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Paper Citation Record · LEDGER

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours

As of 15 August 2026, this Paper Citation Record lists 47 of 47 outbound references and 0 inbound Pith citation observations for arXiv:2607.26090.

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

pith.paper-citation-record.v1
2607.26090 v1

Coverage vector

measured 47 of 47 reference resolution

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measured 47 of 47 standing notices

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measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Reference resolution

47 of 47 outbound references displayed

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Outbound references

Observation 2edb64c3-dc23-4670-91fd-90653dc5337e · outbound

This paper cites an unresolved cited work.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Unresolved cited work

Reference 1

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Observation a40db4ec-287e-4b1a-a4ba-1e14ce8bcb75 · outbound

This paper cites Kirby, John B.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Kirby, John B

Reference 2

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Observation 41ef2eef-19fe-44ea-b07d-f4b78c5731ee · outbound

This paper cites Shape con- text: A new descriptor for shape matching and object recog- nition.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Shape con- text: A new descriptor for shape matching and object recog- nition

Reference 3

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Observation 29224488-3424-4128-a2d8-acc9c9f01a63 · outbound

This paper cites Shape matching and object recognition using shape contexts.IEEE TPAMI, 24(4):509–522, 2002.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Shape matching and object recognition using shape contexts.IEEE TPAMI, 24(4):509–522, 2002

Reference 4

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Observation 84a7b411-0e24-4530-90cd-730af31a7687 · outbound

This paper cites Convolutional Neural Networks Are Not Invariant to Translation, but They Can Learn to Be.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Convolutional Neural Networks Are Not Invariant to Translation, but They Can Learn to Be

Reference 5

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Observation ead206b4-0bd4-43a2-a152-309e97cd6439 · outbound

This paper cites Bookstein.Morphometric Tools for Landmark Data: Geometry and Biology.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Bookstein.Morphometric Tools for Landmark Data: Geometry and Biology

Reference 6

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Observation 74f488db-9786-4196-95b8-15ebb981ba2f · outbound

This paper cites Bronstein, Joan Bruna, Taco Cohen, and Petar Veliˇckovi´c.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Bronstein, Joan Bruna, Taco Cohen, and Petar Veliˇckovi´c

Reference 7

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Observation d8af1ad5-6db5-4663-b303-2fb5e2db9a21 · outbound

This paper cites Sam 3: Segment anything with concepts, 2026.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Sam 3: Segment anything with concepts, 2026

Reference 8

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Observation 1d5b698e-3de0-46b9-8264-e8b1cbbd0a3e · outbound

This paper cites Classification of the glioma grading using radiomics analysis.PeerJ, 6:e5982, 2018.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Classification of the glioma grading using radiomics analysis.PeerJ, 6:e5982, 2018

Reference 9

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Observation 5b9252ad-1fcb-4103-a875-220892c410f0 · outbound

This paper cites Cohen and Max Welling.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Cohen and Max Welling

Reference 10

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Observation 4ba3ba8a-a6ae-4945-ab47-679b80c5ee68 · outbound

This paper cites Cootes, Christopher J.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Cootes, Christopher J

Reference 11

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Observation f13fb87a-2d86-422d-83dc-e9c0b7e060f7 · outbound

This paper cites BERT: Pre-training of deep bidirectional trans- formers for language understanding.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours BERT: Pre-training of deep bidirectional trans- formers for language understanding

Reference 12

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Observation f6dcb028-d0cc-461f-9331-c7dbc5811bdd · outbound

This paper cites An image is worth 16x16 words: Transformers for image recognition at scale.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours An image is worth 16x16 words: Transformers for image recognition at scale

Reference 13

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Observation 9da78d4a-5b15-48a8-b21a-e6191b85f61b · outbound

This paper cites Dryden and Kanti V.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Dryden and Kanti V

Reference 14

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Observation 646addc4-6c09-4858-9625-87b5753b1fd9 · outbound

This paper cites On the encoding of arbitrary geomet- ric configurations.IRE Trans.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours On the encoding of arbitrary geomet- ric configurations.IRE Trans

Reference 15

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Observation 16d9b3d6-a43a-4e73-ba00-6394985232a7 · outbound

This paper cites ImageNet-trained CNNs are biased towards texture; increasing shape bias improves accuracy and robustness.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours ImageNet-trained CNNs are biased towards texture; increasing shape bias improves accuracy and robustness

Reference 16

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Observation 7449716a-69fd-491d-85dd-55a6a5ae1f78 · outbound

This paper cites Gillies, Paul E.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Gillies, Paul E

Reference 17

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Observation 4a8b6fd7-5ba3-4b90-b171-bba970f8ac09 · outbound

This paper cites Roth, and Daguang Xu.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Roth, and Daguang Xu

Reference 18

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Observation 0120c340-858c-405e-97be-fc07873df489 · outbound

This paper cites Deep residual learning for image recognition.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Deep residual learning for image recognition

Reference 19

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Observation c3e0c13e-8f44-4f6f-8a89-6173117b46b1 · outbound

This paper cites Jaeger, Simon A.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Jaeger, Simon A

Reference 20

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Observation 63cd2407-eb69-4516-8327-d4dde19ba8ce · outbound

This paper cites Kuhl and Charles R.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Kuhl and Charles R

Reference 21

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Observation ca5e10c3-55e9-48b0-b320-5c138660c75c · outbound

This paper cites an unresolved cited work.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Unresolved cited work

Reference 22

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Observation 8c347b05-6094-44c3-9428-c1054a8c6c6f · outbound

This paper cites Kosiorek, Seungjin Choi, and Yee Whye Teh.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Kosiorek, Seungjin Choi, and Yee Whye Teh

Reference 23

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Observation 15e744b4-8b8f-4d85-bf19-f30f31b5d8f5 · outbound

This paper cites Geospatial big data handling theory and methods: A review and research challenges.ISPRS Journal of Pho- togrammetry and Remote Sensing, 115:119–133, 2016.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Geospatial big data handling theory and methods: A review and research challenges.ISPRS Journal of Pho- togrammetry and Remote Sensing, 115:119–133, 2016

Reference 24

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Observation 562f9669-3526-41b0-9587-728d50a9856c · outbound

This paper cites Lorensen and Harvey E.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Lorensen and Harvey E

Reference 25

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Observation 726303c7-a499-432f-9b32-1472757e143e · outbound

This paper cites Segment Anything in Medical Images.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Segment Anything in Medical Images

Reference 26

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Observation 0b6f4ccf-f83d-4127-bd35-4b1c0d49ca06 · outbound

This paper cites Menze, Andras Jakab, Stefan Bauer, Jayashree Kalpathy-Cramer, Keyvan Farahani, Justin Kirby, Yuliya Burren, Nicole Porz, Johannes Slotboom, Roland Wiest, et al.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Menze, Andras Jakab, Stefan Bauer, Jayashree Kalpathy-Cramer, Keyvan Farahani, Justin Kirby, Yuliya Burren, Nicole Porz, Johannes Slotboom, Roland Wiest, et al

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Observation 9c447b14-639c-4447-a7f0-6844b73d18fa · outbound

This paper cites A functional approach to curve alignment and shape analysis.arXiv preprint, 2025.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours A functional approach to curve alignment and shape analysis.arXiv preprint, 2025

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Observation 3eec5026-e7fd-403e-a188-548aa8e4dff2 · outbound

This paper cites Multivariate planar curves: A statistical framework for shape analysis in images.arXiv preprint, 2025.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Multivariate planar curves: A statistical framework for shape analysis in images.arXiv preprint, 2025

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Observation 840c7ed6-c3de-4d23-9a17-c7768bbbca36 · outbound

This paper cites Shape discrimination using fourier descriptors.IEEE Trans.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Shape discrimination using fourier descriptors.IEEE Trans

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Observation 2c2f6281-ddeb-4a9b-86c7-b69da82ebd35 · outbound

This paper cites James Rohlf and Dennis Slice.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours James Rohlf and Dennis Slice

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Observation 76741452-7ef0-4fde-93f1-014d377857ed · outbound

This paper cites U- Net: Convolutional networks for biomedical image segmen- tation.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours U- Net: Convolutional networks for biomedical image segmen- tation

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Observation ec519b63-afcb-47e9-9dc6-b34d0173ecb7 · outbound

This paper cites Maurer, Michael Syn- owitz, Joost W¨ustefeld, Tim Marnitz, Florian Streitparth, and Edzard Wiener.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Maurer, Michael Syn- owitz, Joost W¨ustefeld, Tim Marnitz, Florian Streitparth, and Edzard Wiener

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Observation e45a0f8f-0d29-43d5-9b3b-510f4f95a6f0 · outbound

This paper cites skimage.measure.find contours.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours skimage.measure.find contours

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Observation ccdff354-ee59-4ec7-946e-509a79ef6a78 · outbound

This paper cites Klassen.Functional and Shape Data Analysis.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Klassen.Functional and Shape Data Analysis

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Observation fffff00e-2698-4fc8-8ac2-87ad565e6bd0 · outbound

This paper cites Joshi, and Ian H.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Joshi, and Ian H

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Observation bee05cad-01c5-4df4-9c0d-10832fe1a3bb · outbound

This paper cites Deep learn- ing with functional inputs.Journal of Computational and Graphical Statistics, 32(1):171–180, 2023.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Deep learn- ing with functional inputs.Journal of Computational and Graphical Statistics, 32(1):171–180, 2023

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Observation d05f1802-8ea2-4c24-9c6b-4ac03d7a237e · outbound

This paper cites Gomez, Łukasz Kaiser, and Illia Polosukhin.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Gomez, Łukasz Kaiser, and Illia Polosukhin

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Observation 42825270-d1a9-429b-97c3-8df70af60f31 · outbound

This paper cites Neural networks for scalar input and functional output.Statistics and Com- puting, 33(5):118, 2023.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Neural networks for scalar input and functional output.Statistics and Com- puting, 33(5):118, 2023

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Observation 23fc916b-d03e-4047-b316-b262a3cb27fd · outbound

This paper cites Functional autoen- coder for smoothing and representation learning.Statistics and Computing, 34(6):203, 2024.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Functional autoen- coder for smoothing and representation learning.Statistics and Computing, 34(6):203, 2024

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Observation c12b711a-b2f3-4ac0-8ed9-7c29229c0edb · outbound

This paper cites An automated ap- proach for predicting glioma grade and survival of LGG pa- tients using CNN and radiomics.Frontiers in Oncology, 12: 969907, 2022.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours An automated ap- proach for predicting glioma grade and survival of LGG pa- tients using CNN and radiomics.Frontiers in Oncology, 12: 969907, 2022

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Observation 728b88eb-f525-4418-9efd-6ca098ac126d · outbound

This paper cites Zacharaki, Sumei Wang, Sanjeev Chawla, Dong Soo Yoo, Ronald Wolf, Elias R.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Zacharaki, Sumei Wang, Sanjeev Chawla, Dong Soo Yoo, Ronald Wolf, Elias R

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source=pdf_text observed=2026-07-31T03:36:20.679653Z digest=sha256:d6ce07c5676cfd5e20096e0b42a365cb6f59aee24e80fb8363fcc7cdeb3ca660

Observation 85f5a556-5af9-41fd-8f1a-5fc409e03ab1 · outbound

This paper cites Zahn and Ralph Z.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Zahn and Ralph Z

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Observation c84c185f-aebf-4011-8b0d-65e24b0b9371 · outbound

This paper cites Mazurowski.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Mazurowski

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source=pdf_text observed=2026-07-31T03:36:20.781607Z digest=sha256:1c51d79b936ab9ce1cc8640c383326e58ba22b6a5c836a6f2922990bd423836d

Observation 5333d6a6-a36e-4f86-b564-8c2c41d51bf4 · outbound

This paper cites an unresolved cited work.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Unresolved cited work

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Observation ef985673-a2fb-4c33-9538-0547da039d30 · outbound

This paper cites Deep learning in remote sensing: A comprehensive review and list of resources.IEEE Geoscience and Remote Sensing Maga- zine, 5(4):8–36, 2017.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Deep learning in remote sensing: A comprehensive review and list of resources.IEEE Geoscience and Remote Sensing Maga- zine, 5(4):8–36, 2017

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Observation 7688d7ff-af96-467e-b8f4-41ee867a1e44 · outbound

This paper cites Cheng, An- dra V.

Shape-Based Inductive Bias for Glioma Grading from Tumor Contours Cheng, An- dra V

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