Introduction: The aim of this study was to identify whether high-frequency ultrasound (HFUS) could correct the misdiagnosis, confirm equivocal skin lesions, and improve the management after clinical examination. Methods: In this study, a total of 574 skin lesions from 552 patients were prospectively enrolled. The specific diagnosis and management decisions (treatment/excision, observation) determined by HFUS after clinical examination were recorded during the clinical practice. The area under the receiver operating characteristic curve, accuracy, sensitivity, specificity, positive predictive value, negative predictive value, and the number needed to excise (NNE) before and after HFUS were also evaluated. The pathological results were conducted as golden standards to compare the performance. Results: Among the 574 skin lesions, 290 (50.5%) were malignancies and 284 (49.5%) were benign. The diagnostic accuracy was improved from 77.5% to 90.8% after the HFUS examination. There were 44 lesions wrongfully diagnosed by the initial clinical diagnosis, whereas 28 of 44 (63.6%) lesions were correctly identified by HFUS examination. Of 85 lesions categorized as equivocal skin lesions by clinical examination, 65 (76.5%) were diagnosed correctly after HFUS. Lesion management changed in 72 of 574 (12.5%) after HFUS. Among these lesions, HFUS saved 22 unnecessary excisions and prompted the treatment of 30 malignancies that would be observed based on clinical examination alone. Additionally, the NNE was reduced by 15.4% (NNE, 0.828) after HFUS and 4.6% (NNE, 0.933) before HFUS. Conclusions: HFUS could be a valuable tool in diagnosing equivocal skin lesions, identifying skin cancers missed by clinical examination, and reducing unnecessary excision of benign lesions while improving NNE.

1.
Wortsman
X
.
Common applications of dermatologic sonography
.
J Ultrasound Med
.
2012
;
31
(
1
):
97
111
.
2.
Barcaui
EO
,
Carvalho
AC
,
Lopes
FP
,
Piñeiro-Maceira
J
,
Barcaui
CB
.
High frequency ultrasound with color Doppler in dermatology
.
An Bras Dermatol
.
2016
;
91
(
3
):
262
73
.
3.
Combalia
A
,
Carrera
C
.
Squamous cell carcinoma: an update on diagnosis and treatment
.
Dermatol Pract Conce
.
2020
;
10
(
3
):
e2020066
.
4.
Czajkowska
J
,
Badura
P
,
Korzekwa
S
,
Płatkowska-Szczerek
A
.
Deep learning approach to skin layers segmentation in inflammatory dermatoses
.
Ultrasonics
.
2021
;
114
:
106412
.
5.
Levy
J
,
Barrett
DL
,
Harris
N
,
Jeong
JJ
,
Yang
X
,
Chen
SC
.
High-frequency ultrasound in clinical dermatology: a review
.
Ultrasound J
.
2021
;
13
(
1
):
24
.
6.
Raza
S
,
Ali
F
,
Al-Niaimi
F
.
Ultrasonography in diagnostic dermatology: a primer for clinicians
.
Arch Dermatol Res
.
2023
;
315
(
1
):
1
6
.
7.
Kleinerman
R
,
Whang
TB
,
Bard
RL
,
Marmur
ES
.
Ultrasound in dermatology: principles and applications
.
J Am Acad Dermatol
.
2012
;
67
(
3
):
478
87
.
8.
Alfageme Roldán
F
.
Ultrasound skin imaging
.
Actas Dermosifiliogr
.
2014
;
105
(
10
):
891
9
.
9.
Dinnes
J
,
Bamber
J
,
Chuchu
N
,
Bayliss
SE
,
Takwoingi
Y
,
Davenport
C
, et al
.
High-frequency ultrasound for diagnosing skin cancer in adults
.
Cochrane Database Syst Rev
.
2018
;
12
:
CD013188
.
10.
Catalano
O
,
Roldán
FA
,
Varelli
C
,
Bard
R
,
Corvino
A
,
Wortsman
X
.
Skin cancer: findings and role of high-resolution ultrasound
.
J Ultrasound
.
2019
;
22
(
4
):
423
31
.
11.
Wortsman
X
,
Wortsman
J
.
Clinical usefulness of variable-frequency ultrasound in localized lesions of the skin
.
J Am Acad Dermatol
.
2010
;
62
(
2
):
247
56
.
12.
Wang
LF
,
Zhu
AQ
,
Wang
Q
,
Li
XL
,
Yan
JN
,
Shi
H
, et al
.
Value of high-frequency ultrasound for differentiating invasive basal cell carcinoma from non-invasive types
.
Ultrasound Med Biol
.
2021
;
47
(
10
):
2910
20
.
13.
Zhu
AQ
,
Wang
LF
,
Li
XL
,
Wang
Q
,
Li
MX
,
Ma
YY
, et al
.
High-frequency ultrasound in the diagnosis of the spectrum of cutaneous squamous cell carcinoma: noninvasively distinguishing actinic keratosis, Bowen's Disease, and invasive squamous cell carcinoma
.
Skin Res Technol
.
2021
;
27
(
5
):
831
40
.
14.
Shan
D
,
Wu
N
,
Wang
Q
,
Ren
W
,
Zhu
A
,
Wang
L
, et al
.
Value of pseudopod sign on high-frequency ultrasound in predicting the pathological invasion of extramammary Paget’s disease lesions
.
J Eur Acad Dermatol
.
2022
;
36
(
8
):
1235
45
.
15.
Yélamos
O
,
Manubens
E
,
Jain
M
,
Chavez-Bourgeois
M
,
Pulijal
SV
,
Dusza
SW
, et al
.
Improvement of diagnostic confidence and management of equivocal skin lesions by integration of reflectance confocal microscopy in daily practice: prospective study in 2 referral skin cancer centers
.
J Am Acad Dermatol
.
2020
;
83
(
4
):
1057
63
.
16.
Reizner
GT
,
Chuang
TY
,
Elpern
DJ
,
Stone
JL
,
Farmer
ER
.
Bowen’s disease (squamous cell carcinoma in situ) in Kauai, Hawaii. A population-based incidence report
.
J Am Acad Dermatol
.
1994
;
31
(
4
):
596
600
.
17.
Zou
MH
,
Huang
Q
,
Yang
T
,
Jiang
Y
,
Zhang
LJ
,
Xie
Y
, et al
.
Role of ultrasound in the diagnosis of primary and recurrent dermatofibrosarcoma protuberans
.
BMC Cancer
.
2021
;
21
(
1
):
909
.
18.
Xu
HX
,
Guo
LH
,
Wang
Q
, editors.
Diagnostic ultrasound in dermatology
.
Singapore
:
Springer
;
2022
. p.
158
.
19.
Gniadecka
M
.
Effects of ageing on dermal echogenicity
.
Skin Res Technol
.
2001
;
7
(
3
):
204
7
.
20.
Zhang
YQ
,
Wang
LF
,
Ni
N
,
Li
XL
,
Zhu
AQ
,
Guo
LH
, et al
.
The value of ultra-high frequency ultrasound for the differentiation between superficial basal cell carcinoma and Bowen’s disease
.
Dermatology
.
2023
;
239
(
4
):
572
83
.
You do not currently have access to this content.