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Low-cost computing and network communication for a point-of-care device to perform a 3-part leukocyte differential

机译:用于护理点装置的低成本计算和网络通信,以执行3部分白细胞差分

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Point-of-care approaches for 3-part leukocyte differentials (granulocyte, monocyte, and lymphocyte), traditionally performed using a hematology analyzer within a panel of tests called a complete blood count (CBC), are essential not only to reduce cost but to provide faster results in low resource areas. Recent developments in lab-on-a-chip devices have shown promise in reducing the size and reagents used, relating to a decrease in overall cost. Furthermore, smartphone diagnostic approaches have shown much promise in the area of point-of-care diagnostics, but the relatively high per-unit cost may limit their utility in some settings. We present here a method to reduce computing cost of a simple epi-fluorescence imaging system using a Raspberry Pi (single-board computer, <$40) to perform a 3-part leukocyte differential comparable to results from a hematology analyzer. This system uses a USB color camera in conjunction with a leukocyte-selective vital dye (acridine orange) in order to determine a leukocyte count and differential from a low volume (<20 microliters) of whole blood obtained via fingerstick. Additionally, the system utilizes a "cloud-based" approach to send image data from the Raspberry Pi to a main server and return results back to the user, exporting the bulk of the computational requirements. Six images were acquired per minute with up to 200 cells per field of view. Preliminary results showed that the differential count varied significantly in monocytes with a 1 minute time difference indicating the importance of time-gating to produce an accurate/consist differential.
机译:3部分白细胞差异(粒细胞,单核细胞和淋巴细胞)的护理点方法,传统上使用血液学分析仪在称为完整血统计数(CBC)的面板内进行,这不仅是降低成本而是必不可少的在低资源区域提供更快的结果。实验室内器件的最新进程表明,在减少尺寸和试剂的情况下表明了与总体成本降低的尺寸和试剂。此外,智能手机诊断方法在护理点诊断区域中显示了很大的承诺,但相对较高的每单位成本可能会限制它们在某些设置中的实用程序。我们在此提出了一种方法,可以使用覆盆子PI(单板计算机,<40)来减少简单的EPI-荧光成像系统的计算成本,以执行与血液学分析仪的结果相当的3部分白细胞差异。该系统使用USB彩色相机与白细胞选择性生命染料(吖啶橙)结合,以确定通过Fingerstick获得的全血的低体积(<20微升)的白细胞计数和差异。此外,该系统利用“基于云的”方法来向主服务器发送从Raspberry PI的图像数据,并将结果返回给用户,导出大部分计算要求。每分钟收购六种图像,每个视野具有高达200个细胞的。初步结果表明,单核细胞中的差异计数在单核细胞中有显着变化,具有1分钟的时间差,表明时间门的重要性产生准确/组合差异。

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