Siegel RL, Giaquinto AN, Jemal A (2024) Cancer statistics, 2024. CA Cancer J Clin 74:12–49
Yoon KH, Lee SJ, Kim Y et al (2023) A simplified risk scoring system for predicting high-risk groups in gene expression tests for patients with estrogen receptor-positive, human epidermal growth factor receptor 2-negative, and node-positive breast cancer. Ann Surg Treat Res 105:360–368
PubMed PubMed Central Google Scholar
Fisher B, Bauer M, Wickerham DL et al (1983) Relation of number of positive axillary nodes to the prognosis of patients with primary breast cancer. An NSABP update. Cancer 52:1551–1557
Tanis PJ, Nieweg OE, Valdes Olmos RA, Th Rutgers EJ, Kroon BB (2001) History of sentinel node and validation of the technique. Breast Cancer Res 3:109–112
PubMed PubMed Central CAS Google Scholar
Rashid OM, Takabe K (2012) Sentinel lymph node biopsy for breast cancer: our technique and future directions in lymph node staging. J Nucl Med Radiat Ther 2012:005
Chen M, Li S, Huang M et al (2022) Improved false-negative rates using a novel patient selection flowchart in initially biopsy-proven node-positive breast cancer undergoing blue-dye alone guided sentinel lymph node biopsy after neoadjuvant chemotherapy. Breast Cancer Res Treat 196:267–277
Kuehn T, Bauerfeind I, Fehm T et al (2013) Sentinel-lymph-node biopsy in patients with breast cancer before and after neoadjuvant chemotherapy (SENTINA): a prospective, multicentre cohort study. Lancet Oncol 14:609–618
Inoue T, Nishi T, Nakano Y et al (2016) Axillary lymph node recurrence after sentinel lymph node biopsy performed using a combination of indocyanine green fluorescence and the blue dye method in early breast cancer. Breast Cancer 23:295–300
Bargon CA, Huibers A, Young-Afat DA et al (2022) Sentinel lymph node mapping in breast cancer patients through fluorescent imaging using indocyanine green: the INFLUENCE trial. Ann Surg 276:913–920
Omoto K, Futsuhara K, Watanabe T (2023) Sentinel lymph node identification using contrast-enhanced ultrasound in breast cancer: review of the literature. J Med Ultrason. https://doi.org/10.1007/s10396-023-01313-y
Opacic T, Dencks S, Theek B et al (2018) Motion model ultrasound localization microscopy for preclinical and clinical multiparametric tumor characterization. Nat Commun 9:1527
PubMed PubMed Central Google Scholar
Song P, Rubin JM, Lowerison MR (2023) Super-resolution ultrasound microvascular imaging: is it ready for clinical use? Z Med Phys 33:309–323
PubMed PubMed Central Google Scholar
Zheng YH, Zhou JQ (2024) Deep learning in ultrasound localization microscopy. Adv Ultrasound Diagn Ther 8:86–92
Demene C, Robin J, Dizeux A et al (2021) Transcranial ultrafast ultrasound localization microscopy of brain vasculature in patients. Nat Biomed Eng 5:219–228
PubMed PubMed Central Google Scholar
Andersen SB, Taghavi I, Hoyos CAV et al (2020) Super-resolution imaging with ultrasound for visualization of the renal microvasculature in rats before and after renal ischemia: a pilot study. Diagnostics (Basel) 10:862
Yi HM, Lowerison MR, Song PF, Zhang W (2022) A review of clinical applications for super-resolution ultrasound localization microscopy. Curr Med Sci 42:1–16
Zhang G, Lei YM, Li N et al (2022) Ultrasound super-resolution imaging for differential diagnosis of breast masses. Front Oncol 12:1049991
PubMed PubMed Central Google Scholar
Gu Y, Xu W, Liu T et al (2022) Ultrasound-based deep learning in the establishment of a breast lesion risk stratification system: a multicenter study. Eur Radiol. https://doi.org/10.1007/s00330-022-09263-8
Chung HL, Le-Petross HT, Leung JWT (2021) Imaging updates to breast cancer lymph node management. Radiographics 41:1283–1299
Choi HY, Park M, Seo M, Song E, Shin SY, Sohn YM (2017) Preoperative axillary lymph node evaluation in breast cancer: current issues and literature review. Ultrasound Q 33:6–14
Aoki T, Moriyasu F, Yamamoto K, Shimizu M, Yamada M, Imai Y (2011) Image of tumor metastasis and inflammatory lymph node enlargement by contrast-enhanced ultrasonography. World J Radiol 3:298–305
PubMed PubMed Central Google Scholar
Niu Z, Gao Y, Xiao M et al (2023) Contrast-enhanced lymphatic US can improve the preoperative diagnostic performance for sentinel lymph nodes in early breast cancer. Eur Radiol 33:1593–1602
Ji RC (2016) Lymph nodes and cancer metastasis: new perspectives on the role of intranodal lymphatic sinuses. Int J Mol Sci 18:51
Yin T, Ji XL, Shen MS (2003) Relationship between lymph node sinuses with blood and lymphatic metastasis of gastric cancer. World J Gastroenterol 9:40–43
PubMed PubMed Central Google Scholar
Leong SP, Naxerova K, Keller L, Pantel K, Witte M (2022) Molecular mechanisms of cancer metastasis via the lymphatic versus the blood vessels. Clin Exp Metastasis 39:159–179
Comments (0)