Wehner Martin, Betz Patricia, Aden Mirko
Fraunhofer Institute for Laser Technology ILT, 52074, Aachen, Germany.
Lasers Med Sci. 2019 Mar;34(2):335-341. doi: 10.1007/s10103-018-2598-2. Epub 2018 Jul 24.
In laser tissue soldering (LTS), a protein solution is thermally denatured and cross-linked to obtain a strong bond between tissues or tissue and a wound dressing. However, if the extension of the heat-affected zone is too large, wound healing is impaired by thermal tissue injuries. Therefore, heat input and coagulation depth have to be limited. We investigate the influence of wavelength and beam profile on coagulation depth using a soft tissue phantom in case of weakly (980 nm) and strong (1540 nm) absorbed laser radiation. The soft tissue phantom is doped with polystyrene (PS) beads to obtain similar scattering properties as natural tissue. The propagation of the laser radiation in the phantom is simulated by Monte-Carlo method and the optical penetration (OPD) depth calculated from isophotes. The simulation results are compared with the experimental determination of the coagulation volume. The results reveal that scattering effect of tissues on laser radiation increases the losses of a Gaussian beam profile laterally leading to a half-sphere coagulation volume. The depth profile of the coagulation follows approximately the intensity distribution of the laser beams as long as scattering effects are weak. As scattering effects become significant, as for 980-nm radiation, the intensity distribution of the laser beam in the tissue deviates from the original one, leading to different profile of the coagulation depth.
在激光组织焊接(LTS)中,蛋白质溶液会发生热变性和交联,从而在组织之间或组织与伤口敷料之间形成牢固的结合。然而,如果热影响区的扩展过大,热组织损伤会损害伤口愈合。因此,必须限制热量输入和凝固深度。我们使用软组织模型研究了在弱吸收(980纳米)和强吸收(1540纳米)激光辐射情况下波长和光束轮廓对凝固深度的影响。软组织模型中掺杂了聚苯乙烯(PS)珠,以获得与天然组织相似的散射特性。通过蒙特卡罗方法模拟激光辐射在模型中的传播,并根据等照度线计算光穿透(OPD)深度。将模拟结果与凝固体积的实验测定结果进行比较。结果表明,组织对激光辐射的散射效应会增加高斯光束轮廓在横向的损耗,从而导致半球形的凝固体积。只要散射效应较弱,凝固的深度分布大致遵循激光束的强度分布。当散射效应变得显著时,如对于980纳米辐射,激光束在组织中的强度分布会偏离原始分布,导致凝固深度的分布不同。