Journal of Hebei Medical College for Continuing Education ›› 2026, Vol. 43 ›› Issue (3): 24-38.DOI: 10.3969/j.issn.1674-490X.2026.03.003
Previous Articles Next Articles
Shi Yiqun1, Liu Jian2
Received:2025-11-06
Online:2026-06-25
Published:2026-06-25
CLC Number:
Shi Yiqun, Liu Jian. Advances on coronary myocardial bridging[J]. Journal of Hebei Medical College for Continuing Education, 2026, 43(3): 24-38.
Add to citation manager EndNote|Ris|BibTeX
URL: https://yxyjyjy.hbu.edu.cn/EN/10.3969/j.issn.1674-490X.2026.03.003
| [1] Shi Y, Liu J. Impact of myocardial bridging on hemodynamics evaluated by coronary angiography-derived fractional flow reserve[J]. Am J Cardiol,2025,257:141-146. DOI: 10.1016/j.amjcard.2025.08.027. [2] 史轶群,刘健.基于定量冠状动脉造影技术评价心肌桥与近端动脉粥样硬化的相关性[J].中国心血管杂志, 2025, 30(5): 487-493. DOI: 10.3969/j.issn.1007-5410.2025.05.003. [3] Ferreira Jr A G, Trotter S E, König Jr B, et al. Myocardial bridges: morphological and functional aspects[J]. Br Heart J, 1991, 66(5): 364-367. DOI: 10.1136/hrt.66.5.364. [4] Porstmann W, Iwig J. Die intramurale koronarie im angiogramm[J]. Fortschr Röntgenstr, 1960, 92(2): 129-133. DOI: 10.1055/s-0029-1226492. [5] Shenoy N, Naik K A, R P, et al. Severe myocardial bridging-iduced total occlusion of the left anterior descending(LAD)artery mimicking wellens' syndrome: a case report[J]. Cureus, 2024,16(11):e73123.DOI: 10.7759/CUREUS.73123. [6] Aden D, Phulware R H, Mittal S, et al. Myocardial bridging: sudden unexpected death of a young girl: a case report[J]. Indian J Pathol Microbiol, 2022, 65(1): 157-159. DOI: 10.4103/IJPM.IJPM1177_20. [7] Sylvia M T, Soundharia R, Bhat R V, et al. Myocardial bridging in cases of sudden death and its association with clinicopathologic characteristics[J]. Heart Views, 2023, 24(1): 6-10. DOI: 10.4103/heartviews.heartviews_79_22. [8] Ciliberti G, Casamassima F, Laborante R, et al. 762 Myocardial bridge evaluation towards personalized medicine(the rialto registry): preliminary findings[J]. Eur Heart J Suppl, 2021, 23(Suppl G): suab140.016. DOI: 10.1093/eurheartj/suab140.016. [9] Arcari L, Limite L R, Cacciotti L, et al. Tortuosity, recurrent segments, and bridging of the epicardial coronary arteries in patients with the takotsubo syndrome[J]. Am J Cardiol, 2017, 119(2): 243-248. DOI: 10.1016/j.amjcard.2016.09.055. [10] Kegai S, Sato K, Goto K, et al. Coexistence of spontaneous coronary artery dissection, takotsubo cardiomyopathy, and myocardial bridge[J]. JACC Case Rep, 2021, 3(2): 250-254. DOI: 10.1016/j.jaccas.2020.11.042. [11] Hostiuc S, Negoi I, Rusu M C, et al. Myocardial bridging: a meta-analysis of prevalence[J]. J Forensic Sci, 2018, 63(4): 1176-1185. DOI: 10.1111/1556-4029.13665. [12] Roberts W, Charles S M, Ang C, et al. Myocardial bridges: a meta-analysis[J]. Clin Anat, 2021, 34(5): 685-709. DOI: 10.1002/ca.23697. [13] Watanabe Y, Arakawa T, Kageyama I, et al. Gross anatomical study on the human myocardial bridges with special reference to the spatial relationship among coronary arteries, cardiac veins, and autonomic nerves[J]. Clin Anat, 2016, 29(3): 333-341. DOI: 10.1002/ca.22662. [14] Sahni D, Jit I. Incidence of myocardial bridges in northwest Indians[J]. Indian Heart J, 1991, 43(6): 431-436. [15] Erol C, Seker M. The prevalence of coronary artery variations on coronary computed tomography angiography[J]. Acta Radiol, 2012, 53(3): 278-284. DOI: 10.1258/ar.2011.110394. [16] Shakya S, Gajurel R M, Poudel C M, et al. Prevalence of myocardial bridging in angiography study[J]. J Nepal Health Res Counc, 2023, 20(3): 774-778. DOI: 10.33314/jnhrc.v20i3.4268. [17] Mishra A, Jafri S, Mateen S, et al. Myocardial bridging in patients undergoing coronary angiography for coronary artery disease[J]. Cureus, 2024, 16(5): e60087. DOI: 10.7759/cureus.60087. [18] Wymore P, Yedlicka J W, Garcia-Medina V, et al. The incidence of myocardial bridges in heart transplants[J]. Cardiovasc Interv Radiol, 1989, 12(4): 202-206. DOI: 10.1007/BF02577154. [19] Medina F, Estrada A, Fernandez C, et al. Use of intravascular ultrasound and coronary angiography to measure the prevalence of myocardial bridge in heart transplant patients[J]. Am J Cardiol, 2023, 205: 176-181. DOI: 10.1016/j.amjcard.2023.07.173. [20] Narayanan S, Joseph S, Varghese A C, et al. Plaque morphology and distribution in patients with and without myocardial bridge: an intravascular ultrasound study[J]. Acta Cardiol, 2023, 78(8): 894-900. DOI: 10.1080/00015385.2023.2187117. [21] Okada K, Nishi T, Tanaka S, et al. TCT-345 impact of myocardial bridging on long-term outcomes after heart transplantation: risk stratification with IVUS-determined anatomical properties[J]. J Am Coll Cardiol, 2019, 74(13): B342. DOI: 10.1016/j.jacc.2019.08.427. [22] Saito K, Kitahara H, Mastuoka T, et al. Influence of myocardial bridge on atherosclerotic plaque distribution and characteristics evaluated by near-infrared spectroscopy intravascular ultrasound[J]. Heart Vessels, 2022, 37(10): 1701-1709. DOI: 10.1007/s00380-022-02083-2. [23] Okuya Y, Saito Y, Takahashi T, et al. Impact of myocardial bridge on late lumen enlargement in distal reference segments after recanalization of coronary chronic total occlusion[J]. Int J Cardiovasc Imaging, 2021, 37(3): 775-782. DOI: 10.1007/s10554-020-02075-1. [24] Tsujita K, Maehara A, Mintz G S, et al. Comparison of angiographic and intravascular ultrasonic detection of myocardial bridging of the left anterior descending coronary artery[J]. Am J Cardiol, 2008, 102(12): 1608-1613. DOI: 10.1016/j.amjcard.2008.07.054. [25] Yoshida A, Saito K, Kashiyama K, et al. Impact of myocardial bridging on coronary artery plaque formation after heart transplantation: serial ivus analysis with near-infrared spectroscopy[J]. J Am Coll Cardiol, 2024, 83(13): 1484. DOI: 10.1016/s0735-1097(24)03474-0. [26] Okamura A, Okura H, Iwai S, et al. Detection of myocardial bridge by optical coherence tomography[J]. Int J Cardiovasc Imaging, 2022, 38(5): 1169-1176. DOI: 10.1007/s10554-021-02497-5. [27] Rogers I S, Tremmel J A, Schnittger R I. Myocardial bridges: overview of diagnosis and management[J]. Congenit Heart Dis, 2017, 12(5): 619-623. DOI: 10.1111/chd.12499. [28] Kikuchi S, Okada K, Hibi K, et al. Myocardial infarction caused by accelerated plaque formation related to myocardial bridge in a young man[J]. Can J Cardiol, 2018, 34(12): 1687.e13-1687.e15. DOI: 10.1016/j.cjca.2018.08.023. [29] Podolec J, Wiewiórka Ł, Siudak Z, et al. Prevalence and clinical presentation of myocardial bridge on the basis of the National Polish Percutaneous Interventions Registry and the Classification of Rare Cardiovascular Diseases[J]. Kardiol Pol, 2019, 77(4): 465-470. DOI: 10.5603/kp.a2019.0041. [30] Avram A, Chioncel V, Guberna S, et al. Myocardial bridging-an unusual cause of Wellens syndrome: a case report[J]. Medicine, 2020, 99(41): e22491. DOI: 10.1097/MD.0000000000022491. [31] Tarantini G, Migliore F, Cademartiri F, et al. Left anterior descending artery myocardial bridging: a clinical approach[J]. J Am Coll Cardiol, 2016, 68(25): 2887-2899. DOI: 10.1016/j.jacc.2016.09.973. [32] Khan M O, Nishi T, Imura S, et al. Colocalization of coronary plaque with wall shear stress in myocardial bridge patients[J]. Cardiovasc Eng Technol, 2022, 13(5): 797-807. DOI: 10.1007/s13239-022-00616-4. [33] Miyauchi T, Yanagisawa M, Iida K, et al. Age- and sex-related variation of plasma endothelin-1 concentration in normal and hypertensive subjects[J]. Am Heart J, 1992, 123(4 Pt 1): 1092-1093. 10.1016/0002-8703(92)90734-d. [34] Javadzadegan A, Moshfegh A, Hassanzadeh Afrouzi H. Relationship between myocardial bridge compression severity and haemodynamic perturbations[J]. Comput Methods Biomech Biomed Engin, 2019, 22(7): 752-763. DOI: 10.1080/10255842.2019.1589458. [35] Sinha A, Rahman H, Rajani R, et al. Characterizing mechanisms of ischemia in patients with myocardial bridges[J]. Circ Cardiovasc Interv, 2024, 17(1): e013657. DOI: 10.1161/CIRCINTERVENTIONS.123.013657. [36] Saito Y, Kitahara H, Shoji T, et al. Relation between severity of myocardial bridge and vasospasm[J]. Int J Cardiol, 2017, 248: 34-38. DOI: 10.1016/j.ijcard.2017.07.002. [37] Nam P, Choi B G, Choi S Y, et al. The impact of myocardial bridge on coronary artery spasm and long-term clinical outcomes in patients without significant atherosclerotic stenosis[J]. Atherosclerosis, 2018, 270: 8-12. DOI: 10.1016/j.atherosclerosis.2018.01.026. [38] Montone R A, Gurgoglione F L, DelL Buono M G, et al. Interplay between myocardial bridging and coronary spasm in patients with myocardial ischemia and non-obstructive coronary arteries: pathogenic and prognostic implications[J]. J Am Heart Assoc, 2021, 10(14): e020535. DOI: 10.1161/JAHA.120.020535. [39] 刘元生.重视心肌桥的心电图表现及意义[J].临床心电学杂志, 2025,34(1): 49-53. [40] Sternheim D, Power D A, Samtani R, et al. Myocardial bridging: diagnosis, functional assessment, and management: JACC state-of-the-art review[J]. J Am Coll Cardiol, 2021, 78(22): 2196-2212. DOI: 10.1016/j.jacc.2021.09.859. [41] Noble E J, Bourassa M G, Petitclerc R, et al. Myocardial bridging and milking effect of the left anterior descending coronary artery: normal variant or obstruction?[J]. Am J Cardiol, 1976, 37(7): 993-999. DOI: 10.1016/0002-9149(76)90414-8. [42] Ge J, Erbel L R, Ruppecht H J, et al. Comparison of intravascular ultrasound and angiography in the assessment of myocardial bridging[J]. Circulation, 1994, 89(4): 1725-1732. DOI: 10.1161/01.cir.89.4.1725. [43] Hongo Y, Tada H, Ito K, et al. Augmentation of vessel squeezing at coronary-myocardial bridge by nitroglycerin: study by quantitative coronary angiography and intravascular ultrasound[J]. Am Heart J, 1999, 138(2 Pt 1): 345-350. DOI: 10.1016/s0002-8703(99)70123-7. [44] Boktor M, Mansi I A, Troxclair S, et al. Association of myocardial bridge and Takotsubo cardiomyopathy: a case report and literature review[J]. South Med J, 2009, 102(9): 957-960. DOI: 10.1097/SMJ.0b013e3181b08a30. [45] Sipahi I, Tuzcu E M, Moon K W, et al. Do the extent and direction of arterial remodelling predict subsequent progression of coronary atherosclerosis?A serial intravascular ultrasound study[J]. Heart, 2008, 94(5): 623-627. DOI: 10.1136/hrt.2007.129965. [46] Yong G A S C, Pargaonkar V S, Wong C C Y, et al. Abnormal shear stress and residence time are associated with proximal coronary atheroma in the presence of myocardial bridging[J].Int J Cardiol, 2021, 340: 7-13. DOI: 10.1016/j.ijcard.2021.08.011. [47] Corban M T, Hung O Y, Eshtehardi P, et al. Myocardial bridging[J]. J Am Coll Cardiol, 2014, 63(22): 2346-2355. DOI: 10.1016/j.jacc.2014.01.049. [48] American College of Cardiology Clinical Expert Consensus Document on Standards for Acquisition, Measurement and Reporting of Intravascular Ultrasound Studies(IVUS).A report of the american college of cardiology task force on clinical expert consensus documents developed in collaboration with the European Society of Cardiology endorsed by the Society of Cardiac Angiography and Interventions[J]. Eur J Echocardiogr, 2001, 2(4): 299-313. [49] Hashikata T, Honda Y, Wang H, et al. Impact of diastolic vessel restriction on quality of life in symptomatic myocardial bridging patients treated with surgical unroofing: preoperative assessments with intravascular ultrasound and coronary computed tomography angiography[J]. Circ Cardiovasc Interv, 2021, 14(10): e011062. DOI: 10.1161/CIRCINTERVENTIONS.121.011062. [50] Tanaka S, Okada K, Kitahara H, et al. Impact of myocardial bridging on coronary artery plaque formation and long-term mortality after heart transplantation[J]. Int J Cardiol, 2023, 379: 24-32. DOI: 10.1016/j.ijcard.2023.03.014. [51] AoiI S, Maehara A, Takahashi T, et al. OCT-defined myocardial bridge as a homogenous band: validation with a hybrid IVUS-OCT catheter[J]. Cardiovasc Revasc Med, 2023, 46: 122-123. DOI: 10.1016/j.carrev.2022.04.024. [52] Otsuka T, Ueki Y, Kawai K, et al. Definition of myocardial bridge by optical coherence tomography: validation by angiography, IVUS, and histology[J]. JACC Cardiovasc Imaging, 2023, 16(5): 716-718. DOI: 10.1016/j.jcmg.2022.11.023. [53] Otsuka T, Ueki Y, Losdat S, et al. Derivation and validation of myocardial bridge characteristics by optical coherence tomography: a prospective multimodality imaging study[J]. Eur Heart J, 2021, 42(Suppl 1): ehab724.0273. DOI: 10.1093/eurheartj/ehab724.0273. [54] Escaned J, Cortés J, Flores A, et al. Importance of diastolic fractional flow reserve and dobutamine challenge in physiologic assessment of myocardial bridging[J]. J Am Coll Cardiol, 2003, 42(2): 226-233. DOI: 10.1016/s0735-1097(03)00588-6. [55] Davies J E, Sen S Y, Dehbi H M, et al. Use of the instantaneous wave-free ratio or fractional flow reserve in PCI[J]. N Engl J Med, 2017, 376(19): 1824-1834. DOI: 10.1056/NEJMoa1700445. [56] Rovera C, Moretti C, Bisanti F, et al. Myocardial bridging: review on the role of coronary computed tomography angiography[J]. J Clin Med, 2023, 12(18): 5949. DOI: 10.3390/jcm12185949. [57] 史轶群,郭萌,聂文畅,等.CT在心肌桥与冠状动脉粥样硬化关系研究中的应用进展[J].中国临床医生杂志, 2025, 53(7): 836-840. DOI: 10.3969/j.issn.2095-8552.2025.07.008. [58] Bourassa M G, Butnaru A, Lespérance J, et al. Symptomatic myocardial bridges: overview of ischemic mechanisms and current diagnostic and treatment strategies[J]. J Am Coll Cardiol, 2003, 41(3): 351-359. DOI: 10.1016/s0735-1097(02)02768-7. [59] Xu R, He Y, Xie L J, et al. Myocardial bridging in left main coronary artery[J]. Coron Artery Dis, 2018, 29(3): 274-275. DOI: 10.1097/MCA.0000000000000566. [60] Cheng S H, Ni J, Deng W W, et al. Diagnostic ability of perivascular fat attenuation index in predicting atherosclerotic plaque formation proximal to myocardial bridging of the left anterior descending artery within 3 years[J]. Acad Radiol, 2023, 30(10): 2234-2242. DOI: 10.1016/j.acra.2023.06.019. [61] Li Y H, Yu M M, Zhang J Y, et al. Non-invasive imaging of myocardial bridge by coronary computed tomography angiography: the value of transluminal attenuation gradient to predict significant dynamic compression[J].Eur Radiol, 2017, 27(5): 1971-1979. DOI: 10.1007/s00330-016-4544-7. [62] Papp S, Bárczi G, Karády J, et al. Coronary plaque burden of the left anterior descending artery in patients with or without myocardial bridge: a case-control study based on coronary CT-angiography[J]. Int J Cardiol, 2021, 327: 231-235. DOI: 10.1016/j.ijcard.2020.11.052. [63] 赵新斌,赵鹤亮,傅昱,等.不完全与完全心肌桥对冠状动脉形态及粥样硬化影响的iCT研究[J].临床放射学杂志, 2012, 31(10): 1401-1405. DOI: 10.13437/j.cnki.jcr.2012.10.006. [64] Zhou F, Wang Y N, Schoepf U J, et al. Diagnostic performance of machine learning based CT-FFR in detecting ischemia in myocardial bridging and concomitant proximal atherosclerotic disease[J]. Can J Cardiol, 2019, 35(11): 1523-1533. DOI: 10.1016/j.cjca.2019.08.026. [65] Zhou F, Tang C X, Schoepf U J, et al. Fractional flow reserve derived from CCTA may have a prognostic role in myocardial bridging[J]. Eur Radiol, 2019, 29(6): 3017-3026. DOI: 10.1007/s00330-018-5811-6. [66] Yu Y R, Yu L H, Dai X, et al. CT fractional flow reserve for the diagnosis of myocardial bridging-related ischemia: a study using dynamic CT myocardial perfusion imaging as a reference standard[J]. Korean J Radiol, 2021, 22(12): 1964-1973. DOI: 10.3348/kjr.2021.0043. [67] Ballo H, Uusitalo V, Pietilä M, et al. The effects of myocardial bridging on two-dimensional myocardial strain during dobutamine stress echocardiography[J]. Int J Cardiovasc Imaging, 2024, 40(11): 2345-2355. DOI: 10.1007/s10554-024-03239-z. [68] Pargaonkar V S, Rogers I S, Su J, et al. Accuracy of a novel stress echocardiography pattern for myocardial bridging in patients with angina and no obstructive coronary artery disease:a retrospective and prospective cohort study[J]. Int J Cardiol, 2020, 311: 107-113. DOI: 10.1016/j.ijcard.2020.02.006. [69] Tang K, Wang L, Shi R F, et al. The role of myocardial perfusion imaging in evaluating patients with myocardial bridging[J]. J Nucl Cardiol, 2011, 18(1): 117-122. DOI: 10.1007/s12350-010-9303-6. [70] Gawor R, Ku S'mierek J, Pachcińska A, et al. Myocardial perfusion GSPECT imaging in patients with myocardial bridging[J]. J Nucl Cardiol, 2011, 18(6): 1059-1065. DOI: 10.1007/s12350-011-9406-8. [71] Singh D, Vadi S K, Parmar M, et al. Role of(99m)Tc-sestamibi gated SPECT/CT myocardial perfusion imaging in the management of patients with myocardial bridging and its correlation with coronary angiography[J]. J Cardiol Cases, 2017, 15(4): 136-140. DOI: 10.1016/j.jccase.2016.12.006. [72] Tascanov M B, Tanriverdi Z, Gungoren F, et al. The relationship between myocardial bridge and frontal QRS-T angle[J]. J Arrhythm, 2022, 38(5): 772-777. DOI: 10.1002/joa3.12774. [73] 史轶群,刘健.心电图在冠状动脉心肌桥相关疾病诊断中的应用进展[J].心血管病学进展, 2025, 46(9): 769-773. DOI: 10.16806/j.cnki.issn.1004-3934.2025.09.001. [74] Nair C K, Dang G B, Heintz M H, et al. Myocardial bridges: effect of propranolol on systolic compression[J]. Can J Cardiol, 1986, 2(4): 218-221. [75] Sun L J, Yan D G, Huang S W. Evaluation of intracoronary function after reduction of ventricular rate by esmolol in severe stenotic myocardial bridge: a case report[J]. World J Clin Cases, 2022, 10(12): 3828-3833. DOI: 10.12998/wjcc.v10.i12.3828. [76] Yurdam F S, Gürses E. Myocardial bridge and beta blockers: effect on left ventricular strain parameters[J]. Acta Cardiol, 2023, 78(5): 623-629. DOI: 10.1080/00015385.2023.2209421. [77] Nemat A, Majeedi A, Sediqi A W, et al. A case of symptomatic myocardial bridge treated with calcium channel blocker[J]. Int Med Case Rep J, 2022, 15: 259-262. DOI: 10.2147/IMCRJ.S360819. [78] Alessandri N, Dei Giudici A, De Angelis S, et al. Efficacy of calcium channel blockers in the treatment of the myocardial bridging: a pilot study[J]. Eur Rev Med Pharmacol Sci, 2012, 16(6): 829-834. [79] Khan H R, Aslam S. Blocked coronary artery due to coronary spasm treated with stent insertion: a sub-optimal result?[J]. J Ayub Med Coll Abbottabad, 2017, 29(1): 142-144. [80] Ide T, Ohtani K, Higo T, et al. Ivabradine for the treatment of cardiovascular diseases[J]. Circ J, 2019, 83(2): 252-260. DOI: 10.1253/circj.CJ-18-1184. [81] Kim J B, Choi B G, Rha S W. Prognostic impact of nitrate therapy in patients with myocardial bridge and coexisting coronary artery spasm[J]. Heart Vessels, 2023, 38(3): 291-299. DOI: 10.1007/s00380-022-02165-1. [82] El-Am E A, Corban M T, PollakA W, et al. A challenging combination: anomalous left anterior descending coronary artery, myocardial bridging, and endothelial dysfunction[J]. Front Cardiovasc Med, 2020, 7: 57. DOI: 10.3389/fcvm.2020.00057. [83] Wu X, Wu M X, Huang H B, et al. Efficacy and safety of drug-coated balloon angioplasty in proximal LAD stenosis with distal myocardial bridge: a 12-month comparative study with drug-eluting stents[J].Front Cardiovasc Med, 2025,12:1648215.DOI: 10.3389/fcvm.2025.1648215. [84] Krittanawong C, Ang S P, Padilla F A, et al. Medical therapy versus percutaneous coronary intervention in patients with myocardial bridging from a national population-based cohort study: the use of big data analytics[J].Cardiogenetics, 2025, 15(2): 10. DOI: 10.3390/cardiogenetics15020010. [85] Yamamoto K, Sugizaki Y, Karmpaliotis D, et al. Presence and relevance of myocardial bridge in LAD-PCI of CTO and non-CTO lesions[J].JACC Cardiovasc Interv, 2024, 17(4): 491-501. DOI: 10.1016/j.jcin.2023.12.017. [86] 史轶群,刘健,刘巍.心肌桥松解术应用进展[J].中国心血管病研究, 2025, 23(2): 183-188. DOI: 10.3969/j.issn.1672-5301.2025.02.015. [87] Hemmati P, Schaff H V, Dearani J A, et al. Clinical outcomes of surgical unroofing of myocardial bridging in symptomatic patients[J]. Ann Thorac Surg, 2020, 109(2): 452-457. DOI: 10.1016/j.athoracsur.2019.07.005. [88] Ghazy A, Alkady H, Abugameh A, et al. Minimally invasive coronary artery bypass grafting via a lower ministernotomy for left anterior descending artery myocardial bridging: mid-term results[J]. Interact Cardiovasc Thorac Surg, 2021, 33(2): 203-209. DOI: 10.1093/icvts/ivab084. [89] Ji Q, Shen J Q, Xia L M, et al. Surgical treatment of symptomatic left anterior descending myocardial bridges: myotomy vs. bypass surgery[J]. Surg Today, 2020, 50(7): 685-692. DOI: 10.1007/s00595-019-01935-1. [90] Bazylev V V, Nemchenko E V, Mikuliak A I, et al. Role of flowmetry in tactics of bypass grafting for myocardial bridge of the anterior descending artery[J]. Angiol Sosud Khir, 2018, 24(3): 143-150. [91] Attaran S, Moscarelli M, Athanasiou T, et al. Is coronary artery bypass grafting an acceptable alternative to myotomy for the treatment of myocardial bridging?[J]. Interact Cardiovasc Thorac Surg, 2013, 16(3): 347-349. DOI: 10.1093/icvts/ivs459. |
| [1] | ZHANG Feifan, ZHAO Hanqing. Analyzing SUN Simiao's treatment of “Bao Zhong Fenghan” from perspective of “Tuichen Zhixin” [J]. Journal of Hebei Medical College for Continuing Education, 2026, 43(2): 33-38. |
| [2] | ZHAO Yang, CHEN Siji, LIN Shuwu. Latest treatment progress of heart failure [J]. Journal of Hebei Medical College for Continuing Education, 2025, 42(6): 15-25. |
| [3] | . [J]. Journal of Hebei Medical College for Continuing Education, 2024, 41(6): 26-31. |
| [4] | . [J]. Journal of Hebei Medical College for Continuing Education, 2024, 41(5): 11-18. |
| [5] | . [J]. Journal of Hebei Medical College for Continuing Education, 2024, 41(2): 9-14. |
| [6] | . [J]. Journal of Hebei Medical College for Continuing Education, 2024, 41(1): 41-45. |
| [7] | MA Wenjing, LI Chaojun, XU Haixia, LIU Nina. Application of external treatment of TCM in relieving fever in patients with exogenous fever [J]. Journal of Hebei Medical College for Continuing Education, 2023, 40(6): 54-60. |
| [8] | . [J]. Journal of Hebei Medical College for Continuing Education, 2023, 40(5): 22-28. |
| [9] | . [J]. Journal of Hebei Medical College for Continuing Education, 2023, 40(5): 29-37. |
| [10] | . [J]. Journal of Hebei Medical College for Continuing Education, 2023, 40(3): 14-21. |
| [11] | . [J]. Journal of Hebei Medical College for Continuing Education, 2023, 40(3): 22-27. |
| [12] | . [J]. Journal of Hebei Medical College for Continuing Education, 2023, 40(3): 38-45. |
| [13] | ZHAN Xiaofei, CUI Zhenyu, ZHAO Chunli. Advances on artificial intelligence in the diagnosis and treatment of urinary calculi [J]. Journal of Hebei Medical College for Continuing Education, 2022, 39(4): 30-38. |
| [14] | LI Ruiming, DUAN Kaixuan, CUI Dandan, GUO Yu. Construction of curriculum system of rehabilitation treatment technology specialty based on post standard [J]. Journal of Hebei Medical College for Continuing Education, 2022, 39(4): 73-80. |
| [15] | WANG Jing, HAN Li, ZHANG Zeming. Advances on chronic obstructive pulmonary disease associated pulmonary hypertension [J]. Journal of Hebei Medical College for Continuing Education, 2022, 39(3): 21-28. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||