
==== Front
Endosc Ultrasound
Endosc Ultrasound
EUSJ
Endoscopic Ultrasound
2303-9027
2226-7190
Lippincott Williams & Wilkins

EUSJ_240064
10.1097/eus.0000000000000064
00012
3
Images and Videos
Contrast-enhanced harmonic EUS with time-intensity curve analysis useful for diagnosis of pancreatic metastasis from renal cell carcinoma (with videos)
Saima Asumi lunekuumn@gmail.com
1
Kazumori Hideaki 1 ∗
Tsunoda Hiroaki tsuno@me.com
1
Onishi Koji kouji-onisi-mf@healthcarenet.jp
1
Kawashima Kousaku kk461223@med.shimane-u.ac.jp
2
1 Department of Gastroenterology, Matsue Seikyo General Hospital, Matsue, Shimane, Japan
2 Department of Internal Medicine II, Shimane University, Izumo, Shimane, Japan.
∗ Address for correspondence: Department of Gastroenterology, Matsue Seikyo General Hospital, 690-0017 Nishitsuda 8-8-8, Matsue, Shimane, Japan. E-mail: kazumorihideaki@yahoo.co.jp (H. Kazumori).
May-Jun 2024
25 6 2024
13 3 201204
04 1 2024
18 4 2024
Copyright © 2024 The Author(s). Published by Wolters Kluwer Health, Inc on behalf of Scholar Media Publishing.
2024
Wolters Kluwer on behalf of Scholar Media Publishing.
https://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND), where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.

OPEN-ACCESSTRUE
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pmcPancreatic metastasis from a renal cell carcinoma (PRCC) is rare, and diagnosis difficult. Recently, EUS-related procedures, including elastography, contrast-enhanced harmonic EUS (CE-EUS), and fine-needle aspiration (FNA), have been used as diagnostic tools for pancreatic tumor cases. Reported here are findings obtained with EUS-related procedures for PRCC diagnosis.

A 59-year-old woman underwent a computed tomography examination, which indicated multiple pancreatic tumors [Figure 1]. EUS findings revealed round tumors, in the head, body, and tail of the pancreas, with diameters of 15, 15, and 39 mm, respectively [Figure 2]. Furthermore, elastography results showed homogeneous blue patterns in the head and body tumors and a heterogeneous blue-predominant pattern in the tail tumor [Figure 3]. CE-EUS revealed hyperenhancement in the early phase in all 3 [Figure 4, Video 1]. Similar time-intensity curve (TIC) and calculated values were noted for all tumors regardless of size or location [Figure 5, Table 1]. A final diagnosis was successfully determined based on FNA results [Figure 6, Video 2].

Figure 1 Computed tomography images. Hyperenhancement of tumors in the head, body, and tail of the pancreas in the arterial phase was noted. (A) Tumor in head. (B) Tumor in body. (C) Tumor in tail.

Figure 2 EUS images. Conventional EUS revealed round isoechoic tumors, in the head, body, and tail of the pancreas. (A) Tumor in head. (B) Tumor in body. (C) Tumor in tail.

Figure 3 EUS elastography images. (A) Tumor in head. Homogeneous blue pattern suggesting malignant tumor. (B) Tumor in body. Homogeneous blue pattern suggesting malignant tumor. (C) Tumor in tail. Heterogeneous blue-predominant pattern suggesting malignant tumor with necrosis.

Figure 4 Contrast-enhanced US images at peak. Images were obtained using contrast-enhanced harmonic EUS (EU-ME2 PREMIER PLUS; Olympus, Tokyo, Japan) at peak intensity after injection of perflubutane (Sonazoid; GE Healthcare Pharma, Tokyo, Japan). (A) Tumor in head. (B) Tumor in body. (C) Tumor in tail.

Figure 5 Time-intensity curve analysis results. Characteristic visual findings showing hyperenhancement and slow washout in 3 tumors were objectively obtained. Yellow line shows contrast intensity of pancreatic tumor. Light blue line shows contrast intensity of surrounding pancreatic parenchyma. Red line shows base echo intensity of pancreatic tumor before injection of the contrast agent. Blue line shows base echo intensity of surrounding pancreatic parenchyma before injection of the contrast agent. (A) Tumor in head. (B) Tumor in body. (C) Tumor in tail.

Table 1 Calculated results from time-intensity curve analysis.

	Igain of tumor (dB)	Igain of pancreas parenchyma (dB)	ER	RR120	
Head	183.32	91.66	2.00	0.30	
Body	213.90	100.00	2.14	0.34	
Tail	161.20	72.20	2.23	0.35	
ER: elevation rate [ER is (Igain of tumor)/(Igain of pancreatic parenchyma)]; Igain: peak intensity-base intensity; Igain of tumor/Igain of pancreatic parenchyma; RR120: reduction rate at 120 s; peak intensity-intensity at 120 s/peak intensity.

Figure 6 Histopathological findings. Referral to previous nephrectomy specimen findings confirmed metastasis from RCC. (A) FNA specimen from tumor in head. (B) High-power view of FNA specimen. (C) High-power view of nephrectomy specimen. FNA: fine-needle aspiration.

Although FNA can provide definitive results, those are not always accurate[1]; thus, an alternative method is needed when an adequate sample cannot be obtained. Diagnosis of PRCC requires differentiation from other pancreatic tumors, especially pancreatic neuroendocrine neoplasm (PNEN). Elastography findings showing a blue-predominant pattern indicate possible malignancy,[2] although additional evaluation is required for differentiation from PNEN. Takada et al reported precise CE-EUS values for TIC analyses of PNEN,[3] including enhancement ratio (ER) values of 1.51 for G1/G2 and 0.77 for G3/neuroendocrine carcinoma (NEC), whereas the reduction rate at 120 s (RR120) for each was 0.37 and 0.82, respectively. Precise TIC value for PRCC has not been reported. The ER of the present PRCCs was 2 units, beyond the value for PNEN, whereas the RR120 value was 0.3 units, equivalent to G1/G2 and lower than G3/NEC. Our results indicate that a high ER value suggests PRCC possibility. Furthermore, the low RR120 values were useful for differentiation from G3/NEC.

CE-EUS findings with TIC analysis are considered to be effective for PRCC diagnosis, whereas accumulation of quantified data will lead to a definitive diagnosis strategy.

Declaration of Informed Consent

The authors certify that they have obtained all appropriate patient consent forms. In the form, the patient has given her consent for her images and other clinical information to be reported in the journal. The patient understands that her name and initials will not be published and due efforts will be made to conceal her identity, but anonymity cannot be guaranteed.

Conflicts of Interest

The authors declare that they have no financial conflict of interest with regard to the content of this report.

Author Contributions

The authors provided care for the patient and also contributed to writing and editing the manuscript.

Source of Funding

None.

Published online: 25 June 2024
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References

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