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Biomedical subjects

B Lan

Publications and source records attributed to B Lan.

3 recordsLinked to original sources

Laser surface modification of poly(epsilon-caprolactone) (PCL) membrane for tissue engineering applications.

Ultra-thin polycaprolactone (PCL) produced by bi-axial stretching was previously shown to have significant advantage for membrane tissue engineering. However, the permeability of the membrane needs to be enhanced. In this study, ablation experiments using femtosecond laser and excimer laser were carried out to modify the PCL surface. The use of the femtosecond laser produces neat drilled-through holes while the excimer laser is employed to produce blind-holes on the membrane. The modified surface of the membrane was studied and analyzed for different laser parameters (such as pulse energy and pulse repetition rate and characterized using several techniques that include optical microscopy, scanning electron microscopy and water contact angle measurements). Results showed that the morphological surface changes with different laser parameters, and the water contact angle decreases as the surface of the membrane is modified. The decrease in water contact angle suggests that surface of the membrane had become more hydrophilic than the non-laser treated membrane. The present study demonstrated that laser surface modification on the PCL can be achieved with high degree of success and precision. This paved the way for further enhancement in membrane tissue engineering.

Biocompatible Materials↗

[Energy distribution of Phyllostachys pubescens ecosytem in north Fujian].

Based on the data obtrained from 40 Phyllostachys pubescens plots in Jianou City of Fujian Province, the distribution of energy was studied in this paper. The results showed that the energy contained in stems, branches and leaves, and underground parts of P. pubescens ecosystem were 4.2322 x 10(8) kJ.hm-2, 0.9230 x 10(8) kJ.hm-2 and 1.7643 x 10(8) kJ.hm-2, accounting for 61.32%, 13.11% and 25.57% of the total energy respectively.

China↗

[Mondini's deafness].

Mondini's deafness was the congenital malformation of inner ear. We studied 199 ears of 106 cases. Most of them were found deaf when they were babies. High resolution computed tomography of temperal bone was described: cochlea malformation 4 ears; malformation of cochlea, vestibule and semicircular canal 90 ears; vestibular of semicircular malformation without cochlea malformation 105 ears, this type was called the vestibule malformation or untypically Mondini's. Of all the 199 ears there were 81 ears with enlargement of the vestibule aqueducts. The pathogeny, clinical manifestation and treatment were discussed.

Child↗