Volume 12 Issue 4
Jul.  2021
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Tang Junyi, Sui Mingxing, Xi Jiaying, et al. Three-dimensional speckle tracking imaging for quantitative evaluation of left ventricular global strain in renal transplant recipients[J]. ORGAN TRANSPLANTATION, 2021, 12(4): 458-464. doi: 10.3969/j.issn.1674-7445.2021.04.013
Citation: Tang Junyi, Sui Mingxing, Xi Jiaying, et al. Three-dimensional speckle tracking imaging for quantitative evaluation of left ventricular global strain in renal transplant recipients[J]. ORGAN TRANSPLANTATION, 2021, 12(4): 458-464. doi: 10.3969/j.issn.1674-7445.2021.04.013

Three-dimensional speckle tracking imaging for quantitative evaluation of left ventricular global strain in renal transplant recipients

doi: 10.3969/j.issn.1674-7445.2021.04.013
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  • Corresponding author: Jin Xiucai, Email: goldenxc@126.com
  • Received Date: 2021-04-30
    Available Online: 2021-07-13
  • Publish Date: 2021-07-15
  •   Objective  To evaluate the application value of three-dimensional speckle tracking imaging (3D-STI) in quantitatively evaluating the left ventricular global strain in recipients within 3 months after renal transplantation.  Methods  Clinical data including blood pressure, serum creatinine and tacrolimus blood concentration of 34 renal transplant recipients were collected before operation, 7 d, 1 month and 3 months after operation, respectively. Meanwhile, conventional echocardiography and 3D-STI examination were performed. Echocardiographic parameters [left ventricular end-diastolic volume (LVEDV), left ventricular end-systolic volume (LVESV) and left ventricular ejection fraction (LVEF)] and 3D-STI parameters [left ventricular global peak longitudinal strain (GPLS), global peak circumferential strain (GPCS), global peak radial strain (GPRS) and global peak area strain (GPAS)] of recipients were collected. The changes of these parameters before operation, 7 d, 1 month and 3 months after operation were statistically compared. The changing characteristic and application value of 3D-STI in quantitatively evaluating the left ventricular global strain in recipients within 3 months after renal transplantation were evaluated.  Results  LVEF and GPCS did not significantly differ at different time points (all P > 0.05), whereas LVEDV, LVESV, GPLS, GPAS and GPRS significantly differed at different time points from preoperative to within postoperative 3 months (all P < 0.001). GPLS, GPAS and GPRS trended to decline within postoperative 1 month, and slightly increased at 3 months after operation, which was still lower than the preoperative levels.  Conclusions  Application of 3D-STI may sensitively detect the changes of left ventricular global strain in recipients after renal transplantation when no significant variations are observed in postoperative LVEF. Compared with conventional echocardiography, 3D-STI may more accurately evaluate the changes of left ventricular global strain in recipients after renal transplantation.

     

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  • [1]
    LOSAPPIO V, INFANTE B, LEO S, et al. Nutrition-basedmanagement of inflammaging in CKD and renal replacement therapies[J]. Nutrients, 2021, 13(1): 267. DOI: 10.3390/nu13010267.
    [2]
    FUJIKURA K, PELTZER B, TIWARI N, et al. Reduced global longitudinal strain is associated with increased risk of cardiovascular events or death after kidney transplant[J]. Int J Cardiol, 2018, 272: 323-328. DOI: 10.1016/j.ijcard.2018.07.088.
    [3]
    SKRABAKA D, FRANCZYK S, KOLONKO A, et al. Early complications after kidney transplantation in patients aged 60 years and older: a single-center, paired-kidney analysis[J]. Transplant Proc, 2020, 52(8): 2376-2381. DOI: 10.1016/j.transproceed.2020.01.093.
    [4]
    张筠, 曹军英, 刘聪, 等. 超声技术在肾移植术后患者心脏结构与功能改变评价中应用[J]. 创伤与急危重病医学, 2017, 5(6): 343-346. DOI: 10.16048/j.issn.2095-5561.2017.06.07.

    ZHANG J, CAO JY, LIU C, et al. Evaluation of kidney transplantation on left ventricular morphologic and functional changes by tissue Doppler imaging[J]. Trauma Crit Care Med, 2017, 5(6): 343-346. DOI:10.16048/j.issn. 2095-5561.2017.06.07.
    [5]
    MURARU D, NIERO A, RODRIGUEZ-ZANELLA H, et al. Three-dimensional speckle-tracking echocardiography: benefits and limitations of integrating myocardial mechanics with three-dimensional imaging[J]. Cardiovasc Diagn Ther, 2018, 8(1): 101-117. DOI: 10.21037/cdt.2017.06.01.
    [6]
    COUTINHO CRUZ M, MOURA BRANCO L, PORTUGAL G, et al. Three-dimensional speckle-tracking echocardiography for the global and regional assessments of left ventricle myocardial deformation in breast cancer patients treated with anthracyclines[J]. Clin Res Cardiol, 2020, 109(6): 673-684. DOI: 10.1007/s00392-019-01556-1.
    [7]
    刘畅, 范莉, 颜紫宁, 等. 三维斑点追踪成像评价腹膜透析患者左心室收缩功能及同步性[J]. 中国医学影像学杂志, 2020, 28(10): 751-756. DOI: 10.3969/j.issn.1005-5185.2020.10.008.

    LIU C, FAN L, YAN ZN, et al. Left ventricular systolic function and synchronization in peritoneal dialysis patients by three-dimensional speckle tracking imaging[J]. Chin J Med Imaging, 2020, 28(10): 751-756. DOI: 10.3969/j.issn.1005-5185.2020.10.008.
    [8]
    蒋海波, 陈恺蓓, 孙丽, 等. 三维斑点追踪成像技术评价房间隔缺损患者封堵前后左心室整体应变[J]. 中国医学影像技术, 2018, 34(4): 523-527. DOI: 10.13929/j.1003-3289.201708008.

    JIANG HB, CHEN KB, SUN L, et al. Three-dimensional speckle tracking imaging in evaluation of left ventricular global strain before and after transcatheter closure of atrial septal defect[J]. Chin J Med ImagingTechnol, 2018, 34(4): 523-527. DOI: 10.13929/j.1003-3289.201708008.
    [9]
    朱霞玲, 蒋海波, 赵颖燕, 等. 三维斑点追踪成像对左心耳封堵术前后左心室整体应变的定量评价[J]. 海军医学杂志, 2018, 39(2): 148-151. DOI: 10.3969/j.issn.1009-0754.2018.02.018.

    ZHU XL, JIANG HB, ZHAO YY, et al. 3D-STI quantitative evaluation of whole strain of left ventricular myocardium before and after left atrial appendage closure[J]. J Navy Med, 2018, 39(2): 148-151. DOI: 10.3969/j.issn.1009-0754.2018.02.018.
    [10]
    RAO NN, COATES PT. Cardiovascular disease after kidney transplant[J]. Semin Nephrol, 2018, 38(3): 291-297. DOI: 10.1016/j.semnephrol.2018.02.008.
    [11]
    刘武岩, 宋晓东, 朱胜, 等. 超声心动图对肾移植术前后左心结构和功能的对比分析[J]. 中国中西医结合肾病杂志, 2011, 12(9): 797-799. DOI: 10.3969/j.issn.1009-587X.2011.09.016.

    LIU WY, SONG XD, ZHU S, et al. Comparative analysis of echocardiography on left ventricular morphologic and functional changes before and after renal transplantation[J]. Chin J Integr Tradit West Nephrol, 2011, 12(9): 797-799. DOI: 10.3969/j.issn.1009-587X.2011.09.016.
    [12]
    TEIXEIRA R. Three-dimensional speckle tracking echocardiography: the future is now[J]. Rev PortCardiol, 2018, 37(4): 339-340. DOI: 10.1016/j.repc.2018.03.008.
    [13]
    KOZUMA A, ASANUMA T, MASUDA K, et al. Assessment of myocardial ischemic memory using three-dimensional speckle-tracking echocardiography: a novel integrated analysis of early systolic lengthening and postsystolic shortening[J]. J Am Soc Echocardiogr, 2019, 32(11): 1477-1486. DOI: 10.1016/j.echo.2019.06.013.
    [14]
    ZHANG H, QIU S, CHEN F, et al. Three-dimensional speckle-tracking echocardiography for evaluating myocardial motion in patients with cardiorenal syndrome[J]. J Clin Ultrasound, 2019, 47(7): 412-418. DOI: 10.1002/jcu.22749.
    [15]
    HABEEB NM, YOUSSEF OI, ELGUINDY WM, et al. Three dimensional (3D) echocardiography as a tool of left ventricular assessment in children with dilated cardiomyopathy: comparison to cardiac MRI[J]. Open Access Maced J Med Sci, 2018, 6(12): 2310-2315. DOI: 10.3889/oamjms.2018.270.
    [16]
    文鹤龄, 陈宇, 梁中书. 三维斑点追踪成像对阵发性房颤患者射频消融术前后左心室收缩功能的评价[J]. 实用医学杂志, 2019, 35(3): 467-470. DOI:10.3969/j.issn. 1006-5725.2019.03.030.

    WEN HL, CHEN Y, LIANG ZS. Assessment of left ventricular systolic function in patients with paroxysmal atrial fibrillation after catheter ablation by three-dimensional speckle tracking imaging[J]. J Pract Med, 2019, 35(3): 467-470. DOI: 10.3969/j.issn.1006-5725.2019.03.030.
    [17]
    WANG Y, HU HF, LIU HL, et al. Using ultrasound three-dimensional speckle tracking technology to explore the role of SIRT1 in ventricular remodeling after myocardial infarction[J]. Eur Rev Med Pharmacol Sci, 2020, 4(20): 10632-10645. DOI: 10.26355/eurrev_202010_23421.
    [18]
    NABESHIMA Y, SEO Y, TAKEUCHI M. A review of current trends in three-dimensional analysis of left ventricular myocardial strain[J]. Cardiovasc Ultrasound, 2020, 18(1): 23. DOI: 10.1186/s12947-020-00204-3.
    [19]
    D'EGIDIO V, MANNOCCI A, CIACCIO D, et al. Return to work after kidney transplant: a systematic review[J]. Occup Med (Lond), 2019, 69(6): 412-418. DOI: 10.1093/occmed/kqz095.
    [20]
    KARIM MS, ARYAL P, GARDEZI A, et al. Vascular access in kidney transplant recipients[J]. Transplant Rev (Orlando), 2020, 34(3): 100544. DOI: 10.1016/j.trre.2020.100544.
    [21]
    AL-HARBI NO, IMAM F, NADEEM A, et al. Protection against tacrolimus-induced cardiotoxicity in rats by olmesartan and aliskiren[J]. Toxicol Mech Methods, 2014, 24(9): 697-702. DOI: 10.3109/15376516.2014.963773.
    [22]
    FERJANI H, TIMOUMI R, AMARA I, et al. Beneficial effects of mycophenolate mofetil on cardiotoxicity induced by tacrolimus in wistar rats[J]. Exp Biol Med (Maywood), 2017, 242(4): 448-455. DOI: 10.1177/1535370215616709.
    [23]
    KANAZAWA K, IWAI-TAKANO M, KIMURA S, et al. Blood concentration of tacrolimus and age predict tacrolimus-induced left ventricular dysfunction after bone marrow transplantation in adults[J]. J Med Ultrason (2001), 2020, 47(1): 97-105. DOI: 10.1007/s10396-019-00990-y.
    [24]
    LIM K, TING SMS, HAMBORG T, et al. Cardiovascular functional reserve before and after kidney transplant[J]. JAMA Cardiol, 2020, 5(4): 420-429. DOI: 10.1001/jamacardio.2019.5738.
    [25]
    KAESLER N, BABLER A, FLOEGE J, et al. Cardiac remodeling in chronic kidney disease[J]. Toxins (Basel), 2020, 12(3): 161. DOI: 10.3390/toxins12030161.
    [26]
    KREBBER MM, PAPAZOVA DA, OOSTERHUIS NR, et al. Dissociation between hypertrophy and fibrosis in the left ventricle early after experimental kidney transplantation[J]. J Hypertens, 2020, 38(3): 489-503. DOI: 10.1097/HJH.0000000000002285.
    [27]
    邹素兰, 蒋艳, 陈荣. 肾移植患者他克莫司血药浓度监测的临床分析[J]. 中国药房, 2012, 23(42): 3966-3967. DOI: 10.6039/j.issn.1001-0408.2012.42.12.

    ZOU SL, JIANG Y, CHEN R, et al. Clinical analysis of blood concentration monitoring of tacrolimus in renal transplantation recipients[J]. Chin Pharm, 2012, 23(42): 3966-3967. DOI: 10.6039/j.issn.1001-0408.2012.42.12.
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