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Paper Citation Record · LEDGER

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling

As of 15 August 2026, this Paper Citation Record lists 36 of 36 outbound references and 0 inbound Pith citation observations for arXiv:2412.17258.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2412.17258 v1

Coverage vector

measured 36 of 36 reference resolution

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measured 36 of 36 standing notices

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Pith citing papers itemized under the disclosed page cap.

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Source: cited_works

Reference resolution

36 of 36 outbound references displayed

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External citation measurements

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Outbound references

Observation d6b9d639-bab3-4af2-bb20-f4e7ac8d7114 · outbound

This paper cites Prevention and management of osteoporosis.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Prevention and management of osteoporosis

Reference 1

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Observation 06535add-4205-43a1-8b0b-64d3302cd1d2 · outbound

This paper cites Evaluation and Management of Vertebral Com- pression Fractures.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Evaluation and Management of Vertebral Com- pression Fractures

Reference 2

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Observation 89da213e-4747-4e08-aec7-c73718746f6c · outbound

This paper cites Clinical Characteristics of Elderly People with Osteoporotic Vertebral Compression Fracture Based on a 12-Year Single- Center Experience in Korea.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Clinical Characteristics of Elderly People with Osteoporotic Vertebral Compression Fracture Based on a 12-Year Single- Center Experience in Korea

Reference 3

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Observation 6282d741-039a-4812-9570-476ff1bf5b14 · outbound

This paper cites Diagnosis and Management of Vertebral Compression Fracture.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Diagnosis and Management of Vertebral Compression Fracture

Reference 4

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Observation 8dea3719-7e29-41ed-8e92-1d62f1ada9af · outbound

This paper cites Percutaneous vertebroplasty for pain relief and spinal stabilization.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Percutaneous vertebroplasty for pain relief and spinal stabilization

Reference 5

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Observation a2ef7a35-6770-4fe5-82af-0e462db52f52 · outbound

This paper cites Diagnosis and management of vertebral com- pression fractures.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Diagnosis and management of vertebral com- pression fractures

Reference 6

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Observation 15f9e549-6918-42fa-81b1-70d32d428121 · outbound

This paper cites Vertebral compression fractures: a review of current management and multimodal therapy.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Vertebral compression fractures: a review of current management and multimodal therapy

Reference 7

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Observation f3045370-4a6e-4ad0-94d7-cfac711a0d53 · outbound

This paper cites Opportunistic Screening Techniques for Analysis of CT Scans.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Opportunistic Screening Techniques for Analysis of CT Scans

Reference 8

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Observation 6093ecfb-ab18-433e-9fa1-26261afcbcd1 · outbound

This paper cites In silico simulation: a key enabling technology for next-generation intelligent surgical systems.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling In silico simulation: a key enabling technology for next-generation intelligent surgical systems

Reference 9

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Observation 4b906603-5dd6-42aa-9881-e59dc2c4339b · outbound

This paper cites MRI Cross-Modality Image-to-Image Translation.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling MRI Cross-Modality Image-to-Image Translation

Reference 10

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Observation 4646b8a4-0e9e-40b8-9a20-188ab6f009fe · outbound

This paper cites Compression fractures detection on CT.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Compression fractures detection on CT

Reference 11

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Observation d84a3b42-1c33-4248-a164-0dc063ffb7a8 · outbound

This paper cites Opportunistic Identification of Ver- tebral Compression Fractures on CT Scans of the Chest and Abdomen, Using an AI Algorithm, in a Real-Life Setting.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Opportunistic Identification of Ver- tebral Compression Fractures on CT Scans of the Chest and Abdomen, Using an AI Algorithm, in a Real-Life Setting

Reference 12

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Observation 410ed78f-cbd0-4fe4-9831-e2186c40d9a3 · outbound

This paper cites Opportunistic Screening: Radiology Scientific Expert Panel.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Opportunistic Screening: Radiology Scientific Expert Panel

Reference 13

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Observation 84cfb655-dd5c-42ce-86e5-3e36df67c8f4 · outbound

This paper cites Explainable AI in medical imaging: An overview for clinical practitioners – Saliency-based XAI approaches.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Explainable AI in medical imaging: An overview for clinical practitioners – Saliency-based XAI approaches

Reference 14

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Observation 88623594-cd5c-47c3-b386-8fed54946a41 · outbound

This paper cites Revisiting the Trustworthiness of Saliency Methods in Radiology AI.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Revisiting the Trustworthiness of Saliency Methods in Radiology AI

Reference 15

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Observation 089c89b0-9cb1-434d-b628-50c0ccbdd6a4 · outbound

This paper cites Interpretable Severity Scoring of Pelvic Trauma Through Au- tomated Fracture Detection and Bayesian Inference.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Interpretable Severity Scoring of Pelvic Trauma Through Au- tomated Fracture Detection and Bayesian Inference

Reference 16

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Observation 9c66b06e-d4b7-407c-ad33-599b60f35602 · outbound

This paper cites Toward automated interpretable AAST grading for blunt splenic injury.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Toward automated interpretable AAST grading for blunt splenic injury

Reference 17

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Observation 31b5dd1d-05ff-4e5d-964f-2109e2b14ff9 · outbound

This paper cites An interpretable approach to automated sever- ity scoring in pelvic trauma.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling An interpretable approach to automated sever- ity scoring in pelvic trauma

Reference 18

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Observation e18cd54e-bc5d-4c2c-83e2-8e9665b5da17 · outbound

This paper cites An interpretable Algorithm for uveal melanoma subtyping from whole slide cytology images.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling An interpretable Algorithm for uveal melanoma subtyping from whole slide cytology images

Reference 19

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Observation 69ae62c2-a338-48aa-9d71-daa6aaeb864c · outbound

This paper cites Explainable AI Enhances Glaucoma Referrals, Yet the Human-AI Team Still Falls Short of the AI Alone.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Explainable AI Enhances Glaucoma Referrals, Yet the Human-AI Team Still Falls Short of the AI Alone

Reference 20

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Observation 8c9db7c7-4b3f-480b-885d-2baa8ca138a3 · outbound

This paper cites Explain- able AI decision support improves accuracy during telehealth strep throat screening.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Explain- able AI decision support improves accuracy during telehealth strep throat screening

Reference 21

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Observation 74037187-d382-4d4e-b94b-6f3bb32f9e55 · outbound

This paper cites Vertebral Body Compression Fractures and Bone Density: Automated Detection and Classification on CT Images.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Vertebral Body Compression Fractures and Bone Density: Automated Detection and Classification on CT Images

Reference 22

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Observation bbc9e86f-3c6f-42ea-bcea-fdf1b271c8a2 · outbound

This paper cites Automatic detection of osteoporotic vertebral frac- tures in routine thoracic and abdominal MDCT.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Automatic detection of osteoporotic vertebral frac- tures in routine thoracic and abdominal MDCT

Reference 23

Resolution
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Observation 182d71ba-204b-4bbd-b49f-a41cbaf4f8c5 · outbound

This paper cites Diagnosis of Osteoporotic Vertebral Fractures: Im- portance of Recognition and Description by Radiologists.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Diagnosis of Osteoporotic Vertebral Fractures: Im- portance of Recognition and Description by Radiologists

Reference 24

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This paper cites Spinal Vertebral Fracture Detection and Fracture Level Assessment Based on Deep Learning.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Spinal Vertebral Fracture Detection and Fracture Level Assessment Based on Deep Learning

Reference 25

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This paper cites Explainable medical imaging AI needs human-centered design: guidelines and evidence from a systematic review.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Explainable medical imaging AI needs human-centered design: guidelines and evidence from a systematic review

Reference 26

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Observation b00a62ee-c674-4949-b9d4-3e80a95ed9dd · outbound

This paper cites Recognizing and reporting osteoporotic verte- bral fractures.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Recognizing and reporting osteoporotic verte- bral fractures

Reference 27

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Observation 818a75a9-c405-4fed-b0d2-672e547e5e0d · outbound

This paper cites TotalSegmentator: Robust Segmentation of 104 Anatomic Structures in CT Images.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling TotalSegmentator: Robust Segmentation of 104 Anatomic Structures in CT Images

Reference 28

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Observation 4087e3ae-fd9b-4760-8708-4c08feadb151 · outbound

This paper cites nnU-Net: a self-configuring method for deep learning- based biomedical image segmentation.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling nnU-Net: a self-configuring method for deep learning- based biomedical image segmentation

Reference 29

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Observation c77b2f33-eb70-432b-a84e-73ec8839e19a · outbound

This paper cites Marching cubes: A high resolution 3D surface construction algorithm.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Marching cubes: A high resolution 3D surface construction algorithm

Reference 30

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Observation 2622c88f-b27a-4d8c-a0a8-8ff886aa769b · outbound

This paper cites Predictive Learning via Rule Ensembles.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Predictive Learning via Rule Ensembles

Reference 31

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Observation 999f8071-1a2c-4526-a2ec-794ef0f50a01 · outbound

This paper cites VerSe: A Vertebrae Labelling and Segmentation Benchmark for Multi-Detector CT Images.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling VerSe: A Vertebrae Labelling and Segmentation Benchmark for Multi-Detector CT Images

Reference 32

Resolution
verified fuzzy
raw_fallback, observed 2026-08-11T05:44:14.236469Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-11T05:44:13.637198Z digest=sha256:33e1b08bc127af504247020984c2d26470e1c5cc1e207f096ceef6e3b87c7cbc

Observation ddd27f72-cf40-4ef0-9706-5a68c606472d · outbound

This paper cites A Vertebral Segmentation Dataset with Frac- ture Grading.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling A Vertebral Segmentation Dataset with Frac- ture Grading

Reference 33

Resolution
verified fuzzy
raw_fallback, observed 2026-08-11T05:44:14.221000Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-11T05:44:13.641692Z digest=sha256:111cc7f59e8c0b49ae9a2015598c829c31759279078619e93c7c55c5f170a4b5

Observation 41effd1c-60a6-4730-9a69-327ad7066077 · outbound

This paper cites VerSe: A Vertebrae Labelling and Segmentation Benchmark for Multi-detector CT Images.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling VerSe: A Vertebrae Labelling and Segmentation Benchmark for Multi-detector CT Images

Reference 34

Resolution
unresolved
no resolver link, observed 2026-08-11T05:44:13.646202Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-11T05:44:13.646202Z digest=sha256:0e0bb7943389b41a7b740dc1b2a5aa0999f9ef2621d87aafcd0da14960452bd8

Observation 88492839-b126-40d8-941f-3a72ccf6bbde · outbound

This paper cites Youden Index and optimal cut-point estimated from observations affected by a lower limit of detection.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Youden Index and optimal cut-point estimated from observations affected by a lower limit of detection

Reference 35

Resolution
verified fuzzy
raw_fallback, observed 2026-08-11T05:44:14.204725Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-11T05:44:13.650781Z digest=sha256:942510d514f7df1d9b1c5e5343bf7f9c2c5e466028d2d497de1b44998a84af71

Observation a1a8a468-3213-45a6-8a5d-9d7957d6a744 · outbound

This paper cites an unresolved cited work.

An Intrinsically Explainable Approach to Detecting Vertebral Compression Fractures in CT Scans via Neurosymbolic Modeling Unresolved cited work

Reference 9343

Resolution
verified exact
doi, observed 2026-08-11T05:44:13.912606Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-11T05:44:13.489230Z digest=sha256:0dd4c195c7e032973a5827a440b5af4693679eb5bd85118117f1843e609be4df

Pith citing papers

No inbound Pith citation observations are available.