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1.
Acta Laboratorium Animalis Scientia Sinica ; (6): 86-90, 2018.
Article in Chinese | WPRIM | ID: wpr-703192

ABSTRACT

Objective To observe the dopamine(DA)concentrations in the lateral geniculate nucleus in guinea pigs with flickering light-induced and form deprivation myopia,and to compare and analyze the pathogenetic mechanisms in the centers of vision of these two different myopia models. Methods Twenty-four two-week-old guinea pigs were randomly assigned to three groups(n=8):flickering light-induced myopia(FLM)group, form deprivation myopia(FDM)group and control group. All the groups were fed for 8 weeks. The refraction and axial length(AL)were measured before and af-ter modeling. After eight-week modeling,the contents of dopamine in the left lateral geniculate nucleus were detected by high performance liquid chromatography with electrochemical detection(HPLC-ECD). Results Before modeling,no sig-nificant difference was found in refraction and AL among the three groups. After eight-week modeling,in contrast with the control group,significant differences were found in changes of both refraction(P<0.001)and AL(P<0.05)in the right eyes of FLM and FDM groups,indicating that the two myopic models were successfully established. The result of HPLC-ECD showed that the contents of DA in the left lateral geniculate nucleus in FLM group were significantly higher than the control group(P=0.01),while in the FDM group it was lower than the control group(P=0.021). The average contents of DA were as follows:(37.04 ± 1.18)pg/μL in the control group;(24.27 ± 3.46)pg/μL in the FDM group; and (45.58 ± 1.98)pg/μL in the FLM group. Conclusions The content of DA in the lateral geniculate nucleus is increased in FLM,while decreased in FDM,indicating that the expression of DA in LGN and the mechanisms of formation of these two experimental myopia are different.

2.
Acta Laboratorium Animalis Scientia Sinica ; (6): 201-206, 2017.
Article in Chinese | WPRIM | ID: wpr-512025

ABSTRACT

Objective To observe the changes of S-opsin expression in guinea pigs with flickering light-induced and form-deprived myopia,and to investigate the causes.Methods Thirty-six two-week-old healthy guinea pigs were randomly assigned to three groups:Flickering light-induced myopia group(FLM group,n=13),form-deprived myopia group(FDM group,n=12) and control group(n=11).For the FLM group,the cages were equipped with astroboscope(0.5 Hz),and LEDs were used as the light source.The right eyes of the guinea pigs in FDM group wore translucent goggles which did not interfere with the normal activity of their eyelids.No special treatment was given to the guinea pigs in the normal groups.All measurements were performed prior to and then after 6 weeks of treatment.The first measurement day was recorded as 0 week.Biological parameters,such as the refraction,axial length(AL) and corneal radius of curvature(CRC),were measured and fundus photography is performed before and after 6 weeks of the treatment.The expression of S-opsin was observed and analyzed by immunofluorescence technique and image analysis system.Results Before the treatment,no significant difference was found in three biometric measurements including refraction,AL and CRC between the groups at 0 week(P>0.05).After the treatment for 6 weeks,significant differences were found in changes of both the biometric measurements between the FLM and control groups,and between the FDM and control groups(P0.05).Expression of S-opsin differed in the FLM and FDM groups.For the mean gray values of green channel,compared with the control group respectively,significant differences were found in both the FLM and FDM group(P<0.001).The mean gray value of green channel of the FLM group was higher,however the mean gray value of green channel of the FDM group was lower.Conclusions Both guinea pig models of flickering light-induced and form-deprived myopia can be established successfully.S-opsin is increased in the flickering light-induced myopia model and decreased in the form-deprived myopia model,indicating that the mechanisms of formation of these two experimental myopia models may be different.

3.
Shanghai Journal of Acupuncture and Moxibustion ; (12): 565-567, 2015.
Article in Chinese | WPRIM | ID: wpr-465239

ABSTRACT

Objective To investigate the clinical efficacy of heat-sensitive point moxibustion plus manipulative reduction in treating thoracic facet joint disorder. Method A single-blind randomized controlled trial was carried out. Eighty-two patients meeting the criteria were randomly allocated to an observation group of 42 cases and a control group of 40 cases. The observation group received heat-sensitive point moxibustion plus manipulative reduction and the control group, TDP plus manipulative reduction. Both groups were treated five times a week, five times as a course for a total of two courses (including the patients cured after less than two courses). The therapeutic effects were evaluated by using the McGill Pain Questionnaire the as the observation index, comparing pre-/post-treatment Pain Rating Index (PRI) scores, Visual Analogous Scale (VAS) scores and Present Pain Intensity (PPI) scores and referring to the Criteria of the Diagnosis of and the Therapeutic Effect on Syndromes in Traditional Chinese Medicine. Result After treatment, the PRI, VAS and PPI scores decreased significantly in both groups (P<0.01) and were lower in the observation group than in the control group (P<0.01). The cure rate was 57.1% (24/42) in the observation group, which was significantly higher than 27.5% in the control group (11/40,P<0.01). The total efficacy rate was 95.2% (40/42) in the observation group, which was significantly higher than 80.0% in the control group (32/40,P<0.01). Conclusion Heat-sensitive point moxibustion plus manipulative reduction has a very good therapeutic effect on thoracic facet joint disorder. The effect is significantly better than that in the control group.

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