Forouzan Omid, Flink Evan, Warczytowa Jared, Thate Nick, Hanske Andrew, Lee Tongkeun, Roldan-Alzate Alejandro, François Chris, Wieben Oliver, Chesler Naomi C
Department of Biomedical Engineering, University of Wisconsin-Madison , Engineering Centers Building, 1550 Engineering Drive, Madison, WI 53706 e-mail:
Department of Medical Physics, Wisconsin Institutes for Medical Research , 1111 Highland Avenue, Madison, WI 53705-2275 ;
J Med Device. 2014 Dec;8(4):0450021-450028. doi: 10.1115/1.4027343. Epub 2014 Aug 19.
Cardiovascular disease is the leading cause of death worldwide. Many cardiovascular diseases are better diagnosed during a cardiac stress test. Current approaches include either exercise or pharmacological stress echocardiography and pharmacological stress magnetic resonance imaging (MRI). MRI is the most accurate noninvasive method of assessing cardiac function. Currently there are very few exercise devices that allow collection of cardiovascular MRI data during exercise. We developed a low-cost exercise device that utilizes adjustable weight resistance and is compatible with magnetic resonance (MR) imaging. It is equipped with electronics that measure power output. Our device allows subjects to exercise with a leg-stepping motion while their torso is in the MR imager. The device is easy to mount on the MRI table and can be adjusted for different body sizes. Pilot tests were conducted with 5 healthy subjects (3 male and 2 female, 29.2 ± 3.9 yr old) showing significant exercise-induced changes in heart rate (+42%), cardiac output (+40%) and mean pulmonary artery (PA) flow (+%49) post exercise. These data demonstrate that our MR compatible stepper exercise device successfully generated a hemodynamically stressed state while allowing for high quality imaging. The adjustable weight resistance allows exercise stress testing of subjects with variable exercise capacities. This low-cost device has the potential to be used in a variety of pathologies that require a cardiac stress test for diagnosis and assessment of disease progression.
心血管疾病是全球主要的死亡原因。许多心血管疾病在心脏压力测试中能得到更好的诊断。目前的方法包括运动或药物负荷超声心动图以及药物负荷磁共振成像(MRI)。MRI是评估心脏功能最准确的非侵入性方法。目前很少有运动设备能够在运动过程中收集心血管MRI数据。我们开发了一种低成本的运动设备,它利用可调节的重量阻力,并且与磁共振(MR)成像兼容。它配备了测量功率输出的电子设备。我们的设备允许受试者在其躯干位于MR成像仪内时以腿部踏步运动的方式进行锻炼。该设备易于安装在MRI检查台上,并且可以针对不同的身体尺寸进行调整。对5名健康受试者(3名男性和2名女性,年龄29.2±3.9岁)进行了初步测试,结果显示运动后心率(+42%)、心输出量(+40%)和平均肺动脉(PA)血流量(+49%)有显著的运动诱发变化。这些数据表明,我们的与MR兼容的踏步运动设备在允许进行高质量成像的同时,成功地产生了血流动力学应激状态。可调节的重量阻力允许对具有不同运动能力的受试者进行运动压力测试。这种低成本设备有潜力用于各种需要进行心脏压力测试以诊断和评估疾病进展的病症。