[1] 刘兆会,赵鹏飞,王国鹏,等. 颞骨双期增强CT诊断搏动性耳鸣病因的价值研究[J]. 中华医学杂志,2013,93(33):2613-2616. [2] Wang Z, Huang Z, Zhang L, et al. Low dose reconstruction algorithm for differential phase contrast imaging[J]. J Xray Sci Technol, 2011, 19(3):403-415. [3] 王振常,罗德红,沙炎,等. 搏动性耳鸣影像学检查方法与路径指南[J]. 中华医学杂志,2013,93(33):2611-2612. [4] Liu Z, Chen C, Wang Z, et al. Petrosquamosal sinus in the temporal bone as a cause of pulsatile tinnitus:a radiological detection[J]. Clin Imaging, 2013, 37(3):561-563. [5] Liu Z, Chen C, Wang Z, et al. Sigmoid sinus diverticulum and pulsatile tinnitus:analysis of CT scans from 15 cases[J]. Acta Radiol, 2013, 54(7):812-816. [6] Wang G P, Zeng R, Liu Z H, et al. Clinical characteristics of pulsatile tinnitus caused by sigmoid sinus diverticulum and wall dehiscence:a study of 54 patients[J]. Acta Otolaryngol, 2014, 134(1):7-13. [7] Han L, Zhaohui L, Fei Y,et al. Abnormal baseline brain activity in patients with pulsatile tinnitus:a resting-state FMRI study[J]. Neural Plast, 2014, 2014:549162. [8] Lv H, Zhao P, Liu Z,et al. Abnormal regional activity and functional connectivity in resting-state brain networks associated with etiology confirmed unilateral pulsatile tinnitus in the early stage of disease[J]. Hear Res, 2017, 346:55-61. [9] Zheng W, Peng Z, Pengfei Z,et al. Long-term reactions to pulsatile tinnitus are marked by weakened short-range functional connectivity within a brain network in the right temporal lobe[J]. J Magn Reson Imaging, 2019, 49(6):1629-1637. [10] Liu Y, Niu H, Zhu J,et al. Morphological neuroimaging biomarkers for tinnitus:evidence obtained by applying machine learning[J]. Neural Plast, 2019, 2019:1712342. [11] Dong C, Zhao P F, Yang J G,et al. Incidence of vascular anomalies and variants associated with unilateral venous pulsatile tinnitus in 242 patients based on dual-phase contrast-enhanced computed tomography[J]. Chin Med J (Engl), 2015, 128(5):581-585. [12] Liu Z, Bi W, Li J,et al. Superior semicircular canal dehiscence in relation to the superior petrosal sinus:a potential cause of pulsatile tinnitus[J]. Clin Radiol, 2015, 70(9):943-947. [13] Shi W, Sabel B A, Walter M,et al. Quantification of the human lateral geniculate nucleus in vivo using MR imaging based on morphometry:volume loss with age[J]. AJNR, 2012, 33(5):915-921. [14] Zhang Y Q, Xu L, Jonas J B,et al. Anterior visual pathway assessment by magnetic resonance imaging in normal-pressure glaucoma[J]. Acta Ophthalmologica, 2012, 90(4):e295-e302. [15] 鲜军舫,王振常,满凤媛,等. 正常成人活体视神经的MRI研究[J]. 中国医学影像技术,2003,19(4):405-407. [16] 燕飞,李静,刘守彬,等. 视神经炎的磁共振成像与视觉诱发电位的对比研究[J]. 眼科,2007,16(5):319-322. [17] Li M, Li J, He H, et al. Directional diffusivity changes in the optic nerve and optic radiation in optic neuritis[J]. Br J Radiol, 2011, 84(1000):304-314. [18] Li J, Shi W, Li M,et al. Time-dependent diffusion tensor changes of optic nerve in patients with indirect traumatic optic neuropathy[J].Acta Radiol, 2014,55(7):855-863. [19] 李静,李猛,王振常,等. 不同时期特发性脱髓鞘性视神经炎视神经扩散张量成像研究[J]. 眼科,2010,19(4):244-249. [20] 王振常,燕飞,田其昌,等. 423例眼眶骨折的CT研究[J]. 中华放射学杂志,1995, 29(2):89-94. [21] 王振常,宋维贤,鲜军舫,等. 眼眶外伤后失明原因的CT研究[J]. 中华放射学杂志,1996, 30(2):25-28. [22] 王振常,宋维贤,兰宝森,等. 视神经管骨折的CT诊断[J]. 中国医学影像学杂志,1996, 4(1):7-8, 23. [23] 李志欣,兰宝森,王振常,等. 眼眶骨折与眼球运动障碍关系的CT研究[J]. 眼科,1996,5(1):13-16. [24] 胡凌,鲜军舫,陈青华,等. 视力下降患者MRI分析[J]. 放射学实践,2011,26(3):248-251. [25] 张征宇,杨本涛,王振常,等. 与复视相关影像学改变探讨[J]. 中国医学影像技术,2004,20(2):196-198. [26] 中华医学会放射学分会头颈学组. 眼部CT和MRI检查及诊断专家共识[J]. 中华放射学杂志,2017,51(9):648-653. [27] Zhang Z, Yin H, Wang Z, et al. Imaging re-evaluation of the tympanic segment of the facial nerve canal using cone-beam computed tomography compared with multi-slice computed tomography. European archives of oto-rhino-laryngology[J]. EUFOS, 2019, 276(7):1933-1941. [28] 王争,尹红霞,张征宇,等. 锥形束CT与多层螺旋CT对前庭导水管显示能力的比较分析[J]. 中华医学杂志,2018,98(41):3328-3331. [29] 尹红霞,赵鹏飞,张康平,等. 新研制颞骨专用CT设备对颞骨精细骨解剖显示能力的实验研究[J]. 中华放射学杂志,2020,54(8):763-768. |