Dada Michael O, Jayeoba Babatunde, Awojoyogbe Bamidele O, Uno Uno E, Awe Oluseyi E
Department of Physics, Federal University of Technology, Minna, Niger State, Nigeria.
Department of Physics, University of Ilorin, Ilorin, Kwara State, Nigeria.
J Med Syst. 2017 Sep 13;41(10):168. doi: 10.1007/s10916-017-0816-2.
Harmonic Phase-Magnetic Resonance Imaging (HARP-MRI) is a tagged image analysis method that can measure myocardial motion and strain in near real-time and is considered a potential candidate to make magnetic resonance tagging clinically viable. However, analytical expressions of radially tagged transverse magnetization in polar coordinates (which is required to appropriately describe the shape of the heart) have not been explored because the physics required to directly connect myocardial deformation of tagged Nuclear Magnetic Resonance (NMR) transverse magnetization in polar geometry and the appropriate harmonic phase parameters are not yet available. The analytical solution of Bloch NMR diffusion equation in spherical geometry with appropriate spherical wave tagging function is important for proper analysis and monitoring of heart systolic and diastolic deformation with relevant boundary conditions. In this study, we applied Harmonic Phase MRI method to compute the difference between tagged and untagged NMR transverse magnetization based on the Bloch NMR diffusion equation and obtained radial wave tagging function for analysis of myocardial motion. The analytical solution of the Bloch NMR equations and the computational simulation of myocardial motion as developed in this study are intended to significantly improve healthcare for accurate diagnosis, prognosis and treatment of cardiovascular related deceases at the lowest cost because MRI scan is still one of the most expensive anywhere. The analysis is fundamental and significant because all Magnetic Resonance Imaging techniques are based on the Bloch NMR flow equations.
谐波相位磁共振成像(HARP-MRI)是一种标记图像分析方法,能够近乎实时地测量心肌运动和应变,被认为是使磁共振标记在临床上可行的潜在候选方法。然而,尚未探索极坐标中径向标记横向磁化强度的解析表达式(这是适当描述心脏形状所必需的),因为直接关联极坐标几何中标记的核磁共振(NMR)横向磁化强度的心肌变形与适当的谐波相位参数所需的物理学知识尚不具备。具有适当球面波标记函数的球形几何中布洛赫NMR扩散方程的解析解,对于在相关边界条件下正确分析和监测心脏的收缩和舒张变形很重要。在本研究中,我们应用谐波相位MRI方法,基于布洛赫NMR扩散方程计算标记和未标记的NMR横向磁化强度之间的差异,并获得用于分析心肌运动的径向波标记函数。本研究中开发的布洛赫NMR方程的解析解和心肌运动的计算模拟,旨在以最低成本显著改善医疗保健,以准确诊断、预测和治疗心血管相关疾病,因为MRI扫描在任何地方仍然是最昂贵的检查之一。该分析具有基础性和重要意义,因为所有磁共振成像技术都基于布洛赫NMR流动方程。