Gorti Viswanath, Subramanian Ajay Rajaraman, Ojaghi Ashkan, Nsonwu-Farley Joseph, Tran Reginald, Williams Evelyn Kendall, Torres Omar, Aljudi Ahmed, Aumann Waitman, Robles Francisco E
Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, Georgia.
Department of Pathology, Children's Healthcare of Atlanta, Atlanta, Georgia.
Lab Invest. 2025 May;105(5):104102. doi: 10.1016/j.labinv.2025.104102. Epub 2025 Feb 3.
Bone marrow aspirations are pivotal for diagnosing and monitoring various hematological conditions, including cancers. However, a significant portion (10%-50%) of aspirations yield suboptimal or inadequate diagnostic material. The difficulty and scarcity of bedside adequacy assessment strategies further exacerbate the challenges in this procedure, which can consequently lead to delays in diagnosis and treatment, among other complications. To address this unmet clinical need, we apply deep UV microscopy, a real-time, low-cost, label-free molecular imaging technology that recapitulates the appearance of Giemsa stains. We present results from a prospective clinical study comprising 51 pediatric oncology patients, where the deep UV images of unstained bone marrow aspirate smears are evaluated and compared with the clinical standard of care (a hematopathologist inspection of the same slides after Giemsa staining). Results show that both real-time visual UV inspection and an automated classification algorithm applied to the unstained deep UV images achieve accurate adequacy assessment, with accuracies of 94.1% and 95.7%, respectively. Additionally, we demonstrate whole-slide imaging of bone marrow aspirate smears using a compact and low-cost deep UV microscope that is well suited for point-of-care use. Together, this work has significant implications for improving bone marrow aspirations and the clinical management of many hematological patients.
骨髓穿刺对于诊断和监测包括癌症在内的各种血液疾病至关重要。然而,相当一部分(10%-50%)的穿刺获取的诊断材料并不理想或不足。床边充分性评估策略的困难和稀缺进一步加剧了这一操作中的挑战,进而可能导致诊断和治疗延迟以及其他并发症。为满足这一未被满足的临床需求,我们应用了深紫外显微镜技术,这是一种实时、低成本、无标记的分子成像技术,能够重现吉姆萨染色的外观。我们展示了一项针对51名儿科肿瘤患者的前瞻性临床研究结果,其中对未染色的骨髓穿刺涂片的深紫外图像进行了评估,并与临床标准护理(血液病理学家对吉姆萨染色后的同一张玻片进行检查)进行了比较。结果表明,对未染色的深紫外图像进行实时视觉检查和应用自动分类算法均能实现准确的充分性评估,准确率分别为94.1%和95.7%。此外,我们展示了使用一种紧凑且低成本的深紫外显微镜对骨髓穿刺涂片进行全玻片成像,这种显微镜非常适合床边使用。总之,这项工作对改进骨髓穿刺以及许多血液疾病患者的临床管理具有重要意义。