Literature Review
Overview
Conduct systematic, comprehensive literature reviews following rigorous academic methodology. Search multiple literature databases, synthesize findings thematically, verify all citations for accuracy, and generate professional output documents in markdown and PDF formats.
This skill integrates with multiple scientific skills for database access (gget, bioservices, datacommons-client) and provides specialized tools for citation verification, result aggregation, and document generation.
When to Use This Skill
Use this skill when:
- Conducting a systematic literature review for research or publication
- Synthesizing current knowledge on a specific topic across multiple sources
- Performing meta-analysis or scoping reviews
- Writing the literature review section of a research paper or thesis
- Investigating the state of the art in a research domain
- Identifying research gaps and future directions
- Requiring verified citations and professional formatting
Visual Enhancement with Scientific Schematics
⚠️ MANDATORY: Every literature review MUST include at least 1-2 AI-generated figures using the scientific-schematics skill.
This is not optional. Literature reviews without visual elements are incomplete. Before finalizing any document:
- Generate at minimum ONE schematic or diagram (e.g., PRISMA flow diagram for systematic reviews)
- Prefer 2-3 figures for comprehensive reviews (search strategy flowchart, thematic synthesis diagram, conceptual framework)
How to generate figures:
- Use the scientific-schematics skill to generate AI-powered publication-quality diagrams
- Simply describe your desired diagram in natural language
- Nano Banana Pro will automatically generate, review, and refine the schematic
How to generate schematics:
python scripts/generate_schematic.py "your diagram description" -o figures/output.png
The AI will automatically:
- Create publication-quality images with proper formatting
- Review and refine through multiple iterations
- Ensure accessibility (colorblind-friendly, high contrast)
- Save outputs in the figures/ directory
When to add schematics:
- PRISMA flow diagrams for systematic reviews
- Literature search strategy flowcharts
- Thematic synthesis diagrams
- Research gap visualization maps
- Citation network diagrams
- Conceptual framework illustrations
- Any complex concept that benefits from visualization
For detailed guidance on creating schematics, refer to the scientific-schematics skill documentation.
Core Workflow
Literature reviews follow a structured, multi-phase workflow:
Phase 1: Planning and Scoping
Define Research Question: Use PICO framework (Population, Intervention, Comparison, Outcome) for clinical/biomedical reviews
- Example: "What is the efficacy of CRISPR-Cas9 (I) for treating sickle cell disease (P) compared to standard care (C)?"
Establish Scope and Objectives:
- Define clear, specific research questions
- Determine review type (narrative, systematic, scoping, meta-analysis)
- Set boundaries (time period, geographic scope, study types)
Develop Search Strategy:
- Identify 2-4 main concepts from research question
- List synonyms, abbreviations, and related terms for each concept
- Plan Boolean operators (AND, OR, NOT) to combine terms
- Select minimum 3 complementary databases
Set Inclusion/Exclusion Criteria:
- Date range (e.g., last 10 years: 2015-2024)
- Language (typically English, or specify multilingual)
- Publication types (peer-reviewed, preprints, reviews)
- Study designs (RCTs, observational, in vitro, etc.)
- Document all criteria clearly
Phase 2: Systematic Literature Search
Multi-Database Search:
Select databases appropriate for the domain:
Biomedical & Life Sciences:
- Use
gget skill: gget search pubmed "search terms" for PubMed/PMC
- Use
gget skill: gget search biorxiv "search terms" for preprints
- Use
bioservices skill for ChEMBL, KEGG, UniProt, etc.
General Scientific Literature:
- Search arXiv via direct API (preprints in physics, math, CS, q-bio)
- Search Semantic Scholar via API (200M+ papers, cross-disciplinary)
- Use Google Scholar for comprehensive coverage (manual or careful scraping)
Specialized Databases:
- Use
gget alphafold for protein structures
- Use
gget cosmic for cancer genomics
- Use
datacommons-client for demographic/statistical data
- Use specialized databases as appropriate for the domain
Document Search Parameters:
## Search Strategy
### Database: PubMed
- **Date searched**: 2024-10-25
- **Date range**: 2015-01-01 to 2024-10-25
- **Search string**:
("CRISPR"[Title] OR "Cas9"[Title])
AND ("sickle cell"[MeSH] OR "SCD"[Title/Abstract])
AND 2015:2024[Publication Date]
- **Results**: 247 articles
Repeat for each database searched.
Export and Aggregate Results:
Phase 3: Screening and Selection
Deduplication:
python search_databases.py results.json --deduplicate --output unique_results.json
- Removes duplicates by DOI (primary) or title (fallback)
- Document number of duplicates removed
Title Screening:
- Review all titles against inclusion/exclusion criteria
- Exclude obviously irrelevant studies
- Document number excluded at this stage
Abstract Screening:
- Read abstracts of remaining studies
- Apply inclusion/exclusion criteria rigorously
- Document reasons for exclusion
Full-Text Screening:
- Obtain full texts of remaining studies
- Conduct detailed review against all criteria
- Document specific reasons for exclusion
- Record final number of included studies
Create PRISMA Flow Diagram:
Initial search: n = X
├─ After deduplication: n = Y
├─ After title screening: n = Z
├─ After abstract screening: n = A
└─ Included in review: n = B
Phase 4: Data Extraction and Quality Assessment
Extract Key Data from each included study:
- Study metadata (authors, year, journal, DOI)
- Study design and methods
- Sample size and population characteristics
- Key findings and results
- Limitations noted by authors
- Funding sources and conflicts of interest
Assess Study Quality:
- For RCTs: Use Cochrane Risk of Bias tool
- For observational studies: Use Newcastle-Ottawa Scale
- For systematic reviews: Use AMSTAR 2
- Rate each study: High, Moderate, Low, or Very Low quality
- Consider excluding very low-quality studies
Organize by Themes:
- Identify 3-5 major themes across studies
- Group studies by theme (studies may appear in multiple themes)
- Note patterns, consensus, and controversies
Phase 5: Synthesis and Analysis
Create Review Document from template:
cp assets/review_template.md my_literature_review.md
Write Thematic Synthesis (NOT study-by-study summaries):
- Organize Results section by themes or research questions
- Synthesize findings across multiple studies within each theme
- Compare and contrast different approaches and results
- Identify consensus areas and points of controversy
- Highlight the strongest evidence
Example structure:
#### 3.3.1 Theme: CRISPR Delivery Methods
Multiple delivery approaches have been investigated for therapeutic
gene editing. Viral vectors (AAV) were used in 15 studies^1-15^ and
showed high transduction efficiency (65-85%) but raised immunogenicity
concerns^3,7,12^. In contrast, lipid nanoparticles demonstrated lower
efficiency (40-60%) but improved safety profiles^16-23^.
Critical Analysis:
- Evaluate methodological strengths and limitations across studies
- Assess quality and consistency of evidence
- Identify knowledge gaps and methodological gaps
- Note areas requiring future research
Write Discussion:
- Interpret findings in broader context
- Discuss clinical, practical, or research implications
- Acknowledge limitations of the review itself
- Compare with previous reviews if applicable
- Propose specific future research directions
Phase 6: Citation Verification
CRITICAL: All citations must be verified for accuracy before final submission.
Verify All DOIs:
python scripts/verify_citations.py my_literature_review.md
This script:
- Extracts all DOIs from the document
- Verifies each DOI resolves correctly
- Retrieves metadata from CrossRef
- Generates verification report
- Outputs properly formatted citations
Review Verification Report:
- Check for any failed DOIs
- Verify author names, titles, and publication details match
- Correct any errors in the original document
- Re-run verification until all citations pass
Format Citations Consistently:
- Choose one citation style and use throughout (see
references/citation_styles.md)
- Common styles: APA, Nature, Vancouver, Chicago, IEEE
- Use verification script output to format citations correctly
- Ensure in-text citations match reference list format
Phase 7: Document Generation
Generate PDF:
python scripts/generate_pdf.py my_literature_review.md \
--citation-style apa \
--output my_review.pdf
Options:
--citation-style: apa, nature, chicago, vancouver, ieee
--no-toc: Disable table of contents
--no-numbers: Disable section numbering
--check-deps: Check if pandoc/xelatex are installed
Review Final Output:
- Check PDF formatting and layout
- Verify all sections are present
- Ensure citations render correctly
- Check that figures/tables appear properly
- Verify table of contents is accurate
Quality Checklist:
Database-Specific Search Guidance
PubMed / PubMed Central
Access via gget skill:
# Search PubMed
gget search pubmed "CRISPR gene editing" -l 100
# Search with filters
# Use PubMed Advanced Search Builder to construct complex queries
# Then execute via gget or direct Entrez API
Search tips:
- Use MeSH terms:
"sickle cell disease"[MeSH]
- Field tags:
[Title], [Title/Abstract], [Author]
- Date filters:
2020:2024[Publication Date]
- Boolean operators: AND, OR, NOT
- See MeSH browser: https://meshb.nlm.nih.gov/search
bioRxiv / medRxiv
Access via gget skill:
gget search biorxiv "CRISPR sickle cell" -l 50
Important considerations:
- Preprints are not peer-reviewed
- Verify findings with caution
- Check if preprint has been published (CrossRef)
- Note preprint version and date
arXiv
Access via direct API or WebFetch:
# Example search categories:
# q-bio.QM (Quantitative Methods)
# q-bio.GN (Genomics)
# q-bio.MN (Molecular Networks)
# cs.LG (Machine Learning)
# stat.ML (Machine Learning Statistics)
# Search format: category AND terms
search_query = "cat:q-bio.QM AND ti:\"single cell sequencing\""
Semantic Scholar
Access via direct API (requires API key, or use free tier):
- 200M+ papers across all fields
- Excellent for cross-disciplinary searches
- Provides citation graphs and paper recommendations
- Use for finding highly influential papers
Specialized Biomedical Databases
Use appropriate skills:
- ChEMBL:
bioservices skill for chemical bioactivity
- UniProt:
gget or bioservices skill for protein information
- KEGG:
bioservices skill for pathways and genes
- COSMIC:
gget skill for cancer mutations
- AlphaFold:
gget alphafold for protein structures
- PDB:
gget or direct API for experimental structures
Citation Chaining
Expand search via citation networks:
Forward citations (papers citing key papers):
- Use Google Scholar "Cited by"
- Use Semantic Scholar or OpenAlex APIs
- Identifies newer research building on seminal work
Backward citations (references from key papers):
- Extract references from included papers
- Identify highly cited foundational work
- Find papers cited by multiple included studies
Citation Style Guide
Detailed formatting guidelines are in references/citation_styles.md. Quick reference:
APA (7th Edition)
- In-text: (Smith et al., 2023)
- Reference: Smith, J. D., Johnson, M. L., & Williams, K. R. (2023). Title. Journal, 22(4), 301-318. https://doi.org/10.xxx/yyy
Nature
- In-text: Superscript numbers^1,2^
- Reference: Smith, J. D., Johnson, M. L. & Williams, K. R. Title. Nat. Rev. Drug Discov. 22, 301-318 (2023).
Vancouver
- In-text: Superscript numbers^1,2^
- Reference: Smith JD, Johnson ML, Williams KR. Title. Nat Rev Drug Discov. 2023;22(4):301-18.
Always verify citations with verify_citations.py before finalizing.
Prioritizing High-Impact Papers (CRITICAL)
Always prioritize influential, highly-cited papers from reputable authors and top venues. Quality matters more than quantity in literature reviews.
Citation Count Thresholds
Use citation counts to identify the most impactful papers:
| Paper Age |
Citation Threshold |
Classification |
| 0-3 years |
20+ citations |
Noteworthy |
| 0-3 years |
100+ citations |
Highly Influential |
| 3-7 years |
100+ citations |
Significant |
| 3-7 years |
500+ citations |
Landmark Paper |
| 7+ years |
500+ citations |
Seminal Work |
| 7+ years |
1000+ citations |
Foundational |
Journal and Venue Tiers
Prioritize papers from higher-tier venues:
- Tier 1 (Always Prefer): Nature, Science, Cell, NEJM, Lancet, JAMA, PNAS, Nature Medicine, Nature Biotechnology
- Tier 2 (Strong Preference): High-impact specialized journals (IF>10), top conferences (NeurIPS, ICML for ML/AI)
- Tier 3 (Include When Relevant): Respected specialized journals (IF 5-10)
- Tier 4 (Use Sparingly): Lower-impact peer-reviewed venues
Author Reputation Assessment
Prefer papers from:
- Senior researchers with high h-index (>40 in established fields)
- Leading research groups at recognized institutions (Harvard, Stanford, MIT, Oxford, etc.)
- Authors with multiple Tier-1 publications in the relevant field
- Researchers with recognized expertise (awards, editorial positions, society fellows)
Identifying Seminal Papers
For any topic, identify foundational work by:
- High citation count (typically 500+ for papers 5+ years old)
- Frequently cited by other included studies (appears in many reference lists)
- Published in Tier-1 venues (Nature, Science, Cell family)
- Written by field pioneers (often cited as establishing concepts)
Best Practices
Search Strategy
- Use multiple databases (minimum 3): Ensures comprehensive coverage
- Include preprint servers: Captures latest unpublished findings
- Document everything: Search strings, dates, result counts for reproducibility
- Test and refine: Run pilot searches, review results, adjust search terms
- Sort by citations: When available, sort search results by citation count to surface influential work first
Screening and Selection
- Use clear criteria: Document inclusion/exclusion criteria before screening
- Screen systematically: Title → Abstract → Full text
- Document exclusions: Record reasons for excluding studies
- Consider dual screening: For systematic reviews, have two reviewers screen independently
Synthesis
- Organize thematically: Group by themes, NOT by individual studies
- Synthesize across studies: Compare, contrast, identify patterns
- Be critical: Evaluate quality and consistency of evidence
- Identify gaps: Note what's missing or understudied
Quality and Reproducibility
- Assess study quality: Use appropriate quality assessment tools
- Verify all citations: Run verify_citations.py script
- Document methodology: Provide enough detail for others to reproduce
- Follow guidelines: Use PRISMA for systematic reviews
Writing
- Be objective: Present evidence fairly, acknowledge limitations
- Be systematic: Follow structured template
- Be specific: Include numbers, statistics, effect sizes where available
- Be clear: Use clear headings, logical flow, thematic organization
Common Pitfalls to Avoid
- Single database search: Misses relevant papers; always search multiple databases
- No search documentation: Makes review irreproducible; document all searches
- Study-by-study summary: Lacks synthesis; organize thematically instead
- Unverified citations: Leads to errors; always run verify_citations.py
- Too broad search: Yields thousands of irrelevant results; refine with specific terms
- Too narrow search: Misses relevant papers; include synonyms and related terms
- Ignoring preprints: Misses latest findings; include bioRxiv, medRxiv, arXiv
- No quality assessment: Treats all evidence equally; assess and report quality
- Publication bias: Only positive results published; note potential bias
- Outdated search: Field evolves rapidly; clearly state search date
Example Workflow
Complete workflow for a biomedical literature review:
# 1. Create review document from template
cp assets/review_template.md crispr_sickle_cell_review.md
# 2. Search multiple databases using appropriate skills
# - Use gget skill for PubMed, bioRxiv
# - Use direct API access for arXiv, Semantic Scholar
# - Export results in JSON format
# 3. Aggregate and process results
python scripts/search_databases.py combined_results.json \
--deduplicate \
--rank citations \
--year-start 2015 \
--year-end 2024 \
--format markdown \
--output search_results.md \
--summary
# 4. Screen results and extract data
# - Manually screen titles, abstracts, full texts
# - Extract key data into the review document
# - Organize by themes
# 5. Write the review following template structure
# - Introduction with clear objectives
# - Detailed methodology section
# - Results organized thematically
# - Critical discussion
# - Clear conclusions
# 6. Verify all citations
python scripts/verify_citations.py crispr_sickle_cell_review.md
# Review the citation report
cat crispr_sickle_cell_review_citation_report.json
# Fix any failed citations and re-verify
python scripts/verify_citations.py crispr_sickle_cell_review.md
# 7. Generate professional PDF
python scripts/generate_pdf.py crispr_sickle_cell_review.md \
--citation-style nature \
--output crispr_sickle_cell_review.pdf
# 8. Review final PDF and markdown outputs
Integration with Other Skills
This skill works seamlessly with other scientific skills:
Database Access Skills
- gget: PubMed, bioRxiv, COSMIC, AlphaFold, Ensembl, UniProt
- bioservices: ChEMBL, KEGG, Reactome, UniProt, PubChem
- datacommons-client: Demographics, economics, health statistics
Analysis Skills
- pydeseq2: RNA-seq differential expression (for methods sections)
- scanpy: Single-cell analysis (for methods sections)
- anndata: Single-cell data (for methods sections)
- biopython: Sequence analysis (for background sections)
Visualization Skills
- matplotlib: Generate figures and plots for review
- seaborn: Statistical visualizations
Writing Skills
- brand-guidelines: Apply institutional branding to PDF
- internal-comms: Adapt review for different audiences
Resources
Bundled Resources
Scripts:
scripts/verify_citations.py: Verify DOIs and generate formatted citations
scripts/generate_pdf.py: Convert markdown to professional PDF
scripts/search_databases.py: Process, deduplicate, and format search results
References:
references/citation_styles.md: Detailed citation formatting guide (APA, Nature, Vancouver, Chicago, IEEE)
references/database_strategies.md: Comprehensive database search strategies
Assets:
assets/review_template.md: Complete literature review template with all sections
External Resources
Guidelines:
Tools:
Citation Styles:
Dependencies
Required Python Packages
pip install requests # For citation verification
Required System Tools
# For PDF generation
brew install pandoc # macOS
apt-get install pandoc # Linux
# For LaTeX (PDF generation)
brew install --cask mactex # macOS
apt-get install texlive-xetex # Linux
Check dependencies:
python scripts/generate_pdf.py --check-deps
Summary
This literature-review skill provides:
- Systematic methodology following academic best practices
- Multi-database integration via existing scientific skills
- Citation verification ensuring accuracy and credibility
- Professional output in markdown and PDF formats
- Comprehensive guidance covering the entire review process
- Quality assurance with verification and validation tools
- Reproducibility through detailed documentation requirements
Conduct thorough, rigorous literature reviews that meet academic standards and provide comprehensive synthesis of current knowledge in any domain.
1---2name: literature-review-23description: Conduct comprehensive, systematic literature reviews using multiple academic databases (PubMed, arXiv, bioRxiv, Semantic Scholar, etc.). This skill should be used when conducting systematic literature reviews, meta-analyses, research synthesis, or comprehensive literature searches across biomedical, scientific, and technical domains. Creates professionally formatted markdown documents and PDFs with verified citations in multiple citation styles (APA, Nature, Vancouver, etc.).4license: MIT license5---6
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9 ║ 本文件为开源 Skill 原始文档,收录仅供学习与研究参考 ║
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13 来源仓库: https://github.com/K-Dense-AI/claude-scientific-skills
14 项目名称: claude-scientific-skills
15 开源协议: MIT License
16 收录日期: 2026-04-02
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21
22# Literature Review
23
24## Overview
25
26Conduct systematic, comprehensive literature reviews following rigorous academic methodology. Search multiple literature databases, synthesize findings thematically, verify all citations for accuracy, and generate professional output documents in markdown and PDF formats.
27
28This skill integrates with multiple scientific skills for database access (gget, bioservices, datacommons-client) and provides specialized tools for citation verification, result aggregation, and document generation.
29
30## When to Use This Skill
31
32Use this skill when:
33- Conducting a systematic literature review for research or publication
34- Synthesizing current knowledge on a specific topic across multiple sources
35- Performing meta-analysis or scoping reviews
36- Writing the literature review section of a research paper or thesis
37- Investigating the state of the art in a research domain
38- Identifying research gaps and future directions
39- Requiring verified citations and professional formatting
40
41## Visual Enhancement with Scientific Schematics
42
43**⚠️ MANDATORY: Every literature review MUST include at least 1-2 AI-generated figures using the scientific-schematics skill.**
44
45This is not optional. Literature reviews without visual elements are incomplete. Before finalizing any document:
461. Generate at minimum ONE schematic or diagram (e.g., PRISMA flow diagram for systematic reviews)
472. Prefer 2-3 figures for comprehensive reviews (search strategy flowchart, thematic synthesis diagram, conceptual framework)
48
49**How to generate figures:**
50- Use the **scientific-schematics** skill to generate AI-powered publication-quality diagrams
51- Simply describe your desired diagram in natural language
52- Nano Banana Pro will automatically generate, review, and refine the schematic
53
54**How to generate schematics:**
55```bash
56python scripts/generate_schematic.py "your diagram description" -o figures/output.png
57```
58
59The AI will automatically:
60- Create publication-quality images with proper formatting
61- Review and refine through multiple iterations
62- Ensure accessibility (colorblind-friendly, high contrast)
63- Save outputs in the figures/ directory
64
65**When to add schematics:**
66- PRISMA flow diagrams for systematic reviews
67- Literature search strategy flowcharts
68- Thematic synthesis diagrams
69- Research gap visualization maps
70- Citation network diagrams
71- Conceptual framework illustrations
72- Any complex concept that benefits from visualization
73
74For detailed guidance on creating schematics, refer to the scientific-schematics skill documentation.
75
76---
77
78## Core Workflow
79
80Literature reviews follow a structured, multi-phase workflow:
81
82### Phase 1: Planning and Scoping
83
841. **Define Research Question**: Use PICO framework (Population, Intervention, Comparison, Outcome) for clinical/biomedical reviews
85 - Example: "What is the efficacy of CRISPR-Cas9 (I) for treating sickle cell disease (P) compared to standard care (C)?"
86
872. **Establish Scope and Objectives**:
88 - Define clear, specific research questions
89 - Determine review type (narrative, systematic, scoping, meta-analysis)
90 - Set boundaries (time period, geographic scope, study types)
91
923. **Develop Search Strategy**:
93 - Identify 2-4 main concepts from research question
94 - List synonyms, abbreviations, and related terms for each concept
95 - Plan Boolean operators (AND, OR, NOT) to combine terms
96 - Select minimum 3 complementary databases
97
984. **Set Inclusion/Exclusion Criteria**:
99 - Date range (e.g., last 10 years: 2015-2024)
100 - Language (typically English, or specify multilingual)
101 - Publication types (peer-reviewed, preprints, reviews)
102 - Study designs (RCTs, observational, in vitro, etc.)
103 - Document all criteria clearly
104
105### Phase 2: Systematic Literature Search
106
1071. **Multi-Database Search**:
108
109 Select databases appropriate for the domain:
110
111 **Biomedical & Life Sciences:**
112 - Use `gget` skill: `gget search pubmed "search terms"` for PubMed/PMC
113 - Use `gget` skill: `gget search biorxiv "search terms"` for preprints
114 - Use `bioservices` skill for ChEMBL, KEGG, UniProt, etc.
115
116 **General Scientific Literature:**
117 - Search arXiv via direct API (preprints in physics, math, CS, q-bio)
118 - Search Semantic Scholar via API (200M+ papers, cross-disciplinary)
119 - Use Google Scholar for comprehensive coverage (manual or careful scraping)
120
121 **Specialized Databases:**
122 - Use `gget alphafold` for protein structures
123 - Use `gget cosmic` for cancer genomics
124 - Use `datacommons-client` for demographic/statistical data
125 - Use specialized databases as appropriate for the domain
126
1272. **Document Search Parameters**:
128 ```markdown
129 ## Search Strategy
130
131 ### Database: PubMed
132 - **Date searched**: 2024-10-25
133 - **Date range**: 2015-01-01 to 2024-10-25
134 - **Search string**:
135 ```
136 ("CRISPR"[Title] OR "Cas9"[Title])
137 AND ("sickle cell"[MeSH] OR "SCD"[Title/Abstract])
138 AND 2015:2024[Publication Date]
139 ```
140 - **Results**: 247 articles
141 ```
142
143 Repeat for each database searched.
144
1453. **Export and Aggregate Results**:
146 - Export results in JSON format from each database
147 - Combine all results into a single file
148 - Use `scripts/search_databases.py` for post-processing:
149 ```bash
150 python search_databases.py combined_results.json \
151 --deduplicate \
152 --format markdown \
153 --output aggregated_results.md
154 ```
155
156### Phase 3: Screening and Selection
157
1581. **Deduplication**:
159 ```bash
160 python search_databases.py results.json --deduplicate --output unique_results.json
161 ```
162 - Removes duplicates by DOI (primary) or title (fallback)
163 - Document number of duplicates removed
164
1652. **Title Screening**:
166 - Review all titles against inclusion/exclusion criteria
167 - Exclude obviously irrelevant studies
168 - Document number excluded at this stage
169
1703. **Abstract Screening**:
171 - Read abstracts of remaining studies
172 - Apply inclusion/exclusion criteria rigorously
173 - Document reasons for exclusion
174
1754. **Full-Text Screening**:
176 - Obtain full texts of remaining studies
177 - Conduct detailed review against all criteria
178 - Document specific reasons for exclusion
179 - Record final number of included studies
180
1815. **Create PRISMA Flow Diagram**:
182 ```
183 Initial search: n = X
184 ├─ After deduplication: n = Y
185 ├─ After title screening: n = Z
186 ├─ After abstract screening: n = A
187 └─ Included in review: n = B
188 ```
189
190### Phase 4: Data Extraction and Quality Assessment
191
1921. **Extract Key Data** from each included study:
193 - Study metadata (authors, year, journal, DOI)
194 - Study design and methods
195 - Sample size and population characteristics
196 - Key findings and results
197 - Limitations noted by authors
198 - Funding sources and conflicts of interest
199
2002. **Assess Study Quality**:
201 - **For RCTs**: Use Cochrane Risk of Bias tool
202 - **For observational studies**: Use Newcastle-Ottawa Scale
203 - **For systematic reviews**: Use AMSTAR 2
204 - Rate each study: High, Moderate, Low, or Very Low quality
205 - Consider excluding very low-quality studies
206
2073. **Organize by Themes**:
208 - Identify 3-5 major themes across studies
209 - Group studies by theme (studies may appear in multiple themes)
210 - Note patterns, consensus, and controversies
211
212### Phase 5: Synthesis and Analysis
213
2141. **Create Review Document** from template:
215 ```bash
216 cp assets/review_template.md my_literature_review.md
217 ```
218
2192. **Write Thematic Synthesis** (NOT study-by-study summaries):
220 - Organize Results section by themes or research questions
221 - Synthesize findings across multiple studies within each theme
222 - Compare and contrast different approaches and results
223 - Identify consensus areas and points of controversy
224 - Highlight the strongest evidence
225
226 Example structure:
227 ```markdown
228 #### 3.3.1 Theme: CRISPR Delivery Methods
229
230 Multiple delivery approaches have been investigated for therapeutic
231 gene editing. Viral vectors (AAV) were used in 15 studies^1-15^ and
232 showed high transduction efficiency (65-85%) but raised immunogenicity
233 concerns^3,7,12^. In contrast, lipid nanoparticles demonstrated lower
234 efficiency (40-60%) but improved safety profiles^16-23^.
235 ```
236
2373. **Critical Analysis**:
238 - Evaluate methodological strengths and limitations across studies
239 - Assess quality and consistency of evidence
240 - Identify knowledge gaps and methodological gaps
241 - Note areas requiring future research
242
2434. **Write Discussion**:
244 - Interpret findings in broader context
245 - Discuss clinical, practical, or research implications
246 - Acknowledge limitations of the review itself
247 - Compare with previous reviews if applicable
248 - Propose specific future research directions
249
250### Phase 6: Citation Verification
251
252**CRITICAL**: All citations must be verified for accuracy before final submission.
253
2541. **Verify All DOIs**:
255 ```bash
256 python scripts/verify_citations.py my_literature_review.md
257 ```
258
259 This script:
260 - Extracts all DOIs from the document
261 - Verifies each DOI resolves correctly
262 - Retrieves metadata from CrossRef
263 - Generates verification report
264 - Outputs properly formatted citations
265
2662. **Review Verification Report**:
267 - Check for any failed DOIs
268 - Verify author names, titles, and publication details match
269 - Correct any errors in the original document
270 - Re-run verification until all citations pass
271
2723. **Format Citations Consistently**:
273 - Choose one citation style and use throughout (see `references/citation_styles.md`)
274 - Common styles: APA, Nature, Vancouver, Chicago, IEEE
275 - Use verification script output to format citations correctly
276 - Ensure in-text citations match reference list format
277
278### Phase 7: Document Generation
279
2801. **Generate PDF**:
281 ```bash
282 python scripts/generate_pdf.py my_literature_review.md \
283 --citation-style apa \
284 --output my_review.pdf
285 ```
286
287 Options:
288 - `--citation-style`: apa, nature, chicago, vancouver, ieee
289 - `--no-toc`: Disable table of contents
290 - `--no-numbers`: Disable section numbering
291 - `--check-deps`: Check if pandoc/xelatex are installed
292
2932. **Review Final Output**:
294 - Check PDF formatting and layout
295 - Verify all sections are present
296 - Ensure citations render correctly
297 - Check that figures/tables appear properly
298 - Verify table of contents is accurate
299
3003. **Quality Checklist**:
301 - [ ] All DOIs verified with verify_citations.py
302 - [ ] Citations formatted consistently
303 - [ ] PRISMA flow diagram included (for systematic reviews)
304 - [ ] Search methodology fully documented
305 - [ ] Inclusion/exclusion criteria clearly stated
306 - [ ] Results organized thematically (not study-by-study)
307 - [ ] Quality assessment completed
308 - [ ] Limitations acknowledged
309 - [ ] References complete and accurate
310 - [ ] PDF generates without errors
311
312## Database-Specific Search Guidance
313
314### PubMed / PubMed Central
315
316Access via `gget` skill:
317```bash
318# Search PubMed
319gget search pubmed "CRISPR gene editing" -l 100
320
321# Search with filters
322# Use PubMed Advanced Search Builder to construct complex queries
323# Then execute via gget or direct Entrez API
324```
325
326**Search tips**:
327- Use MeSH terms: `"sickle cell disease"[MeSH]`
328- Field tags: `[Title]`, `[Title/Abstract]`, `[Author]`
329- Date filters: `2020:2024[Publication Date]`
330- Boolean operators: AND, OR, NOT
331- See MeSH browser: https://meshb.nlm.nih.gov/search
332
333### bioRxiv / medRxiv
334
335Access via `gget` skill:
336```bash
337gget search biorxiv "CRISPR sickle cell" -l 50
338```
339
340**Important considerations**:
341- Preprints are not peer-reviewed
342- Verify findings with caution
343- Check if preprint has been published (CrossRef)
344- Note preprint version and date
345
346### arXiv
347
348Access via direct API or WebFetch:
349```python
350# Example search categories:
351# q-bio.QM (Quantitative Methods)
352# q-bio.GN (Genomics)
353# q-bio.MN (Molecular Networks)
354# cs.LG (Machine Learning)
355# stat.ML (Machine Learning Statistics)
356
357# Search format: category AND terms
358search_query = "cat:q-bio.QM AND ti:\"single cell sequencing\""
359```
360
361### Semantic Scholar
362
363Access via direct API (requires API key, or use free tier):
364- 200M+ papers across all fields
365- Excellent for cross-disciplinary searches
366- Provides citation graphs and paper recommendations
367- Use for finding highly influential papers
368
369### Specialized Biomedical Databases
370
371Use appropriate skills:
372- **ChEMBL**: `bioservices` skill for chemical bioactivity
373- **UniProt**: `gget` or `bioservices` skill for protein information
374- **KEGG**: `bioservices` skill for pathways and genes
375- **COSMIC**: `gget` skill for cancer mutations
376- **AlphaFold**: `gget alphafold` for protein structures
377- **PDB**: `gget` or direct API for experimental structures
378
379### Citation Chaining
380
381Expand search via citation networks:
382
3831. **Forward citations** (papers citing key papers):
384 - Use Google Scholar "Cited by"
385 - Use Semantic Scholar or OpenAlex APIs
386 - Identifies newer research building on seminal work
387
3882. **Backward citations** (references from key papers):
389 - Extract references from included papers
390 - Identify highly cited foundational work
391 - Find papers cited by multiple included studies
392
393## Citation Style Guide
394
395Detailed formatting guidelines are in `references/citation_styles.md`. Quick reference:
396
397### APA (7th Edition)
398- In-text: (Smith et al., 2023)
399- Reference: Smith, J. D., Johnson, M. L., & Williams, K. R. (2023). Title. *Journal*, *22*(4), 301-318. https://doi.org/10.xxx/yyy
400
401### Nature
402- In-text: Superscript numbers^1,2^
403- Reference: Smith, J. D., Johnson, M. L. & Williams, K. R. Title. *Nat. Rev. Drug Discov.* **22**, 301-318 (2023).
404
405### Vancouver
406- In-text: Superscript numbers^1,2^
407- Reference: Smith JD, Johnson ML, Williams KR. Title. Nat Rev Drug Discov. 2023;22(4):301-18.
408
409**Always verify citations** with verify_citations.py before finalizing.
410
411### Prioritizing High-Impact Papers (CRITICAL)
412
413**Always prioritize influential, highly-cited papers from reputable authors and top venues.** Quality matters more than quantity in literature reviews.
414
415#### Citation Count Thresholds
416
417Use citation counts to identify the most impactful papers:
418
419| Paper Age | Citation Threshold | Classification |
420|-----------|-------------------|----------------|
421| 0-3 years | 20+ citations | Noteworthy |
422| 0-3 years | 100+ citations | Highly Influential |
423| 3-7 years | 100+ citations | Significant |
424| 3-7 years | 500+ citations | Landmark Paper |
425| 7+ years | 500+ citations | Seminal Work |
426| 7+ years | 1000+ citations | Foundational |
427
428#### Journal and Venue Tiers
429
430Prioritize papers from higher-tier venues:
431
432- **Tier 1 (Always Prefer):** Nature, Science, Cell, NEJM, Lancet, JAMA, PNAS, Nature Medicine, Nature Biotechnology
433- **Tier 2 (Strong Preference):** High-impact specialized journals (IF>10), top conferences (NeurIPS, ICML for ML/AI)
434- **Tier 3 (Include When Relevant):** Respected specialized journals (IF 5-10)
435- **Tier 4 (Use Sparingly):** Lower-impact peer-reviewed venues
436
437#### Author Reputation Assessment
438
439Prefer papers from:
440- **Senior researchers** with high h-index (>40 in established fields)
441- **Leading research groups** at recognized institutions (Harvard, Stanford, MIT, Oxford, etc.)
442- **Authors with multiple Tier-1 publications** in the relevant field
443- **Researchers with recognized expertise** (awards, editorial positions, society fellows)
444
445#### Identifying Seminal Papers
446
447For any topic, identify foundational work by:
4481. **High citation count** (typically 500+ for papers 5+ years old)
4492. **Frequently cited by other included studies** (appears in many reference lists)
4503. **Published in Tier-1 venues** (Nature, Science, Cell family)
4514. **Written by field pioneers** (often cited as establishing concepts)
452
453## Best Practices
454
455### Search Strategy
4561. **Use multiple databases** (minimum 3): Ensures comprehensive coverage
4572. **Include preprint servers**: Captures latest unpublished findings
4583. **Document everything**: Search strings, dates, result counts for reproducibility
4594. **Test and refine**: Run pilot searches, review results, adjust search terms
4605. **Sort by citations**: When available, sort search results by citation count to surface influential work first
461
462### Screening and Selection
4631. **Use clear criteria**: Document inclusion/exclusion criteria before screening
4642. **Screen systematically**: Title → Abstract → Full text
4653. **Document exclusions**: Record reasons for excluding studies
4664. **Consider dual screening**: For systematic reviews, have two reviewers screen independently
467
468### Synthesis
4691. **Organize thematically**: Group by themes, NOT by individual studies
4702. **Synthesize across studies**: Compare, contrast, identify patterns
4713. **Be critical**: Evaluate quality and consistency of evidence
4724. **Identify gaps**: Note what's missing or understudied
473
474### Quality and Reproducibility
4751. **Assess study quality**: Use appropriate quality assessment tools
4762. **Verify all citations**: Run verify_citations.py script
4773. **Document methodology**: Provide enough detail for others to reproduce
4784. **Follow guidelines**: Use PRISMA for systematic reviews
479
480### Writing
4811. **Be objective**: Present evidence fairly, acknowledge limitations
4822. **Be systematic**: Follow structured template
4833. **Be specific**: Include numbers, statistics, effect sizes where available
4844. **Be clear**: Use clear headings, logical flow, thematic organization
485
486## Common Pitfalls to Avoid
487
4881. **Single database search**: Misses relevant papers; always search multiple databases
4892. **No search documentation**: Makes review irreproducible; document all searches
4903. **Study-by-study summary**: Lacks synthesis; organize thematically instead
4914. **Unverified citations**: Leads to errors; always run verify_citations.py
4925. **Too broad search**: Yields thousands of irrelevant results; refine with specific terms
4936. **Too narrow search**: Misses relevant papers; include synonyms and related terms
4947. **Ignoring preprints**: Misses latest findings; include bioRxiv, medRxiv, arXiv
4958. **No quality assessment**: Treats all evidence equally; assess and report quality
4969. **Publication bias**: Only positive results published; note potential bias
49710. **Outdated search**: Field evolves rapidly; clearly state search date
498
499## Example Workflow
500
501Complete workflow for a biomedical literature review:
502
503```bash
504# 1. Create review document from template
505cp assets/review_template.md crispr_sickle_cell_review.md
506
507# 2. Search multiple databases using appropriate skills
508# - Use gget skill for PubMed, bioRxiv
509# - Use direct API access for arXiv, Semantic Scholar
510# - Export results in JSON format
511
512# 3. Aggregate and process results
513python scripts/search_databases.py combined_results.json \
514 --deduplicate \
515 --rank citations \
516 --year-start 2015 \
517 --year-end 2024 \
518 --format markdown \
519 --output search_results.md \
520 --summary
521
522# 4. Screen results and extract data
523# - Manually screen titles, abstracts, full texts
524# - Extract key data into the review document
525# - Organize by themes
526
527# 5. Write the review following template structure
528# - Introduction with clear objectives
529# - Detailed methodology section
530# - Results organized thematically
531# - Critical discussion
532# - Clear conclusions
533
534# 6. Verify all citations
535python scripts/verify_citations.py crispr_sickle_cell_review.md
536
537# Review the citation report
538cat crispr_sickle_cell_review_citation_report.json
539
540# Fix any failed citations and re-verify
541python scripts/verify_citations.py crispr_sickle_cell_review.md
542
543# 7. Generate professional PDF
544python scripts/generate_pdf.py crispr_sickle_cell_review.md \
545 --citation-style nature \
546 --output crispr_sickle_cell_review.pdf
547
548# 8. Review final PDF and markdown outputs
549```
550
551## Integration with Other Skills
552
553This skill works seamlessly with other scientific skills:
554
555### Database Access Skills
556- **gget**: PubMed, bioRxiv, COSMIC, AlphaFold, Ensembl, UniProt
557- **bioservices**: ChEMBL, KEGG, Reactome, UniProt, PubChem
558- **datacommons-client**: Demographics, economics, health statistics
559
560### Analysis Skills
561- **pydeseq2**: RNA-seq differential expression (for methods sections)
562- **scanpy**: Single-cell analysis (for methods sections)
563- **anndata**: Single-cell data (for methods sections)
564- **biopython**: Sequence analysis (for background sections)
565
566### Visualization Skills
567- **matplotlib**: Generate figures and plots for review
568- **seaborn**: Statistical visualizations
569
570### Writing Skills
571- **brand-guidelines**: Apply institutional branding to PDF
572- **internal-comms**: Adapt review for different audiences
573
574## Resources
575
576### Bundled Resources
577
578**Scripts:**
579- `scripts/verify_citations.py`: Verify DOIs and generate formatted citations
580- `scripts/generate_pdf.py`: Convert markdown to professional PDF
581- `scripts/search_databases.py`: Process, deduplicate, and format search results
582
583**References:**
584- `references/citation_styles.md`: Detailed citation formatting guide (APA, Nature, Vancouver, Chicago, IEEE)
585- `references/database_strategies.md`: Comprehensive database search strategies
586
587**Assets:**
588- `assets/review_template.md`: Complete literature review template with all sections
589
590### External Resources
591
592**Guidelines:**
593- PRISMA (Systematic Reviews): http://www.prisma-statement.org/
594- Cochrane Handbook: https://training.cochrane.org/handbook
595- AMSTAR 2 (Review Quality): https://amstar.ca/
596
597**Tools:**
598- MeSH Browser: https://meshb.nlm.nih.gov/search
599- PubMed Advanced Search: https://pubmed.ncbi.nlm.nih.gov/advanced/
600- Boolean Search Guide: https://www.ncbi.nlm.nih.gov/books/NBK3827/
601
602**Citation Styles:**
603- APA Style: https://apastyle.apa.org/
604- Nature Portfolio: https://www.nature.com/nature-portfolio/editorial-policies/reporting-standards
605- NLM/Vancouver: https://www.nlm.nih.gov/bsd/uniform_requirements.html
606
607## Dependencies
608
609### Required Python Packages
610```bash
611pip install requests # For citation verification
612```
613
614### Required System Tools
615```bash
616# For PDF generation
617brew install pandoc # macOS
618apt-get install pandoc # Linux
619
620# For LaTeX (PDF generation)
621brew install --cask mactex # macOS
622apt-get install texlive-xetex # Linux
623```
624
625Check dependencies:
626```bash
627python scripts/generate_pdf.py --check-deps
628```
629
630## Summary
631
632This literature-review skill provides:
633
6341. **Systematic methodology** following academic best practices
6352. **Multi-database integration** via existing scientific skills
6363. **Citation verification** ensuring accuracy and credibility
6374. **Professional output** in markdown and PDF formats
6385. **Comprehensive guidance** covering the entire review process
6396. **Quality assurance** with verification and validation tools
6407. **Reproducibility** through detailed documentation requirements
641
642Conduct thorough, rigorous literature reviews that meet academic standards and provide comprehensive synthesis of current knowledge in any domain.