3.Effect of propofol on hypoxic pulmonary vasoconstriction in rats
Chinese Journal of Anesthesiology 1995;0(12):-
Objective To investigate the effect of propofol on hypoxic pulmonary vasoconstriction(HPV)and assess the underlying mechanism in rats.Methods Twenty male SD rats weighing 300-400 g were.anesthetizedwith intraperitoneal phenobarbital.Heart and lungs were removed after thoracotomy.Pulmonary.arterial rings 4 mmin length and 1.0-1.4 mm in diameter were prepared and suspended in Earl solution maintained at 37℃ with a pHof 7.40 and aerated with 20% O_2-5% CO_2-25% N_2.The rings were stimulated with phenylephrine(PE)10~(-6)mol?L~(-1) with different preloads(300,500,700,900,1 100 mg).The isometric tension of the arterial rings wasmeasured.The optimal preload was determined to be 900 mg which allowed best contractility.Hypoxia was inducedby aerating the solution with 95% N_2-5% CO_2 and the flow rate was adjusted to maintain PO_2 of the solution at40-20 mm Hg and pH at 7.40.HPV of the rings were recorded.Then propofol was added to achieve a finalconcentration of 1,3,10,30,100 ?mol?L~(-1) and HPV was again induced and the changes in HPV wererecorded.In addition the effects of propofol(10,30 ?mol?L~(-1))on vasoconstriction produced by KCI and PE werealso measured.Results The lower doses of propofol(10 ?mol?L~(-1))significantly inhibited HPV(P
4.Phacofragmentation combined with vitrectomy in the treatment of traumatic dislocation lens
Jian, FANG ; Xiao-Dan, ZHANG ; Hong, LÜ
International Eye Science 2014;(12):2252-2253
AlM: To explore the clinical application effect of phacofragmentation combined with vitrectomy in the treatment of traumatic lens dislocation.
METHODS:Totally 16 cases (16 eyes) of traumatic lens dislocation treated with phacofragmentation combined with vitrectomy were retrospectively analyzed, including 6 cases of high intraocular pressure ( lOP) and 10 cases of vitreous hemorrhage, and 1 case of retinal detachment. All patients were given conventional flat line standard three channel vitreous operation incision to remove the anterior, middle part and peripheral vitreous around lens dislocation. The crystalline lens were drawn to the center cavity of vitreous body and treated by ultrasonic disintegrator. ln the operation, the retina was examined and 8 of them had no retinal damage and in the first stage underwent fixation of posterior chamber intraocular lenses.
RESULTS: All crystalline lens dislocated were completely grinded and suctioned. There was no retinal detachment occurred in 3mo followed up. 16 eyes had normal lOP (12-20mmHg) at 1wk after operation. The average visual acuity was improved and with 8 cases got improved of 0. 2 or more 1wk after operation.
CONCLUSlON: Our research shows that phacofragmentation combined with vitrectomy is a safe and effective method for the treatment of traumatic lens dislocation. The patients with nondestructive retina in the operation are feasible to do first stage operation of intraocular lens suture fixation, which contributes to the best visual acuity.
6.Surgical effect of traumatic lens dislocation with secondary glaucoma
Xiao-Dan, ZHANG ; Jian, FANG ; Hong, LV ; Fang, LIU
International Eye Science 2014;(10):1866-1867
AIM: To retrospectively evaluate the effect of lens extraction combined with vitrectomy to treat traumatic lens dislocation with secondary glaucoma.
METHODS: Thirty - one eyes ( 31 cases ) of lens dislocation caused by blunt trauma with secondary glaucoma were treated respectively with cataract extraction combined with anterior vitrectomy, trabeculectomy and intraocular lens implantation. The visual acuity and pressure were observed 1wk, 1 and 3mo after operative.
RESULTS: Thirty - one eyes were all complete the operation successfully, and 6 eyes were given combined trabeculectomy, 9 eyes were implanted anterior chamber intraocular lens implantation ( IOL ) and 15 eyes were given posterior chamber suture fixation. Sixteen eyes were implanted in one-stage operation, while 8 eyes were implanted in two-stage operation. All intraocular pressure ( IOP ) were controlled to the normal level after operation and 23 eyes had visual acuity of more than 0. 3. CONCLUSION: Lens extraction combined with vitrectomy is an effective method for treatment of lens dislocation with secondary glaucoma. In order to control the IOP and get well visual function, we should choose IOL implantation or trabeculectomy according to the patient's condition.
8.Screen and analysis of FVIII inhibitors in 167 hemophilia A patients.
Xiao-hong LIU ; Hua-fang WANG ; Rui YANG
Chinese Journal of Hematology 2011;32(9):627-629
Adolescent
;
Adult
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Child
;
Factor VIII
;
genetics
;
metabolism
;
Hemophilia A
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blood
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diagnosis
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Humans
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Male
;
Young Adult
9.Effects of glycyrrhizic acid beverage on exercise performance of fe- male undergraduates with moderate endurance training and its mechanism.
Jing QU ; Hong-fang YANG ; Xiao-hui WANG
Chinese Journal of Applied Physiology 2016;32(1):31-33
Beverages
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Exercise
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Female
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Glycyrrhizic Acid
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pharmacology
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Humans
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Physical Endurance
;
Students
10.Study on changes of protein kinase C activity in peripheral blood T lymphocytes of children with idiopathic thrombocytopenic purpura and its clinical significance
Chanlin WU ; Fang LIU ; Hong XIAO ; Qun CHEN ; Xiaomeng YANG
Chinese Journal of Clinical Laboratory Science 2006;0(01):-
Objective To investigate the changes of protein kinase C(PKC) activity in peripheral blood T lymphocytes of the children with idiopathic thrombocytopenic purpura (ITP) and the relationships between PKC activity and T lymphocytes activation and thrombocyte decrease.Methods Sterilized peripheral blood were collected from ITP children (n=35) and healthy children (n=30).T lymphocytes were isolated and purified by the T cell segregation enrichment column.The total PKC activity was detected by non-radioactive assay.FasL,the T cell activated marker,was determined by flow cytometer.Platelet count was performed by hematocytometer.Result Compared with healthy children,total PKC activity in ITP children was significantly enhanced (0.97?0.21 nmol/min.ml vs 0.60? 0.13 nmol/min.ml,?s,P