Wong B J, Milner T E, Kim H H, Stuart Nelson J, Sobol E N
J Biomed Opt. 1998 Oct;3(4):409-14. doi: 10.1117/1.429896.
Laser-assisted cartilage reshaping is mediated by thermally induced stress relaxation, and may be used to alter cartilage morphology for reconstructive surgical procedures in the upper airway and face without carving, morselizing, or suturing. Internal stress σ(t), integrated backscattered light intensity I(t) from a He-Ne probe laser (λ=632.8 nm), and radiometric surface temperature Sc(t) were measured during the reshaping of porcine nasal septal cartilage using a pulsed Nd:YAG laser (λ=1.32 μm). Internal stress and integrated backscattered light intensity were observed to increase, plateau, and then decrease in similar ways during laser irradiation. The plateau region occurred when the cartilage front surface temperature approached 65 °C. I(t) was utilized in a feedback control procedure to reshape cartilage specimens from a flat to a curved geometry. Immediately following laser irradiation, the tissues were rehydrated in normal saline for 15 min while wrapped around a small dowel. A stable shape change was retained for 21 days while the specimens were stored in normal saline at 5 °C. The backscattered light intensity signal mirrors underlying changes in internal stress, and further rate of change or slope of I(t) is nearly zero when the surface temperature reaches about 65 °C. Measurements of I(t) (or, equivalently, the fractional change in integrated backscattered light intensity ΔI(t)/I0) may be used to control the process of laser-assisted cartilage reshaping and minimize nonspecific thermal injury due to uncontrolled heating. © 1998 Society of Photo-Optical Instrumentation Engineers.
激光辅助软骨重塑是由热诱导应力松弛介导的,可用于改变软骨形态,用于上呼吸道和面部的重建手术,无需雕刻、切碎或缝合。在使用脉冲Nd:YAG激光(λ=1.32μm)重塑猪鼻中隔软骨的过程中,测量了内部应力σ(t)、来自He-Ne探测激光(λ=632.8nm)的背向散射光强度积分I(t)以及辐射表面温度Sc(t)。在激光照射期间,观察到内部应力和背向散射光强度积分以类似方式增加、达到平稳期然后下降。当软骨前表面温度接近65°C时出现平稳期。I(t)被用于反馈控制程序,将软骨标本从扁平形状重塑为弯曲形状。激光照射后,立即将组织包裹在一个小棒上,在生理盐水中再水化15分钟。当标本在5°C的生理盐水中储存时,稳定的形状变化保持了21天。背向散射光强度信号反映了内部应力的潜在变化,当表面温度达到约65°C时,I(t)的进一步变化率或斜率几乎为零。测量I(t)(或者等效地,背向散射光强度积分的分数变化ΔI(t)/I0)可用于控制激光辅助软骨重塑过程,并将由于不受控制的加热导致的非特异性热损伤降至最低。©1998光电仪器工程师协会。