|本期目录/Table of Contents|

[1]宋旭光,许华宁,何玉冰,等.基于剪切波超声弹性成像评价正常成人腹横肌杨氏模量值[J].医学研究与战创伤救治(原医学研究生学报),2020,22(5):481-486.[doi:10.3969/j.issn.1672-271X.2020.05.007]
 SONG Xu-guang,XU Hua-ning,HE Yu-bing,et al.Application of shear-wave ultrasound elastography for transversus abdominis in normal adults[J].JOURNAL OF MEDICALRESEARCH —COMBAT TRAUMA CARE,2020,22(5):481-486.[doi:10.3969/j.issn.1672-271X.2020.05.007]
点击复制

基于剪切波超声弹性成像评价正常成人腹横肌杨氏模量值()

《医学研究与战创伤救治》(原医学研究生学报)[ISSN:1672-271X/CN:32-1713/R]

卷:
第22卷
期数:
2020年5期
页码:
481-486
栏目:
临床研究
出版日期:
2020-09-09

文章信息/Info

Title:
Application of shear-wave ultrasound elastography for transversus abdominis in normal adults
作者:
宋旭光许华宁何玉冰徐道明
作者单位:210029南京,南京中医药大学附属医院超声医学科(宋旭光、许华宁、何玉冰、徐道明)
Author(s):
SONG Xu-guang XU Hua-ning HE Yu-bing XU Dao-ming
(Department of Ultrasonic, Affiliated Hospital of Nanjing University of Chinese Medicine,Nanjing 210029,Jiangsu,China)
关键词:
剪切波弹性成像腹横肌杨氏模量厚度
Keywords:
shear-wave ultrasound elastography (SWUE)transversus abdominis (TrA)Young’s modulusthickness
分类号:
R445.1
DOI:
10.3969/j.issn.1672-271X.2020.05.007
文献标志码:
A
摘要:
目的利用剪切波超声弹性成像技术评价正常成人腹横肌杨氏模量值,观察腹横肌收缩功能,为评价非特异性下腰痛患者腹横肌状态提供参照依据。方法选取60例健康受试者,测量腹横肌杨氏模量值和厚度,按静息状态和激活状态,分别记录数据并进行统计学分析,比较腹横肌杨氏模量值测量的可重复性,不同功能状态下杨氏模量值的差异以及不同变量间的相关性。结果腹横肌杨氏模量值测量可信度较好(ICC=0.588~0.789)。不同功能状态下腹横肌杨氏模量值差异有统计学意义(P<0.05)。腹横肌杨氏模量值与厚度之间无相关关系(r=0.075/-0.051,P>0.05)。腹横肌杨氏模量值(静息状态):8.27~9.08 kPa;腹横肌杨氏模量值(激活状态):17.49~19.15 kPa;腹横肌厚度(静息状态):0.29~0.32 cm;腹横肌厚度(激活状态):0.45~0.49 cm。结论剪切波弹性成像技术测量腹横肌硬度可信度较好,不同功能状态下差异明显,可作为腹横肌功能状态评估相对独立的新方法。
Abstract:
ObjectiveTo provide a new method for the functional evaluation of transverse abdominis and a reference in patients with non-specific low back pain, Young’s moduls of transverse abdominis was measured by shear-wave ultrasound elastography in normal adults.MethodsSixty healthy subjects were enrolled to measure Young’s modulus and thickness of transversus abdominis. To study the repeatability among operators, the difference of Young’s modulus in different functional states and the correlation between variables, the data were recorded and statistically analyzed according to the resting state and contracted state.ResultsYoung’s modulus of transverse abdominis between operators had good reliability (ICC=0.588-0.789). Young’s modulus of transverse abdominis was significantly different in different functional states (P<0.05). There was no correlation between Young’s modulus and thickness of transverse abdominis (r=0.075/-0.051,P>0.05).Young’s modulus of transverse abdominal muscle (resting state): 8.27-9.08 kPa; transverse abdominal muscle (contracted state): 17.49-19.15 kPa; thickness of transverse abdominis (resting state): 0.29-0.32 cm; thickness of transverse abdominis (contracted state): 0.45-0.49 cm.ConclusionShear-wave ultrasound elastography has good reliability in measuring the stiffness of transverse abdominis. The difference of Young’s modulus is obvious in different functional states. It provides a relatively independent new method for evaluating the functional states of transverse abdominis.

参考文献/References:

[1]张洲,何树堂,谭茗丹,等.实时超声反馈下腹横肌运动控制的研究[J].中国康复医学杂志,2017,32(10):1124-1129.
[2]Koppenhaver SL, Hebert JJ, Fritz JM,et al. Reliability of rehabilitative ultrasound imaging of the transversus abdominis and lumbar multifidus muscles[J]. Arch Phys Med Rehabil,2009, 90(1):87-94.
[3]Gildea JE,Hides JA,Hodges PW.Morphology of the abdominal muscles in ballet dancers with and without low back pain:a magnetic resonance imaging study[J].J Sci Med Sport,2014,17(5):452-456.
[4]Lima PO,Oliveira RR,Moura Filho AG,et al.Concurrent validity of the pressure biofeedback unit and surface electromyography in measuring transversus abdominis muscle activity in patients with chronic nonspecific low back pain[J].Rev Bras Fisioter,2012,16(5):389-395.
[5]Hirayama K, Akagi R, Takahashi H.Reliability of ultrasound elastography for the quantification of transversus abdominis elasticity[J].Acta Radiologica Open,2015,4(9).DOI:10.1177/2058460115603420
[6]Landis JR, Koch GG. The measurement of observer agreement for categorical data[J]. Biometrics, 1997,33:159-174.
[7]Gomes-Neto M,Lopes JM, Conceio CS,et al.Stabilization exercise compared to general exercises or manual therapy for the management of low back pain:A systematic review and meta-analysis[J].Phys Ther Sport,2017,23:136-142.
[8]周晓辉, 贾伟, 邱永斌,等. 早期核心肌群训练对脑卒中患者躯干控制能力的影响[J]. 东南国防医药, 2015, 17(3):269-271.
[9]Lükens J, Bostrm KJ, Puta C,et al.Using ultrasound to assess the thickness of the transversus abdominis in a sling exercise[J].BMC Musculoskelet Disord,2015,16:203.
[10]Teyhen DS,Rieger JL,Westrick RB,et al.Changes in deep abdominal muscle thickness during common trunk-strengthening exercises using ultrasound imaging[J].J Orthop Sports Phys Ther,2008,38(10):596-605.
[11]MacDonald D, Wan A, McPhee M,et al.Reliability of abdominal muscle stiffness measured using elastography during trunk rehabilitation ecercises[J].Ultrasound Med Biol,2016,42(4):1018-1025.
[12]Tavare AN, Alfuraih AM, Hensor EMA,et al.Shear-Wave Elastography of Benign versus Malignant Musculoskeletal Soft-Tissue Masses:Comparison with Conventional US and MRI[J].Radiology,2019,290(2):410-417.
[13]Nordez A,Hug F.Muscle shear elastic modulus measured using super-sonic shear imaging is highly related to muscle activity level[J].Physiol,2010,108(5):1389-1394.
[14]温朝阳,范春芝,袭九春,等.实时定量超声弹性成像技术检测肱二头肌松弛和紧张状态下弹性模量值差异[J].中华医学超声杂志(电子版),2011,8(1):61-63.
[15]文晶,王月香,罗渝昆,等.剪切波超声弹性成像定量评估腓肠肌和比目鱼肌硬度的初步研究[J].中国医学影像学杂志,2017,25(7):536-540,542.
[16]Miyamoto N,Hirata K,Kanehisa H,et al.Validity of measurement of shear modulus by ultrasound shear wave elastography in human pennate muscle[J].PLoS One,2015,10(4):e0124311. DOI: 10.1371/journal.pone.0124311.
[17]Rosskopf AB, Ehrmann C, Buck FM, et al. Quantitative Shear-Wave US Elastography of the Supraspinatus Muscle: Reliability of the Method and Relation to Tendon Integrity and Muscle Quality[J]. Radiology, 2016, 278(2):465-474.
[18]王艳春,肖沪生,徐芳,等.实时剪切波弹性成像在骨骼肌系统中的应用[J].中国医学影像学杂志,2016,24(3):238-240.
[19]Moreau B,Vergari C,Gad H,et al.Non-invasive assessment of human multifidus muscle stiffness using ultrasound shear wave elastrography:A feasibility study[J].Proc Inst Mech Eng H,2016,230(8):809-814.
[20]Chino K,Kawakami Y,Takahashi H.Tissue elasticity of in vivo skeletal muscles measured in the transverse and longitudinal planes using shear wave elastography[J].Clin Physiol Funct Imaging,2017,37(4):394-399.
[21]Xu DM, Xu H, Liu J,et al.Effect of Thunder-Fire Moxibustion on Pain,Quality of Life,and Tension of Multifidus in Patients with Primary Osteoporosis:A Randomized Contralled Trial[J].Med Sci Monit,2018,24:2937-2945.
[22]Abuin-Porras V,Maldonado-Tello P,de la Cueva-Reguera M, et al.Comparion of Lateral Abdominal Musculature Activation during Expiration with an Expiratory Flow Control Device Versus the Abdominal Drawing-in Maneuver in Healthy Women:A Cross-Sectional Observational Pilot Study[J].Medicina(Kaunas),2020,56(2):345-350.

相似文献/References:

[1]高慧,许华宁,吴意赟,等.实时剪切波弹性成像定量评估脑卒中后上肢痉挛肌肉硬度的应用价值[J].医学研究与战创伤救治(原医学研究生学报),2020,22(6):592.[doi:10.3969/j.issn.1672-271X.2020.06.008]
 GAO Hui,XU Hua-ning,WU Yi-yun,et al.The study of quantitative evaluation of upper extremity spastic muscle stiffness in post-stroke using shear wave elastography[J].JOURNAL OF MEDICALRESEARCH —COMBAT TRAUMA CARE,2020,22(5):592.[doi:10.3969/j.issn.1672-271X.2020.06.008]
[2]金伟奎,黄艳丽,韩浩,等.超声和剪切波弹性成像对经颈静脉肝内门体静脉分流术后支架功能障碍的价值[J].医学研究与战创伤救治(原医学研究生学报),2021,23(05):466.[doi:10.3969/j.issn.1672-271X.2021.05.004]
 JIN Wei-kui,HUANG Yan-li,HAN Hao,et al.Value of ultrasound and shear wave elastography in stenting dysfunction after transjugular intrahepatic portosystemic shunt[J].JOURNAL OF MEDICALRESEARCH —COMBAT TRAUMA CARE,2021,23(5):466.[doi:10.3969/j.issn.1672-271X.2021.05.004]
[3]傅吉强,吴意赟,徐道明,等.剪切波弹性成像在非特异性下腰痛患者腹横肌功能评价中的应用价值[J].医学研究与战创伤救治(原医学研究生学报),2023,25(1):33.[doi:10.3969/j.issn.1672-271X.2023.01.007]
 FU Jiqiang,WU Yiyun,XU Daoming,et al.The value of shear wave elastography in the evaluation of transversus abdominis muscle function in patients with nonspecific lower back pain[J].JOURNAL OF MEDICALRESEARCH —COMBAT TRAUMA CARE,2023,25(5):33.[doi:10.3969/j.issn.1672-271X.2023.01.007]

备注/Memo

备注/Memo:
-
更新日期/Last Update: 2020-09-09