Karkouri Jabrane, Watson Will, Forner Ria, Weir-McCall Jonathan R, Horn Tracy, Hill Marion, Hoole Stephen, Klomp Dennis, Rodgers Christopher T
Wolfson Brain Imaging Centre, University of Cambridge, Cambridge, UK.
Department of Cardiovascular Medicine, University of Cambridge, Cambridge, UK.
Magn Reson Med. 2025 Aug;94(2):480-496. doi: 10.1002/mrm.30492. Epub 2025 Mar 23.
We introduce a novel commercial phosphorus-31 (P) dipole-loop array coil, describing the coil hardware and testing its performance on phantoms. We used this coil to assess cardiac metabolism per region in healthy volunteers.
B field maps were simulated and compared to maps measured with a set of CSI sequences with varying voltages. Seventeen volunteers were scanned with 7 T phosphorus-31 magnetic resonance spectroscopic imaging (P-MRSI). Reproducibility was assessed in nine of these volunteers. Strain was measured for six of these volunteers at 3 T.
Blood- and saturation-corrected Phosphocreatine/γ-adenosine triphosphate (PCr/ATP) ratios were measured for four regions of the left ventricle: 1.86 in septum, 2.25 in anterior wall, 1.41 in inferior wall, and 1.53 in lateral wall, respectively. These are in the expected range compared to previous studies. B maps show good signal uniformity around the position of the heart (0.13 ± 0.06 μT/sqrt(W)). Intrasession and intersession coefficients of reproducibility were 0.22-0.88 and 0.29-0.79, respectively. Linear modeling shows that regional PCr/γATP correlates with circumferential strain but not radial strain. This requires corroboration by a larger study including patients with impaired function and energetics.
Dipole-loop array coils present a promising new approach for human cardiac P-MRSI at 7 T. Their favorable B uniformity at depth and specific absorption rate over loop arrays and improved SNR when combined with loops for reception could be beneficial for further clinical studies measuring energetics by P-MRSI at 7 T. The new capability to assess PCr/γATP ratios across the whole left ventricle could enable clinical studies to investigate regional changes in cardiac energetics for the first time.
我们介绍一种新型的商用磷 - 31(P)偶极 - 环形阵列线圈,描述该线圈硬件并在体模上测试其性能。我们使用此线圈评估健康志愿者心脏各区域的代谢情况。
模拟了B场图,并与用一组不同电压的化学位移成像(CSI)序列测量的图进行比较。17名志愿者接受了7T磷 - 31磁共振波谱成像(P - MRSI)扫描。其中9名志愿者评估了可重复性。6名志愿者在3T时测量了应变。
测量了左心室四个区域经血液和饱和校正后的磷酸肌酸/γ - 三磷酸腺苷(PCr/ATP)比值:室间隔为1.86,前壁为2.25,下壁为1.41,侧壁为1.53。与先前研究相比,这些值在预期范围内。B场图显示心脏位置周围信号均匀性良好(0.13±0.06μT/√W)。扫描内和扫描间的可重复性系数分别为0.22 - 0.88和0.29 - 0.79。线性模型显示,区域PCr/γATP与圆周应变相关,但与径向应变无关。这需要通过包括功能和能量学受损患者的更大规模研究来证实。
偶极 - 环形阵列线圈为7T人体心脏P - MRSI提供了一种有前景的新方法。它们在深度上具有良好的B场均匀性、比环形阵列更低的比吸收率,并且与用于接收的环形线圈组合时具有更高的信噪比,这可能有利于进一步通过7T的P - MRSI测量能量学的临床研究。评估整个左心室PCr/γATP比值的新能力首次使临床研究能够研究心脏能量学的区域变化。