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分子显像
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  molecular imaging
     Advances in tumor molecular imaging with ~(18)F-fluorothymidine PET
     ~(18)F-氟脱氧胸苷PET的肿瘤分子显像研究进展
短句来源
     Targeted microbubbles and ultrasonic molecular imaging
     靶向超声微泡造影剂与超声分子显像
短句来源
     ② The rapid development of molecular imaging.
     ②分子显像的迅速发展;
短句来源
     Progress of study on nano-scale contrast agents for ultrasonic molecular imaging and targeted therapy
     纳米级造影剂在超声分子显像与靶向治疗中的研究进展
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     Experimental study of transferrin receptor molecular imaging in human hepatocellular carcinoma transplanted in nude mice
     裸鼠中人肝细胞癌转铁蛋白受体的分子显像研究
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  “分子显像”译为未确定词的双语例句
     Application of nuclearmedicine imaging techniques provides clinical diagnosisand research with a variety of quantitative information.
     核显像技术从静态平面显像、动态显像进入断层、三维功能显像直至近阶段的化学、代谢和分子显像,并且可直接从活体(invivo)为临床诊断和研究提供各种定量信息。
短句来源
     Positron emission tomography,as the leading technology providing mo lecular imaging of biological process-es,is widely used on living laboratory a nimals.
     分子医学研究需要在活体实验动物上观察分子水平的生物学过程,因而正电子发射体层(PET)显像作为目前最成熟的分子显像方法,正被越来越多地用于动物实验。
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     The possibility of in vivo tracking of stem cells with various strategies of radionuclide imaging was discussed respectively according to their characteristics and recent development.
     本文结合各种策略核素分子显像近年来的发展和特点,分别简述各种方法活体示踪干细胞的前景。
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     As the leading technology in nuclear medicine, PET has extended its applications from the clinical field to the study of small laboratory animals.
     PET作为目前核医学诊断和研究最先进的分子显像方法,已从临床应用推广到了小动物科学实验。
短句来源
     The new development and situation of radionuclide imaging and therapy in oncology is described. The basic and clinical studies on non specific tumor positive imaging,tumor metabolic imaging,hypoxia imaging,multidrug resistance imaging,sentinal lymph node imaging,radioimmunoimaging(RII) and radioimmunotherapy(RIT),tumor receptor imaging and receptor targed therapy, gene expression imaging and gene therapy,and study of tumor molecular probes are emphasized.
     对近年来肿瘤核素诊治现状及进展进行了论述,着重介绍了放射性核素非特异性亲肿瘤显像、肿瘤代谢显像、乏氧显像、多耐药显像,肿瘤前哨淋巴结显像和肿瘤放射免疫显像与放射免疫治疗、肿瘤受体显像与受体介导靶向治疗、基因表达显像与基因治疗及肿瘤分子显像探针等应用研究的进展。
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     分子
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     ② The rapid development of molecular imaging.
     ②分子显像的迅速发展;
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     Clinic applicatim and propgress of the nuclide molecular imaging in breast cancer
     乳腺癌核素分子显像的临床研究进展
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     Molecular Selection
     分子选择
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     Radioimmune Imaging of the Ovarian Carcinoma
     卵巢癌的放射免疫显像
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  molecular imaging
New probe technology and progress in imaging techniques have set the base for development of molecular imaging concepts in the cardiovascular systems.
      
18F-labelled cardiac PET tracers: selected probes for the molecular imaging of transporters, receptors and proteases
      
Designated radiopharmaceuticals labelled with the prominent positron-emitter 18F can be defined as molecular imaging probes for the examination of cardiovascular diseases at the cellular and subcellular level.
      
Such molecular imaging agents representing radioindicators or radiotracers offer the opportunity to non-invasively trace their path and fate in the living organism by the scintigraphic technique, positron emission tomography (PET).
      
The glucose analogue [18F]FDG is a widespread PET tracer and one of the earliest examples of a PET molecular imaging probe feasible to in vivo visualise glucose utilisation by a metabolic trapping mechanism.
      
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Development of instrument of nuclearmedicine imaging has made a contribution to clinicalapplication of its techniques. Application of nuclearmedicine imaging techniques provides clinical diagnosisand research with a variety of quantitative information.

核显像装置的发展推进了核显像技术的临床应用。从同位素扫描仪(isotope scanner)开始,核显像仪器经历γ相机(γCamera)、单光子发射型电子计算机断层仪(SPECT)以及正电子发射型计算机断层仪(PET)等四个时期的发展历程。核显像技术从静态平面显像、动态显像进入断层、三维功能显像直至近阶段的化学、代谢和分子显像,并且可直接从活体(invivo)为临床诊断和研究提供各种定量信息。

Positron emission tomography,as the leading technology providing mo lecular imaging of biological process-es,is widely used on living laboratory a nimals.High-resolution dedicated animal PET scanners have been developed.Al-though the dedicated animal PET faces obstacles and challenges,this advanced te chnology would play an important role in molecular biomedicine researches,such as diseases study,medicine development ,and gene therapy.

分子医学研究需要在活体实验动物上观察分子水平的生物学过程,因而正电子发射体层(PET)显像作为目前最成熟的分子显像方法,正被越来越多地用于动物实验。新开发的实验动物专用PET扫描仪的各项性能也逐步趋于完善。该技术将在疾病研究、新药开发、基因治疗等领域发挥重要作用。

Values of 111 In-octreotide and 99 Tc m -NeoTec in tumor diagnosis are briefly reviewed.There are great values in diagnosis and follow up for patients with carcinoid tumor,medullary cancer of thyroid,and neuroendocrine tumors from pancreas or upper respiratory tract.Somatostatin receptors are also distributed in organs outside the classical neuroendocrine tissues.Positive studies are also found in patients with differentiated cancer of thyroid whose tuor have lost iodide concentrating ability,exophthalmos...

Values of 111 In-octreotide and 99 Tc m -NeoTec in tumor diagnosis are briefly reviewed.There are great values in diagnosis and follow up for patients with carcinoid tumor,medullary cancer of thyroid,and neuroendocrine tumors from pancreas or upper respiratory tract.Somatostatin receptors are also distributed in organs outside the classical neuroendocrine tissues.Positive studies are also found in patients with differentiated cancer of thyroid whose tuor have lost iodide concentrating ability,exophthalmos in Graves' disease or granulomatous process in sarcoidosis.The successes of tumor imaging with labeled somatostatin analogues have led to the development of radionuclide therapy for these tumors with the labeled analogues.The technics in labeling of somatostatin analogues have also led the expanded interests and studies of other peptides in molecular imaging.

简要综述111In-奥曲肽和99Tcm-NeoTec在肿瘤诊断中的应用,其对类癌、甲状腺髓样癌、来自胰腺或上消化道的神经内分泌肿瘤的诊断和随访有重要价值,对失去摄碘功能的分化型甲状腺癌、甲亢性突眼、肉样瘤病的肉芽肿过程也可得到阳性结果。应用放射性核素标记的生长抑素类似物使肿瘤成功的显像,可发展并应用标记的类似物来治疗这些肿瘤。生长抑素类似物的标记技术扩展了应用其他肽类进行分子显像的研究兴趣。

 
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