Scientific writing is a process for communicating research with precision and clarity. Write manuscripts using IMRAD structure, citation-integrated prose, figure/table captions, and reporting guidelines (CONSORT/STROBE/PRISMA). Apply this skill for research papers and journal submissions.
Critical Principle: Always write in full paragraphs with flowing prose. Never submit bullet points in the final manuscript. Use a two-stage process: first create section outlines with key points, then convert those outlines into complete paragraphs.
When to Use This Skill
This skill should be used when:
Writing or revising any section of a scientific manuscript (abstract, introduction, methods, results, discussion)
Structuring a research paper using IMRAD or other standard formats
Formatting citations and references in specific styles (APA, AMA, Vancouver, Chicago, IEEE)
Writing figure/table callouts, captions, and result interpretation in manuscript prose
Applying study-specific reporting guidelines (CONSORT for trials, STROBE for observational studies, PRISMA for reviews)
Drafting abstracts that meet journal requirements (structured or unstructured)
Preparing manuscripts for submission to specific journals
Improving writing clarity, conciseness, and precision
Ensuring proper use of field-specific terminology and nomenclature
Revising manuscript prose in response to reviewer comments
Figure And Table Prose Boundary
This skill can specify where figures/tables belong, write captions, and connect display items to the narrative. It does not generate diagrams, plots, posters, or visual assets, and it must not require a separate visual specialist as part of normal writing.
Core Capabilities
1. Manuscript Structure and Organization
IMRAD Format: Guide papers through the standard Introduction, Methods, Results, And Discussion structure used across most scientific disciplines. This includes:
Introduction: Establish research context, identify gaps, state objectives
Methods: Detail study design, populations, procedures, and analysis approaches
Results: Present findings objectively without interpretation
For detailed guidance on IMRAD structure, refer to references/imrad_structure.md.
Alternative Structures: Support discipline-specific formats including:
Review articles (narrative, systematic, scoping)
Case reports and case series
Meta-analyses and pooled analyses
Theoretical/modeling papers
Methods papers and protocols
2. Section-Specific Writing Guidance
Abstract Composition: Craft concise, standalone summaries (100-250 words) that capture the paper's purpose, methods, results, and conclusions. Support both structured abstracts (with labeled sections) and unstructured single-paragraph formats.
Suggesting practical implications and future research
3. Citation-Integrated Prose
Apply citation styles correctly across disciplines. This skill handles citation placement and style in prose; it does not manage reference libraries or bibliography cleanup. For style details, refer to references/citation_styles.md.
Major Citation Styles:
AMA (American Medical Association): Numbered superscript citations, common in medicine
Vancouver: Numbered citations in square brackets, biomedical standard
APA (American Psychological Association): Author-date in-text citations, common in social sciences
Chicago: Notes-bibliography or author-date, humanities and sciences
IEEE: Numbered square brackets, engineering and computer science
Best Practices:
Cite primary sources when possible
Include recent literature (last 5-10 years for active fields)
Balance citation distribution across introduction and discussion
Verify all citations against original sources
Keep bibliography management as a separate deliverable if the user explicitly asks for it
4. Figure And Table Writing
Write effective figure/table references and captions that enhance comprehension. For detailed best practices, refer to references/figures_tables.md.
Figures: Trends, patterns, relationships, comparisons best understood visually
Design Principles:
Make each table/figure self-explanatory with complete captions
Use consistent formatting and terminology across all display items
Label all axes, columns, and rows with units
Include sample sizes (n) and statistical annotations
Follow the "one table/figure per 1000 words" guideline
Avoid duplicating information between text, tables, and figures
Common Figure Types:
Bar graphs: Comparing discrete categories
Line graphs: Showing trends over time
Scatterplots: Displaying correlations
Box plots: Showing distributions and outliers
Heatmaps: Visualizing matrices and patterns
5. Reporting Guidelines by Study Type
Ensure completeness and transparency by following established reporting standards. For comprehensive guideline details, refer to references/reporting_guidelines.md.
Each guideline provides checklists ensuring all critical methodological elements are reported.
6. Writing Principles and Style
Apply fundamental scientific writing principles. For detailed guidance, refer to references/writing_principles.md.
Clarity:
Use precise, unambiguous language
Define technical terms and abbreviations at first use
Maintain logical flow within and between paragraphs
Use active voice when appropriate for clarity
Conciseness:
Eliminate redundant words and phrases
Favor shorter sentences (15-20 words average)
Remove unnecessary qualifiers
Respect word limits strictly
Accuracy:
Report exact values with appropriate precision
Use consistent terminology throughout
Distinguish between observations and interpretations
Acknowledge uncertainty appropriately
Objectivity:
Present results without bias
Avoid overstating findings or implications
Acknowledge conflicting evidence
Maintain professional, neutral tone
7. Writing Process: From Outline to Full Paragraphs
CRITICAL: Always write in full paragraphs, never submit bullet points in scientific papers.
Scientific papers must be written in complete, flowing prose. Use this two-stage approach for effective writing:
Stage 1: Create Section Outlines with Key Points
When starting a new section:
Gather relevant literature notes, accepted source excerpts, methods, and data points from the available materials
Create a structured outline with bullet points marking:
Main arguments or findings to present
Key studies to cite
Data points and statistics to include
Logical flow and organization
These bullet points serve as scaffolding—they are NOT the final manuscript
Example outline (Introduction section):
- Background: AI in drug discovery gaining traction
* Cite recent reviews (Smith 2023, Jones 2024)
* Traditional methods are slow and expensive
- Gap: Limited application to rare diseases
* Only 2 prior studies (Lee 2022, Chen 2023)
* Small datasets remain a challenge
- Our approach: Transfer learning from common diseases
* Novel architecture combining X and Y
- Study objectives: Validate on 3 rare disease datasets
Stage 2: Convert Key Points to Full Paragraphs
Once the outline is complete, expand each bullet point into proper prose:
Transform bullet points into complete sentences with subjects, verbs, and objects
Add transitions between sentences and ideas (however, moreover, in contrast, subsequently)
Integrate citations naturally within sentences, not as lists
Expand with context and explanation that bullet points omit
Ensure logical flow from one sentence to the next within each paragraph
Vary sentence structure to maintain reader engagement
Example conversion to prose:
Artificial intelligence approaches have gained significant traction in drug discovery
pipelines over the past decade (Smith, 2023; Jones, 2024). While these computational
methods show promise for accelerating the identification of therapeutic candidates,
traditional experimental approaches remain slow and resource-intensive, often requiring
years of laboratory work and substantial financial investment. However, the application
of AI to rare diseases has been limited, with only two prior studies demonstrating
proof-of-concept results (Lee, 2022; Chen, 2023). The primary obstacle has been the
scarcity of training data for conditions affecting small patient populations.
To address this challenge, we developed a transfer learning approach that leverages
knowledge from well-characterized common diseases to predict therapeutic targets for
rare conditions. Our novel neural architecture combines convolutional layers for
molecular feature extraction with attention mechanisms for protein-ligand interaction
modeling. The objective of this study was to validate our approach across three
independent rare disease datasets, assessing both predictive accuracy and biological
interpretability of the results.
Key Differences Between Outlines and Final Text:
| Outline (Planning Stage) | Final Manuscript |
|--------------------------|------------------|
| Bullet points and fragments | Complete sentences and paragraphs |
| Telegraphic notes | Full explanations with context |
| List of citations | Citations integrated into prose |
| Abbreviated ideas | Developed arguments with transitions |
| For your eyes only | For publication and peer review |
Common Mistakes to Avoid:
❌ Never leave bullet points in the final manuscript
❌ Never submit lists where paragraphs should be
❌ Don't use numbered or bulleted lists in Results or Discussion sections (except for specific cases like study hypotheses or inclusion criteria)
❌ Don't write sentence fragments or incomplete thoughts
✅ Do use occasional lists only in Methods (e.g., inclusion/exclusion criteria, materials lists)
✅ Do ensure every section flows as connected prose
✅ Do read paragraphs aloud to check for natural flow
When Lists ARE Acceptable (Limited Cases):
Lists may appear in scientific papers only in specific contexts:
Methods: Inclusion/exclusion criteria, materials and reagents, participant characteristics
Include required statements (funding, conflicts of interest, data availability, ethical approval)
Adhere to word limits for each section
Format according to template requirements when provided
9. Field-Specific Language and Terminology
Adapt language, terminology, and conventions to match the specific scientific discipline. Each field has established vocabulary, preferred phrasings, and domain-specific conventions that signal expertise and ensure clarity for the target audience.
Identify Field-Specific Linguistic Conventions:
Review terminology used in recent high-impact papers in the target journal
Note field-specific abbreviations, units, and notation systems
Identify preferred terms (e.g., "participants" vs. "subjects," "compound" vs. "drug," "specimens" vs. "samples")
Observe how methods, organisms, or techniques are typically described
Biomedical and Clinical Sciences:
Use precise anatomical and clinical terminology (e.g., "myocardial infarction" not "heart attack" in formal writing)
Write Introduction (setting up the research question)
Craft Abstract (synthesizing the complete story)
Create Title (concise and descriptive)
Remember: Bullet points are for planning only—the final manuscript must be in complete paragraphs.
Stage 3: Revision
Check logical flow and "red thread" throughout
Verify consistency in terminology and notation
Ensure figures/tables are self-explanatory
Confirm adherence to reporting guidelines
Verify all citations are accurate and properly formatted
Check word counts for each section
Proofread for grammar, spelling, and clarity
Stage 4: Final Preparation
Format according to journal requirements
Prepare supplementary materials
Write cover letter highlighting significance
Complete submission checklists
Gather all required statements and forms
Boundary
This skill owns manuscript prose only. It does not inline-call data analysis, literature search, figure generation, reference-library cleanup, or submission packaging. If the user request includes those deliverables, routing should select the appropriate owner before work starts rather than treating them as helpers inside this skill.
References
This skill includes comprehensive reference files covering specific aspects of scientific writing:
references/imrad_structure.md: Detailed guide to IMRAD format and section-specific content