• KARM
  • Contact us
  • E-Submission
ABOUT
ARTICLE TYPES
BROWSE ARTICLES
AUTHOR INFORMATION

Page Path

3
results for

"Ho Jeong Kim"

Filter

Article category

Keywords

Publication year

Authors

"Ho Jeong Kim"

Original Articles
Risk Factor of Visuospatial Neglect: A Study of Association Between Visuospatial Neglect and Anemia
Ho Jeong Kim, Tae Sik Yoon, Soo Jeong Han
Ann Rehabil Med 2013;37(5):611-618.   Published online October 29, 2013
DOI: https://doi.org/10.5535/arm.2013.37.5.611
Objective

To investigate the correlation between visuospatial neglect and anemia in patients with right cerebral infarction, as well as to identify the risk factor of neglect and furnish preliminary data on rehabilitation management.

Methods

The line bisection test and Albert test were conducted on subjects with right cerebral infarction in order to analyze neglect severity. Multiple linear regression analysis was conducted to investigate correlation between neglect severity and hemoglobin and hematocrit level. Logistic regression analysis was applied to identify the risk factor of neglect.

Results

Visuospatial neglect was observed in 33 subjects out of 124. Hemoglobin and hematocrit were not directly correlated with visuospatial neglect severity, whereas infarct size was directly correlated. Subjects with visuospatial neglect were characterized by a large infarct size, a low score in the Mini-Mental State Examination and long hospital stay.

Conclusion

In this study, visuospatial neglect was found to be uncorrelated with anemia. It implies that emphasis should be placed on the early detection of anemia and neglect in patients with left hemiplegia, the formulation of respective therapeutic plans and improvement of prognosis. The study found that the possibility of a visuospatial neglect occurrence increases with infarct size. In this regard, it is required that visuospatial neglect was detected and treated in the earliest possible stage, notwithstanding the difficulty that lies in the precise measurement of the severity.

  • 3,910 View
  • 34 Download
Clinical Outcomes of Extracorporeal Shock Wave Therapy in Patients With Secondary Lymphedema: A Pilot Study
Hasuk Bae, Ho Jeong Kim
Ann Rehabil Med 2013;37(2):229-234.   Published online April 30, 2013
DOI: https://doi.org/10.5535/arm.2013.37.2.229
Objective

To investigate the clinical effect of extracorporeal shock wave therapy (ESWT) in patients with secondary lymphedema after breast cancer treatment.

Methods

In a prospective clinical trial, ESWT was performed consecutively 4 times over two weeks in 7 patients who were diagnosed with stage 3 secondary lymphedema after breast cancer treatment. Each patient was treated with four sessions of ESWT (0.056-0.068 mJ/mm2, 2,000 impulses). The parameters were the circumference of the arm, thickness of the skin and volume of the arm. We measured these parameters with baseline values before ESWT and repeated the evaluation after each ESWT treatment. Subjective data on skin thickness, edema and sensory impairment were obtained using a visual analogue scale (VAS).

Results

The mean volume of the affected arm after four consecutive ESWT was significantly reduced from 2,332 to 2,144 mL (p<0.05). The circumference and thickness of the skin fold of the affected arm were significantly decreased after the fourth ESWT (p<0.05). The three VAS scores were significantly improved after the fourth ESWT. Almost all patients were satisfied with this treatment and felt softer texture in their affected arm after treatment.

Conclusion

ESWT is an effective modality in the treatment of stage 3 lymphedema after breast cancer treatment. ESWT reduced the circumference and the thickness of arms with lymphedema and satisfied almost all patients with lymphedema. Therefore, this treatment provides clinically favorable outcome to patients with breast cancer-related lymphedema.

Citations

Citations to this article as recorded by  
  • Role of Electro-Therapeutic Modalities in Breast Cancer-Related Lymphedema and Shoulder Dysfunction: A Systematic Review and Meta-Analysis
    Renu Pattanshetty, Asmita Shrestha, Nikita Pawar
    Indian Journal of Palliative Care.2025; 0: 1.     CrossRef
  • Radial shock wave and a tailored exercise program on axillary web syndrome after breast cancer surgery with axillary dissection: a controlled clinical trial
    Hany Mohamed Elgohary, Mohamed Elkholi, Rehan Abdelazi
    Physiotherapy Quarterly.2025; 33(2): 54.     CrossRef
  • Comparative study of Cavitation and Extracorporeal Shock Wave Therapy
    Maria Rafaela Karydi, Vasiliki Kefala, Efstathios Rallis, Foteini Biskanaki
    Review of Clinical Pharmacology and Pharmacokinetics - International Edition.2024; 38(Sup1): 37.     CrossRef
  • Recent Advances in Therapeutic Modalities Against Breast Cancer-Related Lymphedema: Future Epigenetic Landscape
    Kuo Chen, Narasimha M. Beeraka, Xinliang Zhang, Mikhail Y. Sinelnikov, Maria Plotnikova, Cuiping Zhao, Vijaya Basavaraj, Jin Zhang, Pengwei Lu
    Lymphatic Research and Biology.2023; 21(6): 536.     CrossRef
  • Lymphatic Tissue Bioengineering for the Treatment of Postsurgical Lymphedema
    Cynthia J. Sung, Kshitij Gupta, Jin Wang, Alex K. Wong
    Bioengineering.2022; 9(4): 162.     CrossRef
  • Shock wave therapy in oncology: in vitro, in vivo, rehabilitation
    T.I. Grushina, I.I. Orlov
    Voprosy kurortologii, fizioterapii i lechebnoi fizicheskoi kul'tury.2022; 99(3): 58.     CrossRef
  • May-Thurner Syndrome and Lymphedema Reconstruction
    Rohun Gupta, Emily Mathijs, Justin Hart, John Bates, Jeremy Powers, Kongkrit Chaiyasate
    Plastic and Reconstructive Surgery - Global Open.2022; 10(6): e4377.     CrossRef
  • Shock Wave Therapy in Plastic Surgery: A Review of the Current Indications
    Catrin H Wigley, Tim J Janssen, Afshin Mosahebi
    Aesthetic Surgery Journal.2022;[Epub]     CrossRef
  • Long-Term Effects of Extracorporeal Shock Wave Therapy on Breast Cancer-Related Lymphedema
    Jong-Hwa Lee, Sang-Beom Kim, Kyeong-Woo Lee, Won-Wook Ha
    Journal of Clinical Medicine.2022; 11(22): 6747.     CrossRef
  • Pilot study of oncological safety of extracorporeal shock wave therapy for post-mastectomy lymphedema in patients with breast cancer
    T.I. Grushina, I.I. Orlov
    Voprosy kurortologii, fizioterapii i lechebnoi fizicheskoi kul'tury.2022; 99(6): 30.     CrossRef
  • Low-Energy Extracorporeal Shockwave Therapy as a Therapeutic Option for Patients with a Secondary Late-Stage Fibro-Lymphedema After Breast Cancer Therapy: A Pilot Study
    Erika Joos, Ina Vultureanu, Tom Nonneman, Nele Adriaenssens, Moustapha Hamdi, Assaf Zeltzer
    Lymphatic Research and Biology.2021; 19(2): 175.     CrossRef
  • Tissue Engineering Strategies for Cancer-Related Lymphedema
    Malke Asaad, Summer E. Hanson
    Tissue Engineering Part A.2021; 27(7-8): 489.     CrossRef
  • A comparison of the effectiveness of complex decongestive therapy and extracorporeal shock wave therapy in the treatment of lymphedema secondary to breast cancer
    Mehtap Aykac Cebicci, Meltem Dizdar
    Indian Journal of Surgery.2021; 83(3): 749.     CrossRef
  • Biology of Lymphedema
    Bianca Brix, Omar Sery, Alberto Onorato, Christian Ure, Andreas Roessler, Nandu Goswami
    Biology.2021; 10(4): 261.     CrossRef
  • Two methods of extracorporeal shock-wave therapy in a rat model of secondary lymphedema: a pilot study
    Hee Kyung Cho, Woo Jung Sung, Youn Ju Lee, Sang Gyu Kwak, Kang Lip Kim
    Journal of International Medical Research.2021;[Epub]     CrossRef
  • Conservative treatment of lymphedema: the state of the art
    Anke Bergmann, Jaqueline Munaretto Timm Baiocchi, Mauro Figueiredo Carvalho de Andrade
    Jornal Vascular Brasileiro.2021;[Epub]     CrossRef
  • Extracorporeal Shock Wave Therapy Combined with Complex Decongestive Therapy in Patients with Breast Cancer-Related Lymphedema: A Systemic Review and Meta-Analysis
    Yu Lin Tsai, Ting Jie I, Ya Chi Chuang, Yuan Yang Cheng, Yu Chun Lee
    Journal of Clinical Medicine.2021; 10(24): 5970.     CrossRef
  • Interventions for Breast Cancer–Related Lymphedema: Clinical Practice Guideline From the Academy of Oncologic Physical Therapy of APTA
    Claire Davies, Kimberly Levenhagen, Kathryn Ryans, Marisa Perdomo, Laura Gilchrist
    Physical Therapy.2020; 100(7): 1163.     CrossRef
  • Effects of Extracorporeal Shockwave Therapy on Improvements in Lymphedema, Quality of Life, and Fibrous Tissue in Breast Cancer-Related Lymphedema
    Kyeong Woo Lee, Sang Beom Kim, Jong Hwa Lee, Young Sam Kim
    Annals of Rehabilitation Medicine.2020; 44(5): 386.     CrossRef
  • Tackling the diversity of breast cancer related lymphedema: Perspectives on diagnosis, risk assessment, and clinical management
    Anna Michelotti, Marco Invernizzi, Gianluca Lopez, Daniele Lorenzini, Francesco Nesa, Alessandro De Sire, Nicola Fusco
    The Breast.2019; 44: 15.     CrossRef
  • Caffeine phonophoresis versus shock wave therapy for adult women with cellulite: a randomized controlled trial
    Haidy N. Ashem, Amira H. Draz, Amr A. Abdel-Aziem
    Bulletin of Faculty of Physical Therapy.2019; 24(2): 66.     CrossRef
  • Long term effects of manual lymphatic drainage and active exercises on physical morbidities, lymphoscintigraphy parameters and lymphedema formation in patients operated due to breast cancer: A clinical trial
    Mariana Maia Freire de Oliveira, Maria Salete Costa Gurgel, Bárbara Juarez Amorim, Celso Dario Ramos, Sophie Derchain, Natachie Furlan-Santos, César Cabello dos Santos, Luís Otávio Sarian, Jakub Taradaj
    PLOS ONE.2018; 13(1): e0189176.     CrossRef
  • Exposure to radial extracorporeal shock waves modulates viability and gene expression of human skeletal muscle cells: a controlled in vitro study
    Stefan G. Mattyasovszky, Eva K. Langendorf, Ulrike Ritz, Christoph Schmitz, Irene Schmidtmann, Tobias E. Nowak, Daniel Wagner, Alexander Hofmann, Pol M. Rommens, Philipp Drees
    Journal of Orthopaedic Surgery and Research.2018;[Epub]     CrossRef
  • Comparison of Extracorporeal Shock Waves Therapy Versus Intermittent Pneumatic Compression Therapy in Breast Cancer-related Lymphedema
    Nermeen Mohamed Ab, Ahmed Fathy Samh
    International Journal of Cancer Research.2018; 14(2): 77.     CrossRef
  • Lymphedema
    Ayman A. Grada, Tania J. Phillips
    Journal of the American Academy of Dermatology.2017; 77(6): 995.     CrossRef
  • What physiotherapeutic method for the treatment of post-mastectomy lymphedema is the most effective?
    T. I. Grushina
    Voprosy kurortologii, fizioterapii i lechebnoi fizicheskoi kul'tury.2017; 94(4): 59.     CrossRef
  • Hyperthermia and associated changes in membrane fluidity potentiate P2X7 activation to promote tumor cell death
    Paola de Andrade Mello, Shu Bian, Luiz Eduardo Baggio Savio, Haohai Zhang, Jingping Zhang, Wolfgang Junger, Márcia Rosângela Wink, Guido Lenz, Andréia Buffon, Yan Wu, Simon Christopher Robson
    Oncotarget.2017; 8(40): 67254.     CrossRef
  • Extracorporeal Shock Wave Therapy for Breast Cancer–Related Lymphedema: A Pilot Study
    Mehtap Aykac Cebicci, Serap Tomruk Sutbeyaz, Sema Sezgin Goksu, Sehriban Hocaoglu, Arzu Oguz, Ayse Atilabey
    Archives of Physical Medicine and Rehabilitation.2016; 97(9): 1520.     CrossRef
  • Simplifying evidence-based management of breast cancer-related lymphedema
    Jane M. Armer, Joseph L. Feldman, Pamela L. Ostby, Kathryn M. Thrift, Bonnie B. Lasinski, Marcia S. Beck, Julia R. Rodrick, Steve Norton, Yuanlu Sun, Tipparat Udmuangpia, Nathan C. Armer, Bob R. Stewart
    Expert Review of Quality of Life in Cancer Care.2016; 1(5): 389.     CrossRef
  • Fractionated Repetitive Extracorporeal Shock Wave Therapy: A New Standard in Shock Wave Therapy?
    Tobias Kisch, Heiko Sorg, Vinzent Forstmeier, Peter Mailaender, Robert Kraemer
    BioMed Research International.2015; 2015: 1.     CrossRef
  • Breast Cancer-Related Lymphedema: Risk Factors, Prevention, Diagnosis and Treatment
    Jessica L Krok-Schoen, Jill M Oliveri, Michelle L Kurta, Electra D Paskett
    Breast Cancer Management.2015; 4(1): 41.     CrossRef
  • Computed Tomography as an Objective Measurement Tool for Secondary Lymphedema Treated With Extracorporeal Shock Wave Therapy
    So-Yeon Kim, Hasuk Bae, Hye Min Ji
    Annals of Rehabilitation Medicine.2015; 39(3): 488.     CrossRef
  • A comparison of the effectiveness of complex decongestive physiotherapy and stellate ganglion block with triamcinolone administration in breast cancer-related lymphedema patients
    Jeong-Gil Kim, Soon Ook Bae, Kwan Sik Seo
    Supportive Care in Cancer.2015; 23(8): 2305.     CrossRef
  • Extracorporeal shock wave therapy (ESWT) for the treatment of cellulite – A current metaanalysis
    Karsten Knobloch, Robert Kraemer
    International Journal of Surgery.2015; 24: 210.     CrossRef
  • Putting Evidence Into Practice: Cancer-Related Lymphedema
    Mei R. Fu, Jie Deng, Jane M. Armer
    Clinical Journal of Oncology Nursing.2014; 18(s6): 68.     CrossRef
  • Towards an effective management of chronic lymphedema
    Győző Szolnoky, Attila Dobozy, Lajos Kemény
    Clinics in Dermatology.2014; 32(5): 685.     CrossRef
  • Cellulite and Focused Extracorporeal Shockwave Therapy for Non-Invasive Body Contouring: a Randomized Trial
    Karsten Knobloch, Beatrice Joest, Robert Krämer, Peter M. Vogt
    Dermatology and Therapy.2013; 3(2): 143.     CrossRef
  • 7,103 View
  • 163 Download
  • 37 Crossref
Extracorporeal Shock Wave Therapy in Myofascial Pain Syndrome of Upper Trapezius
Hye Min Ji, Ho Jeong Kim, Soo Jeong Han
Ann Rehabil Med 2012;36(5):675-680.   Published online October 31, 2012
DOI: https://doi.org/10.5535/arm.2012.36.5.675
Objective

To evaluate the effect of extracorporeal shock wave therapy (ESWT) in myofascial pain syndrome of upper trapezius with visual analogue scale (VAS) and pressure threshold by digital algometer.

Method

Twenty-two patients diagnosed with myofascial pain syndrome in upper trapezius were selected. They were assigned to treatment and standard care (control) groups balanced by age and sex, with eleven subjects in each group. The treated group had done four sessions of ESWT (0.056 mJ/mm2, 1,000 impulses, semiweekly) while the control group was treated by the same protocol but with different energy levels applied, 0.001 mJ/mm2. The VAS and pressure threshold were measured twice: before and after last therapy. We evaluated VAS of patients and measured the pressure threshold by using algometer.

Results

There were two withdrawals and the remaining 20 patients were three men and 17 women. Age was distributed with 11 patients in their twenties and 9 over 30 years old. There was no significant difference of age, sex, pre-VAS and pre-pressure threshold between 2 groups (p>0.05) found. The VAS significantly decreased from 4.91±1.76 to 2.27±1.27 in the treated group (p<0.01). The control group did not show any significant changes of VAS score. The pressure threshold significantly increased from 40.4±9.94 N to 61.2±12.16 N in the treated group (p<0.05), but there was no significant change in the control group.

Conclusion

ESWT in myofascial pain syndrome of upper trapezius is effective to relieve pain after four times therapies in two weeks. But further study will be required with more patients, a broader age range and more males.

Citations

Citations to this article as recorded by  
  • Myofascial pain syndrome in small animal practice
    M. C. Petty, B. P. Monteiro, S. A. Robertson, A. R. Ajadi, C. Mosley, J. C. Murrell, N. Nadkarni
    Journal of Small Animal Practice.2025; 66(2): 75.     CrossRef
  • Efficacy of trigger point injection for non-malignant persistent musculoskeletal pain: a narrative review
    Alkisti Giannaki, Martina Rekatsina , Mohamed Hassouna, Roman Cregg
    Advancements in Health Research.2025;[Epub]     CrossRef
  • Comparative effectiveness of six biophysical agents on neck pain rehabilitation: a systematic review and network meta-analysis
    Jie Hao, Zhengting He, Biying Huang, Yanfei Li, Andréas Remis, Zixuan Yao, Yaogeng Tang, Yuxiao Sun, Kangchao Wu
    European Spine Journal.2025; 34(6): 2183.     CrossRef
  • The effectiveness of radial shockwave therapy on myofascial pain syndrome: a two-armed, randomized double-blind placebo-controlled trial
    Collins Ogbeivor, Huda AlMubarak, Tola Akomolafe, Hamad Alkahtani, Hussain AlMugizel, Inga Marin, Hala Aldosari, Nouf Aldhwayan, Gamal Mohamed, Khaled Alobthani
    BMC Musculoskeletal Disorders.2025;[Epub]     CrossRef
  • Comparison of extracorporeal shock wave therapy and manual therapy on active trigger points of the sternocleidomastoid muscle in cervicogenic headache: A randomized controlled trial
    Chunfeng Xia, Yanjun Zhao, Lizhen Lin, Yanni Yu, Jialiang Wang, Jiecheng Fan, Xiangzhen Yuan, Shuyun Zhang
    Turkish Journal of Physical Medicine and Rehabilitation.2025; 71(1): 56.     CrossRef
  • Therapeutic effect of focused-extracorporeal shockwave therapy on muscular and adjacent tissue stiffness and pain changes in myofascial pain syndrome: A randomized controlled trial study
    Pijakkana Vasvit, Kultida Klarod, Oranat Sukkho, Sirirat Kiatkulanusorn, Phurichaya Werasirirat, Xue-Qiang Wang, Yong-Hui Zhang, Juntip Namsawang, Pornpimol Muanjai, Nongnuch Luangpon
    Complementary Therapies in Medicine.2025; 92: 103203.     CrossRef
  • Assessment of the Performance of Ultrasonography for Detecting Myofascial Trigger Points
    Han-Yu Chen, Chang-Zern Hong, Yueh-Ling Hsieh
    Sensors.2024; 24(3): 718.     CrossRef
  • Effects of Postural Corrective Exercise Combined with Extracorporeal Shockwave Therapy on Muscle Activity, Neck Function and Pain in Adults with Forward Head Posture
    Soyeon Kim, Jinghyung Choi, Jihye Jung, Seungwon Lee
    Physical Therapy Rehabilitation Science.2024; 13(3): 343.     CrossRef
  • The Effects of Shock Wave Therapy on Spasticity and Walking Ability in People with Stroke: A Comparative Study of Different Application Sites
    Jung-Ho Lee, Eun-Ja Kim
    Brain Sciences.2023; 13(4): 687.     CrossRef
  • Shock waves as treatment of mouse myofascial trigger points
    Pol Monclús, Marc Bosque, Ramón Margalef, M. Teresa Colomina, Francisco J. Valderrama‐Canales, Laia Just, Manel M. Santafé
    Pain Practice.2023; 23(7): 724.     CrossRef
  • Instrumented assisted soft tissue mobilization vs extracorporeal shock wave therapy in treatment of myofascial pain syndrome
    Nourhan Elsayed Shamseldeen, Mohammed Moustafa Aldosouki Hegazy, Nadia Abdalazeem Fayaz, Nesreen Fawzy Mahmoud
    World Journal of Orthopedics.2023; 14(7): 572.     CrossRef
  • Low-Energy Shock Wave Plus Intravesical Instillation of Botulinum Toxin A for Interstitial Cystitis/Bladder Pain Syndrome: Pathophysiology and Preliminary Result of a Novel Minimally Invasive Treatment
    Yuan-Hong Jiang, Jia-Fong Jhang, Yu-Khun Lee, Hann-Chorng Kuo
    Biomedicines.2022; 10(2): 396.     CrossRef
  • Effect of high intensity laser therapy in the treatment of acute atlantoaxial rotatory subluxation: A case report
    Sheng-Hui Tuan, Shu-Fen Sun, Wan-Yun Huang, Guan-Bo Chen, Min-Hui Li, I-Hsiu Liou
    Journal of Back and Musculoskeletal Rehabilitation.2022; 35(5): 963.     CrossRef
  • Effect of Tai Chi Quan on the Pressure Pain Thresholds of Lower Back Muscles in Healthy Women
    Rui Wang, Xiao-Long Chang, Suparata Kiartivich, Xue-Qiang Wang
    Journal of Pain Research.2022; Volume 15: 403.     CrossRef
  • Effects of Repeated Injection of 1% Lidocaine vs. Radial Extracorporeal Shock Wave Therapy for Treating Myofascial Trigger Points: A Randomized Controlled Trial
    Areerat Suputtitada, Carl P. C. Chen, Narin Ngamrungsiri, Christoph Schmitz
    Medicina.2022; 58(4): 479.     CrossRef
  • The Clinical Results of Radial and Focused Extracorporeal Shockwave Therapy on Periscapular Myofascial Pain Syndrome
    Jaeman Lee, Cheungsoo Ha, Tae-Keun Ahn
    Journal of the Korean Orthopaedic Association.2022; 57(2): 122.     CrossRef
  • Molecular Mechanisms Underlying the Pain-Relieving Effects of Extracorporeal Shock Wave Therapy: A Focus on Fascia Nociceptors
    Larisa Ryskalin, Gabriele Morucci, Gianfranco Natale, Paola Soldani, Marco Gesi
    Life.2022; 12(5): 743.     CrossRef
  • Efficacy and Effectiveness of Extracorporeal Shockwave Therapy in Patients with Myofascial Pain or Fibromyalgia: A Scoping Review
    Marco Paoletta, Antimo Moretti, Sara Liguori, Giuseppe Toro, Francesca Gimigliano, Giovanni Iolascon
    Medicina.2022; 58(8): 1014.     CrossRef
  • Current Understanding of the Pathophysiology and Novel Treatments of Interstitial Cystitis/Bladder Pain Syndrome
    Jia-Fong Jhang, Yuan-Hong Jiang, Hann-Chorng Kuo
    Biomedicines.2022; 10(10): 2380.     CrossRef
  • Pressure Pain Threshold of the Upper Trapezius Trigger Point: A Systematic Review with Meta-Analysis of Baseline Values and Their Modification after Physical Therapy
    Tommaso Geri, Alice Botticchio, Giacomo Rossettini, Sanaz Pournajaf, Leonardo Pellicciari, Stefano Di Antonio, Matteo Castaldo
    Journal of Clinical Medicine.2022; 11(23): 7243.     CrossRef
  • Effectiveness of extracorporeal shock wave therapy versus standard care in the treatment of neck and upper back myofascial pain: a single blinded randomised clinical trial
    Mohammad Rahbar, Maryam Samandarian, Yaghoub Salekzamani, Zhila Khamnian, Neda Dolatkhah
    Clinical Rehabilitation.2021; 35(1): 102.     CrossRef
  • Predictive factors of response in radial Extracorporeal Shock-waves Therapy for Myofascial and Articular Pain: A retrospective cohort study
    André Tadeu Sugawara, Moises da Cunha Lima, Cristiane Bitencourt Dias
    Journal of Back and Musculoskeletal Rehabilitation.2021; 34(3): 485.     CrossRef
  • The Effect of Extracorporeal Shock Wave Therapy on Pain Intensity and Neck Disability for Patients With Myofascial Pain Syndrome in the Neck and Shoulder
    Ji Hyun Jun, Geun-Young Park, Choong Sik Chae, Dong-Churl Suh
    American Journal of Physical Medicine & Rehabilitation.2021; 100(2): 120.     CrossRef
  • Effects of Extracorporeal Shock Wave Therapy in Pain Point on Range of Motion, Pain and Mechanical Muscle Properties in Myofascial Pain Syndrome
    Koo-Young Jung, Tae-Lim Yoon, Jun-Hee Lee
    Physical Therapy Korea.2021; 28(1): 53.     CrossRef
  • Usefulness of Extracorporeal Shockwave Therapy on Myofascial Pain Syndrome
    Chang Han Lee, Shi-Uk Lee
    Annals of Rehabilitation Medicine.2021; 45(4): 261.     CrossRef
  • Combined Effects of Extracorporeal Shockwave Therapy and Integrated Neuromuscular Inhibition on Myofascial Trigger Points of Upper Trapezius: A Randomized Controlled Trial
    Dina Al-Amir Mohamed, Ragia Mohamed Kamal, Manal Mohamed Gaber, Yasser M. Aneis
    Annals of Rehabilitation Medicine.2021; 45(4): 284.     CrossRef
  • Interpreting Standardized Mean Difference in Meta-analysis
    Mikhail Saltychev, Merja Eskola
    American Journal of Physical Medicine & Rehabilitation.2021; 100(12): e201.     CrossRef
  • The influence of the number of shock waves and the energy flux density on the Raman spectrum of collagen type I from rat
    J. J. Cárcamo-Vega, M. R. Brañes, A. M. Loske, M. M. Campos-Vallette
    Shock Waves.2020; 30(2): 201.     CrossRef
  • The effect of focused extracorporeal shock wave therapy on myofascial pain syndrome of trapezius
    Jun-Il Yoo, Min-Kyun Oh, Se-Woong Chun, Shi-Uk Lee, Chang Han Lee
    Medicine.2020; 99(7): e19085.     CrossRef
  • Efficacy of Extracorporeal Shockwave Therapy on Pain and Function in Myofascial Pain Syndrome of the Trapezius: A Systematic Review and Meta-Analysis
    Qing Zhang, Chenying Fu, Liyi Huang, Feng Xiong, Lihong Peng, Zejun Liang, Li Chen, Chengqi He, Quan Wei
    Archives of Physical Medicine and Rehabilitation.2020; 101(8): 1437.     CrossRef
  • Pain reduction realized with extracorporeal shock wave therapy for the treatment of symptoms associated with interstitial cystitis/bladder pain syndrome—A prospective, multicenter, randomized, double‐blind, placebo‐controlled study
    Yao‐Chi Chuang, En Meng, Michael Chancellor, Hann‐Chorng Kuo
    Neurourology and Urodynamics.2020; 39(5): 1505.     CrossRef
  • Comparison of efficacy of corticosteroid injection versus extracorporeal shock wave therapy on inferior trigger points in the quadratus lumborum muscle: a randomized clinical trial
    Bina Eftekharsadat, Negar Fasaie, Dina Golalizadeh, Arash Babaei-Ghazani, Fatemeh Jahanjou, Yashar Eslampoor, Neda Dolatkhah
    BMC Musculoskeletal Disorders.2020;[Epub]     CrossRef
  • Efficacy of Extracorporeal Shockwave Therapy on Cervical Myofascial Pain Following Neck Dissection Surgery: A Randomized Controlled Trial
    FatmaAlzahraa Hassan Kamel, Maged Basha, Ashwag Alsharidah, Islam Mohamed Hewidy, Mohamed Ezzat, Nancy Hassan Aboelnour
    Annals of Rehabilitation Medicine.2020; 44(5): 393.     CrossRef
  • Efficacy of Extracorporeal Shock Wave Therapy in Neck and Shoulder Pain Syndrome
    Joon Yub Kim, Jae Yoon Kim, Jong Pil Yoon, Seok Won Chung, Dong-Hyun Kim, Yoo-Sun Won
    The Korean Journal of Sports Medicine.2020; 38(4): 208.     CrossRef
  • Study of the mechanisms of action of the hypoalgesic effect of pressure under shock waves application: A randomised controlled trial
    Alberto García-Muntión, Loris Godefroy, Hugo Robert, Daniel Muñoz-García, César Calvo-Lobo, Ibai López-de-Uralde-Villanueva
    Complementary Therapies in Medicine.2019; 42: 332.     CrossRef
  • The effects of shock wave and dry needling on active trigger points of upper trapezius muscle in patients with non-specific neck pain: A randomized clinical trial
    Javad Manafnezhad, Zahra Salahzadeh, Mehdi Salimi, Fariba Ghaderi, Morteza Ghojazadeh
    Journal of Back and Musculoskeletal Rehabilitation.2019; 32(5): 811.     CrossRef
  • Randomized Trial on Comparison of the Efficacy of Extracorporeal Shock Wave Therapy and Dry Needling in Myofascial Trigger Points
    Shuo Luan, Zhi-min Zhu, Jing-liang Ruan, Cai-na Lin, Song-jian Ke, Wen-jun Xin, Cui-cui Liu, Shao-ling Wu, Chao Ma
    American Journal of Physical Medicine & Rehabilitation.2019; 98(8): 677.     CrossRef
  • Comparison of radial shockwave and dry needling therapies in the treatment of myofascial pain syndrome
    Chomkajee Sukareechai, Somchai Sukareechai
    International Journal of Therapy and Rehabilitation.2019; 26(8): 1.     CrossRef
  • Assessment of the Efficacy of Extracorporeal Shockwave Therapy for Plantar Fasciitis with Magnetic Resonance Imaging Findings
    Mualla Bicer, Elif Hocaoglu, Sema Aksoy, Ercan İnci, İlknur Aktaş
    Journal of the American Podiatric Medical Association.2018; 108(2): 100.     CrossRef
  • Effects of Extracorporeal Shock Wave-Mediated Transdermal Local Anesthetic Drug Delivery on Rat Caudal Nerves
    Jer-Junn Luh, Wan-Ting Huang, Kwan-Hwa Lin, Yi-You Huang, Po-Ling Kuo, Wen-Shiang Chen
    Ultrasound in Medicine & Biology.2018; 44(1): 214.     CrossRef
  • High- versus low-energy extracorporeal shock-wave therapy for myofascial pain syndrome of upper trapezius
    Ki Deok Park, Woo Yong Lee, Min-ho Park, Jae Ki Ahn, Yongbum Park
    Medicine.2018; 97(28): e11432.     CrossRef
  • The Effect of Different Doses of Extracorporeal Shock Waves on Experimental Model Mandibular Distraction
    Cihan Bereket, Nilüfer Çakir-Özkan, Mehmet Emin Önger, Selim Arici
    Journal of Craniofacial Surgery.2018; 29(6): 1666.     CrossRef
  • The role of extracorporeal shock wave therapy in the combined restorative treatment of the patients presenting with myofascial pain syndrome
    E. V. Kostenko, D. S. Zuev, T. N. Zaitseva
    Voprosy kurortologii, fizioterapii i lechebnoi fizicheskoi kul'tury.2018; 95(4): 62.     CrossRef
  • Comparative study of shockwave therapy and low-level laser therapy effects in patients with myofascial pain syndrome of the trapezius
    Márta Király, Tamás Bender, Katalin Hodosi
    Rheumatology International.2018; 38(11): 2045.     CrossRef
  • Effect of gel seat cushion on chronic low back pain in occupational drivers
    Jang Woo Lee, Young-Ho Lim, Yu Hui Won, Dong Hyun Kim
    Medicine.2018; 97(40): e12598.     CrossRef
  • Effect of a Single Administration of Focused Extracorporeal Shock Wave in the Relief of Delayed-Onset Muscle Soreness: Results of a Partially Blinded Randomized Controlled Trial
    Johannes Fleckenstein, Mara Friton, Heiko Himmelreich, Winfried Banzer
    Archives of Physical Medicine and Rehabilitation.2017; 98(5): 923.     CrossRef
  • Extracorporeal Shock Wave Therapy Versus Trigger Point Injection in the Treatment of Myofascial Pain Syndrome in the Quadratus Lumborum
    Jin Oh Hong, Joon Sang Park, Dae Geun Jeon, Wang Hyeon Yoon, Jung Hyun Park
    Annals of Rehabilitation Medicine.2017; 41(4): 582.     CrossRef
  • Is Extracorporeal Shock Wave Therapy Effective in the Treatment of Myofascial Pain Syndrome?
    Jong-Ick Kim, Hyo-Jin Lee, Hyung-Youl Park, Won-Hee Lee, Yang-Soo Kim
    Clinics in Shoulder and Elbow.2016; 19(1): 20.     CrossRef
  • Update on the efficacy of extracorporeal shockwave treatment for myofascial pain syndrome and fibromyalgia
    Silvia Ramon, Markus Gleitz, Leonor Hernandez, Luis David Romero
    International Journal of Surgery.2015; 24: 201.     CrossRef
  • Extracorporeal Shock Wave Therapy for Injection Site Panniculitis in Multiple Sclerosis Patients
    Marco Stieger, Jean-Paul Schmid, Nikhil Yawalkar, Thomas Hunziker
    Dermatology.2015; 230(1): 82.     CrossRef
  • Pressure pain threshold and visual analogue scale changes in the high and low energy extracorporeal shock wave
    You-Jin Yang, Seung-Joon Lee, Matthew Choi
    Physical Therapy Rehabilitation Science.2014; 3(2): 142.     CrossRef
  • 6,288 View
  • 124 Download
  • 51 Crossref
TOP