1.Change of brain structure imaging of long-term withdrawal of methamphetamine-dependent patients
Zhixue ZHANG ; Ping LI ; Lidan FAN ; Fangxu TAO ; Yining LI ; Bo JIANG ; Jun LIU ; Zhifeng KOU
Journal of Central South University(Medical Sciences) 2018;43(1):41-48
Objective:To explore the characteristics of brain structure in patients with long-term withdrawal of methamphetamine-dependence.Methods:A total of 44 patients with withdrawal of methamphetamine-dependent for more than 14 months were recruited,who met the diagnostic criteria for substance dependence in the fifth edition of the American Mental Disorders Diagnostic and Statistical Manual (DSM-Ⅴ),and 40 healthy subjects were used as the control.In addition to the general scale of drug-relevant survey,the subjects received the 3.0T magnetic resonance high-resolution scan.The voxel-based morphometric measurements for the subject's brain gray volume were conducted.Results:There was no significant difference in age,education,smoking and alcohol consumption between the methamphetamine-dependent withdrawal group and the control group (P>0.05).The volumes for the bilateral cerebellum,the left side of temporal gyrus and the right side of the lingual gyrus in the methamphetamine-dependent withdrawal group were increased than those in the control group.The volumes for the bilateral lingual gyrus and bilateral cuneus in the methamphetamine-dependent withdrawal group were decreased than those in the control group.The volumes of left of cuneus and cerebellum were positively correlated with the duration of abstinence.Conclusion:After long-term abstinence,although the patients still show abnormal brain structure,their behavior and cognitive function is improved.The cerebral nerve structural is recovered from long-term abstinence.
2.Formulation and application of prevention and control guideline for deep venous thrombosis in lower extremities bedridden elderly patients
Qinhong XU ; Jianshuai JIANG ; Zhixue YE ; Yanyi ZHANG ; Yuqing LIN
Chinese Journal of Modern Nursing 2018;24(30):3609-3612
Objective To formulate a prevention and control guideline for deep venous thrombosis (DVT) in lower extremities in bedridden elderly patients and to explore its effects. Methods The problems existing in prevention and control of DVT in bedridden elderly patients were analyzed by search for literature, interviewing medical and nursing staff in the ward and reviewing DVT cases in bedridden elderly patients. The prevention and control guideline was formulated based on the evidence-based practice guideline. Relevant health videos were made and quality control measures were formulated by building DVT prevention and control teams and processes for bedridden elderly patients and adopting Caprini's and Padua's risk assessment tools. The prevention and control guideline was put into clinical use since February 2017. The incidence of DVT and blood stasis in bedridden elderly patients before (from May 2016 to January 2017, n=112) and after (between February and November 2017, n=99) the implementation of the guideline. Results After the prevention and control guideline was implemented, the positive rate of blood stasis in the bedridden elderly patients rose from 6.3% (7/112) to 15.2%(15/99), while the incidence rate of DVT dropped from 8.9% (10/112)to 2.0%(2/99) (χ2=4.458, 4.676;P< 0.05). Conclusions The prevention and control guideline based on the DVT prevention and management guideline can reduce the risks of DVT in bedridden elderly inpatients.
3.Long-term effect of environmental cadmium exposure on human body's mineral metabolic balance
Haituan LING ; Rui HUANG ; Xuxia LIANG ; Zhixue LI ; Jing WANG ; Jianbin TAN ; Shixuan WU ; Ping WANG ; Zihui CHEN ; Qiong HUANG ; Yingjian LYU ; Qi JIANG ; Xingfen YANG ; Yongning WU
Chinese Journal of Preventive Medicine 2016;50(4):316-321
Objective To investigate the effect of long?term exposure to environmental cadmium on eight mineral element's metabolic balance of human body. Methods To choose a high cadmium area polluted by smelting and mining north of Guangdong province and a cadmium?free area with a similar economic level, and living and eating habit of residents as a contrast from April 2011 to August 2012. Stratified random sampling and clustered sampling method were adopted to choose the non?occupationally cadmium?exposed respondents who have lived in local area for more than 15 years, older than 40 years, having local rice and vegetable as the main dietary source, with simple and relatively stable diet, and without diabetes, kidney disease, thyroid disease, liver disease or other history of chronic disease. This study included 298 respondents, of whom 155 were in cadmium exposure group and 143 in control group. Questionnaires was used to acquire their health status and their morning urine samples were collected. Electrolytically coupled plasma mass spectrometry (ICP?MS) was used to test the concentrations of sodium (Na), magnesium (Mg), phosphorus (P), potassium (K), calcium (Ca), copper (Cu), zinc (Zn) and iodine (I). The Mann?Whitney U test method was used to compare the differences of concentrations of urinary cadmium, Na, Mg, P, K, Ca, Cu, Zn, I, and the ratio of Na to K (Na/K), Ca to P (Ca/P) between exposed group and control group.χ2 test was used to compare the abnormal rate of urinary cadmium between exposed group and control group. Pearson correlation and multiple regression method were used to investigate the relationship between urinary cadmium levels, gender, age, smoking, passive smoking, and minerals. Results The urinary cadmium level P50 (P25-P75) in exposed group was 5.45 (2.62-10.68)μg/g·cr, which was higher than that of the control group, which was 1.69 (1.22-2.36)μg/g · cr (Z=-10.49, P<0.001). The abnormal rate of urinary cadmium was 51.6%(80/155), which was higher than that of the control group (2.8%(4/143)) (χ2=87.56,P<0.001). The urinary Ca, Cu, Zn, and I level P50 (P25-P75) of exposed group were 173.80 (114.40-251.70), 20.55 (14.95-28.44), 520.23 (390.25-647.15), and 246.94 (203.65-342.97)μg/g · cr, which were higher than those in control group (142.42 (96.87-179.11), 15.44 (12.26-20.98), 430.09 (309.85-568.78) and 213.85 (156.70-281.63) μg/g · cr, respectively) (Z values were-4.33,-5.04,-3.47 and-4.24, all P values<0.001). The urinary P, K level P50 (P25-P75) of exposed group were 582.50 (463.20-742.8), 890.10 (666.00-1 305.40) μg/g · cr, which were lower than control group (694.50 (546.20-851.17), 1 098.58 (904.53-1 479.18) μg/g · cr) (Z values were-3.36,-4.02, all P values <0.001). on Based the results of Pearson correlation analysis, urinary cadmium was positively correlated with urinary Ca, Cu, Zn, and I, and the correlation coefficients were 0.31, 0.61, 0.38, and 0.25, respectively(all P values<0.05). Based on the results of multiple regression analysis, urinary cadmium levels contributed most to the metabolic balance of urinary Ca, Cu, Zn and I. The standardized regression coefficients were 0.31, 0.59, 0.39, and 0.24, respectively (all P values<0.001). Conclusion Long?term environmental exposure to cadmium affected the metabolic balance of Ca, Cu, Zn and I in human body.
4.Cadmium burden and renal dysfunction among residents in cadmium-polluted areas:A 3-year ;follow-up study
Zhixue LI ; Ping WANG ; Rui HUANG ; Xuxia LIANG ; Zhongjun DUN ; Qi JIANG ; Qiong HUANG ; Haituan LING ; Jing WANG ; Jianbin TAN ; Shixuan WU ; Zihui CHEN ; Yanhong GAO ; Yingjian LYU ; Yongning WU ; Xingfen YANG
Chinese Journal of Preventive Medicine 2016;50(4):322-327
Objective To investigate dynamic change of cadmium body burden and renal dysfunction among residents living in cadmium?polluted areas. Methods From April to July of 2011, the cadmium?polluted areas of northern Guangdong province in China was chosen as the study site. Based on the levels of cadmium pollution in soil and rice, the survey areas were divided into low exposed group (average concentration of cadmium was 0.15-0.40 mg/kg, 0.5-1.0 mg/kg in rice and soil, respectively) and high exposed group (average concentration of cadmium was >0.40 mg/kg, >1.0 mg/kg in rice and soil, respectively). Stratified random sampling and cluster sampling method of epidemiological investigations were carried out among 414 local residents who lived in cadmium exposure areas for more than 15 years, aged above 40, and without occupational cadmium exposure, including 168 and 246 residents in low and high exposed group, respectively. From March to June of 2014, 305 respondents of those who participated in 2011 were successfully traced, including 116 and 189 respondents in low and high exposed group, respectively. We used health questionnaires to acquire their health status. Home?harvested rice and vegetable samples were collected using quartering method for detection of cadmium level, including 190 rice samples, 161 vegetable samples in 2011 and 190 rice samples, 153 vegetable samples in 2014. Urine specimens of residents were collected for the detection of urinary cadmium and creatinine as well as renal dysfunction biomarkers, namely, N?acetyl?beta?D?glucosamidase (NAG) andβ2?microglobulin (β2?MG), respectively. In 2011 and 2014, Chi?square test was used to investigate the differences of abnormality of cadmium concentration in rice, vegetables and urinary cadmium,β2?MG,and NAG that were expressed as odds ratio (OR) and 95%confidence intervals (95%CI). Results In 2011 and 2014, cadmium concentration P50 (P25-P75) in rice was 0.43 (0.17-1.10) mg/kg,and 0.42 (0.20-1.14) mg/kg, respectively (Z=-0.77, P=0.440). In 2011 and 2014, cadmium concentrations P50 (P25-P75) in vegetables were 0.13 (0.07-0.34) mg/kg,and 0.25 (0.12-0.59) mg/kg, respectively, with abnormal rates of 38.5%(62/161) and 60.8%(93/153), respectively. In 2014, both average concentration and abnormal rate of cadmium in vegetables were higher than those in 2011 (Z=-4.69,P<0.001 andχ2=15.58, P<0.001). Concentrations of urinary cadmium P50 (P25-P75) in high exposed group were 7.90 (3.96-14.91)μg/g creatinine, 8.64 (4.56-17.60)μg/g creatinine in 2011 and 2014, respectively. Contrary to that in 2011, urinary cadmium of high exposed group was significantly increased in 2014 (Z=-2.80 ,P=0.005). In 2011 and 2014, concentrations of β2?MG, NAG P50 (P25-P75) were 0.15 (0.07-0.29)μg/g creatinine, 0.15 (0.07-0.45)μg/g creatinine,and 7.12 (5.05-10.65) U/g creatinine, 13.55 (9.1-19.84) U/g creatinine, respectively, with abnormal rates of 7.5% (23/305), 15.1% (46/305) ,8.2%(25/305) , and 33.8% (103/305), respectively. Compared with baseline in 2011, average concentrations ofβ2?MG, NAG significantly increased in 2014 (Z=-2.263,P=0.024 and Z=-12.52,P<0.001), and abnormal rates ofβ2?MG, NAG were also higher in 2014 (χ2=15.61,P<0.001 andχ2=64.72,P<0.001), with odds ratio (OR) of 2.00 (95%CI:1.23-3.24) and 4.12 (95%CI:2.87-5.92). Conclusion Environmental cadmium pollution of crops such as rice and vegetables in survey areas continued to remain high. Body burden of cadmium might kept at sustainably high levels and renal dysfunction was worsened after continuous, long?term cadmium exposure. Our results suggested that NAG might be more sensitive than β2?MG to serve as an indicator for an individual's future tubular function.
5.Long-term effect of environmental cadmium exposure on human body's mineral metabolic balance
Haituan LING ; Rui HUANG ; Xuxia LIANG ; Zhixue LI ; Jing WANG ; Jianbin TAN ; Shixuan WU ; Ping WANG ; Zihui CHEN ; Qiong HUANG ; Yingjian LYU ; Qi JIANG ; Xingfen YANG ; Yongning WU
Chinese Journal of Preventive Medicine 2016;50(4):316-321
Objective To investigate the effect of long?term exposure to environmental cadmium on eight mineral element's metabolic balance of human body. Methods To choose a high cadmium area polluted by smelting and mining north of Guangdong province and a cadmium?free area with a similar economic level, and living and eating habit of residents as a contrast from April 2011 to August 2012. Stratified random sampling and clustered sampling method were adopted to choose the non?occupationally cadmium?exposed respondents who have lived in local area for more than 15 years, older than 40 years, having local rice and vegetable as the main dietary source, with simple and relatively stable diet, and without diabetes, kidney disease, thyroid disease, liver disease or other history of chronic disease. This study included 298 respondents, of whom 155 were in cadmium exposure group and 143 in control group. Questionnaires was used to acquire their health status and their morning urine samples were collected. Electrolytically coupled plasma mass spectrometry (ICP?MS) was used to test the concentrations of sodium (Na), magnesium (Mg), phosphorus (P), potassium (K), calcium (Ca), copper (Cu), zinc (Zn) and iodine (I). The Mann?Whitney U test method was used to compare the differences of concentrations of urinary cadmium, Na, Mg, P, K, Ca, Cu, Zn, I, and the ratio of Na to K (Na/K), Ca to P (Ca/P) between exposed group and control group.χ2 test was used to compare the abnormal rate of urinary cadmium between exposed group and control group. Pearson correlation and multiple regression method were used to investigate the relationship between urinary cadmium levels, gender, age, smoking, passive smoking, and minerals. Results The urinary cadmium level P50 (P25-P75) in exposed group was 5.45 (2.62-10.68)μg/g·cr, which was higher than that of the control group, which was 1.69 (1.22-2.36)μg/g · cr (Z=-10.49, P<0.001). The abnormal rate of urinary cadmium was 51.6%(80/155), which was higher than that of the control group (2.8%(4/143)) (χ2=87.56,P<0.001). The urinary Ca, Cu, Zn, and I level P50 (P25-P75) of exposed group were 173.80 (114.40-251.70), 20.55 (14.95-28.44), 520.23 (390.25-647.15), and 246.94 (203.65-342.97)μg/g · cr, which were higher than those in control group (142.42 (96.87-179.11), 15.44 (12.26-20.98), 430.09 (309.85-568.78) and 213.85 (156.70-281.63) μg/g · cr, respectively) (Z values were-4.33,-5.04,-3.47 and-4.24, all P values<0.001). The urinary P, K level P50 (P25-P75) of exposed group were 582.50 (463.20-742.8), 890.10 (666.00-1 305.40) μg/g · cr, which were lower than control group (694.50 (546.20-851.17), 1 098.58 (904.53-1 479.18) μg/g · cr) (Z values were-3.36,-4.02, all P values <0.001). on Based the results of Pearson correlation analysis, urinary cadmium was positively correlated with urinary Ca, Cu, Zn, and I, and the correlation coefficients were 0.31, 0.61, 0.38, and 0.25, respectively(all P values<0.05). Based on the results of multiple regression analysis, urinary cadmium levels contributed most to the metabolic balance of urinary Ca, Cu, Zn and I. The standardized regression coefficients were 0.31, 0.59, 0.39, and 0.24, respectively (all P values<0.001). Conclusion Long?term environmental exposure to cadmium affected the metabolic balance of Ca, Cu, Zn and I in human body.
6.Cadmium burden and renal dysfunction among residents in cadmium-polluted areas:A 3-year ;follow-up study
Zhixue LI ; Ping WANG ; Rui HUANG ; Xuxia LIANG ; Zhongjun DUN ; Qi JIANG ; Qiong HUANG ; Haituan LING ; Jing WANG ; Jianbin TAN ; Shixuan WU ; Zihui CHEN ; Yanhong GAO ; Yingjian LYU ; Yongning WU ; Xingfen YANG
Chinese Journal of Preventive Medicine 2016;50(4):322-327
Objective To investigate dynamic change of cadmium body burden and renal dysfunction among residents living in cadmium?polluted areas. Methods From April to July of 2011, the cadmium?polluted areas of northern Guangdong province in China was chosen as the study site. Based on the levels of cadmium pollution in soil and rice, the survey areas were divided into low exposed group (average concentration of cadmium was 0.15-0.40 mg/kg, 0.5-1.0 mg/kg in rice and soil, respectively) and high exposed group (average concentration of cadmium was >0.40 mg/kg, >1.0 mg/kg in rice and soil, respectively). Stratified random sampling and cluster sampling method of epidemiological investigations were carried out among 414 local residents who lived in cadmium exposure areas for more than 15 years, aged above 40, and without occupational cadmium exposure, including 168 and 246 residents in low and high exposed group, respectively. From March to June of 2014, 305 respondents of those who participated in 2011 were successfully traced, including 116 and 189 respondents in low and high exposed group, respectively. We used health questionnaires to acquire their health status. Home?harvested rice and vegetable samples were collected using quartering method for detection of cadmium level, including 190 rice samples, 161 vegetable samples in 2011 and 190 rice samples, 153 vegetable samples in 2014. Urine specimens of residents were collected for the detection of urinary cadmium and creatinine as well as renal dysfunction biomarkers, namely, N?acetyl?beta?D?glucosamidase (NAG) andβ2?microglobulin (β2?MG), respectively. In 2011 and 2014, Chi?square test was used to investigate the differences of abnormality of cadmium concentration in rice, vegetables and urinary cadmium,β2?MG,and NAG that were expressed as odds ratio (OR) and 95%confidence intervals (95%CI). Results In 2011 and 2014, cadmium concentration P50 (P25-P75) in rice was 0.43 (0.17-1.10) mg/kg,and 0.42 (0.20-1.14) mg/kg, respectively (Z=-0.77, P=0.440). In 2011 and 2014, cadmium concentrations P50 (P25-P75) in vegetables were 0.13 (0.07-0.34) mg/kg,and 0.25 (0.12-0.59) mg/kg, respectively, with abnormal rates of 38.5%(62/161) and 60.8%(93/153), respectively. In 2014, both average concentration and abnormal rate of cadmium in vegetables were higher than those in 2011 (Z=-4.69,P<0.001 andχ2=15.58, P<0.001). Concentrations of urinary cadmium P50 (P25-P75) in high exposed group were 7.90 (3.96-14.91)μg/g creatinine, 8.64 (4.56-17.60)μg/g creatinine in 2011 and 2014, respectively. Contrary to that in 2011, urinary cadmium of high exposed group was significantly increased in 2014 (Z=-2.80 ,P=0.005). In 2011 and 2014, concentrations of β2?MG, NAG P50 (P25-P75) were 0.15 (0.07-0.29)μg/g creatinine, 0.15 (0.07-0.45)μg/g creatinine,and 7.12 (5.05-10.65) U/g creatinine, 13.55 (9.1-19.84) U/g creatinine, respectively, with abnormal rates of 7.5% (23/305), 15.1% (46/305) ,8.2%(25/305) , and 33.8% (103/305), respectively. Compared with baseline in 2011, average concentrations ofβ2?MG, NAG significantly increased in 2014 (Z=-2.263,P=0.024 and Z=-12.52,P<0.001), and abnormal rates ofβ2?MG, NAG were also higher in 2014 (χ2=15.61,P<0.001 andχ2=64.72,P<0.001), with odds ratio (OR) of 2.00 (95%CI:1.23-3.24) and 4.12 (95%CI:2.87-5.92). Conclusion Environmental cadmium pollution of crops such as rice and vegetables in survey areas continued to remain high. Body burden of cadmium might kept at sustainably high levels and renal dysfunction was worsened after continuous, long?term cadmium exposure. Our results suggested that NAG might be more sensitive than β2?MG to serve as an indicator for an individual's future tubular function.
7.Effect of Aortic Arch Type on Technical Indicators in Patients With Carotid Artery Stent Implantation
Songhe SHEN ; Xiongjing JIANG ; Hui DONG ; Meng PENG ; Zhixue WANG ; Yubao ZOU ; Yaxin LIU ; Lei SONG ; Huimin ZHANG ; Haiying WU
Chinese Circulation Journal 2015;(1):34-37
Objective: To explore the effect of the aortic arch type on technical indicators in patients with carotid artery stent implantation.
Methods: We retrospectively analyzed 224 consecutive patients treated in Fu Wai hospital for unilateral carotid artery stent implantation from 2011-01 to 2012-12. We summarized the catheter category, type and the operating techniques including ① retracement, turn and insertion of the catheter, ② retracement, turn of catheter+the guidance of guide wire,③ retracement, turn of catheter+the guidance of guide wire+the supporting of another catheter, ④ using special graphic catheter+the guidance of guide wire+the supporting of another catheter. The procedural X-ray exposure time, dosage of contrast agent and operation related complications were recorded. According to Myla classiifcation, the aortic arches were divided into Myla I, Myla II and Myla III types.
Results: There were 7/224 (3.1%) patients with Myla I aortic arch, 113 (50.4%) with Myla II aortic arch and 104 (46.4%) with Myla III aortic arch. A total of 48/104 (46.2%) Myla III patients used special techniques (tech③, tech④), it was more than the patients with Myla I, (1/7,14.3%) and Myla II (17/113, 15.0%), P<0.01. The patients with Myla III aortic arch had the longer X-ray exposure time and used the higher dose of contrast agent, all P<0.01. The procedural success rate in patients with
Myla III was 96.2%, it was lower than those with Myla I (100%) and Myla II (100%), P=0.045. The procedural complication rate in patients with Myla III was 22.1%, it was higher than those with Myla I (0%) and Myla II (8.9%), P=0.007.
Conclusion: The aortic arch type is the important inlfuential factor for the techniques used in carotid stent implantation. There were more dififculties and complications for stent implantation in patients with Myla III aortic arch.
8.Radioactive probe-guided parathyroidectomy for secondary hyperparathyroidism.
Fei YUAN ; Weijia YU ; Ahmad WAQAS ; Zhixue YANG ; Hua CAO ; Juncheng LI ; Guoqin JIANG
Chinese Medical Journal 2014;127(13):2413-2418
BACKGROUNDThe value of gamma probes in the surgical treatment of secondary hyperparathyroidism (sHPT) was determined. The aim of this study was to enhance the rate of successful total parathyroidectomy in patients with sHPT using intraoperative gamma probe investigations.
METHODSWe retrospectively analyzed the clinical data of 48 sHPT patients between May 2007 and September 2011. Preoperative (99)Tc(m)- methoxyisobutyl isonitrile (MIBI) scintigraphy and high-frequency ultrasonography were used for parathyroid localization. Thirty-five patients (group I) underwent conventional neck exploration and open parathyroidectomy. Thirteen patients (group II) underwent gamma probe-guided total parathyroidectomy and parathyroid transplantation. The two groups were compared in terms of the number of parathyroid resections, operative time, and postoperative changes in the blood levels of parathyroid hormone (PTH), calcium, and phosphate.
RESULTSThe clinical manifestations, PTH and calcium levels, age distribution, and clinical characteristics did not differ between the two groups. The accuracy of preoperative (99)Tc(m)-MIBI scintigraphy (89.74%) for the diagnosis of hyperparathyroidism did not differ from that of ultrasonography (81.25%). However, the accuracy of (99)Tc(m)-MIBI scintigraphy (66.67%) for localizing hyperfunctioning parathyroids was significantly lower than that of ultrasonography (76.86%). The operation time was significantly longer in group I ((120 ± 25) minutes) than in group II ((90 ± 30) minutes). The accuracy of parathyroid identification was significantly higher in group II (92.59%) than in group I (80.39%). On average, significantly fewer parathyroid specimens were obtained in group I (2.5 ± 0.5) than in group II (3.5 ± 0.5). Compared with group I, group II showed a significant increase (15.4%) in the number of parathyroid resections. The PTH, calcium, and phosphate levels significantly decreased postoperatively in all patients.
CONCLUSIONSIntraoperative gamma probe examination confirmed that the excised specimen was parathyroid tissue and improved the accuracy of parathyroid resection. The parathyroidectomy rate was increased by 15.4% due to the use of these probes. However, the probes did not detect all ectopic parathyroids, and further research is required to clarify the underlying reasons.
Adult ; Female ; Humans ; Hyperparathyroidism, Secondary ; surgery ; Male ; Middle Aged ; Organotechnetium Compounds ; therapeutic use ; Parathyroidectomy ; methods ; Retrospective Studies ; Ultrasonography ; methods
9.Radioimmunoimaging and biodistribution of 131I-Herceptin in breast cancer xenograft BALB/c-neu mousse
Zhixue YANG ; Shaohua WEI ; Guoqin JIANG ; Zengli LIU
Chinese Journal of General Surgery 2012;27(5):402-405
ObjectiveTo study the biologic distribution of 131I-Herceptin in BALB/c-neu nude mice bearing HER-2 positive SK-BR-3 human breast cancer xenografts and the radioimmunoimaging characteristics of nude mouse bearing human SK-BR-3 breast cancer xenografts. MethodSK-BR-3 breast cancer cells were implanted subcutaneously to athymic mice to establish animal model.Tumor bearing mice were continuously imaged with SPECT. The radiocounting per minute (cpm) of different organ on a γ-arithmometer was measured at 4,12,24,48 h postinjection of 131I-Herceptin or 131I-mlgG,and the T/NT ratios and the uptake percentages per gram of the injection dose (% ID/g) was gained. ResultsModel was established in 96% nude mouse.Compared with the control group,there was a significantly stronger contrast enhancement of tumor imaging,bigger T/NT and % ID/g in experimental group ( P < 0.0l ).Conclusions 131I-Herceptin concentrates obviously in implanting tumor tissues of nude mouse,hence it is a good radiopharmaceutical agent targeting SK-BR-3 xenografts.
10.Clinical study of rheumatoid arthritis with midnight-noon ebb-flow acupoint selection
Yunting SUN ; Ming WEI ; Xuelian JIANG ; Zhixue LIU ; Jichao YANG
China Journal of Traditional Chinese Medicine and Pharmacy 2005;0(02):-
Objective:To study the effect of midnight-noon ebb-flow acupoint selection on rheumatoid arthritis. Methods:120 cases of patients with rheumatoid arthritis were randomly divided into three groups:midnight-noon ebb-flow acupoint selection group,acupuncture by differentiation of symptoms and signs group,integrative group of midnight-noon ebb-flow acupoint selection and acupuncture by differentiation of symptoms and signs group. Results:In the midday-midnight flowing of qi-blood acupuncture group of 40 cases,11 cases were improved obviously,11cases were improved,9cases were improved slightly,9 cases were ineffective,the total effective rate was 77.5%. In the acupuncture by differentiation of symptoms and signs group of 40 patients,10 cases were improved significantly,11 cases were improved,11 cases were improved moderate,8 cases were ineffective,the total effective rate was 80.0%. In integrated group of midnight-noon ebb-flow acupoint selection and acupuncture by differentiation of symptoms and signs group of 40 patients,15 cases were improved significantly,13 cases were improved,10 cases were improved moderate,2 cases were ineffective,the total effective rate was 95.0%. Curative effect of the integrative group was better than that of other two groups(P

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