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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner

As of 6 August 2026, this Paper Citation Record lists 53 of 53 outbound references and 0 inbound Pith citation observations for arXiv:2509.09513.

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2509.09513 v3

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Pith citing papers itemized under the disclosed page cap.

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Outbound references

Observation 88870b38-95c9-4456-a625-a11a7e58aa3b · outbound

This paper cites Diffusion MRI biomarkers of white matter microstructure vary nonmono- tonically with increasing cerebral amyloid deposition,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Diffusion MRI biomarkers of white matter microstructure vary nonmono- tonically with increasing cerebral amyloid deposition,

Reference 1

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Observation 1f8d020a-6811-4ea4-a044-b13ff1715d64 · outbound

This paper cites Diffusion tensor imaging in Parkinson’s disease: Review and meta-analysis,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Diffusion tensor imaging in Parkinson’s disease: Review and meta-analysis,

Reference 2

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Observation 065610a5-ac67-4e9c-8f25-174ced5677e2 · outbound

This paper cites Measures of cortical microstructure are linked to amyloid pathology in Alzheimer’s disease,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Measures of cortical microstructure are linked to amyloid pathology in Alzheimer’s disease,

Reference 3

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Observation 12f79984-7f55-4f8e-a50a-06d1f48e1760 · outbound

This paper cites Estimation of the Effective Self-DiffusionTensorfrom the NMR Spin Echo,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Estimation of the Effective Self-DiffusionTensorfrom the NMR Spin Echo,

Reference 4

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Observation 3d7d09e3-a968-456d-9298-e330e5c0747b · outbound

This paper cites Imaging of diffusion and microcirculation with gradient sensitization: Design, strategy, and significance,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Imaging of diffusion and microcirculation with gradient sensitization: Design, strategy, and significance,

Reference 5

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Observation e9ec5839-801e-4d85-85e8-35b99e69f2b3 · outbound

This paper cites Imaging brain microstructure with diffusion MRI: Practicality and applications,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Imaging brain microstructure with diffusion MRI: Practicality and applications,

Reference 6

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Observation e4a0fce5-0f5a-4a9e-88f7-f73f369dccad · outbound

This paper cites Challenges for biophysical modeling of microstructure,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Challenges for biophysical modeling of microstructure,

Reference 7

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Observation af19c689-74d9-4b7b-a1ce-1da73f1b6890 · outbound

This paper cites Quantifying brain microstructure with diffusion MRI: Theory and parameter estimation,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Quantifying brain microstructure with diffusion MRI: Theory and parameter estimation,

Reference 8

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Observation 33fb3aa3-cc55-49af-8f51-6aff4421f09c · outbound

This paper cites An analytical model of restricted diffusion in bovine optic nerve,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner An analytical model of restricted diffusion in bovine optic nerve,

Reference 9

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Observation 316fa553-d129-4f5b-a425-965701168801 · outbound

This paper cites Neurite Exchange Imaging (NEXI): A minimal model of diffusion in gray matter with inter-compartment water exchange,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Neurite Exchange Imaging (NEXI): A minimal model of diffusion in gray matter with inter-compartment water exchange,

Reference 10

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Observation d7715872-fdd6-4a85-879e-647a2e7803ad · outbound

This paper cites SANDI: A compartment-based model for non-invasive apparent soma and neurite imaging by diffusion MRI,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner SANDI: A compartment-based model for non-invasive apparent soma and neurite imaging by diffusion MRI,

Reference 11

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Observation dceb295e-afdb-4c1f-bc65-1cff95d15b5a · outbound

This paper cites In vivo observation and biophysical interpretation of time-dependent diffusion in human cortical gray matter,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner In vivo observation and biophysical interpretation of time-dependent diffusion in human cortical gray matter,

Reference 12

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Observation 65e6130d-a82c-48a3-868f-acf85ca24d6e · outbound

This paper cites Diffusion time dependence, power-law scaling, and exchange in gray matter,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Diffusion time dependence, power-law scaling, and exchange in gray matter,

Reference 13

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Observation 91443ff9-c67f-4e45-a9cc-ec03869e6af2 · outbound

This paper cites Quantifying human gray matter microstructure using neurite exchange imaging (NEXI) and 300 mT/m gradients,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Quantifying human gray matter microstructure using neurite exchange imaging (NEXI) and 300 mT/m gradients,

Reference 14

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Observation f30ca6c0-e066-4552-ad7b-14593699faaa · outbound

This paper cites Human gray matter microstructure mapped using neurite exchange imaging (NEXI) on a clinical scanner,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Human gray matter microstructure mapped using neurite exchange imaging (NEXI) on a clinical scanner,

Reference 15

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Observation 51d3c855-a94e-40ac-8e68-c6c7317b01a2 · outbound

This paper cites Cortical microstructure in primary progressive aphasia: A multicenter study,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Cortical microstructure in primary progressive aphasia: A multicenter study,

Reference 16

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This paper cites Connectome 2.0: Developing the next-generation ultra-high gradient strength human MRI scanner for bridging studies of the micro-, meso- and macro-connectome,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Connectome 2.0: Developing the next-generation ultra-high gradient strength human MRI scanner for bridging studies of the micro-, meso- and macro-connectome,

Reference 17

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Observation 3aa39438-7610-41de-969c-5dff068e6660 · outbound

This paper cites Ultra-high gradient connectomics and microstructure MRI scanner for imaging of human brain circuits across scales,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Ultra-high gradient connectomics and microstructure MRI scanner for imaging of human brain circuits across scales,

Reference 18

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Observation 4c2c066f-ecb3-4f7e-b485-297ae122a699 · outbound

This paper cites In vivo human neurite exchange time imaging at 500 mT/m diffusion gradients,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner In vivo human neurite exchange time imaging at 500 mT/m diffusion gradients,

Reference 19

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Observation 29c09e22-0e6d-44a5-9b8d-c95e16c8e170 · outbound

This paper cites Optimization of b-value schemes for estimation of the diffusion coefficient and the perfusion fraction with segmented intravoxel incoherent motion model fitting,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Optimization of b-value schemes for estimation of the diffusion coefficient and the perfusion fraction with segmented intravoxel incoherent motion model fitting,

Reference 20

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This paper cites Robust design of biological experiments,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Robust design of biological experiments,

Reference 21

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Observation 31c1ffc0-82bc-4cf3-b094-e40bf0dea33d · outbound

This paper cites XGBoost: A scalable tree boosting system,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner XGBoost: A scalable tree boosting system,

Reference 22

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner A unified approach to interpreting model predictions,

Reference 23

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner An integrated approach of feature selection and machine learning for early detection of breast cancer,

Reference 24

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Performance and explainability of feature selection-boosted tree-based classifiers for COVID-19 detection,

Reference 25

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This paper cites A multilayer stacking method base on RFE-SHAP feature selection strategy for recognition of driver’s mental load and emotional state,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner A multilayer stacking method base on RFE-SHAP feature selection strategy for recognition of driver’s mental load and emotional state,

Reference 26

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Coupling Interpretable Feature Selection with Machine Learning for Evapotranspiration Gap Filling,

Reference 27

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Hybrid bagging and boosting with SHAP based feature selection for enhanced predictive modeling in intrusion detection systems,

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Prediction of Customer Satisfaction Using RFE-SHAP Feature Selection Method,

Reference 29

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner High-density MRI coil arrays with integrated field monitoring systems for human connectome mapping,

Reference 30

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Denoising of diffusion MRI using random matrix theory,

Reference 31

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Gibbs-ringing artifact removal based on local subvoxel-shifts,

Reference 32

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner An integrated approach to correction for off-resonance effects and subject movement in diffusion MR imaging,

Reference 33

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner FastSurfer - A fast and accurate deep learning based neuroimaging pipeline,

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Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner 101 Labeled Brain Images and a Consistent Human Cortical Labeling Protocol,

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Observation 68a0f5c3-fac7-4f95-bcb4-619531f597ea · outbound

This paper cites Advanced Normalization Tools: V1.0,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Advanced Normalization Tools: V1.0,

Reference 36

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Observation 40f139a1-098b-4292-bd83-0586db30e3d8 · outbound

This paper cites Informatics and Data Mining Tools and Strategies for the Human Connectome Project,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Informatics and Data Mining Tools and Strategies for the Human Connectome Project,

Reference 37

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Observation eece5aa6-2056-4d74-be5c-0ffb899549e6 · outbound

This paper cites Monte Carlo study of a two-compartment exchange model of diffusion,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Monte Carlo study of a two-compartment exchange model of diffusion,

Reference 38

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Observation 82e243eb-07ad-44d9-8310-902e0c15c3fe · outbound

This paper cites Diffusion-time dependence of diffusional kurtosis in the mouse brain,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Diffusion-time dependence of diffusional kurtosis in the mouse brain,

Reference 39

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Observation 91294f51-cc97-4374-8192-adc2a9cc1a73 · outbound

This paper cites Time-dependent diffusivity and kurtosis in phantoms and patients with head and neck cancer,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Time-dependent diffusivity and kurtosis in phantoms and patients with head and neck cancer,

Reference 40

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Observation a2679f0d-1f1e-49fe-b554-e2817740ae93 · outbound

This paper cites Time- Dependent Diffusion & Kurtosis as a Probe of Tissue Structure,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Time- Dependent Diffusion & Kurtosis as a Probe of Tissue Structure,

Reference 41

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Observation 8bb437c2-c7b1-4692-8b69-28fab473ccd7 · outbound

This paper cites Parameter estimation from Rician-distributed data sets using a maximum likelihood estimator: Application to t1 and perfusion measurements,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Parameter estimation from Rician-distributed data sets using a maximum likelihood estimator: Application to t1 and perfusion measurements,

Reference 42

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Observation 09fb6086-a8a8-4c1c-b8c4-24163e76846d · outbound

This paper cites Microscopic anisotropy misestimation in spherical-mean single diffusion encoding MRI,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Microscopic anisotropy misestimation in spherical-mean single diffusion encoding MRI,

Reference 43

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Observation 2bca05de-0ee1-4475-a1da-52458a11ae79 · outbound

This paper cites GEM: A unifying model for Gray Matter microstructure,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner GEM: A unifying model for Gray Matter microstructure,

Reference 44

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Observation a892b873-9dfc-4be7-927d-1e4a24658134 · outbound

This paper cites an unresolved cited work.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Unresolved cited work

Reference 45

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Observation d389dc5a-36ab-46dc-ba71-f5b50c5b81cd · outbound

This paper cites Degeneracy in model parameter estimation for multi-compartmental diffusion in neuronal tissue: Degeneracy in Model Parameter Estimation of Diffusion in Neural Tissue,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Degeneracy in model parameter estimation for multi-compartmental diffusion in neuronal tissue: Degeneracy in Model Parameter Estimation of Diffusion in Neural Tissue,

Reference 46

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Observation 67ed31b8-7e46-4a85-883c-32b8e0ebe4db · outbound

This paper cites Estimating axial diffusivity in the NODDI model,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Estimating axial diffusivity in the NODDI model,

Reference 47

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Observation 0fe4e217-9efb-4aa6-947c-f19ab0e18787 · outbound

This paper cites Exchange between structurally-disordered compartments,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Exchange between structurally-disordered compartments,

Reference 48

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source=pdf_text observed=2026-08-04T19:01:52.301772Z digest=sha256:57efcf66d3145d504a2cf5d783010c0200857237afbe41ccdba7bd816912cc82

Observation 7293a934-8a0f-449c-9a95-65fba7edb47f · outbound

This paper cites Intra-axonal diffusivity in brain white matter,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Intra-axonal diffusivity in brain white matter,

Reference 49

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source=pdf_text observed=2026-08-04T19:01:52.304911Z digest=sha256:44b4eab08a3e55c03fd6b881ce25f7760fc83558974ee7761ebe91a1d1a16385

Observation bda1c314-abdc-4686-b3d3-4e4de1540cf6 · outbound

This paper cites Efficient PCA denoising of spatially correlated redundant MRI data,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Efficient PCA denoising of spatially correlated redundant MRI data,

Reference 50

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Observation 64286f1d-7b5e-4429-bfd0-d15c2aad127b · outbound

This paper cites NOise reduction with DIstribution Corrected (NORDIC) PCA in dMRI with complex-valued parameter-free locally low-rank processing,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner NOise reduction with DIstribution Corrected (NORDIC) PCA in dMRI with complex-valued parameter-free locally low-rank processing,

Reference 51

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Observation 35f3e245-913a-4801-9c8f-07539cb303da · outbound

This paper cites Optimizing the NEXI acquisition protocol for quantifying human gray matter microstructure on a clinical MRI scanner using Explainable AI,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Optimizing the NEXI acquisition protocol for quantifying human gray matter microstructure on a clinical MRI scanner using Explainable AI,

Reference 52

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Observation 9fe288f3-de0a-4aa8-bcc1-54672ce262d4 · outbound

This paper cites Diffusion MRI with free gradient waveforms on a high- performance gradient system: Probing restriction and exchange in the human brain,.

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner Diffusion MRI with free gradient waveforms on a high- performance gradient system: Probing restriction and exchange in the human brain,

Reference 53

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