Department of Radiology, National Defense Medical College, Saitama, Japan.
D Clinic Tokyo, 10F, Pacific Century Place Marunouchi, Tokyo, Japan.
Skin Res Technol. 2021 Jan;27(1):56-61. doi: 10.1111/srt.12908. Epub 2020 Jun 28.
Although the structural changes of the scalp in androgenetic alopecia (AGA) have been reported, these changes have been poorly understood. It is expected that modern MRI would visualize the scalp anatomy in vivo. This study aimed to explore whether AGA causes (a) changes in the thickness of the scalp, (b) anatomical changes in the hair follicles, and (c) changes in the signal intensity of MRI.
Twenty-seven volunteers underwent MRI for hair and scalp (MRH) and were categorized into two according to the Hamilton-Norwood Scale: the "AGA group" and the "normal group." Two radiologists analyzed the thickness and signal intensity of the scalp, and the depth of hair follicles. These measurements were compared between the two groups.
The thickness of the hypodermis and the entire scalp was significantly thinner in the AGA group than in the control group. The AGA group had significantly shallower depth of hair follicles and relative depth of the hair follicles to that of the entire scalp than the normal group. The hypodermis showed higher signal intensity in the AGA group than the normal group.
MRH allowed noninvasive visualization of the scalp anatomy and demonstrated the thinner nature of the entire scalp and hypodermis, along with the shallower depth of the hair follicles in the AGA group in comparison to the normal group. Additionally, MRH demonstrated the increased MR signal intensity in the scalp associated with AGA. MRH may be a promising new method for quantitative and objective analyses of AGA.
尽管雄激素性脱发(AGA)的头皮结构变化已有报道,但这些变化仍知之甚少。预计现代 MRI 可以活体显示头皮解剖结构。本研究旨在探讨 AGA 是否会导致(a)头皮厚度变化,(b)毛囊解剖结构变化,和(c)MRI 信号强度变化。
27 名志愿者接受了头皮和头发 MRI(MRH)检查,并根据 Hamilton-Norwood 分级分为两组:“AGA 组”和“正常组”。两位放射科医生分析了头皮的厚度和信号强度,以及毛囊的深度。对两组之间的这些测量值进行了比较。
AGA 组的皮下组织和整个头皮的厚度明显比对照组薄。AGA 组的毛囊深度明显较浅,相对于整个头皮的毛囊深度也较浅。与正常组相比,AGA 组的皮下组织显示出更高的信号强度。
MRH 允许非侵入性地可视化头皮解剖结构,并显示了整个头皮和皮下组织变薄,以及 AGA 组的毛囊深度变浅。此外,MRH 显示了与 AGA 相关的头皮 MR 信号强度增加。MRH 可能是一种有前途的新方法,可用于 AGA 的定量和客观分析。