首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Detection of lactate with a hadamard slice selected, selective multiple quantum coherence, chemical shift imaging sequence (HDMD-SelMQC-CSI) on a clinical MRI scanner: Application to tumors and muscle ischemia.
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Detection of lactate with a hadamard slice selected, selective multiple quantum coherence, chemical shift imaging sequence (HDMD-SelMQC-CSI) on a clinical MRI scanner: Application to tumors and muscle ischemia.

机译:在临床MRI扫描仪上使用选择的哈达玛切片,选择性多量子相干,化学位移成像序列(HDMD-SelMQC-CSI)检测乳酸:在肿瘤和肌肉缺血中的应用。

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摘要

Lactate is an important metabolite in normal and malignant tissues detectable by NMR spectroscopy; however, it has been difficult to clinically detect the lactate methyl resonance because it is obscured by lipid resonances. The selective homonuclear multiple quantum coherence transfer technique offers a method for distinguishing lipid and lactate resonances. We implemented a three-dimensional selective homonuclear multiple quantum coherence transfer version with Hadamard slice selection and two-dimensional phase encoding (Hadamard encoded-selective homonuclear multiple quantum coherence transfer-chemical shift imaging) on a conventional clinical MR scanner. Hadamard slice selection is explained and demonstrated in vivo. This is followed by 1-cm(3) resolution lactate imaging with detection to 5-mM concentration in 20 min on a 3-T clinical scanner. An analysis of QSel gradient duration and amplitude effects on lactate and lipid signal is presented. To demonstrate clinical feasibility, a 5-min lactate scan of a patient with a non-Hodgkin's lymphoma in the superficial thigh is reported. The elevated lactate signal coincides with the T(2)-weighted image of this tumor. As a test of selective homonuclear multiple quantum coherence transfer sensitivity, a thigh tourniquet was applied to a normal volunteer and an increase in lactate was detected immediately after tourniquet flow constriction. In conclusion, the Hadamard encoded-selective homonuclear multiple quantum coherence transfer-chemical shift imaging sequence is demonstrated on a phantom and in two lipid-rich, clinically relevant, in vivo conditions.
机译:乳酸盐是在正常和恶性组织中可通过NMR光谱检测到的重要代谢物;但是,由于脂质共振掩盖了乳酸甲基共振,因此临床上难以检测出乳酸甲基共振。选择性同核多量子相干转移技术提供了一种区分脂质和乳酸共振的方法。我们在常规的MR扫描仪上实现了具有Hadamard切片选择和二维相位编码(Hadamard编码的选择性同核多量子相干转移-化学位移成像)的三维选择性同核多量子相干转移版本。 Hadamard切片的选择在体内得到解释和证明。随后进行1-cm(3)分辨率的乳酸盐成像,并在3-T临床扫描仪上在20分钟内检测到5-mM浓度。分析了QSel梯度持续时间和幅度对乳酸和脂质信号的影响。为了证明临床可行性,据报道对大腿浅表非霍奇金淋巴瘤患者进行了5分钟的乳酸扫描。乳酸信号升高与该肿瘤的T(2)加权图像重合。作为对选择性同核多量子相干转移敏感性的测试,将大腿止血带应用于正常志愿者,并在止血带流量紧缩后立即检测到乳酸增加。总之,在模体上和在两种富含脂质,临床相关的体内条件下证明了Hadamard编码的选择性同核多量子相干转移-化学位移成像序列。

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