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Development of Pathology Specimen Preparation Method by Supercooling Cryopreservation under Magnetic Field

机译:磁场下过冷冷冻保存病理标本的方法开发

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Brain tumors have the highest incidence of childhood solid can cers and they also have the highest mortality rate among childhood cancers. One fa ctor cited for improved prognosis in cancer is improvement in surgical extraction rate, but types of childhood brain tumors are more diverse in comparison to tho se of adults, and it is at present exceedingly difficult for even an experienced pathologist to perform an accurate diagnosis. We have developed a technique for freezing under magnetic field for the purpose of internal organ cryopreservation, and we cond ucted this study after considering that this freezing technique could be useful for ra pid diagnosis utilizing frozen tissue during surgery. Results showed the arrangement of neurons to be in much better order with brain tissue frozen under magnetic field than that which was frozen by liquid nitrogen. For pancreatic tissue, it was found that in sulin staining was clearer for freezing performed under magnetic field than with liquid nitrogen. In short, we found that this technique is not simply for the preservation of tissu e, but has the potential to improve the accuracy of pathological diagnosis and surgical ext raction rate as well as limiting chemotherapy and radiation therapy. This is the principal outcome that will contribute to an improved quality of life (QOL) for childhood cancer patients.
机译:脑肿瘤在儿童期癌症中发病率最高,在儿童期癌症中死亡率也最高。改善癌症预后的一个因素是手术拔牙率的提高,但是与成年人相比,儿童脑肿瘤的类型更加多样化,而且即使是经验丰富的病理学家目前也很难进行准确的诊断。我们已经开发出一种用于内部器官冷冻保存的磁场下冷冻技术,并考虑到该冷冻技术可用于外科手术中利用冷冻组织的快速诊断,因此进行了这项研究。结果表明,在磁场下冷冻的脑组织比在液氮下冷冻的神经元排列更好。对于胰腺组织,发现在胰岛素中,与在液氮下相比,在磁场下进行冷冻更清晰。简而言之,我们发现该技术不仅用于保存组织,而且具有提高病理诊断和手术切除率以及限制化学疗法和放射疗法的准确性的潜力。这是主要结果,将有助于改善儿童期癌症患者的生活质量(QOL)。

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