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"Jee Hyun Hwang"

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"Jee Hyun Hwang"

Original Articles
Usefulness of 18F-Fluorodeoxyglucose Positron Emission Tomography/Computed Tomography in Management of Cervical Dystonia
Han Byul Lee, Young-Sil An, Hyun Young Lee, Jee Hyun Hwang, Hyun Jung Lee, Kil Yong Jeong, Jong Woo Kim, Shin-Young Yim
Ann Rehabil Med 2012;36(6):745-755.   Published online December 28, 2012
DOI: https://doi.org/10.5535/arm.2012.36.6.745
Objective

To evaluate the usefulness of 18F-fluorodeoxyglucose positron emission tomography/computed tomography (18F-FDG PET/CT) in the management of cervical dystonia (CD) with botulinum toxin type A (BoNT-A) injection.

Method

Thirty two subjects with CD were included. A BoNT-A injection was provided either by clinically targeting method (group 1) or by 18F-FDG PET/CT-assisted, clinically targeting method (group 2). In group 2, selection of target muscles and dosage of BoNT-A were determined according to the increased 18F-FDG uptake, in addition to physical examination and functional anatomy. The outcomes of BoNT-A injection was compared between the two groups, in terms of the number of subjects who had reinjection before and after 6 months, the number of reinjections, the interval of reinjections, the duration to the minimal Toronto Western Spasmodic Torticollis Rating Scale (TWSTRS), the number of adverse events, the reduction rate of TWSTRS at 1-3 months and 3-6 months after injection, and the probability of reinjection-free living.

Results

The number of subjects who had reinjection within 6 months was significantly lower in group 2 than in group 1 (10 in group 1 vs. 3 in group 2). The reduction rate of TWSTRS after 3-6 months (37.8±15.7% of group 1 vs. 63.3±28.0% of group 2) and the probability of reinjection-free living were significantly higher in group 2 than in group 1.

Conclusion

These findings suggest that 18F-FDG PET/CT study could be useful in management of CD in terms of the identification of dystonic muscles if there is an increase in the 18F-FDG uptake in the cervical muscle of the images.

Citations

Citations to this article as recorded by  
  • Muscle Function, Muscle Disease, and Positron Emission Tomography-Computed Tomography: A Narrative Review
    Shinji Yamamoto, Yukinori Okada
    Cureus.2025;[Epub]     CrossRef
  • Myotomy and Selective Peripheral Denervation Based on 18F-FDG PET/CT in Intractable Cervical Dystonia: A Case Report
    Isamu MIURA, Shiro HORISAWA, Takakazu KAWAMATA, Takaomi TAIRA
    NMC Case Report Journal.2023; 10: 99.     CrossRef
  • METHODS OF BRAIN RESEARCH IN THE CERVICAL DYSTONIA
    A. Ragimova, M. Feurra
    Журнал высшей нервной деятельности им. И.П. Павлова.2023; 73(2): 173.     CrossRef
  • Therapeutic Efficacy and Prediction of 18F-FDG PET/CT-Assisted Botulinum Toxin Therapy in Patients With Idiopathic Cervical Dystonia
    Hye Ryeong Kwon, Hyunjong Lee, Duk Hyun Sung, Joon Young Choi
    Clinical Nuclear Medicine.2022; 47(12): e725.     CrossRef
  • Efficacy of single-photon emission computed tomography aided botulinum toxin injection in cervical dystonia: A double-blind, randomized study
    Fei Teng, Issa Malam Djibo, Shuzhen Chen, Junhui Su, Yougui Pan, Xiaolong Zhang, Yifei Xu, Liang Feng, Lizhen Pan, Lingjing Jin
    Parkinsonism & Related Disorders.2021; 91: 77.     CrossRef
  • [99mTc]MIBI SPECT/CT for Identifying Dystonic Muscles in Patients with Primary Cervical Dystonia
    Shuzhen Chen, Malam Djibo Issa, Chenghong Wang, Liang Feng, Fei Teng, Bing Li, Yougui Pan, Xiaolong Zhang, Yifei Xu, Zhuoyu Zhang, Junhui Su, Hongxing Ma, Lingjing Jin
    Molecular Imaging and Biology.2020; 22(4): 1054.     CrossRef
  • The Effect of Computed Tomography–Guided Botulinum Toxin Injection on Cervical Dystonia, Confirmed by a 9-Month Follow-Up Using Positron Emission Tomography/Computed Tomography
    Seung Ah Lee, Ja-Young Choi, Byung-Mo Oh
    American Journal of Physical Medicine & Rehabilitation.2020; 99(1): e7.     CrossRef
  • The efficacy of single-photon emission computed tomography in identifying dystonic muscles in cervical dystonia
    Liang Feng, Zhuoyu Zhang, Issa Malam Djibo, Shuzhen Chen, Bing Li, Yougui Pan, Xiaolong Zhang, Yifei Xu, Junhui Su, Hongxing Ma, Fei Teng, Lingjing Jin
    Nuclear Medicine Communications.2020; 41(7): 651.     CrossRef
  • A methodological approach for botulinum neurotoxin injections to the longus colli muscle in dystonic anterocollis: A case series of 4 patients and a literature review
    Yury Seliverstov, Sergey Arestov, Sergey Klyushnikov, Yuliya Shpilyukova, Sergey Illarioshkin
    Journal of Clinical Neuroscience.2020; 80: 188.     CrossRef
  • Collum-caput (COL-CAP) concept for conceptual anterocollis, anterocaput, and forward sagittal shift
    Josef Finsterer, Concha Maeztu, Gonzalo J. Revuelta, Gerhard Reichel, Daniel Truong
    Journal of the Neurological Sciences.2015; 355(1-2): 37.     CrossRef
  • An 18F-FDG PET study of cervical muscle in parkinsonian anterocollis
    Gonzalo J. Revuelta, Jaime Montilla, Michael Benatar, Alan Freeman, Thomas Wichmann, Hyder A. Jinnah, Mahlon R. DeLong, Stewart A. Factor
    Journal of the Neurological Sciences.2014; 340(1-2): 174.     CrossRef
  • Threshold of Clinical Severity of Cervical Dystonia for Positive18F-FDG PET/CT
    Hyun Jung Lee, Young-Sil An, Young-Whan Ahn, Shin-Young Yim
    Annals of Rehabilitation Medicine.2013; 37(6): 777.     CrossRef
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  • 12 Crossref
Magnetic Resonance Imaging as a Determinant for Surgical Release of Congenital Muscular Torticollis: Correlation with the Histopathologic Findings
Jee Hyun Hwang, Han Byul Lee, Jang-Hee Kim, Myong Chul Park, Kyu-Sung Kwack, Jae Deok Han, Shin-Young Yim
Ann Rehabil Med 2012;36(3):320-327.   Published online June 30, 2012
DOI: https://doi.org/10.5535/arm.2012.36.3.320
Objective

(1) To present the magnetic resonance imaging (MRI) findings of congenital muscular torticollis (CMT) of subjects who underwent surgical release and subjects who showed a good prognosis with stretching exercises and (2) to correlate the MRI findings with the histopathologic findings of CMT for subjects who underwent surgical release in order to examine the hypothesis that the MRI findings of CMT can be used as a determinant to perform surgical release of CMT.

Method

The neck MRI findings of 33 subjects who underwent surgical release for CMT were compared with those of 18 subjects who were successfully managed only with conservative management. The MRI findings were correlated with the histopathologic sections of the CMT mass.

Results

All 33 subjects (100%) who underwent surgical release showed one or more low signal intensities within the involved sternocleidomastoid muscle (SCM) on the T1- and T2-weighted images of neck MRI. The eighteen non-surgical candidates showed only enlargement of the SCM without low signal intensity within the SCM. The histopathologic findings showed interstitial fibrosis and/or the presence of aberrant tendon-like excessive dense connective tissue that was either well-arranged or disorganized.

Conclusion

The histopathologic findings and MRI findings showed good correlation in terms of the amount of fibrosis and aberrant dense connective tissue within the SCM. If multiple or large low signal intensities within the SCM are noted, we think that surgical release should be considered.

Citations

Citations to this article as recorded by  
  • Congenital Muscular Torticollis: A current Concept Review
    Pratik Pradhan, Dogerno J Norceide, Matthew Connolly, Tasha Garayo, Martin J Herman
    SurgiColl.2025;[Epub]     CrossRef
  • Novel method of quantitative assessment and stair-step surgical correction of a patient with congenital muscular torticollis
    Rahul Varman, Ziyang Li, Joshua Demke
    Otolaryngology Case Reports.2022; 22: 100393.     CrossRef
  • When Botulinum Toxin Injections Do Not Help Torticollis
    Muhammad Yousaf, Talita D'Aguiar Rosa, Victoria N. Holiday, Peter Hedera
    Neurology.2022; 98(20): 849.     CrossRef
  • Technique d’étirement musculaire dans les torticolis myogéniques du nourrisson : revue de littérature et applications pratiques
    Pascal Pommerol, Clément Jeandel, Guillaume Captier
    Kinésithérapie, la Revue.2021; 21(229): 3.     CrossRef
  • The effectiveness of stretching for infants with congenital muscular torticollis
    Bradley Poole, Swati Kale
    Physical Therapy Reviews.2019; 24(1-2): 2.     CrossRef
  • Ipsilateral Hypertrophy of the Mastoid Process in Surgical Cases of Congenital Muscular Torticollis
    Hyun Gi Kim, Shin-Young Yim
    The Cleft Palate Craniofacial Journal.2019; 56(10): 1295.     CrossRef
  • Craniovertebral Junction Abnormalities in Surgical Patients With Congenital Muscular Torticollis
    Ah-Reum Ahn, Ueon Woo Rah, Ji-Eun Woo, Sunghoon Park, Sanghyun Kim, Shin-Young Yim
    Journal of Craniofacial Surgery.2018; 29(3): e327.     CrossRef
  • Botulinum toxin type A relieves sternocleidomastoid muscle fibrosis in congenital muscular torticollis
    Banghong Jiang, Wenxuan Zu, Jing Xu, Zhuyou Xiong, Yichao Zhang, Song Gao, Shuxing Ge, Li Zhang
    International Journal of Biological Macromolecules.2018; 112: 1014.     CrossRef
  • Rare Concurrence of Congenital Muscular Torticollis and a Malignant Tumor in the Same Sternocleidomastoid Muscle
    Yul-Hyun Park, Chul-Ho Kim, Jang-Hee Kim, Jun-Eun Park, Shin-Young Yim
    Annals of Rehabilitation Medicine.2018; 42(1): 189.     CrossRef
  • Shear wave sonoelastography in infants with congenital muscular torticollis
    Gi Young Park, Dong Rak Kwon, Dae Gil Kwon
    Medicine.2018; 97(6): e9818.     CrossRef
  • Effectiveness of Surgical Release in Patients With Neglected Congenital Muscular Torticollis According to Age at the Time of Surgery
    Kyung-Jay Min, Ah-Reum Ahn, Eun-Ji Park, Shin-Young Yim
    Annals of Rehabilitation Medicine.2016; 40(1): 34.     CrossRef
  • Craniofacial Asymmetry in Adults With Neglected Congenital Muscular Torticollis
    Kil-Yong Jeong, Kyung-Jay Min, Jieun Woo, Shin-Young Yim
    Annals of Rehabilitation Medicine.2015; 39(3): 440.     CrossRef
  • Effectiveness of Surgical Treatment for Neglected Congenital Muscular Torticollis
    Hyun Jung Kim, Hyeong Sik Ahn, Shin-Young Yim
    Plastic and Reconstructive Surgery.2015; 136(1): 67e.     CrossRef
  • Quantitative Analysis of Magnetic Resonance Imaging of the Neck and Its Usefulness in Management of Congenital Muscular Torticollis
    Jong Woo Kim, Seung Hyun Kim, Shin-Young Yim
    Annals of Rehabilitation Medicine.2015; 39(2): 294.     CrossRef
  • Malformaciones de la cintura escapular en niños y adolescentes
    V. Seivert, P. Journeau, G. Pomares, L. Mainard-Simard
    EMC - Aparato Locomotor.2014; 47(1): 1.     CrossRef
  • Congenital Muscular Torticollis Concurrent With Sagittal Synostosis: A Case Report
    Seung-Hyun Kim, Ah-Reum Ahn, Shin-Young Yim
    Annals of Rehabilitation Medicine.2014; 38(5): 712.     CrossRef
  • 7,163 View
  • 50 Download
  • 16 Crossref
Comparison of Clinical Severity of Congenital Muscular Torticollis Based on the Method of Child Birth
Seung Jae Lee, Jae Deok Han, Han Byul Lee, Jee Hyun Hwang, Se Yon Kim, Myong Chul Park, Shin-Young Yim
Ann Rehabil Med 2011;35(5):641-647.   Published online October 31, 2011
DOI: https://doi.org/10.5535/arm.2011.35.5.641
Objective

To compare the clinical severity of congenital muscular torticollis (CMT) based on the method of child birth.

Method

Children diagnosed with CMT and who were < 6-years-of-age at the time of their first visit at the Center for Torticollis, Ajou Medical Center, were included in this study. The medical records were retrospectively reviewed with reference to the method of child birth and the clinical severity of CMT. The clinical severity of CMT was determined either by whether stretching exercises were needed for the children <6-month-of-age or whether surgical release was required for the children ≥6-months-of-age at the time of the first visit.

Results

One hundred seventy eight subjects with CMT were enrolled. There was no significant difference in the rate of surgical release according to the method of child birth. For 132 patients <6-month-of-age there was also no significant difference in the rate of stretching exercises.

Conclusion

There was no significant difference in the clinical severity of CMT based on the method of child birth. This finding suggests that prenatal factors alone could be a cause of CMT and that the clinical severity of CMT in children delivered by Cesarean section is not different when compared with the severity of CMT in children born through vaginal delivery.

Citations

Citations to this article as recorded by  
  • In situ structural-functional synchronous dissection of dynamic neuromuscular system via an integrated multimodal wearable patch
    Hang Zhao, Weicen Chen, Yuanheng Li, Hailiang Wang, Hanfei Li, Tengfei Li, Fei Han, Jing Sun, Laixin Huang, Xinhao Peng, Jianzhong Chen, Yihang Yang, Xin Qiu, Yan Liu, Huan Yu, Wen Hou, Qingsong Li, Guibing Fu, Chao You, Xijian Liu, Fei Li, Xiangxin Li, G
    Science Advances.2025;[Epub]     CrossRef
  • Bilateral congenital muscular torticollis in infants, report of two cases
    Anna Öhman
    F1000Research.2025; 13: 211.     CrossRef
  • Bilateral congenital muscular torticollis in infants, report of two cases
    Anna Öhman
    F1000Research.2024; 13: 211.     CrossRef
  • Bilateral congenital muscular torticollis in infants, report of two cases
    Anna Öhman
    F1000Research.2024; 13: 211.     CrossRef
  • PERFIL CLÍNICO DE BEBÊS COM TORCICOLO MUSCULAR CONGÊNITO EM UMA CLÍNICA DE FISIOTERAPIA EM SANTARÉM - PARÁ
    Richelma de Fátima de Miranda Barbosa, Larissa de Moura Barbosa, Lucas Gabriel de Araújo Marcião, Maria Rita Fernandes Duarte, Carolline da Silva Lopes, Tássia Larissa Imbiriba Viana
    Revista Contemporânea.2024; 4(11): e6665.     CrossRef
  • The tilts, twists, and turns of torticollis
    Preston W. Gross, Danielle E. Chipman, Shevaun M. Doyle
    Current Opinion in Pediatrics.2023; 35(1): 118.     CrossRef
  • Using Flexible and Stretchable Surface Electromyography Electrode Array to Evaluate Congenital Muscular Torticollis in Children
    Yuanheng Li, Jing Sun, Xin Qiu, Qingsong Li, Wei Wang, Shanshan Zhu, Jingjing Wei, Dianpeng Qi, Shixiong Chen, Shengping Tang, Zhu Xiong, Zhiyuan Liu, Guanglin Li
    IEEE Transactions on Neural Systems and Rehabilitation Engineering.2023; 31: 2477.     CrossRef
  • Neurodevelopmental outcomes and comorbidities of children with congenital muscular torticollis: evaluation using the National Health Screening Program for Infants and Children database
    Og Hyang Kim, Seung Won Lee, Eun Kyo Ha, Ju Hee Kim, Yun Hye Jo, Seongyeong Rhie, Man Yong Han, Kyu Young Chae
    Clinical and Experimental Pediatrics.2022; 65(6): 312.     CrossRef
  • Incidence of Congenital Muscular Torticollis in Babies from Southern Portugal: Types, Age of Diagnosis and Risk Factors
    Beatriz Minghelli, Noémia Guerreiro Duarte Vitorino
    International Journal of Environmental Research and Public Health.2022; 19(15): 9133.     CrossRef
  • Factors influencing and long-term effects of manual myotomy phenomenon during physiotherapy for congenital muscular torticollis
    Zhenhui Zhao, Hansheng Deng, Xin Qiu, Gen Tang, Huijia Zheng, Fang Yang, Futang Gao, Zhengyu Wu, Yuanheng Li, Shuaidan Zeng, Jiaxin Zhao, Yiyuan Sun, Ziheng Zhou, Yu Tang, Zhiwen Cui, Weiqing Li, Xiaodi Chen, Ting Cai, Xian Liu, Shicheng Li, Qisong Yang,
    BMC Musculoskeletal Disorders.2022;[Epub]     CrossRef
  • Fibromatosis colli leading to positional plagiocephaly with gross anatomical and sonographic correlation
    Lee K Rousslang, Elizabeth A Rooks, Adam C Smith, Jonathan R Wood
    BMJ Case Reports.2021; 14(1): e239236.     CrossRef
  • Randomized controlled study of the effectiveness of osteopathic manipulative correction for muscular torticollis due to birth injury
    Yu. O. Novikov, D. E. Mokhov, J.-P. Amigues, G. M. Musina, A. R. Shaiakhmetov
    Russian Osteopathic Journal.2019; (1-2): 6.     CrossRef
  • Body Weight at Birth: The Only Risk Factor Associated with Contralateral Clavicular Fracture in Patients with Congenital Muscular Torticollis
    Zeeihn Lee, Joo Young Cho, Byung Joo Lee, Jong Min Kim, Donghwi Park
    Scientific Reports.2019;[Epub]     CrossRef
  • Changes in Muscle Stiffness in Infants with Congenital Muscular Torticollis
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    Diagnostics.2019; 9(4): 158.     CrossRef
  • Congenital muscular torticollis - a proposal for treatment and physiotherapy
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    Rehabilitacja Medyczna.2019; 23(3): 21.     CrossRef
  • Ultrasound criteria for biomechanical component of local and regional level somatic dysfunction in case of myogenic torticollis
    Yu. O. Novikov, D. E. Mokhov, A. R. Shaiakhmetov, I. E. Salakhov, A. A. Kinzersky, S. A. Kinzersky
    Russian Osteopathic Journal.2019; (3-4): 6.     CrossRef
  • Congenital Muscular Torticollis: Bridging the Gap Between Research and Clinical Practice
    Barbara Sargent, Sandra L. Kaplan, Colleen Coulter, Cynthia Baker
    Pediatrics.2019;[Epub]     CrossRef
  • Contralateral Involvement of Congenital Muscular Torticollis and Clavicular Fracture
    Shin-Young Yim, Kihong Chang, Ah-Reum Ahn, Eun Ji Park, Jongwoo Kim
    American Journal of Physical Medicine & Rehabilitation.2018; 97(5): 375.     CrossRef
  • Do obstetric risk factors truly influence the etiopathogenesis of congenital muscular torticollis?
    N. Hardgrib, O. Rahbek, B. Møller-Madsen, R. D. Maimburg
    Journal of Orthopaedics and Traumatology.2017; 18(4): 359.     CrossRef
  • Effectiveness of Surgical Release in Patients With Neglected Congenital Muscular Torticollis According to Age at the Time of Surgery
    Kyung-Jay Min, Ah-Reum Ahn, Eun-Ji Park, Shin-Young Yim
    Annals of Rehabilitation Medicine.2016; 40(1): 34.     CrossRef
  • Factors That Affect the Rehabilitation Duration in Patients With Congenital Muscular Torticollis
    Ah Young Jung, Eun Young Kang, Sung Hoon Lee, Doo Hyeon Nam, Ji Hwan Cheon, Hyo Jung Kim
    Annals of Rehabilitation Medicine.2015; 39(1): 18.     CrossRef
  • Caso clínico: tortícolis muscular congénita secundaria a parálisis del iv par craneal unilateral
    M. Ramírez-Ortega, M. Echevarría-Ulloa, D. Sanz-Heras, M.O. Arroyo-Riaño, D. Ruiz-Molina
    Rehabilitación.2015; 49(4): 260.     CrossRef
  • Quantitative Analysis of Magnetic Resonance Imaging of the Neck and Its Usefulness in Management of Congenital Muscular Torticollis
    Jong Woo Kim, Seung Hyun Kim, Shin-Young Yim
    Annals of Rehabilitation Medicine.2015; 39(2): 294.     CrossRef
  • Breastfeeding Infants with Congenital Torticollis
    Catherine Watson Genna
    Journal of Human Lactation.2015; 31(2): 216.     CrossRef
  • Anterocollis and anterocaput
    Josef Finsterer, Gonzalo J. Revuelta
    Clinical Neurology and Neurosurgery.2014; 127: 44.     CrossRef
  • Is Craniofacial Asymmetry Progressive in Untreated Congenital Muscular Torticollis?
    Seung Jo Seo, Shin-Young Yim, Il Jae Lee, Dae Hee Han, Chee Sun Kim, Hyoseob Lim, Myong Chul Park
    Plastic and Reconstructive Surgery.2013; 132(2): 407.     CrossRef
  • 6,892 View
  • 40 Download
  • 26 Crossref
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