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利用发射断层扫描和磁共振波谱评估糖尿病性神经病变。

Assessment of diabetic neuropathy with emission tomography and magnetic resonance spectroscopy.

作者信息

Rao Harshvardhan, Gaur Neeraj, Tipre Dnyanesh

机构信息

aDepartment of Biotechnology, School of Biotechnology and Bioinformatics, D.Y. Patil University, Navi Mumbai bUnited Translational Molecular Imaging Center, Nashik, Maharashtra, India.

出版信息

Nucl Med Commun. 2017 Apr;38(4):275-284. doi: 10.1097/MNM.0000000000000653.

Abstract

Diabetic neuropathies (DNs) are nerve-damaging disorders associated with diabetes. They are commonly attributed to peripheral nerves and primarily affect the limbs of the patient. They cause altered sensitivity to external stimuli along with loss in balance and reflexes of the affected patient. DNs are associated with a variety of clinical manifestations including autonomic failure and are caused by poor management of blood sugar levels. Imaging modalities provide vital information about early physiological changes in DNs. This review summarizes contributions by various teams of scientists in developing imaging methods to assess physiological changes in DNs and ongoing clinical trials where imaging modalities are applied to evaluate therapeutic intervention in DNs. Development of PET, single photon emission computed tomography, and magnetic resonance spectroscopy methods over the past 20 years are reviewed in the diagnostic assessment of DNs. Abnormal radiotracer pharmacokinetics and neurometabolite spectra in affected organs confirm physiological abnormalities in DN. With the use of the Siemens Biograph mMR and GE Signa - 60 cm (PET/MRI scanner), simultaneous acquisition of physiological and anatomical information could enhance understanding of DNs and accelerate drug development.

摘要

糖尿病神经病变(DNs)是与糖尿病相关的神经损伤性疾病。它们通常归因于周围神经,主要影响患者的四肢。它们会导致患者对外部刺激的敏感性改变,同时伴有平衡能力丧失和受影响患者的反射功能减退。DNs与包括自主神经功能衰竭在内的多种临床表现相关,并且是由血糖水平管理不善引起的。成像方式可提供有关DNs早期生理变化的重要信息。本综述总结了各科学家团队在开发评估DNs生理变化的成像方法方面所做的贡献,以及目前正在进行的将成像方式应用于评估DNs治疗干预效果的临床试验情况。在DNs的诊断评估中,回顾了过去20年正电子发射断层扫描(PET)、单光子发射计算机断层扫描和磁共振波谱方法的发展。受影响器官中异常的放射性示踪剂药代动力学和神经代谢物谱证实了DN中的生理异常。通过使用西门子Biograph mMR和通用电气Signa - 60 cm(PET/MRI扫描仪),同时获取生理和解剖信息可以增强对DNs的理解并加速药物开发。

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