目的探讨^(131)I治疗对分化型甲状腺癌患者术后血清全段甲状旁腺激素(iPTH)、胰岛素样生长因子1(IGF-1)水平的影响。方法回顾性分析河南科技大学第一附属医院2020年1月至2022年9月收治的73例分化型甲状腺癌患者,均接受甲状腺全切除并于...目的探讨^(131)I治疗对分化型甲状腺癌患者术后血清全段甲状旁腺激素(iPTH)、胰岛素样生长因子1(IGF-1)水平的影响。方法回顾性分析河南科技大学第一附属医院2020年1月至2022年9月收治的73例分化型甲状腺癌患者,均接受甲状腺全切除并于术后2个月采用^(131)I治疗,随访1个月根据治疗情况将患者分为有效组(51例)和无效组(22例)。比较两组患者治疗前及治疗7 d iPTH和IGF-1水平,以及有效组治疗后各时间点血清iPTH、IGF-1水平。结果两组患者治疗后7 d血清iPTH、IGF-1水平均低于治疗前,且有效组低于无效组(P<0.05);有效组治疗后不同时间点血清iPTH、IGF-1水平差异有统计学意义(P<0.05)。结论分化型甲状腺癌患者^(131)I治疗后血清iPTH、IGF-1水平变化可用于判断甲状旁腺功能恢复情况,血清iPTH还可预示术后低钙血症的发生。展开更多
Boron neutron capture therapy(BNCT)is recognized as a precise binary targeted radiotherapy technique that effectively eliminates tumors through the^(10)B(n,α)^(7)Li nuclear reaction.Among various neutron sources,acce...Boron neutron capture therapy(BNCT)is recognized as a precise binary targeted radiotherapy technique that effectively eliminates tumors through the^(10)B(n,α)^(7)Li nuclear reaction.Among various neutron sources,accelerator-based sources have emerged as particularly promising for BNCT applications.The^(7)Li(p,n)^(7)Be reaction is highly regarded as a potential neutron source for BNCT,owing to its low threshold energy for the reaction,significant neutron yield,appropriate average neutron energy,and additional benefits.This study utilized Monte Carlo simulations to model the physical interactions within a lithium target subjected to proton bombardment,including neutron moderation by an MgF_(2)moderator and subsequent BNCT dose analysis using a Snyder head phantom.The study focused on calculating the yields of epithermal neutrons for various incident proton energies,finding an optimal energy at 2.7 MeV.Furthermore,the Snyder head phantom was employed in dose simulations to validate the effectiveness of this specific incident energy when utilizing a^(7)Li(p,n)^(7)Be neutron source for BNCT purposes.展开更多
文摘目的探讨^(131)I治疗对分化型甲状腺癌患者术后血清全段甲状旁腺激素(iPTH)、胰岛素样生长因子1(IGF-1)水平的影响。方法回顾性分析河南科技大学第一附属医院2020年1月至2022年9月收治的73例分化型甲状腺癌患者,均接受甲状腺全切除并于术后2个月采用^(131)I治疗,随访1个月根据治疗情况将患者分为有效组(51例)和无效组(22例)。比较两组患者治疗前及治疗7 d iPTH和IGF-1水平,以及有效组治疗后各时间点血清iPTH、IGF-1水平。结果两组患者治疗后7 d血清iPTH、IGF-1水平均低于治疗前,且有效组低于无效组(P<0.05);有效组治疗后不同时间点血清iPTH、IGF-1水平差异有统计学意义(P<0.05)。结论分化型甲状腺癌患者^(131)I治疗后血清iPTH、IGF-1水平变化可用于判断甲状旁腺功能恢复情况,血清iPTH还可预示术后低钙血症的发生。
文摘Boron neutron capture therapy(BNCT)is recognized as a precise binary targeted radiotherapy technique that effectively eliminates tumors through the^(10)B(n,α)^(7)Li nuclear reaction.Among various neutron sources,accelerator-based sources have emerged as particularly promising for BNCT applications.The^(7)Li(p,n)^(7)Be reaction is highly regarded as a potential neutron source for BNCT,owing to its low threshold energy for the reaction,significant neutron yield,appropriate average neutron energy,and additional benefits.This study utilized Monte Carlo simulations to model the physical interactions within a lithium target subjected to proton bombardment,including neutron moderation by an MgF_(2)moderator and subsequent BNCT dose analysis using a Snyder head phantom.The study focused on calculating the yields of epithermal neutrons for various incident proton energies,finding an optimal energy at 2.7 MeV.Furthermore,the Snyder head phantom was employed in dose simulations to validate the effectiveness of this specific incident energy when utilizing a^(7)Li(p,n)^(7)Be neutron source for BNCT purposes.