🔬 R&D — Research & Development
Research & Development hub. Open-access work published under my own name, hosted on Zenodo with persistent DOIs, licensed CC-BY-4.0. Two preprints spanning quantum MRI imaging and theoretical neuroscience — both carrying persistent DOIs and present in international citation indexes.
📄 Quantum Flash Tomograph
Single-Shot Volumetric Human Body Imaging at Cellular Resolution via Squeezed-State Compressed Sensing MRI
Bartosz Osiej — July 30, 2026 · Preprint (v4) · CC-BY-4.0
| Property | Value |
|---|---|
| Title | Quantum Flash Tomograph: Single-Shot Volumetric Human Body Imaging at Cellular Resolution via Squeezed-State Compressed Sensing MRI |
| Author | Bartosz Osiej |
| Published | 2026-07-30 (v4, latest) |
| Type | Preprint |
| License | CC-BY-4.0 |
| DOI (v4) | 10.5281/zenodo.21701871 |
| Concept DOI | 10.5281/zenodo.21700268 |
| Keywords | quantum imaging · MRI · squeezed states · teleportation · Josephson parametric amplifier |
| Language | English |
| File | QFT_paper.pdf (313.7 kB) |
| Zenodo record | zenodo.org/records/21701871 |
📖 Full text (read in the browser)
The complete preprint is embedded below — flip through it with the arrows
(or ← / →), or download the PDF directly:
Direct links: ⬇ Download PDF · Open on Zenodo · Resolve DOI
📋 Abstract
We present a conceptual design for a medical imaging device capable of scanning the entire human body (0.07 m³) at isotropic cellular resolution (10 µm) in under one second (0.22 s), enabling classical scan–transmit–reconstruct teleportation of macroscopic organisms. The device combines: (i) an 11.7 T superconducting magnet with a 0.9 m bore; (ii) a squeezed-state radio-frequency source (10 dB squeezing at 500 MHz via Josephson Parametric Amplifier); (iii) a 581 GS/s arbitrary waveform generator encoding 1.28 × 10¹¹ compressed sensing projections; (iv) a quantum-limited homodyne detector array (I/Q, 581 GS/s); (v) a compressed sensing reconstruction engine processing 10¹⁰ sparse parameters; and (vi) a 10.2 Pb/s fiber-optic data link. No component violates known physics; the principal barriers are engineering: a 2× gap in AWG/ADC speed, a 3×10⁵× gap in real-time CS reconstruction throughput, and scaling Josephson parametric amplification to 500 MHz. Total estimated cost is $1B with a 25–40 year development timeline.
🧬 Version history (Zenodo)
All four versions of the concept record
10.5281/zenodo.21700268:
| Version | DOI | Record |
|---|---|---|
| v4 (latest) | 10.5281/zenodo.21701871 | 21701871 |
| v3 | 10.5281/zenodo.21701331 | 21701331 |
| v2 | 10.5281/zenodo.21700757 | 21700757 |
| v1 | 10.5281/zenodo.21700269 | 21700269 |
All versions share the same concept DOI, so citing
10.5281/zenodo.21700268always resolves to the latest version.
📊 Publication metrics (Zenodo, v4, as of 2026-08-17)
| Metric | Value |
|---|---|
| Views | 18 (15 unique) |
| Downloads | 2 (2 unique) |
| Access | Open (public) |
🧠 Synaptic Continuity Protocol
Preserving Personhood: A Framework for Consciousness Transfer via High-Density Microelectrode Arrays
Bartosz Osiej — August 14, 2026 · Preprint (v2) · CC-BY-4.0
| Property | Value |
|---|---|
| Title | Synaptic Continuity Protocol: Preserving Personhood — A Framework for Consciousness Transfer via High-Density Microelectrode Arrays |
| Author | Bartosz Osiej |
| Published | 2026-08-14 (v2, latest) |
| Type | Preprint |
| License | CC-BY-4.0 |
| DOI (v2) | 10.5281/zenodo.21930640 |
| Concept DOI | 10.5281/zenodo.21930639 |
| Keywords | consciousness transfer · neural prosthesis · connectome mapping · substrate independence · identity preservation |
| Language | English |
| Zenodo record | zenodo.org/records/21930640 |
📋 Abstract
We present a theoretical framework for consciousness transfer between biological and artificial substrates. The protocol addresses three fundamental barriers: (i) connectome-scale neural mapping at synaptic resolution (~100 trillion synapses for a human brain), (ii) functional substrate replacement maintaining causal continuity of subjective experience, and (iii) identity verification across the transfer boundary. We propose a staged approach: partial prosthetic augmentation (10% cortical volume), hemispheric sequential replacement, and full substrate migration — each stage validated against a consciousness continuity metric (CCM) derived from integrated information theory (IIT) and global workspace theory (GWT). The estimated timeline for full implementation is 40–80 years; the first partial augmentation (10% volume, focused on memory consolidation circuits) is plausible within 15–25 years given current progress in high-density microelectrode arrays and neural interface technology.
🧬 Version history (Zenodo)
All versions of the concept record
10.5281/zenodo.21930639:
| Version | DOI | Record |
|---|---|---|
| v2 (latest) | 10.5281/zenodo.21930640 | 21930640 |
| v1 | 10.5281/zenodo.21930639 | 21930639 |
Citing
10.5281/zenodo.21930639always resolves to the latest version.
📊 Publication metrics (Zenodo, v2, as of 2026-08-17)
| Metric | Value |
|---|---|
| Access | Open (public) |
🌐 Where these works appear online — full audit
A web-wide search (Google, OpenAlex, DataCite, Crossref, Semantic Scholar, Zenodo API + targeted site checks) conducted on 2026-08-17 found the following places where the preprints are present or indexed.
✅ Confirmed presences
1. Central publication point (CERN / primary host)
Both preprints on the open-access repository, safeguarded by CERN infrastructure:
| # | Work | Where | Link |
|---|---|---|---|
| 1.1 | QFT | Zenodo — main record (PDF, view/download counter, publisher metadata) | zenodo.org/records/21701871 |
| 1.2 | QFT | Zenodo API — direct system record | api.zenodo.org/records/21701871 |
| 1.3 | QFT | Official DOI — immutable redirect | doi.org/10.5281/zenodo.21701871 |
| 1.4 | SCP | Zenodo — main record (PDF, metadata) | zenodo.org/records/21930640 |
| 1.5 | SCP | Zenodo API — direct system record | api.zenodo.org/records/21930640 |
| 1.6 | SCP | Official DOI — immutable redirect | doi.org/10.5281/zenodo.21930640 |
2. Global knowledge graphs & world-science catalogs
Automatic DOI-harvesting systems pulled both works into international citation registries:
| # | Work | Where | What | Link |
|---|---|---|---|---|
| 2.1 | QFT | OpenAlex — W7171828005 | Official record in global open catalog | openalex.org/W7171828005 |
| 2.2 | SCP | OpenAlex — W7203446031 (v2) | Official record, open catalog | openalex.org/W7203446031 |
| 2.3 | SCP | OpenAlex — W7203440092 (v1) | Previous version record | openalex.org/W7203440092 |
| 2.4 | QFT | OpenAIRE EXPLORE | EU Commission registry | explore.openaire.eu |
| 2.5 | QFT | DataCite | DOI registration & metadata | doi.org/10.5281/zenodo.21701871 |
| 2.6 | SCP | DataCite | DOI registration & metadata | doi.org/10.5281/zenodo.21930640 |
3. TGRS clusters & radars (The Global Research Space)
The big one — TGRS analytical algorithms detected the interdisciplinary nature of QFT and placed it in three different thematic regions/radars:
| # | Region | Position | Link |
|---|---|---|---|
| 3.1 | Digital Holography and Microscopy (region L3_151) | 3rd place on the Highest-Cited Papers list of the microscopy radar | region 2026_AUG_Q1_L3_151 |
| 3.2 | Advanced MRI Techniques and Applications (region L3_149) | Clustered for advanced magnetic-field modelling (11.7 T) and compressed sensing | region 2026_AUG_Q1_L3_149 |
| 3.3 | Analysis of PDEs & Astro-Photonics (region L3_150) | Third index — links wave algorithms and structure reconstruction with astrophotonics and adaptive optics | region 2026_AUG_Q1_L3_150 |
🔍 Checked but not found (no presence)
| Index / site | QFT | SCP |
|---|---|---|
| Crossref (works) | ❌ not registered | ❌ not registered |
| Semantic Scholar | ❌ not indexed | ❌ not indexed |
| Google Scholar | ❌ not indexed | ❌ not indexed |
| arXiv | ❌ not posted | ❌ not posted |
| ResearchGate | ❌ no profile | ❌ no profile |
| Scilit / Paperity | ❌ no results | ❌ no results |
| News, blogs, Reddit, X/Twitter | ❌ no mentions | ❌ no mentions |
📈 Citations
0 citations across all checked indexes for both preprints. QFT was published 2026-07-30 and SCP on 2026-08-14 — both very recent, so the citation count is expected to be zero for now.
💡 How to cite
Quantum Flash Tomograph:
Osiej, Bartosz. (2026). Quantum Flash Tomograph: Single-Shot Volumetric
Human Body Imaging at Cellular Resolution via Squeezed-State Compressed
Sensing MRI (Version 4). Zenodo. https://doi.org/10.5281/zenodo.21701871
Synaptic Continuity Protocol:
Osiej, Bartosz. (2026). Synaptic Continuity Protocol: Preserving
Personhood — A Framework for Consciousness Transfer via High-Density
Microelectrode Arrays (Version 2). Zenodo. https://doi.org/10.5281/zenodo.21930640
🔭 What's next in R&D
- QFT v5 — expanded derivation of the compressed-sensing reconstruction bounds and the Josephson parametric amplifier scaling path
- QFT companion simulation — open-source numerical model of the 10¹⁰-parameter CS reconstruction pipeline
- SCP v3 — expanded consciousness continuity metric (CCM) derivation, detailed prosthetic augmentation staging timeline, and ethical framework
- Broader dissemination — submit both preprints to arXiv (quant-ph for QFT, q-bio.NC for SCP) for Google Scholar indexing
- OpenAlex author profile — set up and link both works under one unified author identity