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"Joon Young Jang"

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"Joon Young Jang"

Original Articles
Effects of Chin-Down Maneuver on Pharyngeal Pressure Generation According to Dysphagia and Viscosity
Sun Myoung Lee, Ban Hyung Lee, Jung Woo Kim, Joon Young Jang, Eun Gyeong Jang, Ju Seok Ryu
Ann Rehabil Med 2020;44(6):493-501.   Published online December 31, 2020
DOI: https://doi.org/10.5535/arm.20016
Objective
To demonstrate the effects of chin-down maneuver on swallowing by using high-resolution manometry (HRM).
Methods
HRM data of 20 healthy subjects and 64 dysphagic patients were analyzed. Participants swallowed 5 mL of thin and honey-like liquids in neutral and chin-down positions. HRM was used to evaluate maximal velopharyngeal pressure/area, maximal tongue base pressure/area, maximal pharyngeal constrictor pressure, pre-/post-swallow upper esophageal sphincter (UES) peak pressure, minimal UES pressure, UES activity time, and nadir duration.
Results
Compared to the neutral position, the chin-down maneuver significantly increased tongue base pressure in both normal and dysphagic groups as well as for both honey-like and thin viscosities, although the honey-like liquid did not reach statistical significance in the dysphagic group. Regarding pharyngeal constrictors and pre-swallow peak UES pressure, the healthy group showed a significant decrease in thin liquid swallowing and decreasing tendency in honeylike liquid swallowing. UES nadir duration was significantly decreased for honey-like liquid swallowing in the dysphagic group and for both thin and honey-like liquids in the healthy group. UES nadir duration of honey-like and thin flow swallowing in the dysphagia group was 0.26 seconds after the chin-down maneuver, which was severely limited.
Conclusion
This study showed a different kinetic effect of the chin-down maneuver between the healthy and dysphagic groups, as well as between thin and honey-like viscosities. The chin-down maneuver increased tongue base pressure and decreased UES nadir duration, which the latter was severely limited in dysphagic patients. Therefore, appropriate application of the chin-down maneuver in clinical practice is required.

Citations

Citations to this article as recorded by  
  • The effectiveness of chin‐down manoeuvre in patients with dysphagia: A systematic review and meta‐analysis
    Mengchao Li, Shaochun Huang, Yaping Ding, Xianwen Li, Yan Cui, Shen Chen
    Journal of Oral Rehabilitation.2024; 51(4): 762.     CrossRef
  • Normative High-Resolution Pharyngeal Manometry: Impact of Age, Size of System, and Sex on Primary Metrics and Pressure Stability
    Corinne A. Jones, Jilliane F. Lagus, Suzan M. Abdelhalim, Caroline M. Osborn, Sophia M. Colevas, Timothy M. McCulloch
    Dysphagia.2024; 39(4): 648.     CrossRef
  • Physiology and Execution of Swallowing Maneuvers in 3D Videos: Integrating the Technology into Patient Care
    Marina Gatti, Chao Lung Wen, Renata Lígia Vieira Guedes, Giédre Berretin-Felix
    Dysphagia.2024;[Epub]     CrossRef
  • Short-term cortical activation changes associated with postural compensation in swallowing
    Kelsey L. Murray, Seng Mun Wong, Erin Kamarunas
    Experimental Brain Research.2024; 242(11): 2623.     CrossRef
  • Correlation Between Articulatory Diadochokinetic Parameters and Dysphagia Parameters in Subacute Stroke Patients
    Back Min Oh, Hyun Seok, Sang-Hyun Kim, Seung Yeol Lee, Su Jung Park, Beom Jin Kim, Hyun Jung Kim
    Annals of Rehabilitation Medicine.2023; 47(3): 192.     CrossRef
  • A Comparative Assessment of the Diagnosis of Swallowing Impairment and Gastroesophageal Reflux in Canines and Humans
    Tarini V. Ullal, Stanley L. Marks, Peter C. Belafsky, Jeffrey L. Conklin, John E. Pandolfino
    Frontiers in Veterinary Science.2022;[Epub]     CrossRef
  • Recent Kinetic and Kinematic Findings of Swallowing Maneuvers and Posture Techniques
    Yoko Inamoto
    The Japanese Journal of Rehabilitation Medicine.2022; 59(9): 903.     CrossRef
  • The upper esophageal sphincter in the high-resolution manometry era
    Pedro Norton, Fernando A. M. Herbella, Francisco Schlottmann, Marco G. Patti
    Langenbeck's Archives of Surgery.2021; 406(8): 2611.     CrossRef
  • 4,986 View
  • 153 Download
  • 7 Web of Science
  • 8 Crossref
Characteristics of Neuropathic Pain in Patients With Spinal Cord Injury
Joon Young Jang, Seung Hoon Lee, MinYoung Kim, Ju Seok Ryu
Ann Rehabil Med 2014;38(3):327-334.   Published online June 26, 2014
DOI: https://doi.org/10.5535/arm.2014.38.3.327
Objective

To characterize neuropathic pain in patients with spinal cord injury (SCI) according to classification used in the study by Baron et al. (Baron classification), a classification of neuropathic pain based on the mechanism. To also compare the patterns of neuropathic pain in SCI patients with those in patients with other etiologies and to determine the differences in patterns of neuropathic pain between the etiologies.

Methods

This was a descriptive cross-sectional study. We used the Baron classification to investigate the characteristics of neuropathic pain in SCI. Sixty-one SCI patients with neuropathic pain (The Leeds assessment of neuropathic symptoms and signs score ≥12) were enrolled in this study between November 2012 and August 2013, after excluding patients <20 of age, patients with visual analog scale (VAS) score <3, pregnant patients, and patients with systemic disease or pain other than neuropathic pain.

Results

The most common pain characteristic was pricking pain followed by electrical pain and numbness. The mean VAS score of at-level neuropathic pain was 7.51 and that of below-level neuropathic pain was 6.83. All of the patients suffered from rest pain, but 18 (54.6%) patients with at-level neuropathic pain and 20 (50.0%) patients with below-level neuropathic pain suffered from evoked pain. There was no significant difference in between at-level and below-level neuropathic pains.

Conclusion

The result was quite different from the characteristics of post-herpetic neuralgia, but it was similar to the characteristics of diabetic neuropathy as shown in the study by Baron et al., which means that sensory nerve deafferentation may be the most common pathophysiologic mechanism of neuropathic pain after SCI. Since in our study, we included short and discrete symptoms and signs based on diverse mechanisms, our results could be helpful for determining further evaluation and treatment.

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
  • The influence of pain on community reintegration after spinal cord injury
    Valerie Henderson, Mokgadi Kholofelo Mashola
    Pain Practice.2025;[Epub]     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
  • Gut Microbiota Modulation and Its Implications on Neuropathic Pain: A Comprehensive Literature Review
    Alberto Corriero, Mariateresa Giglio, Francesco Inchingolo, Antonio Moschetta, Giustino Varrassi, Filomena Puntillo
    Pain and Therapy.2024; 13(1): 33.     CrossRef
  • The occurrence of neuropathic pain following surgery of brainstem cavernous malformations
    Annika Herten, Dino Saban, Alejandro N. Santos, Bixia Chen, Marvin Darkwah Oppong, Laurèl Rauschenbach, Ramazan Jabbarli, Karsten Wrede, Ulrike Bingel, Daniel Müller, Dagny Holle‐Lee, Börge Schmidt, Yan Li, Ulrich Sure, Philipp Dammann
    European Journal of Neurology.2022; 29(3): 865.     CrossRef
  • Synthesis and Evaluation of Novel α-Aminoamides Containing Benzoheterocyclic Moiety for the Treatment of Pain
    Kun Tong, Ruotian Zhang, Fengzhi Ren, Tao Zhang, Junlin He, Jingchao Cheng, Zixing Yu, Fengxia Ren, Yatong Zhang, Weiguo Shi
    Molecules.2021; 26(6): 1716.     CrossRef
  • Novel insights into stroke pain beliefs and perceptions
    Brendon S. Haslam, David S. Butler, Leeanne M. Carey
    Topics in Stroke Rehabilitation.2020; 27(5): 344.     CrossRef
  • Regional Hyperexcitability and Chronic Neuropathic Pain Following Spinal Cord Injury
    Jonghoon Kang, Steve S. Cho, Hee Young Kim, Bong Hyo Lee, Hee Jung Cho, Young S. Gwak
    Cellular and Molecular Neurobiology.2020; 40(6): 861.     CrossRef
  • An unusual presentation of neuropathic pain following cervical spinal cord injury: a case report
    Min Cheol Chang, Mathieu Boudier-Revéret, Yoo Jin Choo, Ming-Yen Hsiao
    BMC Neurology.2020;[Epub]     CrossRef
  • Poly(Lactic-Co-Glycolic Acid) Nanomaterial-Based Treatment Options for Pain Management: A Review
    Thuỳ Linh Phạm, Dong Woon Kim
    Nanomedicine.2020; 15(19): 1897.     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
    Annals of Rehabilitation Medicine.2020; 44(6): 438.     CrossRef
  • TRPA1 polymorphisms in chronic and complete spinal cord injury patients with neuropathic pain: a pilot study
    Sonia Vidal Rodriguez, Inmaculada Castillo Aguilar, Luis Cuesta Villa, Francisco Serrano Saenz de Tejada
    Spinal Cord Series and Cases.2017;[Epub]     CrossRef
  • NT-3 attenuates the growth of human neuron cells through the ERK pathway
    Ruifeng Li, Yimin Wu, Dianming Jiang
    Cytotechnology.2016; 68(4): 659.     CrossRef
  • Characteristics of neuropathic pain and its relationship with quality of life in 72 patients with spinal cord injury
    N Nagoshi, S Kaneko, K Fujiyoshi, M Takemitsu, M Yagi, S Iizuka, A Miyake, A Hasegawa, M Machida, T Konomi, M Machida, T Asazuma, M Nakamura
    Spinal Cord.2016; 54(9): 656.     CrossRef
  • Environmental control of microRNAs in the nervous system: Implications in plasticity and behavior
    Juan F. Codocedo, Nibaldo C. Inestrosa
    Neuroscience & Biobehavioral Reviews.2016; 60: 121.     CrossRef
  • Pain assessment according to the International Spinal Cord Injury Pain classification in patients with spinal cord injury referred to a multidisciplinary pain center
    S Mahnig, G Landmann, L Stockinger, E Opsommer
    Spinal Cord.2016; 54(10): 809.     CrossRef
  • 5,726 View
  • 44 Download
  • 16 Web of Science
  • 16 Crossref
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