Marriage of scintillator and semiconductor for synchronous radiotherapy and deep photodynamic therapy with diminished oxygen dependence

C Zhang, K Zhao, W Bu, D Ni, Y Liu… - Angewandte Chemie …, 2015 - Wiley Online Library
Strong oxygen dependence and limited penetration depth are the two major challenges
facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation …

Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence.

C Zhang, K Zhao, W Bu, D Ni, Y Liu… - Angewandte …, 2015 - search.ebscohost.com
Strong oxygen dependence and limited penetration depth are the two major challenges
facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation …

[PDF][PDF] Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence

C Zhang, K Zhao, W Bu, D Ni, Y Liu, J Feng, J Shi - researchgate.net
Strong oxygen dependence and limited penetration depth are the two major challenges
facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation …

Marriage of scintillator and semiconductor for synchronous radiotherapy and deep photodynamic therapy with diminished oxygen dependence

C Zhang, K Zhao, W Bu, D Ni, Y Liu… - … (International ed. in …, 2015 - pubmed.ncbi.nlm.nih.gov
Strong oxygen dependence and limited penetration depth are the two major challenges
facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation …

Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence

C Zhang, K Zhao, W Bu, D Ni, Y Liu… - Angewandte …, 2015 - Wiley Online Library
Strong oxygen dependence and limited penetration depth are the two major challenges
facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation …

Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence

C Zhang, K Zhao, W Bu, D Ni, Y Liu, J Feng… - Angewandte Chemie …, 2014 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Strong oxygen dependence and limited
penetration depth are the two major challenges facing the clinical application of …

[引用][C] Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence

C Zhang, K Zhao, W Bu, D Ni, Y Liu… - Angewandte …, 2015 - ui.adsabs.harvard.edu
Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep
Photodynamic Therapy with Diminished Oxygen Dependence - NASA/ADS Now on home …

Marriage of scintillator and semiconductor for synchronous radiotherapy and deep photodynamic therapy with diminished oxygen dependence.

C Zhang, K Zhao, W Bu, D Ni, Y Liu… - … (International ed. in …, 2014 - europepmc.org
Strong oxygen dependence and limited penetration depth are the two major challenges
facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation …

Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence

C Zhang, K Zhao, W Bu, D Ni, Y Liu, J Feng, J Shi - Angewandte Chemie, 2015 - infona.pl
Strong oxygen dependence and limited penetration depth are the two major challenges
facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation …

Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence

C Zhang, K Zhao, W Bu, D Ni, Y Liu, J Feng… - Angewandte Chemie …, 2015 - infona.pl
Strong oxygen dependence and limited penetration depth are the two major challenges
facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation …