СТАНДАРТИЗИРОВАННЫЕ МЕТОДЫ ВИЗУАЛИЗАЦИИ АТЕРОСКЛЕРОЗА СОННЫХ АРТЕРИЙ: ОТ УЗИ ДО PLAQUE-RADS

Authors

  • Муслимбек Эсоналиев Author
  • Азизбек Зулунов Author
  • Зарнигор Мадумарова Author
  • Нодирбек Якубов Author

Keywords:

Ключевые слова: Атеросклероз сонных артерий, Визуализация сосудов, Радиологическая диагностика, КТ-ангиография (КТА), Уязвимые атеросклеротические бляшки.

Abstract

Атеросклероз сонных артерий является одной из ведущих причин ишемического инсульта. Своевременная и точная диагностика морфологии атеросклеротических бляшек играет ключевую роль в стратификации риска и выборе тактики лечения. Настоящий обзор посвящён анализу диагностических возможностей современных радиологических методов — ультразвукового исследования (УЗИ), компьютерной томографической ангиографии (КТА), магнитно-резонансной ангиографии (МРА) и цифровой субтракционной ангиографии (DSA) — при атеросклеротических изменениях сонных артерий

References

1. Kudo, M., Ueshima, K., Osaki, Y., Hirooka, M., Imai, Y., Aso, K., ... & Akazawa, K. (2019). B-mode ultrasonography versus contrast-enhanced ultrasonography for surveillance of hepatocellular carcinoma: A prospective multicenter randomized controlled trial. Liver Cancer, 8(4), 271–280. https://doi.org/10.1159/000501082

2. Guerri, G., Vignoli, M., Palombi, C., Monaci, M., & Petrizzi, L. (2019). Ultrasonographic evaluation of umbilical structures in Holstein calves: A comparison between healthy calves and calves affected by umbilical disorders. Journal of Dairy Science. https://doi.org/10.3168/jds.2019-16737

3. Gawad, A., Moustafa, B., Abouelgreed, T., Elnady, E., Khater, S., Rehan, M., ... & Abdelkader, S. (2024). Exploring the potential of combined B-mode features and color Doppler ultrasound in the diagnosis of ureteric stone as an alternative to ionizing radiation exposure by computed tomography. Archivio Italiano di Urologia e Andrologia, 96(2), 12523. https://doi.org/10.4081/aiua.2024.12523

4. Febo, E., Del Signore, F., Bernabò, N., Paolini, A., Simeoni, F., De Bonis, A., ... & Vignoli, M. (2023). Ultrasonography and sonoelastography characteristics of benign vs. malignant mesenteric lymph nodes in cats: An update. Animals, 13. https://doi.org/10.3390/ani13162664

5. Kassim, A., Aziz, M., & Soliman, A. (2021). Role of high-resolution ultrasound in detection and assessment of disease activity in rheumatoid arthritis. QJM: An International Journal of Medicine. https://doi.org/10.1093/qjmed/hcab106.008

6. Nguyen, P., & Nguyen, V. (2022). Combination of B-mode ultrasound and Doppler ultrasound in approaching to uterine intracavitary pathologies among women above 40 years with abnormal uterine bleeding: A multicenter-based study from Vietnam. Journal of Mid-Life Health, 13, 145–151. https://doi.org/10.4103/jmh.jmh_93_22

7. Chrencik, M., Khan, A., Luther, L., Anthony, L., Yokemick, J., Patel, J., ... & Lal, B. (2019). Quantitative assessment of carotid plaque morphology using computed tomography angiography. Journal of Vascular Surgery. https://doi.org/10.1016/j.jvs.2018.11.050

8. Liu, Y., Wang, C., Zhang, X., Liang, K., Tao, J., Guo, L., & Gao, B. (2023). A comparison of computed tomography imaging with histopathology in the sensitivity and correlation of evaluating coronary arterial calcification. Quantitative Imaging in Medicine and Surgery, 13, 2426–2440. https://doi.org/10.21037/qims-22-603

9. Grodecki, K., Cadet, S., Staruch, A., Michalowska, A., Kepka, C., Wolny, R., ... & Opolski, M. (2020). Noncalcified plaque burden quantified from coronary computed tomography angiography improves prediction of side branch occlusion after main vessel stenting in bifurcation lesions. Clinical Research in Cardiology, 110, 114–123. https://doi.org/10.1007/s00392-020-01658-1

10. Pezel, T., Sideris, G., Dillinger, J., Logeart, D., Manzo-Silberman, S., Cohen-Solal, A., ... & Henry, P. (2022). Coronary computed tomography angiography analysis of calcium content to identify non-culprit vulnerable plaques in patients with acute coronary syndrome. Frontiers in Cardiovascular Medicine, 9. https://doi.org/10.3389/fcvm.2022.876730

11. Ramasamy, A., Safi, H., Moon, J., Andiapen, M., Rathod, K., Maurovich-Horvát, P., ... & Bourantas, C. (2020). Evaluation of the efficacy of computed tomographic coronary angiography in assessing coronary artery morphology and physiology: Rationale and study design. Cardiology, 145, 285–293. https://doi.org/10.1159/000506537

12. Matsumoto, H., Watanabe, S., Kyo, E., Tsuji, T., Ando, Y., Otaki, Y., ... & Dey, D. (2019). Standardized volumetric plaque quantification and characterization from coronary CT angiography: A head-to-head comparison with invasive intravascular ultrasound. European Radiology. https://doi.org/10.1007/s00330-019-06219-3

13. Gwak, D., Kim, B., Chung, I., & Han, M. (2020). The usefulness of time-of-flight MR angiography in detection of intraplaque hemorrhage in patients with acute ischemic stroke with symptomatic carotid stenosis. PLoS ONE, 15. https://doi.org/10.1371/journal.pone.0229024

14. Pakizer, D., Kozel, J., Elmers, J., Feber, J., Michel, P., Školoudík, D., & Sirimarco, G. (2024). Diagnostics accuracy of magnetic resonance imaging in detection of atherosclerotic plaque characteristics in carotid arteries compared to histology: A systematic review. Journal of Magnetic Resonance Imaging, 61, 1067–1093. https://doi.org/10.1002/jmri.29522

15. Dakis, K., Nana, P., Athanasios, C., Spanos, K., Konstantinos, B., Giannoukas, A., & Kouvelos, G. (2023). Carotid plaque vulnerability diagnosis by CTA versus MRA: A systematic review. Diagnostics, 13. https://doi.org/10.3390/diagnostics13040646

16. Yu, S., Huo, R., Qiao, H., Ning, Z., Xu, H., Yang, D., ... & Zhao, X. (2023). Carotid artery perivascular adipose tissue on magnetic resonance imaging: A potential indicator for carotid vulnerable atherosclerotic plaque. Quantitative Imaging in Medicine and Surgery, 13, 7695–7705. https://doi.org/10.21037/qims-23-280

17. Rots, M., Timmerman, N., De Kleijn, D., Pasterkamp, G., Brown, M., Bonati, L., & De Borst, G. (2019). Magnetic resonance imaging identified brain ischaemia in symptomatic patients undergoing carotid endarterectomy is related to histologically apparent intraplaque haemorrhage. European Journal of Vascular and Endovascular Surgery. https://doi.org/10.1016/j.ejvs.2019.07.017

18. Posa, A., Tanzilli, A., Barbieri, P., Steri, L., Arbia, F., Mazza, G., ... & Iezzi, R. (2022). Digital subtraction angiography (DSA): Technical and diagnostic aspects in the study of lower limb arteries. Radiation. https://doi.org/10.3390/radiation2040028

19. Li, K., Vakharia, V., Sparks, R., Rodionov, R., Vos, S., McEvoy, A., ... & Duncan, J. (2019). Stereoelectroencephalography electrode placement: Detection of blood vessel conflicts. Epilepsia, 60, 1942–1948. https://doi.org/10.1111/epi.16294

20. Marbacher, S., Kienzler, J., Mendelowitsch, I., D’Alonzo, D., Andereggen, L., Diepers, M., ... & Fandino, J. (2019). Comparison of intra- and postoperative 3-dimensional digital subtraction angiography in evaluation of the surgical result after intracranial aneurysm treatment. Neurosurgery. https://doi.org/10.1093/neuros/nyz487

21. Whitehead, J., Hoffman, C., Wagner, M., Minesinger, G., Nikolau, E., Laeseke, P., & Speidel, M. (2023). Interleaved x-ray imaging: A method for simultaneous acquisition of quantitative and diagnostic digital subtraction angiography. Medical Physics. https://doi.org/10.1002/mp.16794

22. Ahmed, S., Mocco, J., Zhang, X., Kelly, M., Doshi, A., Nael, K., & De Leacy, R. (2019). MRA versus DSA for the follow-up imaging of intracranial aneurysms treated using endovascular techniques: A meta-analysis. Journal of NeuroInterventional Surgery, 11, 1009–1014. https://doi.org/10.1136/neurintsurg-2019-014936

Published

2025-05-23

How to Cite

Муслимбек Эсоналиев, Азизбек Зулунов, Зарнигор Мадумарова, & Нодирбек Якубов. (2025). СТАНДАРТИЗИРОВАННЫЕ МЕТОДЫ ВИЗУАЛИЗАЦИИ АТЕРОСКЛЕРОЗА СОННЫХ АРТЕРИЙ: ОТ УЗИ ДО PLAQUE-RADS. JOURNAL OF NEW CENTURY INNOVATIONS, 77(1), 331-339. https://scientific-jl.com/new/article/view/15821