- Is the passive voice overused?
Accessibility:
- Can a non-specialist understand the main findings?
- Are technical terms explained?
- Is the significance clear to a broad audience?
Structuring Peer Review Reports
Organize feedback in a hierarchical structure that prioritizes issues and provides actionable guidance.
Summary Statement
Provide a concise overall assessment (1-2 paragraphs):
- Brief synopsis of the research
- Overall recommendation (accept, minor revisions, major revisions, reject)
- Key strengths (2-3 bullet points)
- Key weaknesses (2-3 bullet points)
- Bottom-line assessment of significance and soundness
Major Comments
List critical issues that significantly impact the manuscript's validity, interpretability, or significance. Number these sequentially for easy reference.
Major comments typically include:
- Fundamental methodological flaws
- Inappropriate statistical analyses
- Unsupported or overstated conclusions
- Missing critical controls or experiments
- Serious reproducibility concerns
- Major gaps in literature coverage
- Ethical concerns
For each major comment:
- Clearly state the issue
- Explain why it's problematic
- Suggest specific solutions or additional experiments
- Indicate if addressing it is essential for publication
Minor Comments
List less critical issues that would improve clarity, completeness, or presentation. Number these sequentially.
Minor comments typically include:
- Unclear figure labels or legends
- Missing methodological details
- Typographical or grammatical errors
- Suggestions for improved data presentation
- Minor statistical reporting issues
- Supplementary analyses that would strengthen conclusions
- Requests for clarification
For each minor comment:
- Identify the specific location (section, paragraph, figure)
- State the issue clearly
- Suggest how to address it
Specific Line-by-Line Comments (Optional)
For manuscripts requiring detailed feedback, provide section-specific or line-by-line comments:
- Reference specific page/line numbers or sections
- Note factual errors, unclear statements, or missing citations
- Suggest specific edits for clarity
Questions for Authors
List specific questions that need clarification:
- Methodological details that are unclear
- Seemingly contradictory results
- Missing information needed to evaluate the work
- Requests for additional data or analyses
Tone and Approach
Maintain a constructive, professional, and collegial tone throughout the review.
Best Practices:
- Be constructive: Frame criticism as opportunities for improvement
- Be specific: Provide concrete examples and actionable suggestions
- Be balanced: Acknowledge strengths as well as weaknesses
- Be respectful: Remember that authors have invested significant effort
- Be objective: Focus on the science, not the scientists
- Be thorough: Don't overlook issues, but prioritize appropriately
- Be clear: Avoid ambiguous or vague criticism
Avoid:
- Personal attacks or dismissive language
- Sarcasm or condescension
- Vague criticism without specific examples
- Requesting unnecessary experiments beyond the scope
- Demanding adherence to personal preferences vs. best practices
- Revealing your identity if reviewing is double-blind
Special Considerations by Manuscript Type
Original Research Articles
- Emphasize rigor, reproducibility, and novelty
- Assess significance and impact
- Verify that conclusions are data-driven
- Check for complete methods and appropriate controls
Reviews and Meta-Analyses
- Evaluate comprehensiveness of literature coverage
- Assess search strategy and inclusion/exclusion criteria
- Verify systematic approach and lack of bias
- Check for critical analysis vs. mere summarization
- For meta-analyses, evaluate statistical approach and heterogeneity
Methods Papers
- Emphasize validation and comparison to existing methods
- Assess reproducibility and availability of protocols/code
- Evaluate improvements over existing approaches
- Check for sufficient detail for implementation
Short Reports/Letters
- Adapt expectations for brevity
- Ensure core findings are still rigorous and significant
- Verify that format is appropriate for findings
Preprints
- Recognize that these have not undergone formal peer review
- May be less polished than journal submissions
- Still apply rigorous standards for scientific validity
- Consider providing constructive feedback to help authors improve before journal submission
Presentations and Slide Decks
⚠️ CRITICAL: For presentations, NEVER read the PDF directly. ALWAYS convert to images first.
When reviewing scientific presentations (PowerPoint, Beamer, slide decks):
Mandatory Image-Based Review Workflow
NEVER attempt to read presentation PDFs directly - this causes buffer overflow errors and doesn't show visual formatting issues.
Required Process:
- Convert PDF to images using Python:
python skills/scientific-slides/scripts/pdf_to_images.py presentation.pdf review/slide --dpi 150
- Read and inspect EACH slide image file sequentially
- Document issues with specific slide numbers
- Provide feedback on visual formatting and content
Print when starting review:
[HH:MM:SS] PEER REVIEW: Presentation detected - converting to images for review
[HH:MM:SS] PDF REVIEW: NEVER reading PDF directly - using image-based inspection
Presentation-Specific Evaluation Criteria
Visual Design and Readability:
Layout and Formatting (Check EVERY Slide Image):
Content Quality:
Structure and Flow:
Scientific Content:
Common Presentation Issues to Flag:
Critical Issues (Must Fix):
- Text overflow making content unreadable
- Font sizes too small (<18pt)
- Element overlaps obscuring data
- Insufficient contrast (text hard to read)
- Figures too complex or illegible
- No citations (completely unsupported claims)
- Slide count drastically mismatched to duration
Major Issues (Should Fix):
- Inconsistent design across slides
- Too much text (walls of text, not bullets)
- Poorly simplified figures (axis labels too small)
- Cramped layout with insufficient white space
- Missing key structural elements (no conclusion slide)
- Poor color choices (not colorblind-safe)
- Minimal results content (<30% of slides)
Minor Issues (Suggestions for Improvement):
- Could use more visuals/diagrams
- Some slides slightly text-heavy
- Minor alignment inconsistencies
- Could benefit from more white space
- Additional citations would strengthen claims
- Color scheme could be more modern
Review Report Format for Presentations
Summary Statement:
- Overall impression of presentation quality
- Appropriateness for target audience and duration
- Key strengths (visual design, content, clarity)
- Key weaknesses (formatting issues, content gaps)
- Recommendation (ready to present, minor revisions, major revisions)
Layout and Formatting Issues (By Slide Number):
Slide 3: Text overflow - bullet point 4 extends beyond right margin
Slide 7: Element overlap - figure overlaps with caption text
Slide 12: Font size - axis labels too small to read from distance
Slide 18: Alignment - title not centered
Content and Structure Feedback:
- Adequacy of background context and citations
- Clarity of research question and objectives
- Quality of methods summary
- Effectiveness of results presentation
- Strength of conclusions and implications
Design and Accessibility:
- Overall visual appeal and professionalism
- Color contrast and readability
- Colorblind accessibility
- Consistency across slides
Timing and Scope:
- Whether slide count matches intended duration
- Appropriate level of detail for talk type
- Balance between sections
Example Image-Based Review Process
[14:30:00] PEER REVIEW: Starting review of presentation
[14:30:05] PEER REVIEW: Presentation detected - converting to images
[14:30:10] PDF REVIEW: Running pdf_to_images.py on presentation.pdf
[14:30:15] PDF REVIEW: Converted 25 slides to images in review/ directory
[14:30:20] PDF REVIEW: Inspecting slide 1/25 - title slide
[14:30:25] PDF REVIEW: Inspecting slide 2/25 - introduction
...
[14:35:40] PDF REVIEW: Inspecting slide 25/25 - acknowledgments
[14:35:45] PDF REVIEW: Completed image-based review
[14:35:50] PEER REVIEW: Found 8 layout issues, 3 content issues
[14:35:55] PEER REVIEW: Generating structured feedback by slide number
Remember: For presentations, the visual inspection via images is MANDATORY. Never attempt to read presentation PDFs as text - it will fail and miss all visual formatting issues.
Resources
This skill includes reference materials to support comprehensive peer review:
references/reporting_standards.md
Guidelines for major reporting standards across disciplines (CONSORT, PRISMA, ARRIVE, MIAME, STROBE, etc.) to evaluate completeness of methods and results reporting.
references/common_issues.md
Catalog of frequent methodological and statistical issues encountered in peer review, with guidance on identifying and addressing them.
Final Checklist
Before finalizing the review, verify:
审稿信模板(中英双语)
审稿信是审稿人给编辑和作者的正式意见。使用以下模板,按需填写。
English Template
Referee Report
Manuscript: [Title]
Journal: [Journal Name]
Date: [YYYY-MM-DD]
=== Summary ===
[2-3 sentences summarizing the paper's contribution]
=== General Assessment ===
Recommendation: [Accept / Minor Revision / Major Revision / Reject]
Strengths:
1. [Key strength]
2. [Key strength]
Weaknesses:
1. [Key weakness]
2. [Key weakness]
=== Major Comments ===
1. [Specific issue with location and suggested fix]
2. ...
=== Minor Comments ===
1. [Specific issue with location]
2. ...
=== Questions for Authors ===
1. [Clarification needed]
2. ...
中文模板
审稿意见
稿件: [标题]
期刊: [期刊名]
日期: [YYYY-MM-DD]
=== 概述 ===
[2-3 句话概括论文贡献]
=== 总体评价 ===
建议: [接收 / 小修 / 大修 / 拒稿]
优点:
1. [核心优点]
2. [核心优点]
不足:
1. [核心问题]
2. [核心问题]
=== 主要意见 ===
1. [具体问题,标注位置和修改建议]
2. ...
=== 次要意见 ===
1. [具体问题,标注位置]
2. ...
=== 致作者的问题 ===
1. [需要澄清的问题]
2. ...
光学/物理期刊特有审稿要点
PRL (Physical Review Letters) 审稿关注
- 是否解释了对广泛物理学界的重要性(broad interest)
- 创新性是否足以支撑 Letter 级别
- 理论推导是否自洽,假设是否合理
- 实验证据是否支持核心结论
- 长度限制内是否完整表达了关键信息
Optica/Light: Science & Applications 审稿关注
- 光学工程/应用价值是否明确
- 与现有技术的定量对比是否充分
- 实验方案是否考虑了实际应用场景
- 是否讨论了技术局限性和改进方向
APL (Applied Physics Letters) 审稿关注
- 应用量子物理/光学的新颖性
- 实验可复现性(参数是否充分)
- 与理论预测的对比是否定量
- 实际器件/系统性能指标是否完整
统计审稿快速检查(物理实验适用)
定制化自 K-Dense scientific-agent-skills peer-review skill
适配光学 PhD 审稿需求 — v1.0-customized