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Zhen-lin Li

Publications and source records attributed to Zhen-lin Li.

2 recordsLinked to original sources

[Optimal scanning collimation for segmental bronchi: experimental study with low-dose helical CT].

OBJECTIVE: To evaluate the effects of low-dose helical CT with different scanning collimation on the visualization of segmental bronchi and to determine the optimal scanning collimation in CT screening for early central lung cancer. METHODS: Forty healthy volunteers were randomly assigned to undergo the low-dose helical CT at 120 kVp, 50 mA, 0.75 s and pitch 1. One group (n = 20) underwent the sequential subsection scan of chest with the collimation of 10 mm for the apical and basilar zone, and of 8 mm and 5 mm for the hilar zone. The other (n = 20) went through CT scan with 10 mm collimation of the whole lung. The visualizations of lobar, segmental bronchi were compared at different collimations. ANOVA and multiple comparison were performed. RESULTS: The visualization of segmental bronchi on low-dose scan at 10 mm collimation was 60%, being lower than that at 8 mm (88%) or 5 mm (91%) collimation (P < 0.01). The segmental bronchi of right upper lobe were easily identified at collimation of 10 mm (82%), 8 mm (96%) and 5 mm (98%), as well as those of left upper lobe at 10 mm (83%), 8 mm (95%) and 5 mm (97%), whereas those of lingular lobe were difficultly identified at 10 mm (30%), 8 mm (60%) and 5 mm (70%). CONCLUSION: The lobar and segmental bronchi were visualized reliably by CT with 50 mA and 8 mm collimation, and therefore the sequential subsection scan of chest divided into three zones can be adapted to CT screening for early lung cancer.

Adult↗

[Expression of human tissue-type plasminogen activator in cow mammary gland].

OBJECTIVE: To construct an expression vector for highly efficient expression of tissue-type plasminogen activator (t-PA) confined in the mammary gland of cow to develop a cow mammary gland bioreactor. METHODS: RT-Touch down-PCR was employed to amplify human tissue-type plasminogen activator (t-PA) cDNA, which was digested with the restriction enzymes and subsequently cloned into the vector pSP72 for constructing specific fusion gene only expressed in the mammary gland. The fusion gene was then transferred into the mouse zygote and the mammary gland tissue of mice and cows. RESULTS: t-PA was detected in the milks of mice and cows after the transgenic manipulation with microinjection and mammary gland injection of the fusion gene. CONCLUSIONS: The vector we constructed can effectively induce t-PA expression in the mammary gland, which is not influenced by different transgenic methods. The expression level of t-PA, however, is significantly higher in the milk of cows than in the milk of mice, suggesting the species-specific difference in milk protein regulating system possibly is due to different factors and regulatory systems.

Animals↗