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π AI Systems Engineer & Open Source Builder specializing in Interpretable ML, Vector Databases (Qdrant/Chroma), and Custom AI Agents for global startups & research teams.
"Models should not only predict well β they should explain well."
I approach modeling through three core principles:
- Statistical validity before scale β Ensuring assumptions and tests are mathematically grounded before scaling computation.
- Interpretability before optimization β Understanding feature importance and logic paths before squeezing marginal decimal gains.
- Domain meaning before deployment β Ensuring features translate directly to clinical or business reality.
My research interests include:
- Permutation-based, resampling, and nonparametric inference
- Interpretable and explainable machine learning (post-hoc & intrinsic)
- Dimensionality reduction with geometric and statistical intuition
- Robustness, stability, and noise-aware modeling
- Translating statistical theory into clinically actionable insights
| Category | Technologies |
|---|---|
| π§ Modeling & AI | Python, R, PyTorch, TensorFlow, scikit-learn |
| π§ Infrastructure & Pipelines | Docker, PostgreSQL, AWS, GCP, Git, CI/CD Workflows |
| π¦ Multi-Language Dev | TypeScript / Node.js, Java (Maven), C# (.NET), Ruby |
π papersearch-mcpIntegrates arXiv and Semantic Scholar directly into AI IDEs with page-level PDF extraction and citation graph traversal. |
Nonparametric Combination (NPC) and bootstrap-based clinical risk stratification model for rare-disease clinical research. |
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Clinical NLP platform for unstructured record mining, entity extraction, clinical sentiment analysis, and automated ICD coding. |
Scalable clustering framework (KMeans++, DBSCAN, BIRCH, OPTICS) applied to NYC Taxi mobility (12M+) and fraud detection. |
π¬ nonparam-combGeneral-purpose statistical library for Nonparametric Combination of permutation tests and multi-criteria severity ranking. |
π vector-sync-engineContainerized cross-engine vector database synchronization tool to migrate and replicate embeddings between Chroma and Qdrant. |
I actively contribute to major AI/ML open-source projects with bug fixes, performance improvements, and new features:
| Repository | PR | Description | Status |
|---|---|---|---|
| qdrant/qdrant | #1264 | Vector search engine improvement | β Merged |
| run-llama/llama_index | #22343 | MinioReader basename collision fix | π Under Review |
| chroma-core/chroma | #7432 | Embedding search improvement | π Under Review |
| logspace-ai/langflow | #14051 | Workflow engine enhancement | π Under Review |
| lancedb/lancedb | #3661 | Retrieval pipeline fix | β Approved |
| milvus-io/pymilvus | #3686 | Python SDK improvement | π Under Review |
| explodinggradients/ragas | #2850 | Evaluation framework fix | π Under Review |
| cleanlab/cleanlab | #1321 | Data-centric AI enhancement | π Under Review |
| public-apis/public-apis | #6592 | Reported 5 broken API links | π Issue Filed |
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lancedb/lancedb#3661 β Workspace Manifest & Dependency Refactoring (Approved β )
- System Impact: Resolved a blocking issue in the workspace linter (
cargo deny) triggered by yanked upstream crates (likespin v0.10.0), and resolved duplicate developer dependency declarations. - Key Technologies: Rust, Cargo Workspace, CI/CD Linters.
- System Impact: Resolved a blocking issue in the workspace linter (
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milvus-io/pymilvus#3686 β Environment Configuration Security & Type Safety (Under Review π)
- System Impact: Patched SDK settings parser to prevent unauthorized loading of
.envconfigurations when thePYTHON_DOTENV_DISABLEDflag is set, and resolved a runtimeTypeErrorcaused by uninitialized variables. - Key Technologies: Python, python-dotenv, Environment Management.
- System Impact: Patched SDK settings parser to prevent unauthorized loading of
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chroma-core/chroma#7432 β Test Suite Isolation & Connection Refactoring (Under Review π)
- System Impact: Redesigned test fixtures for FastAPI SSL connections to run isolated database instances, resolving race conditions and connection leaks in the testing environment.
- Key Technologies: Python, Pytest, FastAPI, SQLite.
Permutation-Based Analysis of Clinical Variables in Necrotizing Fasciitis Using NPC and Bootstrap
Mathematics, MDPI (2025)
This work introduces a permutation-based, nonparametric framework for analyzing clinical variables in necrotizing fasciitis. By combining Nonparametric Combination (NPC) methodology with bootstrap techniques, the study enables robust inference under small-sample and distribution-free conditions, with an emphasis on interpretability and clinical relevance.
The study demonstrates how permutation-based inference can outperform classical parametric approaches in rare-disease clinical settings.
π https://www.mdpi.com/2227-7390/13/17/2869
- 𧬠High-Precision Biomedical AI: Designing mathematically rigorous, permutation-based nonparametric statistical engines for rare diseases and small-sample clinical datasets.
- π Robust & Explainable ML (XAI): Developing invariant feature attribution and post-hoc explanation frameworks that maintain mathematical consistency under severe covariate and distribution shifts.
- π‘οΈ Production AI Guardrails & Validation: Building automated evaluation suites, stability tests, and performance diagnostics to guarantee safety, reproducibility, and alignment in high-stakes clinical and financial ML deployments.
- π§ Developer Tooling & Agentic Integrations: Architecting FastMCP (Model Context Protocol) servers to seamlessly link scientific databases (arXiv, PubMed, gnomAD) with next-generation LLM agents and coding systems.
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