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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues

As of 21 August 2026, this Paper Citation Record lists 49 of 49 outbound references and 0 inbound Pith citation observations for arXiv:2607.03079.

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

pith.paper-citation-record.v1
2607.03079 v1

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measured 49 of 49 reference resolution

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measured 49 of 49 standing notices

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Pith citing papers itemized under the disclosed page cap.

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Reference resolution

49 of 49 outbound references displayed

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Outbound references

Observation 2561ae7c-6a0d-424d-8944-d0c5c6e43ffc · outbound

This paper cites Fifty Shades of Brain: A Review on the Mechanical Testing and Modeling of Brain Tissue.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Fifty Shades of Brain: A Review on the Mechanical Testing and Modeling of Brain Tissue

Reference 1

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This paper cites Mechanical characterization of brain tissue: experimental techniques, human testing considerations, and perspectives.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Mechanical characterization of brain tissue: experimental techniques, human testing considerations, and perspectives

Reference 2

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This paper cites Brain tissue mechanical properties.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Brain tissue mechanical properties

Reference 3

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This paper cites Sample, testing and analysis variables affecting liver mechanical properties: A review.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Sample, testing and analysis variables affecting liver mechanical properties: A review

Reference 4

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This paper cites Investigation for biomechanical and biochemical characteristic changes of kidney, liver and duodenum tissues according to inflation time of REBOA.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Investigation for biomechanical and biochemical characteristic changes of kidney, liver and duodenum tissues according to inflation time of REBOA

Reference 5

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Observation d761c0cf-8d08-4ace-b511-dee5c84fbd9b · outbound

This paper cites How to test very soft biological tissues in extension? Journal of Biomechanics.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues How to test very soft biological tissues in extension? Journal of Biomechanics

Reference 6

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Method of testing very soft biological tissues in compression

Reference 7

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This paper cites Measuring the hyperelastic response of porcine liver tissues in - vitro using controlled cavitation rheology.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Measuring the hyperelastic response of porcine liver tissues in - vitro using controlled cavitation rheology

Reference 8

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This paper cites Simultaneous and Contactless Characterization of the Young’s and Shear Moduli of Gelatin -Based Hydrogels.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Simultaneous and Contactless Characterization of the Young’s and Shear Moduli of Gelatin -Based Hydrogels

Reference 9

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This paper cites Biomechanical modeling and computer simulation of the brain during neurosurgery.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Biomechanical modeling and computer simulation of the brain during neurosurgery

Reference 10

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This paper cites Subject-specific non-linear biomechanical model of needle insertion into brain.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Subject-specific non-linear biomechanical model of needle insertion into brain

Reference 11

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This paper cites Identifying the properties of ultra- soft materials using a new methodology of combined specimen -specific finite element model and optimization techniques.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Identifying the properties of ultra- soft materials using a new methodology of combined specimen -specific finite element model and optimization techniques

Reference 12

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This paper cites In -vivo soft tissues mechanical characterization: volume-based aspiration method validated on silicones.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues In -vivo soft tissues mechanical characterization: volume-based aspiration method validated on silicones

Reference 13

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This paper cites Liver tissue characterization from uniaxial stress–strain data using probabilistic and inverse finite element methods.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Liver tissue characterization from uniaxial stress–strain data using probabilistic and inverse finite element methods

Reference 14

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This paper cites Compression testing of very soft biological tissues using semi-confined configuration —a word of caution.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Compression testing of very soft biological tissues using semi-confined configuration —a word of caution

Reference 15

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This paper cites Bilayer stiffness identification of soft tissues by suction.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Bilayer stiffness identification of soft tissues by suction

Reference 16

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This paper cites A full -field 3D digital image correlation and modelling technique to characterise anterior cruciate ligament mechanics ex vivo.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues A full -field 3D digital image correlation and modelling technique to characterise anterior cruciate ligament mechanics ex vivo

Reference 17

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Towards Determining Mechanical Properties of Brain -Skull Interface Under Tension and Compression

Reference 18

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This paper cites Mechanical behaviour of brain-skull interface (meninges) under shear loading through experiment and finite element modelling: Preliminary results.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Mechanical behaviour of brain-skull interface (meninges) under shear loading through experiment and finite element modelling: Preliminary results

Reference 19

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Observation 57d36677-c004-443b-8f8a-614f3c7abe07 · outbound

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Mechanical characterization of human brain tissue

Reference 20

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues A comprehensive experimental study on material properties of human brain tissue

Reference 21

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Mechanical properties of brain tissue in tension

Reference 22

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Constitutive modelling of brain tissue: experiment and theory

Reference 23

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues The use of liver biomechanics in forensic pathology

Reference 24

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues The use of brain tissue mechanics for time since death estimations

Reference 25

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Toward understanding the brain tissue behavior due to preconditioning: an experimental study and RVE approach

Reference 26

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Poro - viscoelastic effects during biomechanical testing of human brain tissue

Reference 27

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Effect of interspecies differences on the mechanical behavior of liver and a strain -rate dependent visco -hyperelastic constitutive model

Reference 28

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Hydrogels with brain tissue -like mechanical properties in complex environments

Reference 29

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Influence of preservation temperature on the measured mechanical properties of brain tissue

Reference 30

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Investigation of the compressive viscoelastic properties of brain tissue under time and frequency dependent loading conditions

Reference 31

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues 3D Slicer as an image computing platform for the Quantitative Imaging Network

Reference 32

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Polymorph segmentation representation for medical image computing

Reference 33

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Coreform Cubit 2025.8

Reference 34

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Abaqus 2023

Reference 35

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Unraveling the local relation between tissue composition and human brain mechanics through machine learning

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Discovery of hyperelastic constitutive laws from experimental data with euclid

Reference 37

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This paper cites Physics - informed neural network estimation of material properties in soft tissue nonlinear biomechanical models.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Physics - informed neural network estimation of material properties in soft tissue nonlinear biomechanical models

Reference 38

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This paper cites Principal -stretch-based constitutive neural networks autonomously discover a subclass of Ogden models for human brain tissue.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Principal -stretch-based constitutive neural networks autonomously discover a subclass of Ogden models for human brain tissue

Reference 39

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This paper cites Modelling brain tissue elasticity with the Ogden model and an alternative family of constitutive models.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Modelling brain tissue elasticity with the Ogden model and an alternative family of constitutive models

Reference 40

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This paper cites Large deformation isotropic elasticity –on the correlation of theory and experiment for incompressible rubberlike solids.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Large deformation isotropic elasticity –on the correlation of theory and experiment for incompressible rubberlike solids

Reference 41

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This paper cites Biomechanics of the Brain.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Biomechanics of the Brain

Reference 42

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This paper cites A software package for sequential quadratic programming.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues A software package for sequential quadratic programming

Reference 43

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This paper cites https://www.3ds.com/products/simulia/abaqus (2023).

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues https://www.3ds.com/products/simulia/abaqus (2023)

Reference 44

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On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Experiments on stainless steel hollow sections —Part 2: Member behaviour of columns and beams

Reference 45

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Observation 087a4ad2-642a-494b-914a-e4efeed56f7f · outbound

This paper cites Analysis of slot orientation in shear - compression specimen (SCS).

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Analysis of slot orientation in shear - compression specimen (SCS)

Reference 46

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Observation e5940e21-da84-464d-9e17-8887d84cba2c · outbound

This paper cites The effect of strain rate, specimen geometry and lubrication on responses of aluminium AA2024 in uniaxial compression experiments.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues The effect of strain rate, specimen geometry and lubrication on responses of aluminium AA2024 in uniaxial compression experiments

Reference 47

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Observation 7f9db4b3-f5f9-4527-ab81-0d6534a3a3e9 · outbound

This paper cites Asymptotic symmetries and thermodynamics of higher spin black holes in AdS3.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Asymptotic symmetries and thermodynamics of higher spin black holes in AdS3

Reference 48

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Observation 1e180eb9-a81a-422a-8f4f-383166e2c68c · outbound

This paper cites Modulating the Buckling Energy Barrier in Thin -Shell Structures Through Local Imperfections.

On the validity of using idealised sample geometries for interpreting mechanical tests of very soft tissues Modulating the Buckling Energy Barrier in Thin -Shell Structures Through Local Imperfections

Reference 49

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