Page 55 - 《中国医疗器械杂志》2026年第1期
P. 55

Chinese Journal of Medical Instrumentation                                         2026年 第50卷 第1期

                                                     研   究   与   论   著



                  Super-resolution  ultrasound  localization  microscopy  Freq Control, 2021, 68(6): 2141-2149.
                  through  deep  learning[J].  IEEE  Trans  Med  Imaging,  [29]   STANZIOLA A, LEOW C H, BAZIGOU E, et al. ASAP:
                  2021, 40(3): 829-839.                             supercontrast  vasculature  imaging  using  coherence
              [15]   ZENG Q Q, LIANG P. Super-resolution US imaging of  analysis  and  high  frame-rate  contrast  enhanced
                  focal  nodular  hyperplasia[J].  Radiology,  2024,  311(1):  ultrasound[J].  IEEE  Trans  Med  Imaging,  2018,  37(8):
                  e233130.                                          1847-1856.
              [16]   JENSEN J A, SCHOU M, ANDERSEN S B, et al. Super-  [30]   JENSEN  J  A.  A  new  estimator  for  vector  velocity
                  resolution ultrasound imaging using the erythrocytes-Part  estimation[J].  IEEE  Trans  Ultrason  Ferroelectr  Freq
                  I: density  images[J].  IEEE  Trans  Ultrason  Ferroelectr  Control, 2001, 48(4): 886-894.
                  Freq Control, 2024, 71(8): 925-944.           [31]   LEDOUX L A, BRANDS P J, HOEKS A P. Reduction of
              [17]   NAJI  M  A,  TAGHAVI  I,  SCHOU  M,  et  al.  Super-  the clutter component in Doppler ultrasound signals based
                  resolution ultrasound imaging using the erythrocytes-Part  on  singular  value  decomposition:  a  simulation  study[J].
                  Ⅱ: velocity  images[J].  IEEE  Trans  Ultrason  Ferroelectr  Ultrason Imaging, 1997, 19(1): 1-18.
                  Freq Control, 2024, 71(8): 925-944.           [32]   DEMENÉ  C,  DEFFIEUX  T,  PERNOT  M,  et  al.
              [18]   COUTURE  O,  BESSON  B,  MONTALDO  G,  et  al.  Spatiotemporal  clutter  filtering  of  ultrafast  ultrasound
                  Microbubble  ultrasound  super  localization  imaging  data  highly  increases  Doppler  and  fUltrasound
                  (MUSLI)[C]//  Proceedings  of  IEEE  International  sensitivity[J].  IEEE  Trans  Med  Imaging,  2015,  34(11):
                  Ultrasonics Symposium. 2011: 1285-1287.           2271-2285.
              [19]   SIEPMANN  M,  SCHMITZ  G,  BZYL  J,  et  al.  Imaging  [33]   杜宜纲, 朱磊, 李双双, 等. 血管超声成像之高级功能的
                  tumor  vascularity  by  tracing  single  microbubbles[C]//  技术特点与临床应用[J]. 应用声学, 2020, 39(6): 955-
                  Proceedings   of   IEEE   International   Ultrasonics  963.
                  Symposium. 2011: 1906-1909.                   [34]   JIANG L Y, CHU H B, YU J J, et al. Clutter filtering of
              [20]   BETZIG  E,  PATTERSON  G  H,  SOUGRAT  R,  et  al.  angular  domain  data  for  contrast-free  ultrafast
                  Imaging  intracellular  fluorescent  proteins  at  nanometer  microvascular  imaging[J].  Phys  Med  Biol,  2023,  69(1):
                  resolution[J]. Science, 2006, 313(5793): 1642-1645.  015006.
              [21]   MÖCKL L, LAMB D C, BRÄUCHL C. Super-resolved  [35]   LOK U W, SONG P F, TRZASKO J D, et al. Real time
                  fluorescence microscopy: Nobel prize in chemistry 2014  SVD-based  clutter  filtering  using  randomized  singular
                  for Eric Betzig, Stefan Hell, and William E. Moerner[J].  value decomposition and spatial downsampling for micro-
                  Angewandte Chemie International Edition, 2014, 53(51):  vessel  imaging  on  a  Verasonics  ultrasound  system[J].
                  13972-13977.                                      Ultrasonics, 2020, 107: 106163.
              [22]   DESAILLY  Y,  COUTURE  O,  FINK  M,  et  al.  Sono-  [36]   章希睿, 桑茂栋, 杜宜纲, 等. 奇异值分解滤波器在超声
                  activated  ultrasound  localization  microscopy[J].  Appl  造影成像的应用及性能分析[J]. 应用声学, 2021, 40(1):
                  Phys Lett, 2013, 103(17): 174107.                 89-96.
              [23]   CHRISTENSEN-JEFFRIES K, BROWNING R J, TANG  [37]   杜宜纲, 张梦一, 陈思平, 等. 基于低秩理论的超声血流
                  M X, et al. In vivo acoustic super-resolution and super-  壁滤波器[J]. 中国生物医学工程学报, 2016, 35(4): 394-
                  resolved  velocity  mapping  using  microbubbles[J].  IEEE  401.
                  Trans Med Imaging, 2015, 34(2): 433-440.      [38]   SUI Y H, YAN S Y, YU J J, et al. Randomized spatial
              [24]   FAVRE  H,  PERNOT  M,  TANTER  M,  et  al.  Boosting  downsampling-based  Cauchy-RPCA  clutter  filtering  for
                  transducer matrix sensitivity for 3D large field ultrasound  high-resolution  ultrafast  ultrasound  microvasculature
                  localization  microscopy  using  a  multi-lens  diffracting  imaging and functional imaging[J]. IEEE Trans Ultrason
                  layer: a simulation study[J]. Phys Med Biol, 2022, 67(8):  Ferroelectr Freq Control, 2022, 69(8): 2425-2436.
                  085009.                                       [39]   DENCKS  S,  SCHMITZ  G.  Ultrasound  localization
              [25]   GUO X Y, TA D, XU K L. Frame rate effects and their  microscopy[J]. Zeitschrift für Medizinische Physik, 2023,
                  compensation  on  super-resolution  microvessel  imaging  33: 292-308.
                  using ultrasound localization microscopy[J]. Ultrasonics,  [40]   LERENDEGUI M, RIEMER K, PAPAGEORGIOU G, et
                  2023, 132: 107009.                                al.  ULTRA-SR  challenge:  assessment  of  ultrasound
              [26]   YOU  Q,  LOWERISON  M  R,  SHIN  Y,  et  al.  Contrast-  localization  and  tracking  algorithms  for  super-resolution
                  free  super-resolution  power  Doppler  (CS-PD)  based  on  imaging[J]. IEEE Trans Med Imaging, 2024, 43(8): 2970-
                  deep neural networks[J]. IEEE Trans Ultrason Ferroelectr  2987.
                  Freq Control, 2023, 70(10): 1355-1368.        [41]   ACKERMANN D, SCHMITZ G. Detection and tracking
              [27]   CHEN Q Y, YU J, RUSH B M, et al. Ultrasound super-  of  multiple  microbubbles  in  ultrasound  B-mode
                  resolution imaging provides a noninvasive assessment of  images[J]. IEEE Trans Ultrason Ferroelectr Freq Control,
                  renal  microvasculature  changes  during  mouse  acute  2016, 63(1): 72-82.
                  kidney injury[J]. Kidney Int, 2020, 98(2): 355-365.  [42]   ASHIKUZZAMAN  M,  HELFIELD  B,  RIVAZ  H.
              [28]   SCHOEN S, ZHAO Z G, ALVA A, et al. Morphological  Analytic  optimization-based  microbubble  tracking  in
                  reconstruction  improves  microvessel  mapping  in  super-  ultrasound  super-resolution  microscopy[C]//  2022  IEEE
                  resolution ultrasound[J]. IEEE Trans Ultrason Ferroelectr  International Ultrasonics Symposium. 2022: 1-4.


                                                             51
   50   51   52   53   54   55   56   57   58   59   60