Page 90 - 《南京医科大学学报》自然科学版2026年第2期
P. 90

第46卷第2期
               ·246 ·                            南 京    医 科 大 学 学         报                        2026年2月


              认为Nread选择144更为合适。                                 [7] LIN Y,TAN E T,CAMPBELL G,et al. How I do it:three⁃
                  利益冲突声明:                                            dimensional MR neurography and zero echo time MRI for
                  全体作者均声明无利益冲突。                                      rendering of peripheral nerve and bone[J]. Radiology,
                  Conflict of Interests:                             2025,316(1):e241604
                  All authors declare that they have no conflict of interests.  [8] PENG L,PAN X,LIANG H,et al. Deep learning recon⁃
                  作者贡献声明:                                            struction enhances bone visualization in zero echo time
                  孙仪起草和撰写稿件,获取、分析和解释本研究的数据;                          MRI for cervical spondylosis:a prospective study[J]. Eur
              徐露露设计本研究的方案,分析和解释本研究的数据,对稿                             J Radiol,2025,191:112310
              件重要内容进行了修改;吴仆射分析、解释本研究的数据。                        [9] FERREIRA BRANCO D,BOUREDOUCEN H,HAMARD
              邹月芬设计本研究的方案,对稿件重要内容进行了修改。                              M,et al. mFFE CT⁃like MRI sequences for the assessment
                  Author’s Contributions:                            of vertebral fractures[J]. Diagnostics,2024,14(21):2434
                  SUN Yi drafted and wrote the manuscript,as well as ob⁃  [10]KRONTHALER S,BOEHM C,FEUERRIEGEL G,et al.
              tained,analyzed and interpreted the data of this research;XU  Assessment of vertebral fractures and edema of the thora⁃
              Lulu designed the research protocol,analyzed and interpreted  columbar spine based on water ⁃ fat and susceptibility ⁃
              the data of this research,and revised the important content of  weighted images derived from a single ultra ⁃ short echo
              the manuscript;WU Pushe analyzed and interpreted the data of  time scan[J]. Magn Reson Med,2022,87(4):1771-1783
              this research. ZOU Yuefen designed the research protocol and  [11]WANG Q,XING X,ZHANG Z,et al. Added value of 3D
              revised the important content of the manuscript.       fast⁃field⁃echo(FRACTURE)sequences for cervical spon⁃
                                                                     dylosis diagnosis:a prospective multi⁃reader non⁃inferiority
             [参考文献]
                                                                     study[J]. Insights Imaging,2025,16(1):114
             [1] KIM G U,CHANG M C,KIM T U,et al. Diagnostic mo⁃  [12]CAFFARD T,CHIAPPARELLI E,ARZANI A,et al.
                   dality in spine disease:a review[J]. Asian Spine J,2020,  Diagnosis and evaluation of cervical ossification of the
                   14(6):910-920                                     posterior longitudinal ligament on zero echo time magnet⁃
             [2] 倪    婷,徐    磊,冯   阳,等. 腰椎终板Modic 改变与椎               ic resonance imaging:an illustrative case series[J]. Eur J
                   间盘退变对应关系及二者与下腰痛关系的分析[J]. 南                        Orthop Surg Traumatol,2024,35(1):9
                   京医科大学学报(自然科学版),2019,39(2):237-241            [13]HUTCHINS J,LAGERSTRAND K,HEBELKA H,et al.
                   NI T,XU L,FENG Y,et al. The matched association be⁃  Evaluation of cervical vertebral motion and foraminal
                   tween modic changes with lumbar disc degeneration and  changes during the spurling test using zero echo time mag⁃
                   their association with low back pain[J]. Journal of Nan⁃  netic resonance imaging and computed tomography⁃based
                   jing Medical University(Natural Sciences),2019,39(2):  micromotion analysis[J]. Spine,2024,49(14):E221-

                   237-241                                           E228
             [3] 秦    朗,时   寅,刘继永,等. 磁共振扩散张量成像定量                [14]HOU B,LIU C,LI Y,et al. Evaluation of the degenerative
                   评估腰骶神经根压迫症[J]. 南京医科大学学报(自然                        lumbar osseous morphology using zero echo time magnet⁃
                   科学版),2018,38(12):1715-1719                        ic resonance imaging(ZTE⁃MRI)[J]. Eur Spine J,2022,
                   QIN L,SHI Y,LIU J Y,et al. Diffusion tensor imaging  31(3):792-800
                   with quantitative evaluation in lumbosacral radiculopa⁃  [15]KANIEWSKA M,KUHN D,DEININGER⁃CZERMAK E,
                   thy[J]. Journal of Nanjing Medical University(Natural  et al. 3D zero⁃echo time and 3D T1⁃weighted gradient⁃
                   Sciences),2018,38(12):1715-1719                   echo MRI sequences as an alternative to CT for the evalu⁃
             [4] ALY M M,SOLIMAN Y,ELEMAM R A,et al. How fre⁃        ation of the lumbar facet joints and lumbosacral transitional
                   quently MRI modifies thoracolumbar fractures’classifica⁃  vertebrae[J]. Acta Radiol,2023,64(6):2137-2144
                   tion or decision⁃making? A systematic review and meta⁃  [16]LECOUVET F E,ZAN D,LEPOT D,et al. MRI⁃based zero
                   analysis[J]. Eur Spine J,2024,33(4):1540-1549     echo time and black bone pseudo ⁃ CT compared with
             [5] AYDINGÖZ Ü,YILDIZ A E,ERGEN F B. Zero echo time     whole⁃body CT to detect osteolytic lesions in multiple my⁃
                   musculoskeletal MRI:technique,optimization,applica⁃  eloma[J]. Radiology,2024,313(1):e231817
                   tions,and pitfalls[J]. Radiographics,2022,42(5):1398-  [17]AFSAHI A M,LOMBARDI A F,WEI Z,et al. High⁃con⁃
                   1414                                              trast lumbar spinal bone imaging using a 3D slab⁃selec⁃
             [6] TSUCHIYA K,GOMYO M,KATASE S,et al. Magnetic         tive UTE sequence[J]. Front Endocrinol,2022,12:800398
                   resonance bone imaging :applications to vertebral  [18]ZHAN Y,LI X,YANG X,et al. Optimization and applica⁃
                   lesions[J]. Jpn J Radiol,2023,41(11):1173-1185                              (下转第261页)
   85   86   87   88   89   90   91   92   93   94   95