OSCR

Handgrip weakness is associated with motor cortex atrophy in rheumatoid arthritis: a cross-sectional study with a hand exercise intervention.

Code ↔ Paper

The paper beside its authors' code: matches between them have not been computed for this paper yet.

Paper

Loaded from Europe PMC by your browser, not stored by OSCR: doi.org · Europe PMC

The paper is loaded when this pane is shown.

The authors' code

Shell · 98 lines · 3.2 KB · BSD-3-Clause

  1. #!/bin/sh
  2. # This is set as the minimum number of arguments for the script to run
  3. ndefargs=2
  4. # Parameters go here, where optionally, you can specify a default value
  5. max_iter=100
  6. bc_order=4
  7. # Check number of args
  8. image=$1
  9. mask=$2
  10. # Check mandatory args
  11. if [ ! -f $image ]; then
  12. echo "The image '$image' to be segmented does not exist!"
  13. exit
  14. fi
  15. if [ ! -f $mask ]; then
  16. echo "The mask image '$mask' does not exist!"
  17. exit
  18. fi
  19. # Parse remaining command line options after the mandatory ones.
  20. shift $ndefargs
  21. while [ "$#" -gt 0 ]
  22. do
  23. case $1 in
  24. -max_iter)
  25. max_iter=$2
  26. shift 1
  27. ;;
  28. -bc_order)
  29. bc_order=$2
  30. shift 1
  31. ;;
  32. *)
  33. echo "Error: option $1 not recognised"
  34. exit
  35. ;;
  36. esac
  37. shift 1
  38. done
  39. # Create command line args for binary.
  40. if [ "$max_iter" != "" ]; then
  41. max_iter_arg=" -max_iter $max_iter "
  42. fi
  43. if [ "$bc_order" != "" ]; then
  44. bc_order_arg=" -bc_order $bc_order "
  45. fi
  46. name=`echo $image | awk -F '.nii' {'print $1'}`
  47. pathatlas=~/Source/nifty-seg/priors
  48. atlas=${pathatlas}/T1.nii.gz
  49. grey_prior=${pathatlas}/CGM_prior.nii.gz
  50. white_prior=${pathatlas}/WM_prior.nii.gz
  51. csf_prior=${pathatlas}/ECSF_prior.nii.gz
  52. deep_grey_prior=${pathatlas}/DGM_prior.nii.gz
  53. internal_csf_prior=${pathatlas}/ICSF_prior.nii.gz
  54. seg_maths ${mask} -bin -dil 3 -ero 3 -fill -dil 1 ${name}__mask_filled.nii
  55. if [ ! -f ${name}__affine.mat ]; then
  56. echo Starting reg_aladin
  57. linearArgs="-target ${image} -tmask ${name}__mask_filled.nii -source ${atlas} -aff ${name}__affine.mat -ln 3 -lp 2 -result ${name}__affine_result.nii.gz"
  58. LinearExecutable=`which reg_aladin`
  59. $LinearExecutable $linearArgs
  60. fi
  61. if [ ! -f ${name}__cpp.nii ]; then
  62. echo Starting reg_f3d
  63. nonLinearExecutable=`which reg_f3d`
  64. nonLinearArgs=" -ln 3 -lp 2 -sx 5 -target ${image} -tmask ${name}__mask_filled.nii -source ${atlas} -aff ${name}__affine.mat -cpp ${name}__cpp.nii"
  65. $nonLinearExecutable $nonLinearArgs
  66. echo Finished reg_f3d
  67. ###############################################################
  68. # Transform images from atlas space to native T1 space
  69. ################################################################
  70. reg_resample -target ${image} -source $grey_prior -cpp ${name}__cpp.nii -result ${name}__registered_grey.nii -TRI
  71. reg_resample -target ${image} -source $white_prior -cpp ${name}__cpp.nii -result ${name}__registered_white.nii -TRI
  72. reg_resample -target ${image} -source $csf_prior -cpp ${name}__cpp.nii -result ${name}__registered_csf.nii -TRI
  73. reg_resample -target ${image} -source $deep_grey_prior -cpp ${name}__cpp.nii -result ${name}__registered_deep_grey.nii -TRI
  74. reg_resample -target ${image} -source $internal_csf_prior -cpp ${name}__cpp.nii -result ${name}__registered_internal_csf.nii -TRI
  75. echo Finishing Resampling
  76. fi
  77. ################################################################
  78. # Run LoAd
  79. ################################################################
  80. cmd="seg_LoAd -in ${image} -mask ${name}__mask_filled.nii -priors ${name}__registered_white.nii ${name}__registered_grey.nii ${name}__registered_csf.nii ${name}__registered_deep_grey.nii ${name}__registered_internal_csf.nii -out ${name}_segmentation.nii -v 1 $max_iter_arg $bc_order_arg"
  81. echo "Running command:$cmd"
  82. eval $cmd
  83. rm ${name}__*

LoAd_brainonly.sh at commit e7404b9, under BSD-3-Clause · at the source

Overview

Authors: Amanda L Gustafsson1, Rolf A Heckemann2, Malin C Erlandsson1,3, Victoria ME Lundgren1, Zhao Dai4, Sofia T Silfverswärd5, Rille Pullerits1,6, Maria I Bokarewa1,3, Caroline Wasén1,7
ORCID iDs: Caroline Wasén
  1. Department of Rheumatology and Inflammation Research, Institute of Medicine, Sahlgrenska Academy, University of Gothenburg,Gothenburg, Sweden
  2. Department of Medical Radiation Sciences, Institute of Clinical Sciences, Sahlgrenska Academy, University of Gothenburg,Gothenburg, Sweden
  3. Rheumatology Clinic, Sahlgrenska University Hospital, Region Västra Götaland,Gothenburg, Sweden
  4. The First Affiliated Hospital, Guangzhou University of Chinese Medicine,Guangzhou, China
  5. Department of Ophthalmology, Sahlgrenska University Hospital, Region Västra Götaland,Gothenburg, Sweden
  6. Department of Clinical Immunology and Transfusion Medicine, Sahlgrenska University Hospital, Region Västra Götaland,Gothenburg, Sweden
  7. Division of Rheumatology, Department of Medicine Solna, Karolinska Institutet, Center for Molecular Medicine, Karolinska University Hospital,Stockholm, Sweden
Journal: BMC medicine, volume 24, issue 1, article 331
Dates: received 13 November 2025; accepted 21 May 2026; published online 26 May 2026
Type: Research article · Language: English
License: CC BY
Identifiers: DOI 10.1186/s12916-026-04956-z · PMID 42192374 · PMCID PMC13214063 · OpenAlex W7162416810
Open access: gold, a free copy (OpenAlex)
Status: code verified
Categories: genetics / omics (modality), structural MRI / diffusion (modality), human (organism)
Methods: Statistics, Preprocessing, Physiology & signal measures
Keywords: Arthritis, Rheumatoid, Hand Strength, Magnetic Resonance Imaging, Brain Mapping, Motor Cortex, CD4-Positive T-Lymphocytes, Monocytes, Cytokines, Gene Expression Profiling, Exercise Therapy
MeSH: Arthritis, Rheumatoid*, Exercise Therapy*, Hand Strength*, Motor Cortex*, Adult, Aged, Atrophy, Clinical Trials as Topic, Cross-Sectional Studies, Female, Humans, Magnetic Resonance Imaging, Middle Aged, Pilot Projects, Young Adult (* major topic)
Topic: Rheumatoid Arthritis Research and Therapies (Rheumatology, Medicine), according to OpenAlex
Funding: University of Gothenburg
Citations: not cited yet (Europe PMC); 61 references in the paper

Abstract

Background: Handgrip strength (HGS) in rheumatoid arthritis (RA) is commonly attributed to joint pathology, but may also reflect extra-articular manifestations, including atrophy of motor-related brain regions. We investigated HGS as a marker of peripheral joint status, systemic immune regulation, and central motor integrity.

Methods: Maximal HGS was assessed using a dynamometer. Joint pathology was evaluated using radiographic and clinical measures, and upper limb disability using questionnaire. Brain volumes were quantified using MRI and MAPER software. Transcriptome sequencing was performed on circulating CD4⁺ and CD14⁺ cells. In a six-month, single-arm pilot trial, a subgroup of patients performed daily hand exercises. Associations and longitudinal changes were analysed using linear mixed-effects models accounting for repeated measurements across hands and timepoints, with variable selection performed using LASSO regression.

Results: A total of 59 women with established RA were included in the cross-sectional analysis (median age 64 years [range 23–76], DAS28 2.46 [1.1–5.8], disease duration 11 years [0–45]). Lower HGS was associated with greater disability. HGS was also independently associated with premotor and supplementary motor cortex (PMA/SMA) volume after adjustment for age, hand dominance, and joint pathology. Among joint pathology measures, tender joint count showed a significant negative association with HGS. Transcriptome analyses of CD4⁺ and CD14⁺ cells indicated that lower HGS was associated with reduced immune responsiveness and altered cytokine signalling pathways. In a six-month pilot hand exercise trial (n = 12; median age 54 years [28–68], DAS28 2.87 [1.2–3.6], disease duration 14 years [1–40]), HGS increased at 3 months, with a non-significant trend at 6 months. Baseline PMA/SMA volume showed a non-significant trend towards predicting HGS improvement. Longitudinal analyses revealed region-specific brain changes, with a decrease in PMA/SMA volume and an increase in insular volume over time.

Conclusions: Handgrip weakness in RA may reflect both joint pathology and motor cortex atrophy in the PMA/SMA. Hand exercise improved HGS and induced certain structural changes in the brain, though effects on motor regions remain uncertain and warrant further study.

Trial registration: Clinical trial registration: ClinicalTrials.gov, NCT04378621. Registration date: May 5, 2020.

Supplementary Information: The online version contains supplementary material available at 10.1186/s12916-026-04956-z.

Reproduced under the paper's license (CC BY), from the paper cited above.

Repository

Its files are read in the Code ↔ Paper reader above.

KCL-BMEIS/NiftySeg

License: BSD-3-Clause
State: the link answers, verified on 28 September 2026
Evidence: files inventoried
Commit: e7404b9548d3362fef7de0f31339bd23c5e4f220, 24 August 2026
Languages: C/C++ (28), C++ (18), C (16), Shell (1)
Size: 85 files, 63 scripts
Software Heritage: not archived
Found in: the text, “MRI of the brain”
Holds: README, license file
Not found: CITATION.cff, environment file, tests, continuous integration, documentation
Availability: 1 check, the latest on 28 September 2026: the link answers
  • 28 September 2026: the link answers
65 files

Tracing map

Proposed by the machine: these links were found in the paper and verified at the source, without human review. The map will receive a Zenodo DOI once one of the paper's authors has validated it with their ORCID.

What the map holds:

  • 1 repository of the authors' code, each at its verified commit, with its license and how the link was found in the paper;
  • 63 scripts, each with its path and the digest of its content;
  • no match between paragraphs and code yet;
  • neither the text of the paper nor the code itself.

Its JSON (tracing-map.json) is deposited on Zenodo with its DOI once the map is validated.

Data

Data links

Data availability

The RNA sequencing datasets generated and analysed during the current study are available in the NCBI GEO repository with accession [GSE201670](https:/www.ncbi.nlm.nih.gov/geo/query/acc.cgi? acc=GSE201670) (CD14⁺) and [GSE201669](https:/www.ncbi.nlm.nih.gov/geo/query/acc.cgi? acc=GSE201669) (CD4⁺).Due to ethical and legal restrictions related to patient confidentiality and the handling of pseudonymised MRI data under GDPR, the imaging and associated clinical datasets are not publicly available. Data may be made available upon reasonable request to the corresponding author, subject to review of a research proposal, relevant ethical approval, and a data use agreement to ensure compliance with data protection and ethical requirements.

Reproduced under the paper's license (CC BY), from the paper cited above.

Versions

The history of this record: each version stored by the harvester or made by a correction of its authors or of the maintainers of its code, and what changed in its facts. The texts of the paper (its abstract, its availability statements) are not part of it; versions that changed only those are not listed.

Version 1, 28 September 2026: the first record

Recorded: type, language, journal, volume, issue, pages, dates, 9 authors, 10 keywords, 15 MeSH terms, 1 funder, 58 references.

Cite

This paper

Gustafsson, A. L., Heckemann, R. A., Erlandsson, M. C., Lundgren, V. M., Dai, Z., Silfverswärd, S. T., Pullerits, R., Bokarewa, M. I., & Wasén, C. (2026). Handgrip weakness is associated with motor cortex atrophy in rheumatoid arthritis: a cross-sectional study with a hand exercise intervention. BMC medicine, 24(1), 331. https://doi.org/10.1186/s12916-026-04956-z

BibTeX

@article{gustafsson2026handgrip,
author = {Gustafsson, Amanda L and Heckemann, Rolf A and Erlandsson, Malin C and Lundgren, Victoria ME and Dai, Zhao and Silfverswärd, Sofia T and Pullerits, Rille and Bokarewa, Maria I and Wasén, Caroline},
title = {{Handgrip weakness is associated with motor cortex atrophy in rheumatoid arthritis: a cross-sectional study with a hand exercise intervention}},
journal = {BMC medicine},
year = {2026},
month = may,
volume = {24},
number = {1},
pages = {331},
publisher = {BioMed Central},
issn = {1741-7015},
doi = {10.1186/s12916-026-04956-z},
url = {https://doi.org/10.1186/s12916-026-04956-z},
pmid = {42192374},
pmcid = {PMC13214063}
}

RIS

TY - JOUR
AU - Gustafsson, Amanda L
AU - Heckemann, Rolf A
AU - Erlandsson, Malin C
AU - Lundgren, Victoria ME
AU - Dai, Zhao
AU - Silfverswärd, Sofia T
AU - Pullerits, Rille
AU - Bokarewa, Maria I
AU - Wasén, Caroline
TI - Handgrip weakness is associated with motor cortex atrophy in rheumatoid arthritis: a cross-sectional study with a hand exercise intervention
T2 - BMC medicine
J2 - BMC Med
PY - 2026
DA - 2026/05/26
VL - 24
IS - 1
SP - 331
SN - 1741-7015
PB - BioMed Central
DO - 10.1186/s12916-026-04956-z
UR - https://doi.org/10.1186/s12916-026-04956-z
LA - en
ER -

CSL-JSON

{
"id": "10.1186/s12916-026-04956-z",
"type": "article-journal",
"title": "Handgrip weakness is associated with motor cortex atrophy in rheumatoid arthritis: a cross-sectional study with a hand exercise intervention",
"container-title": "BMC medicine",
"author": [
{
"family": "Gustafsson",
"given": "Amanda L"
},
{
"family": "Heckemann",
"given": "Rolf A"
},
{
"family": "Erlandsson",
"given": "Malin C"
},
{
"family": "Lundgren",
"given": "Victoria ME"
},
{
"family": "Dai",
"given": "Zhao"
},
{
"family": "Silfverswärd",
"given": "Sofia T"
},
{
"family": "Pullerits",
"given": "Rille"
},
{
"family": "Bokarewa",
"given": "Maria I"
},
{
"family": "Wasén",
"given": "Caroline"
}
],
"container-title-short": "BMC Med",
"volume": "24",
"issue": "1",
"page": "331",
"DOI": "10.1186/s12916-026-04956-z",
"PMID": "42192374",
"PMCID": "PMC13214063",
"ISSN": "1741-7015",
"publisher": "BioMed Central",
"URL": "https://doi.org/10.1186/s12916-026-04956-z",
"language": "en",
"issued": {
"date-parts": [
[
2026,
5,
26
]
]
}
}

The tracing map gets a citation of its own once an author has validated it and it has a DOI.

Similar papers

The papers with a page that share the most with this one: the tools found in their code, their categories, datasets, cited references and authors, the rarest counting most.

[1] doi:10.1162/imag.a.1343
Metabolic connectivity alterations in amyotrophic lateral sclerosis: Individual network analysis based on Wasserstein distances.
Journal: Imaging neuroscience (Cambridge, Mass.)
In common: 3 references
[2] doi:10.1038/s41398-026-04010-9 [code]
Bullying victimization and brain development: a longitudinal structural magnetic resonance imaging study from adolescence to early adulthood.
Journal: Translational psychiatry
In common: structural MRI / diffusion, 2 references
[3] doi:10.1162/imag.a.1164 [code]
Bias and generalizability of brain age prediction models: A multi-cohort evaluation with anatomical and interpretability insights.
Journal: Imaging neuroscience (Cambridge, Mass.)
In common: structural MRI / diffusion, 2 references
[4] doi:10.1007/s12031-026-02598-7
A Lipoylation-PDH-TCA Transcriptional Deficit in the Alzheimer's Disease Cortex - Donor-level Multi-cohort Evidence with Neuronal-composition, Disease-specificity and Matched-null Controls.
Journal: Journal of molecular neuroscience : MN
In common: genetics / omics, 3 references
[5] doi:10.1002/alz.71804
A meta-refined human Alzheimer's disease-associated gene subset shows partial mouse-model pathway correspondence and limited cross-cohort machine-learning transportability.
Journal: Alzheimer's & dementia : the journal of the Alzheimer's Association
In common: genetics / omics, 3 references
[6] doi:10.3390/ijms27136083
Systematic Evaluation of Competing Brain Transcriptomic Representations Reveals Reciprocal Patterns Across Heterogeneous Contexts.
Journal: International journal of molecular sciences
In common: genetics / omics, 3 references
[7] doi:10.1007/s10571-026-01726-6
Gene Expression Analysis of Mitochondria-Associated Membrane (MAM)-Related Genes in ER Stress and Alzheimer's Disease.
Journal: Cellular and molecular neurobiology
In common: genetics / omics, 3 references
[8] doi:10.34133/csbj.0085 [code]
A Systems-Level Transcriptomic Framework Identifies Shared Cellular Hubs in Osteoarthritis and Alzheimer's Disease.
Journal: Computational and structural biotechnology journal
In common: genetics / omics, 3 references
[9] doi:10.1038/s41598-026-43219-y
Identification of NFE2L2 as a key biomarker associated with pyroptosis in gliomas through bioinformatics and experiments.
Journal: Scientific reports
In common: genetics / omics, 3 references
[10] doi:10.1038/s41467-026-71360-9 [code]
Perinatal brain developmental transition revealed by transcriptomic and proteomic analyses of Bama miniature pigs.
Journal: Nature communications
In common: genetics / omics, 3 references

Contribute

The authors of this paper can claim it, correct its record and validate its tracing map, and the maintainers of its code (its owner, or a public member of its organization) correct what it says of their repository; anyone signed in can ask for its removal. Every request goes to OSCR's own machine, which answers it; your account page follows them.

Sign in with ORCID to claim this paper as one of its authors, correct its record or validate its tracing map: when the paper's metadata lists your ORCID iD, you are recognized at once. Maintainers of its code: sign in with GitHub, then claim the repository on your account page.

Request its removal

To ask OSCR to remove this record, the copies of its authors' scripts or its tracing map, use the removal request page: signed in, you say who you are, what to remove and why, then review and confirm the request. Published rules decide every request (how).

Discussion, reproductions, activity

Discussion: questions and error reports about this paper and its code, from signed-in readers and its authors. It opens with sign-in.

Reproductions: reports from readers who ran the authors' code: what they reproduced, with which environment, commit and data. It opens with sign-in.

Activity: what happens around this paper: new versions of its record, its map's validation, discussions and reproductions. It opens with sign-in.