基于患者比例的毛发移植永久区供体面积计算方法

Pub Date : 2024-06-12 DOI:10.1055/s-0044-1787655
Sudhanshu Punia, A. Goel, Amit Gupta
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引用次数: 0

摘要

摘要 引言 最常见的脱发类型是雄激素性脱发。Orentreich 的供体优势理论和安全供体区的定义是现代植发的理论基础。在安全供体区不会出现永久性脱发。了解这一点对于防止移植头发脱落非常重要。估算并不是为每个患者量身定做的,在早期阶段,边缘也被假定为将来不会脱发。我们的研究试图找到并建立安全区尺寸与其他标准头皮尺寸之间的关系,并有效预测脱发早期的完整安全区。材料与方法 2022 年 7 月至 12 月,纳入首批 100 名 Norwood IV 期以上脱发患者。首先,测量患者的头顶与枕部毛发质量和密度变化点之间的距离,并以此点为起点直到枕部突起。得出两者之间的比值。在接下来的 100 名诺伍德 II 至 IVa 期患者中,使用新比率评估永久区的适用性。结果 比值法考虑了患者的测量值,即永久性区域和距顶枕的总距离。我们得到的比率范围是永久区:从顶点到枕部的总距离:0.43-0.53 因此,永久区等于 = 从顶点到枕部的总距离 × 0.43-0.53。下限为枕骨。超过 90% 的患者移植头发的密度没有明显下降。结论 作者建议使用这种比率法来确定永久区的尺寸,尤其是根据诺伍德评分法确定早期脱发等级的患者。这是一个简单、有效、易于应用的概念,可以确保接受头发移植的患者获得持久的效果。
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Patient-Based Ratio Method for Permanent Zone Donor Area Calculation in Hair Transplant
Abstract Introduction  Most common type of hair loss is androgenetic alopecia. Orentreich's donor dominance theory and the definition of safe donor area are the theoretical foundation of modern hair transplantation. In safe donor area no progression of permanent hair loss occurs. Its knowledge is important to prevent loss of transplanted hair. Estimation is not tailored to every patient, also in early stages, the margins are assumed to be free from future hair loss. Our study is an attempt to find and establish a relationship between safe zone dimensions and other standard scalp dimensions, and effectively predict the complete safe zone in early stages of hair loss. Materials and Methods  From July to December 2022, the first 100 patients with Norwood IV onwards of hair loss were included. Then, the distance between the vertex and the point of change in occipital hair quality and density was measured, and from this point till occipital protuberance were taken. The ratio between the two was taken. In the next 100 patients of Norwood II to IVa, the applicability of the new ratio to assess the permanent zone was used. Results  Ratio method takes into account the patient's measurements, that is, permanent zone and total distance from vertex occiput. The ratio range we got is: Permanent zone: total distance from vertex to occiput: 0.43–0.53 Therefore, the permanent zone would be equal to = total distance from vertex to occiput × 0.43–0.53. With the lower limit being the occiput. Over 90% of the patients did not have significant reduction in density of transplanted hair. Conclusion  The authors suggest the use of this ratio method to determine the dimensions of the permanent zone especially in patients with early grades of hair loss as per the Norwood scale. It is a simple, effective, and easily applicable concept that can ensure long-lasting results in patients undergoing hair transplants.
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