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"Ji Won Shin"

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Spinal cord injury

Correction: Factors Affecting Metabolic Syndrome in Individuals With Chronic Spinal Cord Injury
Ji Won Shin, Tayeon Kim, Bum-Suk Lee, Onyoo Kim
Ann Rehabil Med 2022;46(2):109-109.   Published online April 30, 2022
DOI: https://doi.org/10.5535/arm.21144.e
Corrects: Ann Rehabil Med 2022;46(1):24
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Original Articles

Spinal cord injury

Factors Affecting Metabolic Syndrome in Individuals With Chronic Spinal Cord Injury
Ji Won Shin, Tayeon Kim, Bum-Suk Lee, Onyoo Kim
Ann Rehabil Med 2022;46(1):24-32.   Published online February 28, 2022
DOI: https://doi.org/10.5535/arm.21144
Correction in: Ann Rehabil Med 2022;46(2):109
Objective
To assess the validity of different anthropometric measures (waist circumference [WC], body mass index [BMI], and percentage body fat) in diagnosing metabolic syndrome (MetS) among individuals with SCI and provides preliminary data for future studies in setting obesity cutoff values for this population.
Methods
This was a single-center retrospective cohort study. Sample information, anthropometric measures, and MetS variables of 157 individuals with chronic SCI were collected from an electronic medical records database.
Results
Increasing age (odds ratio [OR]=1.040, p=0.016) and lower neurological level of injury (OR=1.059, p=0.046) were risk factors for MetS. Male BMI (r=0.380, p<0.001) and male WC (r=0.346, p<0.001) were positively correlated with the number of MetS subfactors. Individuals with non-obese WC, excluding central obesity, were associated with having no MetS subfactors (p=0.005), and individuals with obese WC were associated with one or more subfactors (p=0.005). BMI was associated with MetS diagnosis (area under the curve=0.765, p<0.001), with the calculated cutoff value for BMI being 22.8 kg/m2.
Conclusion
This study calls for a stricter BMI cutoff for individuals with SCI in diagnosing MetS and warrants a large population-based study to define central obesity according to sex and ethnicity.

Citations

Citations to this article as recorded by  
  • Physical and emotional consequences of excess weight as experienced by individuals with spinal cord injuries
    Sherri L. LaVela, Justina Wu, Alex H.S. Harris, Susan M. Frayne, Andrea L. Nevedal, Katherine D. Arnow, Nicolas B. Barreto, Kristen Davis, Dan Eisenberg
    The Journal of Spinal Cord Medicine.2024; 47(3): 412.     CrossRef
  • Correlates of metabolic syndrome in people with chronic spinal cord injury
    F. Di Giulio, C. Castellini, S. Palazzi, D. Tienforti, F. Antolini, G. Felzani, M. Giorgio Baroni, A. Barbonetti
    Journal of Endocrinological Investigation.2024; 47(8): 2097.     CrossRef
  • Increased Risk of Myocardial Infarction, Heart Failure, and Atrial Fibrillation After Spinal Cord Injury
    Jung Eun Yoo, Miso Kim, Bongseong Kim, Heesun Lee, Won Hyuk Chang, Jeehyun Yoo, Kyungdo Han, Dong Wook Shin
    Journal of the American College of Cardiology.2024; 83(7): 741.     CrossRef
  • The Clinical Management of Electrical Stimulation Therapies in the Rehabilitation of Individuals with Spinal Cord Injuries
    David R. Dolbow, Ines Bersch, Ashraf S. Gorgey, Glen M. Davis
    Journal of Clinical Medicine.2024; 13(10): 2995.     CrossRef
  • Racial differences in serological markers across the first year of injury in spinal cord injury: a retrospective analysis of a multi-center interventional study
    Jia Li, Matthew Farrow, Kerollos Ibrahim, Dana M. McTigue, John Kramer, Bobo Tong, Catherine Jutzeler, Linda Jones, Ceren Yarar-Fisher
    Spinal Cord.2024; 62(8): 486.     CrossRef
  • Effect of Detraining on Muscle Strength, Functional Capacity, Mental Health, and Body Composition in Individuals with Spinal Cord Injury
    Lucas Almada, Lucas Santos, Karla Freitas, Joel Rodrigues, Elizângela Diniz, Mauro Mazini-Filho, Luís Leitão, Eveline Pereira, Cláudia Oliveira, Osvaldo Moreira
    International Journal of Environmental Research and Public Health.2024; 21(7): 900.     CrossRef
  • Impaired Glucose Tolerance and Visceral Adipose Tissue Thickness among Lean and Non-Lean People with and without Spinal Cord Injury
    Amy L. Kimball, Michael A. Petrie, Patrick M. McCue, Kristin A. Johnson, Richard K. Shields
    Journal of Functional Morphology and Kinesiology.2023; 8(3): 123.     CrossRef
  • The Diagnosis and Management of Cardiometabolic Risk and Cardiometabolic Syndrome after Spinal Cord Injury
    Gary J. Farkas, Adam M. Burton, David W. McMillan, Alicia Sneij, David R. Gater
    Journal of Personalized Medicine.2022; 12(7): 1088.     CrossRef
  • 7,710 View
  • 165 Download
  • 9 Web of Science
  • 8 Crossref
Prevalence and Characteristics of Neuropathic Pain in Patients With Spinal Cord Injury Referred to a Rehabilitation Center
Hae Young Kim, Hye Jin Lee, Tae-lim Kim, EunYoung Kim, Daehoon Ham, Jaejoon Lee, Tayeun Kim, Ji Won Shin, Minkyoung Son, Jun Hun Sung, Zee-A Han
Ann Rehabil Med 2020;44(6):438-449.   Published online December 31, 2020
DOI: https://doi.org/10.5535/arm.20081
Objective
To identify the prevalence and characteristics of neuropathic pain (NP) in patients with spinal cord injury (SCI) and to investigate associations between NP and demographic or disease-related variables.
Methods
We retrospectively reviewed medical records of patients with SCI whose pain was classified according to the International Spinal Cord Injury Pain classifications at a single hospital. Multiple statistical analyses were employed. Patients aged <19 years, and patients with other neurological disorders and congenital conditions were excluded.
Results
Of 366 patients, 253 patients (69.1%) with SCI had NP. Patients who were married or had traumatic injury or depressive mood had a higher prevalence rate. When other variables were controlled, marital status and depressive mood were found to be predictors of NP. There was no association between the prevalence of NP and other demographic or clinical variables. The mean Numeric Rating Scale (NRS) of NP was 4.52, and patients mainly described pain as tingling, squeezing, and painful cold. Females and those with below-level NP reported more intense pain. An NRS cut-off value of 4.5 was determined as the most appropriate value to discriminate between patients taking pain medication and those who did not.
Conclusion
In total, 69.1% of patients with SCI complained of NP, indicating that NP was a major complication. Treatment planning for patients with SCI and NP should consider that marital status, mood, sex, and pain subtype may affect NP, which should be actively managed in patients with an NRS ≥4.5.

Citations

Citations to this article as recorded by  
  • Mechanisms and Therapeutic Prospects of Microglia-Astrocyte Interactions in Neuropathic Pain Following Spinal Cord Injury
    Yinuo Liu, Xintong Cai, Bowen Shi, Yajie Mo, Jianmin Zhang, Wenting Luo, Bodong Yu, Xi Li
    Molecular Neurobiology.2025; 62(4): 4654.     CrossRef
  • Comparative outcomes of microsurgical dorsal root entry zone lesioning (DREZotomy) for intractable neuropathic pain in spinal cord and cauda equina injuries
    Bunpot Sitthinamsuwan, Tanawat Ounahachok, Sawanee Pumseenil, Sarun Nunta-aree
    Neurosurgical Review.2025;[Epub]     CrossRef
  • Efficacy of neuromodulation and rehabilitation approaches on pain relief in patients with spinal cord injury: a systematic review and meta-analysis
    Simona Portaro, Angelo Alito, Giulia Leonardi, Nicola Marotta, Adriana Tisano, Daniele Bruschetta, Umile Giuseppe Longo, Antonio Ammendolia, Demetrio Milardi, Alessandro de Sire
    Neurological Sciences.2025;[Epub]     CrossRef
  • Correlation of Severity of Neuropathic Pain in Traumatic Spinal Cord Injury Patients with Sociodemographic and Clinical Characteristics Including Depression and Quality of Life: A Cross-sectional Study
    Arun Yadav, Mrinal Joshi, Shivangi Yadav
    Indian Journal of Physical Medicine and Rehabilitation.2025; 35(2): 128.     CrossRef
  • Curcumin reduces pain after spinal cord injury in rats by decreasing oxidative stress and increasing GABAA receptor and GAD65 levels
    Maryam Hadadi, Mohammad Mojtaba Farazi, Mehrnaz Mehrabani, Mahsa Tashakori-Miyanroudi, Zahra Behroozi
    Scientific Reports.2025;[Epub]     CrossRef
  • Clinical Characteristics of Adults Living with a Spinal Cord Injury Across the Continuum of Care: A Population-Based Cross-Sectional Study
    Matteo Ponzano, Anja Declercq, Melissa Ziraldo, John P. Hirdes
    Journal of Clinical Medicine.2025; 14(9): 3060.     CrossRef
  • Occurrence of neuropathic pain and its characteristics in patients with traumatic spinal cord injury
    Arun Yadav, Mrinal Joshi
    The Journal of Spinal Cord Medicine.2024; 47(6): 952.     CrossRef
  • Post-discharge follow-up of patients with spine trauma in the National Spinal Cord Injury Registry of Iran during the COVID-19 pandemic: Challenges and lessons learned
    Zahra Azadmanjir, Moein Khormali, Mohsen Sadeghi-Naini, Vali Baigi, Habibollah Pirnejad, Mohammad Dashtkoohi, Zahra Ghodsi, Seyed Behnam Jazayeri, Aidin Shakeri, Mahdi Mohammadzadeh, Laleh Bagheri, Mohammad-Sajjad Lotfi, Salman Daliri, Amir Azarhomayoun,
    Chinese Journal of Traumatology.2024; 27(3): 173.     CrossRef
  • Randomised, double-blind, placebo-controlled, parallel-group, multicentric, phase IIA clinical trial for evaluating the safety, tolerability, and therapeutic efficacy of daily oral administration of NFX88 to treat neuropathic pain in individuals with spin
    Pablo V. Escribá, Ángel M. Gil-Agudo, Joan Vidal Samsó, Judith Sánchez-Raya, Sebastián Salvador-de la Barrera, Vanesa Soto-León, Natacha León-Álvarez, Bosco Méndez Ferrer, Miguel David Membrilla-Mesa, Carolina Redondo Galán, Jesús Benito-Penalva, Antonio
    Spinal Cord.2024; 62(8): 454.     CrossRef
  • Low back pain classifications and their associations with disability, quality-of-life, and sociodemographic factors: a comprehensive examination using the PainDETECT questionnaire
    Zachary Gan, Stone Sima, Samuel Lapkin, Ashish D. Diwan
    Current Medical Research and Opinion.2024; 40(8): 1379.     CrossRef
  • Research progress in neuropathic pain after spinal cord injury: a bibliometric study from 2013 to 2024
    Qin Huiqing, Lin Weishan, Gui Yuchang, Tang Yun, Xu Jianwen
    Frontiers in Neurology.2024;[Epub]     CrossRef
  • Prevalence and Determinants of Pain in Spinal Cord Injury During Initial Inpatient Rehabilitation: Data From the Dutch Spinal Cord Injury Database
    Tim C. Crul, Marcel W.M. Post, Johanna M.A. Visser-Meily, Janneke M. Stolwijk-Swüste
    Archives of Physical Medicine and Rehabilitation.2023; 104(1): 74.     CrossRef
  • Ectopic expression of Nav1.7 in spinal dorsal horn neurons induced by NGF contributes to neuropathic pain in a mouse spinal cord injury model
    Yan Fu, Liting Sun, Fengting Zhu, Wei Xia, Ting Wen, Ruilong Xia, Xin Yu, Dan Xu, Changgeng Peng
    Frontiers in Molecular Neuroscience.2023;[Epub]     CrossRef
  • Precision neuromodulation: Promises and challenges of spinal stimulation for multi-modal rehabilitation
    Maria F. Bandres, Jefferson L. Gomes, Gerson N. Moreno Romero, Avery R. Twyman, Jacob Graves McPherson
    Frontiers in Rehabilitation Sciences.2023;[Epub]     CrossRef
  • A Silver Lining of Neuropathic Pain: Predicting Favorable Functional Outcome in Spinal Cord Injury
    Mu-Lan Xu, Xiang-Bo Wu, Ying Liang, Ning Li, Xu Hu, Xiao-Dong Lin, Miao-Qiao Sun, Chun-Qiu Dai, Dan Niu, Yan-Rong Zhang, Hui Cao, Chen-Guang Zhao, Xiao-Long Sun, Hua Yuan
    Journal of Pain Research.2023; Volume 16: 2619.     CrossRef
  • Feasibility of using remotely delivered Spring Forest Qigong to reduce neuropathic pain in adults with spinal cord injury: a pilot study
    Ann Van de Winckel, Sydney T. Carpentier, Wei Deng, Lin Zhang, Angela Philippus, Ricardo Battaglino, Leslie R. Morse
    Frontiers in Physiology.2023;[Epub]     CrossRef
  • An Exploratory EEG Analysis on the Effects of Virtual Reality in People with Neuropathic Pain Following Spinal Cord Injury
    Yvonne Tran, Philip Austin, Charles Lo, Ashley Craig, James W. Middleton, Paul J. Wrigley, Philip Siddall
    Sensors.2022; 22(7): 2629.     CrossRef
  • Systematic analysis of critical genes and pathways identified a signature of neuropathic pain after spinal cord injury
    Zefu Li, Huiying Bai, Ruoyu Zhang, Bohan Chen, Junmin Wang, Bohan Xue, Xiuhua Ren, Jiarui Wang, Yanjie Jia, Weidong Zang, Jian Wang, Xuemei Chen
    European Journal of Neuroscience.2022; 56(2): 3991.     CrossRef
  • Phenotypes of Motor Deficit and Pain after Experimental Spinal Cord Injury
    Volodymyr Krotov, Volodymyr Medvediev, Ibrahim Abdallah, Arseniy Bozhenko, Mykhailo Tatarchuk, Yevheniia Ishchenko, Leonid Pichkur, Serhii Savosko, Vitaliy Tsymbaliuk, Olga Kopach, Nana Voitenko
    Bioengineering.2022; 9(6): 262.     CrossRef
  • Peripheral Immune Dysfunction: A Problem of Central Importance after Spinal Cord Injury
    Marisa Jeffries, Veronica Tom
    Biology.2021; 10(9): 928.     CrossRef
  • 5,794 View
  • 186 Download
  • 22 Web of Science
  • 20 Crossref
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