Pelster Michael W, Maher Ian A
Micrographic Surgery & Dermatologic Oncology Fellow, Department of Dermatology, Saint Louis University School of Medicine, 1755 S. Grand Blvd, St. Louis, MO, 63104, USA.
Department of Dermatology, University of Minnesota, 516 Delaware St SE, Minneapolis, MN, 55455, USA.
Arch Dermatol Res. 2023 Apr;315(3):401-407. doi: 10.1007/s00403-022-02361-z. Epub 2022 Jun 23.
The bilobed flap (BLF) is a workhorse for nasal repair. Alterations to the length and orientation of the BLF's standing cutaneous deformity (SCD) have been suggested as a means of preventing Z-plasty-induced flap lengthening and consequent ipsilateral alar depression. To investigate the effect of design variations of the SCD on bilobed flap mechanics. Geometric analysis of the BLF was performed using commercially available graphing software. BLFs were designed with a SCD equal to one radius (rBLF) and one diameter (dBLF) of the primary defect as well as with a more superiorly-oriented one diameter SCD (soBLF). Lengths from the pivot point to the distal edges of the primary defect and primary lobe were measured and compared. Elongation or a more superior orientation of the SCD without changes to the rest of the flap design forms a primary lobe along a shorter arc resulting in insufficient flap length to resurface the primary defect. The insufficient length requires secondary motion to complete the repair and possible unintended alar displacement. Modification of the size and orientation of the SCD alters the location of the pivot point, which is a key determinant of BLF mechanics. Therefore, changes to the SCD require alterations to the remainder of the flap design to ensure aesthetic and functional success.
双叶皮瓣(BLF)是鼻部修复的常用方法。有人建议改变BLF的静止皮肤缺损(SCD)的长度和方向,以防止Z形成形术引起的皮瓣延长及随之而来的同侧鼻翼凹陷。为了研究SCD设计变化对双叶皮瓣力学的影响。使用商用绘图软件对BLF进行几何分析。设计的BLF的SCD分别等于原发缺损的一个半径(rBLF)和一个直径(dBLF),以及一个方向更靠上的一个直径的SCD(soBLF)。测量并比较从枢轴点到原发缺损和原发叶远端边缘的长度。SCD延长或方向更靠上而皮瓣设计的其他部分不变时,会沿着较短的弧线形成原发叶,导致皮瓣长度不足,无法覆盖原发缺损。长度不足需要二次移动来完成修复,并可能导致意外的鼻翼移位。SCD大小和方向的改变会改变枢轴点的位置,而枢轴点是BLF力学的关键决定因素。因此,SCD的改变需要对皮瓣设计的其余部分进行调整,以确保美观和功能上的成功。