1 |
Iorgoveanu C, Zaghloul A, Ashwath M. Peripartum cardiomyopathy: a review [J]. Heart Fail Rev, 2021, 26(6): 1287-1296.
|
2 |
Davis MB, Arany Z, McNamara DM, et al. Peripartum cardiomyopathy: JACC state-of-the-art review [J]. J Am Coll Cardiol, 2020, 75(2): 207-221.
|
3 |
Regitz-Zagrosek V, Roos-Hesselink JW, Bauersachs J, et al. 2018 ESC Guidelines for the management of cardiovascular diseases during pregnancy [J]. Eur Heart J, 2018, 39(34): 3165-3241.
|
4 |
Bauersachs J, König T, van der Meer P, et al. Pathophysiology, diagnosis and management of peripartum cardiomyopathy: a position statement from the Heart Failure Association of the European Society of Cardiology Study Group on peripartum cardiomyopathy [J]. Eur J Heart Fail, 2019, 21(7): 827-843.
|
5 |
Kolte D, Khera S, Aronow WS, et al. Temporal trends in incidence and outcomes of peripartum cardiomyopathy in the United States: a nationwide population-based study [J]. J Am Heart Assoc, 2014, 3(3): e001056.
|
6 |
Fu K, Zhang H, Chen N, et al. Risk factors for intracardiac thrombus in peripartum cardiomyopathy: a retrospective study in China [J]. ESC Heart Fail, 2023, 10(1): 148-158.
|
7 |
Xu H, Zhao L, Fu H, et al. Prognostic value of cardiac MRI late gadolinium enhancement in patients with peripartum cardiomyopathy: A retrospective study [J]. Curr Probl Cardiol, 2023, 48(4): 101587.
|
8 |
Stergiopoulos K, Lima FV. Peripartum cardiomyopathy-diagnosis, management, and long term implications [J]. Trends Cardiovasc Med, 2019, 29(3): 164-173.
|
9 |
Sliwa K, van der Meer P, Petrie MC, et al. Risk stratification and management of women with cardiomyopathy/heart failure planning pregnancy or presenting during/after pregnancy: a position statement from the Heart Failure Association of the European Society of Cardiology Study Group on Peripartum Cardiomyopathy [J]. Eur J Heart Fail, 2021, 23(4): 527-540.
|
10 |
Sanusi M, Momin ES, Mannan V, et al. Using echocardiography and biomarkers to determine prognosis in peripartum cardiomyopathy: A systematic review [J]. Cureus, 2022, 14(6): e26130.
|
11 |
Duncker D, Westenfeld R, Konrad T, et al. Risk for life-threatening arrhythmia in newly diagnosed peripartum cardiomyopathy with low ejection fraction: a German multi-centre analysis [J]. Clin Res Cardiol, 2017, 106(8): 582-589.
|
12 |
Karaye KM, Sa'idu H, Balarabe SA, et al. Clinical features and outcomes of peripartum cardiomyopathy in Nigeria [J]. J Am Coll Cardiol, 2020, 76(20): 2352-2364.
|
13 |
Duncker D, Haghikia A, König T, et al. Risk for ventricular fibrillation in peripartum cardiomyopathy with severely reduced left ventricular function-value of the wearable cardioverter/defibrillator [J]. Eur J Heart Fail, 2014, 16(12): 1331-1336.
|
14 |
Lindley KJ, Conner SN, Cahill AG, et al. Impact of preeclampsia on clinical and functional outcomes in women with peripartum cardiomyopathy [J]. Circ Heart Fail, 2017, 10(6): e003797.
|
15 |
Gjesdal O, Bluemke DA, Lima JA. Cardiac remodeling at the population level--risk factors, screening, and outcomes [J]. Nat Rev Cardiol, 2011, 8(12): 673-685.
|
16 |
Nwabuo CC, Moreira HT, Vasconcellos HD, et al. Left ventricular global function index predicts incident heart failure and cardiovascular disease in young adults: the coronary artery risk development in young adults (CARDIA) study [J]. Eur Heart J Cardiovasc Imaging, 2019, 20(5): 533-540.
|
17 |
沈智丹. 围生期心肌病患者心功能评价 [D]. 南方医科大学. 2021.
|
18 |
Haghikia A, Röntgen P, Vogel-Claussen J, et al. Prognostic implication of right ventricular involvement in peripartum cardiomyopathy: a cardiovascular magnetic resonance study [J]. ESC Heart Fail, 2015, 2(4): 139-149.
|
19 |
Blauwet LA, Delgado-Montero A, Ryo K, et al. Right ventricular function in peripartum cardiomyopathy at presentation is associated with subsequent left ventricular recovery and clinical outcomes [J]. Circ Heart Fail, 2016, 9(5): e002756.
|
20 |
Karaye KM. Right ventricular systolic function in peripartum and dilated cardiomyopathies [J]. Eur J Echocardiogr, 2011, 12(5): 372-374.
|
21 |
McNamara DM, Elkayam U, Alharethi R, et al. Clinical outcomes for peripartum cardiomyopathy in North America: Results of the IPAC study (Investigations of Pregnancy-Associated Cardiomyopathy) [J]. J Am Coll Cardiol, 2015, 66(8): 905-914.
|
22 |
Li W, Li H, Long Y. Clinical characteristics and long-term predictors of persistent left ventricular systolic dysfunction in peripartum cardiomyopathy [J]. Can J Cardiol, 2016, 32(3): 362-368.
|
23 |
Ravi Kiran G, RajKumar C, Chandrasekhar P. Clinical and echocardioimagedata predictors of outcomes in patients with peripartum cardiomyopathy: A single centre, six month follow-up study [J]. Indian Heart J, 2021, 73(3): 319-324.
|
24 |
Wang JN, Olsen NT, Taraldsen IA, et al. Whole-cycle analysis of echocardioimagedata tissue Doppler velocities as a marker of biological age [J]. Front Cardiovasc Med, 2023, 9: 1040647.
|
25 |
Nagueh SF, Smiseth OA, Appleton CP, et al. Recommendations for the evaluation of left ventricular diastolic function by echocardiography: An update from the American society of echocardiography and the European association of cardiovascular imaging [J]. J Am Soc Echocardiogr, 2016, 29(4): 277-314.
|
26 |
Karaye KM, Lindmark K, Henein M. Right ventricular systolic dysfunction and remodelling in Nigerians with peripartum cardiomyopathy: a longitudinal study [J]. BMC Cardiovasc Disord, 2016, 16: 27.
|
27 |
Pasdeloup D, Olaisen SH, Østvik A, et al. Real-time echocardiography guidance for optimized apical standard views [J]. Ultrasound Med Biol. 2023; 49(1): 333-346.
|
28 |
Bauer F, Shiota T, Qin JX, et al. Measurement of left atrial and ventricular volumes in real-time 3D echocardiography. Validation by nuclear magnetic resonance [J]. Arch Mal Coeur Vaiss, 2001, 94(1): 31-38.
|
29 |
费洪文, 何亚乐, 梁志敏, 等. 实时三维超声心动图容积-时间曲线评价左心室舒张功能的初步研究 [J]. 中华超声影像学杂志, 2006, 15: 9-12.
|
30 |
Murata M, Iwanaga S, Tamura Y, et al. A real-time three-dimensional echocardioimagedata quantitative analysis of left atrial function in left ventricular diastolic dysfunction [J]. Am J Cardiol, 2008, 102(8): 1097-1102.
|
31 |
Demakis JG, Rahimtoola SH, Sutton GC, et al. Natural course of peripartum cardiomyopathy [J]. Circulation, 1971, 44(6): 1053-1061.
|
32 |
赖小伟, 陈方红, 周宁, 等. 应用单心动周期实时三维超声心动图成像评估围产期妇女心肌病左心室动力学变化 [J]. 医学影像学杂志, 2017, 27(3): 557-558.
|
33 |
王俊东, 蒋凤菊. 实时三维超声心动图评价围生期心肌病左心室收缩的同步性 [J]. 中国社区医师: 综合版, 2012, 14(10): 248-249.
|
34 |
Reant P, Mirabel M, Lloyd G, et al. Global longitudinal strain is associated with heart failure outcomes in hypertrophic cardiomyopathy [J]. Heart, 2016, 102(10): 741-747.
|
35 |
Tamrat R, Kang Y, Scherrer-Crosbie M, et al. Women with peripartum cardiomyopathy have normal ejection fraction, but abnormal systolic strain, during pregnancy [J]. ESC Heart Fail, 2021, 8(4): 3382-3386.
|
36 |
Briasoulis A, Mocanu M, Marinescu K, et al. Longitudinal systolic strain profiles and outcomes in peripartum cardiomyopathy [J]. Echocardiography, 2016, 33(9): 1354-1360.
|
37 |
Sugahara M, Kagiyama N, Hasselberg NE, et al. Global left ventricular strain at presentation is associated with subsequent recovery in patients with peripartum cardiomyopathy [J]. J Am Soc Echocardiogr, 2019, 32(12): 1565-1573.
|
38 |
Gao ZS, Yuan YC, Niu QM, et al. Velocity vector imaging for assessing the heart function in pregnant women with gestational diabetes mellitus [J]. J Biol Regul Homeost Agents, 2020, 34(6): 2245-2249.
|
39 |
王小艳, 王逸男, 连亚军, 等. 速度向量成像技术研究围生期心肌病患者左室应变的价值 [J]. 长治医学院学报. 2016; 30(4):296-297.
|
40 |
Leitman M, Balboul Y, Burgsdorf O, et al. Myocardial work index during normal dobutamine stress echocardiography [J]. Sci Rep, 2022, 12(1): 6813.
|
41 |
Chuah SC, Pellikka PA, Roger VL, et al. Role of dobutamine stress echocardiography in predicting outcome in 860 patients with known or suspected coronary artery disease [J]. Circulation, 1998, 97(15): 1474-1480.
|
42 |
Lampert MB, Weinert L, Hibbard J, et al. Contractile reserve in patients with peripartum cardiomyopathy and recovered left ventricular function [J]. Am J Obstet Gynecol, 1997, 176(1 Pt 1): 189-195.
|
43 |
Dorbala S, Brozena S, Zeb S, et al. Risk stratification of women with peripartum cardiomyopathy at initial presentation: a dobutamine stress echocardiography study [J]. J Am Soc Echocardiogr, 2005, 18(1): 45-48.
|
44 |
Barbosa MM, Freire CM, Nascimento BR, et al. Rest left ventricular function and contractile reserve by dobutamine stress echocardiography in peripartum cardiomyopathy. Rev Port Cardiol. 2012; 31(4): 287-293.
|
45 |
Tanaka T, Asami R, Kawabata KI, et al. A posteriori accuracy estimation of ultrasonic vector-flow mapping (VFM) [J]. J Vis (Tokyo), 2017, 20(3): 607-623.
|
46 |
Avesani M, Degrelle B, Di Salvo G, et al. Vector flow mapping: A review from theory to practice [J]. Echocardiography, 2021, 38(8): 1405-1413.
|
47 |
Hayashi T, Itatani K, Inuzuka R, et al. Dissipative energy loss within the left ventricle detected by vector flow mapping in children: Normal values and effects of age and heart rate [J]. J Cardiol, 2015, 66(5): 403-410.
|
48 |
Wang Y, Ma R, Ding G, et al. Left ventricular energy loss assessed by vector flow mapping in patients with prediabetes and type 2 diabetes mellitus [J]. Ultrasound Med Biol, 2016, 42(8): 1730-1740.
|
49 |
程冠, 夏娟, 马小静. 扩张型心肌病患者左心室能量损耗及室壁剪应力的血流向量成像评价 [J/OL]. 中华医学超声杂志(电子版), 2021, 18(10): 954-959.
|
50 |
马小静, 王斌, 夏娟, 等. 血流向量成像技术对正常人右心房和右心室涡流成像的初步探讨[J/OL]. 中华临床医师杂志(电子版), 2013,7(17):7743-7747.
|