Sanal Hatice T, Bae Won C, Pauli Chantal, Du Jiang, Statum Sheronda, Znamirowski Richard, Sah Robert L, Chung Christine B
Department of Radiology, Gulhane Military Medical Faculty, Ankara, Turkey.
J Orofac Pain. 2011 Fall;25(4):345-53.
To use the ultrashort time-to-echo magnetic resonance imaging (UTE MRI) technique to quantify short T2* properties (obtained through gradient echo) of a disc from the human temporomandibular joint (TMJ) and to corroborate regional T2* values with biomechanical properties and histologic appearance of the discal tissues.
A cadaveric human TMJ was sliced sagittally and imaged by conventional and UTE MRI techniques. The slices were then subjected to either biomechanical indentation testing or histologic evaluation, and linear regression was used for comparison to T2* maps obtained from UTE MRI data. Feasibility of in vivo UTE MRI was assessed in two human volunteers.
The UTE MRI technique of the specimens provided images of the TMJ disc with greater signal-to-noise ratio (~3 fold) and contrast against surrounding tissues than conventional techniques. Higher T2* values correlated with lower indentation stiffness (softer) and less collagen organization as indicated by polarized light microscopy. T2* values were also obtained from the volunteers.
UTE MRI facilitates quantitative characterization of TMJ discs, which may reflect structural and functional properties related to TMJ dysfunction.
运用超短回波时间磁共振成像(UTE MRI)技术量化人颞下颌关节(TMJ)椎间盘的短T2特性(通过梯度回波获得),并将椎间盘组织的区域T2值与生物力学特性和组织学外观进行对比。
将一具尸体的人颞下颌关节矢状切片,采用传统MRI技术和UTE MRI技术进行成像。然后对切片进行生物力学压痕测试或组织学评估,并使用线性回归与从UTE MRI数据获得的T2*图进行比较。在两名人类志愿者中评估了体内UTE MRI的可行性。
与传统技术相比,标本的UTE MRI技术提供的颞下颌关节盘图像具有更高的信噪比(约3倍)和与周围组织的对比度。较高的T2值与较低的压痕硬度(较软)和偏振光显微镜显示的较少胶原组织相关。还从志愿者身上获得了T2值。
UTE MRI有助于对颞下颌关节盘进行定量表征,这可能反映与颞下颌关节功能障碍相关的结构和功能特性。