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Radiofrequency-Sensitive Longitudinal Relaxation Tuning Strategy Enabling the Visualization of Radiofrequency Ablation Intensified by Magnetic Composite.
Fang, Yan; Li, Hong-Yan; Yin, Hao-Hao; Xu, Shi-Hao; Ren, Wei-Wei; Ding, Shi-Si; Tang, Wei-Zhong; Xiang, Li-Hua; Wu, Rong; Guan, Xin; Zhang, Kun.
Afiliação
  • Fang Y; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
  • Li HY; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
  • Yin HH; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
  • Xu SH; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
  • Ren WW; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
  • Ding SS; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
  • Tang WZ; A Guangxi Collaborative Innovation Center for Biomedicine, and Affiliated Tumor Hospital of Guangxi Medical University , Guangxi Medical University , 22 Shuang Yong Road , Nanning , Guangxi 530021 , P. R. China.
  • Xiang LH; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
  • Wu R; Department of Medical Ultrasound, Shanghai General Hospital , Shanghai Jiaotong University School of Medicine , 85 Wu-jin Road , Shanghai 200080 , P. R. China.
  • Guan X; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
  • Zhang K; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine , Tongji University , 301 Yan-chang-zhong Road , Shanghai 200072 , P. R. China.
ACS Appl Mater Interfaces ; 11(12): 11251-11261, 2019 Mar 27.
Article em En | MEDLINE | ID: mdl-30874421
As a minimally invasive heat source, radiofrequency (RF) ablation still encounters potential damages to the surrounding normal tissues because of heat diffusion, high power, and long time. With a comprehensive understanding of the current state of the art on RF ablation, a magnetic composite using porous hollow iron oxide nanoparticles (HIONs) as carriers to load dl-menthol (DLM) has been engineered. This composite involves two protocols for enhancing RF ablation, that is, HION-mediated magnetothermal conversion in RF field and RF solidoid vaporation (RSV)-augmented inertial cavitation, respectively. A combined effect based on two protocols is found to improve energy transformation, and further, along with hydrophobic DLM-impeded heat diffusion, improve the energy utilization efficiency and significantly facilitate ex vivo and in vivo RF ablation. More significantly, in vitro and in vivo RSV processes and RSV-augmented inertial cavitation for RF ablation can be monitored by T1-weighted magnetic resonance imaging (MRI) via an RF-sensitive longitudinal relaxation tuning strategy because the RSV process can deplete DLM and make HION carriers permeable to water molecules, consequently improving the longitudinal relaxation rate of HIONs and enhancing T1-weighted MRI. Therefore, this RF-sensitive magnetic composite holds a great potential in lowering the power and time of RF ablation and improving its therapeutic safety.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Ondas de Rádio / Compostos Férricos / Nanopartículas de Magnetita Tipo de estudo: Diagnostic_studies / Guideline Limite: Animals / Humans Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Ondas de Rádio / Compostos Férricos / Nanopartículas de Magnetita Tipo de estudo: Diagnostic_studies / Guideline Limite: Animals / Humans Idioma: En Ano de publicação: 2019 Tipo de documento: Article