Lauto A, Kerman I, Ohebshalon M, Felsen D, Poppas D P
Center for Pediatric Urology and Minimal Invasive Urologic Surgery, Department of Urology, New York Presbyterian Hospital-Weill Medical College of Cornell University, New York, New York 10021, USA.
Lasers Surg Med. 1999;25(3):250-6. doi: 10.1002/(sici)1096-9101(1999)25:3<250::aid-lsm9>3.0.co;2-v.
A two-layer solder was developed to weld at low laser intensity and to provide a new method of measuring solder-tissue temperature.
STUDY DESIGN/MATERIALS AND METHODS: A film solder consisted of a white layer (bovine serum albumin (BSA) and distilled water) and a black layer (BSA, carbon black (CB), and distilled water). This two-layer solder was used with a diode laser to weld sections of dog small intestine (lambda = 810 nm, power = 200 +/- 20 mW, radiation dose = 18 +/- 1 J/mg). Sections of intestine were welded only with one-layer black solders as control group. The temperature difference between the external solder surface and the tissue-solder interface was evaluated during welding.
The two-layer solder performed welds as strong as the one-layer solder ( approximately 0.12 N) but with less laser intensity on the black layer. The temperature difference between the external surface of the solder and the solder-tissue interface was significantly less for the two-layer solder than for the one-layer solder ( approximately 6 degrees C and approximately 15 degrees C, respectively; P < 0.05).
The two-layer solder appeared to be more efficient at soldering biomaterials than the one-layer solder. Furthermore, the heat diffusion from the black midplane of the two-layer solder decreased the difference in temperature recorded on the solder external surface and on the solder-tissue interface.
研发一种双层焊料,以在低激光强度下进行焊接,并提供一种测量焊料与组织温度的新方法。
研究设计/材料与方法:一种薄膜焊料由白色层(牛血清白蛋白(BSA)和蒸馏水)和黑色层(BSA、炭黑(CB)和蒸馏水)组成。这种双层焊料与二极管激光器配合使用,用于焊接犬小肠段(波长λ = 810 nm,功率 = 200±20 mW,辐射剂量 = 18±1 J/mg)。仅用单层黑色焊料焊接肠段作为对照组。在焊接过程中评估焊料外表面与组织-焊料界面之间的温差。
双层焊料的焊接强度与单层焊料相当(约0.12 N),但黑色层上的激光强度较低。双层焊料的焊料外表面与焊料-组织界面之间的温差明显小于单层焊料(分别约为6℃和约15℃;P < 0.05)。
双层焊料在焊接生物材料方面似乎比单层焊料更有效。此外,双层焊料黑色中间平面的热扩散减小了焊料外表面和焊料-组织界面记录的温度差异。