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Updated: Feb 10, 2026

Measurement of Myocardial Lactate Production for Diagnosis of Coronary Microvascular Spasm
Published on: September 17, 2021
[Relationship between coronary tortuosity and coronary microvascular disease]
1Department of Cardiology, Second Hospital of Hebei Medical University, Shijiazhuang 050000, China.
Insights
Coronary tortuosity is an independent risk factor for coronary microvascular disease (CMVD). This study found that patients with CMVD had higher incidences of coronary tortuosity, diabetes, and coronary atherosclerosis.
Area of Science:
- Cardiology
- Vascular Biology
- Diagnostic Imaging
Background:
- Coronary microvascular disease (CMVD) affects myocardial perfusion.
- Understanding risk factors for CMVD is crucial for patient management.
Purpose of the Study:
- To investigate the association between coronary tortuosity and CMVD.
- To identify independent risk factors for CMVD.
Main Methods:
- 117 patients with typical angina and no significant coronary stenosis were enrolled.
- Coronary microvascular disease (CMVD) was diagnosed using single-photon emission tomography (SPECT).
- Logistic regression analysis was employed to determine risk factors.
Main Results:
- Patients with CMVD showed higher rates of diabetes, elevated hs-CRP, LDL-C, homocysteine, coronary atherosclerosis, and coronary tortuosity.
- Corrected TIMI frame counts were significantly higher in the CMVD group.
- Coronary tortuosity (OR=6.111), diabetes (OR=6.565), and coronary atherosclerosis (OR=8.918) were identified as independent risk factors for CMVD.
Conclusions:
- Coronary tortuosity is significantly associated with CMVD.
- Diabetes and coronary atherosclerosis are also independent risk factors for CMVD.
- These findings highlight the importance of assessing coronary tortuosity in patients with suspected CMVD.
Abstract:
Objective: To explore the relationship between coronary tortuosity and coronary microvascular disease (CMVD). Methods: Patients with typical angina symptoms and without serious coronary artery stenosis by coronary angiography were enrolled from June 2014 to December 2016, and CMVD was diagnosed by single photon emission tomography (SPECT). According to the SPECT results, patients were divided to the CMVD group and non-CMVD group. The baseline clinical characteristics, results of coronary angiography were compared between the two groups. The logistic analysis was used to analyze the relationship between coronary tortuosity and CMVD. Result: A total of 117 cases were enrolled, with 69 cases in the CMVD group and 48 cases in the non-CMVD group. No differences were found in gender distribution, age, hypertension, lipid abnormality, hyperuricemia and uses of statins between the two groups (all P>0.05). Incidence of diabetes (78.26%(54/69) vs. 35.42% (17/48) , P<0.05), hs-CRP ((4.29±2.15)mmol/L vs. (2.63±1.20)mmol/L, P<0.001), LDL-C ((2.98±0.96)mmol/L vs. (2.52±0.83)mmol/L, P=0.008) and homocysteine ((13.7±5.61)mmol/L vs. (11.5±4.38)mmol/L, P=0.025) levels were higher in the CMVD group than in the non-CMVD group. The data derived from echocardiographic examination were similar between the two groups. The Corrected TIMI frame counts were higher in the CMVD group than in non-CMVD group (LAD: 31.56±4.92 vs. 27.31±3.75, LCX: 29.47±4.18 vs. 26.62±3.19, RCA: 29.09±5.05 vs. 26.24±3.28, all P<0.001). The incidences of coronary atherosclerosis (76.81% (53/69) vs. 27.08% (13/48) , P<0.001) and coronary tortuosity ( (60.87% (42/69) vs. 33.33% (16/48) , P=0.035) were also higher in the CMVD group than in non-CMVD group. Logistic analysis found that coronary tortuosity (OR=6.111, 95%CI 2.707-13.794, P<0.001), diabetes (OR=6.565, 95%CI 2.883-14.948, P<0.001) and coronary atherosclerosis (OR=8.918, 95%CI 3.822-20.808, P<0.001) were independent risk factors of CMVD. Conclusion: Coronary tortuosity, diabetes and coronary atherosclerosis are related to CMVD in this patient cohort.
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