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1.
《European journal of surgical oncology》2022,48(11):2346-2351
In the pelvis, anatomic complexity and difficulty in visualization and access make surgery a formidable task. Surgeons are prone to work-related musculoskeletal injuries from the frequently poor design and flow of their work environment. This is exacerbated by the strain of surgery in the pelvis. These injuries can result in alterations to a surgeons practice, inadvertent patient injury, and even early retirement. Human factors examines the relationships between the surgeon, their instruments and their environment. By bridging physiology, psychology, and ergonomics, human factors allows a better understanding of some of the challenges posed by pelvic surgery. The operative approach involved (open, laparoscopic, robotic, or perineal) plays an important role in the relevant human factors. Improved understanding of ergonomics can mitigate these risks to surgeons. Other human factors approaches such as standardization, use of checklists, and employing resiliency efforts can all improve patient safety in the operating theatre. 相似文献
2.
生理电信号作为生物医学工程中的重要信号,其中蕴含了丰富的人体信息。该研究以生理电信号为主线,通过对其信号的学习、获取、分析、处理将生物医学工程的专业课串联起来,使学生将专业知识和实际仪器设计分析结合起来,能较为全面的掌握信号与系统方面的知识,加强学生的实际分析和解决医学问题的能力。 相似文献
3.
With the advance of genome engineering technology, chimeric antigen receptors (CARs)-based immunotherapy has become an emerging therapeutic strategy for tumors. Although initially designed for T cells in tumor immunotherapy, CARs have been exploited to modify the function of natural killer (NK) cells against a variety of tumors, including hepatocellular carcinoma (HCC). CAR-NK cells have the potential to sufficiently kill tumor antigen-expressing HCC cells, independent of major histocompatibility complex matching or prior priming. In this review, we summarize the recent advances in genetic engineering of CAR-NK cells against HCC and discuss the current challenges and prospects of CAR-NK cells as a revolutionary cellular immunotherapy against HCC. 相似文献
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Arterial spin labeling (ASL) imaging is a powerful magnetic resonance imaging technique that allows to quantitatively measure blood perfusion non-invasively, which has great potential for assessing tissue viability in various clinical settings. However, the clinical applications of ASL are currently limited by its low signal-to-noise ratio (SNR), limited spatial resolution, and long imaging time. In this work, we propose an unsupervised deep learning-based image denoising and reconstruction framework to improve the SNR and accelerate the imaging speed of high resolution ASL imaging. The unique feature of the proposed framework is that it does not require any prior training pairs but only the subject's own anatomical prior, such as T1-weighted images, as network input. The neural network was trained from scratch in the denoising or reconstruction process, with noisy images or sparely sampled k-space data as training labels. Performance of the proposed method was evaluated using in vivo experiment data obtained from 3 healthy subjects on a 3T MR scanner, using ASL images acquired with 44-min acquisition time as the ground truth. Both qualitative and quantitative analyses demonstrate the superior performance of the proposed txtc framework over the reference methods. In summary, our proposed unsupervised deep learning-based denoising and reconstruction framework can improve the image quality and accelerate the imaging speed of ASL imaging. 相似文献
6.
目的建立人髌下脂肪垫干细胞分离、培养和鉴定的平台,验证其可作为可靠的干细胞来源,并可作为细胞模型参与科学研究。 方法人髌下脂肪垫取自膝关节置换手术患者,经Ⅰ型胶原酶消化,在高糖Dulbecco改良Eagle培养基(DMEM)内扩增,取P5代细胞用于检测其"干性"及三向分化能力。与微尺度支架结合,通过RT-PCR检测成骨基因的表达,应用最小显著性差异法进行组间两两比较,用于验证微尺度支架的成骨诱导特性。 结果人髌下脂肪垫干细胞具备间充质干细胞相关特性,包括黏附贴壁性;成脂肪、成软骨及成骨分化;表达相关表面标记,如分化抗原簇(CD)73、CD90和CD105;不表达造血细胞系的分子表面标记,如c-kit、CD14、CD11b、CD34、CD45、CD19、CD79和人白细胞抗原(HLA)-DR。本课题中人髌下脂肪垫来源干细胞成功作为一种干细胞模型,证明HaCG微尺度支架具备成骨诱导特性,表现为三组中成骨基因ALP、COL1、Runx2表达差异有统计学意义(分别为F=150,P<0.01;F=68,P<0.01;F=16,P<0.01)。HaCG微尺度支架组高于纯明胶微尺度支架组及二维培养组,纯明胶微尺度支架组高于二维培养组(P值均小于0.05)。 结论人髌下脂肪垫干细胞分离、培养和鉴定平台的建立,未来可作为细胞模型应用于多种不同实验。 相似文献
7.
Pediatric surgeons are ideal allies for the translation of basic science including stem cell therapies. In the spirit of Robert E. Gross, of applying creative solutions to pediatric problems with technical expertise, we describe the impending cellular therapies that may be derived from stem and progenitor cells. Understanding the types and capabilities of stem and progenitor cells is important for pediatric surgeons to join and facilitate progress for babies. We are developing an induced pluripotent stem cell therapy for enteric neuropathies such as Hirschsprung disease that might be helpful for children in the near future. Our goals, which we hope to share with other surgeons and scientists, include working to establish safe clinical trials and meeting regulatory standards in a thoughtful way that balances patients need and unknown risks. 相似文献
8.
Sara Meril Ortal Harush Yishai Reboh Tatyana Matikhina Tilda Barliya Cyrille J. Cohen 《Molecular carcinogenesis》2020,59(7):713-723
Chimeric antigen receptor (CAR) T-cells treatment demonstrate the increasing and powerful potential of immunotherapeutic strategies, as seen mainly for hematological malignancies. Still, efficient CAR-T cell approaches for the treatment of a broader spectrum of tumors are needed. It has been shown that cancer cells can implement strategies to evade immune response that include the expression of inhibitory ligands, such as hypersialylated proteins (sialoglycans) on their surface. These may be recognized by sialic acid-binding immunoglobulin-type lectins (siglecs) which are surface receptors found primarily on immune cells. In this regard, siglec-7 and -9 are found on immune cells, such as natural killer cells, T-cells, and dendritic cells and they can promote immune suppression when binding to sialic acids expressed on target cells. In the present study, we hypothesized that it is possible to use genetically engineered T-cells expressing siglec-based CARs, enabling them to recognize and eliminate tumor cells, in a non-histocompatibility complex molecule restricted way. Thus, we genetically modified human T-cells with different chimeric receptors based on the exodomain of human siglec-7 and -9 molecules and selected optimal receptors. We then assessed their antitumor activity in vitro demonstrating the recognition of cell lines from different histologies. These results were confirmed in a tumor xenograft model exemplifying the potential of the present approach. Overall, this study demonstrates the benefit of targeting cancer-associated glycosylation patterns using CAR based on native immune receptors and expressed in human primary T-cells. 相似文献
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天麻素是我国名贵中药材天麻中的一种主要活性成分,具有降血压、抗癫痫、抑制肿瘤、保护神经等多方面的药理活性。随着市场对天麻素需求的不断增长以及传统获取方法固有的问题,导致急需新的方法来解决天麻素生产实际中面临的各项困难。生物合成法是一种有别于传统获取法的新方法,已在天麻素获取上取得了较大进展和成果,故现阶段有必要从天麻素生物合成途径、植物转化法和微生物转化法3个方面,对天麻素生物合成进行系统地阐述,从而为进一步改进和完善天麻素生产方法,以满足人们对其不断增长的需求提供有价值的参考。 相似文献