Objective:This study is conducted to investigate the effects differences of escitalopram with or without combined electroacupuncture(EA)among male inpatients with a diagnosis of alcohol dependence and comorbid protrac...Objective:This study is conducted to investigate the effects differences of escitalopram with or without combined electroacupuncture(EA)among male inpatients with a diagnosis of alcohol dependence and comorbid protracted alcohol withdrawal symptoms(PAWS).Methods:A total of 62 participants who met the inclusion criteria were enrolled in a two-arm randomized,placebo controlled,patients-blind trial and allocated to an escitalopram with real-EA group(realEA group,patients=31)and an escitalopram with sham-EA group(sham-EA group,patients=31),respectively.In addition to the oral administration of escitalopram for total four weeks,patients in each group received corresponding EA treatment five days per week and two days off for consecutive four weeks.Both serum homocysteine(Hcy)test and electrophysiological tests,including event-related potentials(ERPs)and exploratory eye movement(EEM)were performed at pre-and post-treatment.Additionally,the global scores of Penn Alcohol Craving Scale(PACS),17-items Hamilton Depression Rating Scale(HAMD-17),and Hamilton Anxiety Scale(HAMA)were used for assessing the subjective emotion experience of patients,respectively.Meanwhile,adverse effects were monitored and recorded.Results:After four-week treatment,the global scores of PACS and HAMD-17 declined significantly in both groups(both P<0.05).Furthermore,the decline in the real-EA group was superior to that in the shamEA group(P<0.05).Meanwhile,the total scores of HAMA only decreased in the real-EA group(P<0.05)but not in the sham-EA group(P>0.05).According to the parameters of ERPs,significant declines for N2PL,P3PL,and P3amp were observed in both two groups(all P<0.05),and the decreases for P3PL and P3amp in the real-EA group was much superior to that in the sham-EA group(both P<0.05).According to the parameters of EEM,significant increase for NEF was observed only in the real-EA group(P<0.05).Besides,there was a dramatic decline for serum Hcy level only in the real-EA group(P<0.05).One case in the sham-EA group withdrew from the trial due to self-reported nausea and bitter taste,and outcomes of the remaining 61 patients were adopted for analysis.Conclusion:(1)Escitalopram with EA may be a potential alternative therapy for mitigating PAWS among male inpatients with alcohol dependence.(2)Escitalopram with EA might improve the alcoholdependence induced cognitive dysfunctions via upregulating the expression of Hcy.展开更多
When a human lands from a high drop,there is a high risk of serious injury to the lower limbs.On the other hand,cats can withstand jumps and falls from heights without being fatally wounded,largely due to their impact...When a human lands from a high drop,there is a high risk of serious injury to the lower limbs.On the other hand,cats can withstand jumps and falls from heights without being fatally wounded,largely due to their impact-resistant paw pads.The aim of the present study was to investigate the biomechanism of impact resistance in cat paw pads,propose an optimal hierarchical Voronoi structure inspired by the paw pads,and apply the structure to bionic cushioning shoes to reduce the impact force of landing for humans.The microstructure of cat paw pads was observed via tissue section staining,and a simulation model was reconstructed based on CT to verify and optimize the structural cushioning capacity.The distribution pattern,wall thickness of compartments,thickness ratio of epidermis and dermis,and number of compartments in the model were changed and simulated to achieve an optimal composed structure.A bionic sole was 3D-printed,and its performance was evaluated via compression test and a jumping-landing experiment.The results show that cat paw pads are a spherical cap structure,divided from the outside to the inside into the epidermis,dermis,and compartments,each with different cushioning capacities.A finite element simulation of different cushioning structures was conducted in a cylinder with a diameter of 20 mm and a height of 10 mm,featuring a three-layer structure.The optimal configuration of the three layers should have a uniform distribution with 0.3–0.5 mm wall thickness,a 1:1–2 thickness ratio of epidermis and dermis,and 100–150 compartments.A bionic sole with an optimized structure can reduce the peak impact force and delay the peak arrival time.Its energy absorption rate is about 4 times that of standard sole.When jumping 80,100,and 120 cm,the normalized ground reaction force is also reduced by 8.7%,12.6%and 15.1%compared with standard shoes.This study provides theoretical and technical support for effective protection against human lower limb landing injuries.展开更多
基金Sponsored by Scientific Research Project,Shanghai Science and Technology Committee:No.16401902600Special Project for Clinical Research,Shanghai Municipal Health Commission:No.20174Y0009。
文摘Objective:This study is conducted to investigate the effects differences of escitalopram with or without combined electroacupuncture(EA)among male inpatients with a diagnosis of alcohol dependence and comorbid protracted alcohol withdrawal symptoms(PAWS).Methods:A total of 62 participants who met the inclusion criteria were enrolled in a two-arm randomized,placebo controlled,patients-blind trial and allocated to an escitalopram with real-EA group(realEA group,patients=31)and an escitalopram with sham-EA group(sham-EA group,patients=31),respectively.In addition to the oral administration of escitalopram for total four weeks,patients in each group received corresponding EA treatment five days per week and two days off for consecutive four weeks.Both serum homocysteine(Hcy)test and electrophysiological tests,including event-related potentials(ERPs)and exploratory eye movement(EEM)were performed at pre-and post-treatment.Additionally,the global scores of Penn Alcohol Craving Scale(PACS),17-items Hamilton Depression Rating Scale(HAMD-17),and Hamilton Anxiety Scale(HAMA)were used for assessing the subjective emotion experience of patients,respectively.Meanwhile,adverse effects were monitored and recorded.Results:After four-week treatment,the global scores of PACS and HAMD-17 declined significantly in both groups(both P<0.05).Furthermore,the decline in the real-EA group was superior to that in the shamEA group(P<0.05).Meanwhile,the total scores of HAMA only decreased in the real-EA group(P<0.05)but not in the sham-EA group(P>0.05).According to the parameters of ERPs,significant declines for N2PL,P3PL,and P3amp were observed in both two groups(all P<0.05),and the decreases for P3PL and P3amp in the real-EA group was much superior to that in the sham-EA group(both P<0.05).According to the parameters of EEM,significant increase for NEF was observed only in the real-EA group(P<0.05).Besides,there was a dramatic decline for serum Hcy level only in the real-EA group(P<0.05).One case in the sham-EA group withdrew from the trial due to self-reported nausea and bitter taste,and outcomes of the remaining 61 patients were adopted for analysis.Conclusion:(1)Escitalopram with EA may be a potential alternative therapy for mitigating PAWS among male inpatients with alcohol dependence.(2)Escitalopram with EA might improve the alcoholdependence induced cognitive dysfunctions via upregulating the expression of Hcy.
基金approved by the Science and Ethics Committee of the School of Biological Science and Medical Engineering at Beihang University(protocol code:BM201900125).
文摘When a human lands from a high drop,there is a high risk of serious injury to the lower limbs.On the other hand,cats can withstand jumps and falls from heights without being fatally wounded,largely due to their impact-resistant paw pads.The aim of the present study was to investigate the biomechanism of impact resistance in cat paw pads,propose an optimal hierarchical Voronoi structure inspired by the paw pads,and apply the structure to bionic cushioning shoes to reduce the impact force of landing for humans.The microstructure of cat paw pads was observed via tissue section staining,and a simulation model was reconstructed based on CT to verify and optimize the structural cushioning capacity.The distribution pattern,wall thickness of compartments,thickness ratio of epidermis and dermis,and number of compartments in the model were changed and simulated to achieve an optimal composed structure.A bionic sole was 3D-printed,and its performance was evaluated via compression test and a jumping-landing experiment.The results show that cat paw pads are a spherical cap structure,divided from the outside to the inside into the epidermis,dermis,and compartments,each with different cushioning capacities.A finite element simulation of different cushioning structures was conducted in a cylinder with a diameter of 20 mm and a height of 10 mm,featuring a three-layer structure.The optimal configuration of the three layers should have a uniform distribution with 0.3–0.5 mm wall thickness,a 1:1–2 thickness ratio of epidermis and dermis,and 100–150 compartments.A bionic sole with an optimized structure can reduce the peak impact force and delay the peak arrival time.Its energy absorption rate is about 4 times that of standard sole.When jumping 80,100,and 120 cm,the normalized ground reaction force is also reduced by 8.7%,12.6%and 15.1%compared with standard shoes.This study provides theoretical and technical support for effective protection against human lower limb landing injuries.