Herek Duygu, Herek Ozkan, Akbulut Metin, Ufuk Furkan
Department of Radiology, Pamukkale University, School of Medicine, Denizli, Turkey
Department of Pediatric Surgery, Pamukkale University, School of Medicine, Denizli, Turkey.
J Ultrasound Med. 2016 Oct;35(10):2149-58. doi: 10.7863/ultra.15.11038. Epub 2016 Aug 8.
To evaluate the utility of real-time strain elastography in experimentally induced testicular torsion at different degrees and torsion hours.
Thirty-one Wistar albino rats were divided into 4 torsion groups by twisting left testes (group I, sham operated; group II, 360°; group III, 720°; and group IV, 1080°). Elastography was applied at the 8th and 24th hours of torsion. Elasticity patterns (pattern 1, soft testis; pattern 2, moderately soft testis; pattern 3, predominantly hard testis; and pattern 4, almost entirely hard testis) and strain ratios were recorded. Histopathologic evaluation was done at the 24th hour. Interobserver agreement was analyzed.
Changes in elastographic patterns and strain ratios among groups II, III, and IV were statistically significant at both hours as determined by both radiologists (P < .01). Elastographic patterns changed from 2 to 3 in groups II and III to 4 in group III between the 8th and 24th hours (P < .05), but in group IV, patterns were reversed, and pattern 1 was observed at both hours. Pathologically severe necrosis (grade 4) was seen in left testes in group IV. In the other groups, pathologic grading in the left testes was as follows: mostly grade 1 in groups I and II and mostly grade 2 in group III. Elastography showed that right testes were affected in group IV, with significant differences in elastographic patterns and strain ratios (P < .01). Interobserver agreement for elastographic patterns in right testes was substantial at the 8th hour (κ = 0.72) and otherwise excellent (κ = 0.81-0.85). Concordance of strain ratios between observers was excellent for right and left testes at the 8th and 24th hours (intraclass correlation coefficients, 0.990 at the 8th hour and 0.987 at the 24th hour).
Our results show that real-time strain elastography can be a complementary method in the evaluation of testicular tissue in testicular torsion and can guide surgeons in their surgical approach.
评估实时应变弹性成像技术在不同扭转程度和扭转时间的实验性睾丸扭转中的应用价值。
将31只Wistar白化大鼠通过扭转左侧睾丸分为4个扭转组(I组,假手术组;II组,360°扭转;III组,720°扭转;IV组,1080°扭转)。在扭转后第8小时和第24小时进行弹性成像检查。记录弹性模式(模式1,睾丸柔软;模式2,睾丸中度柔软;模式3,睾丸以硬为主;模式4,睾丸几乎完全变硬)和应变率。在第24小时进行组织病理学评估。分析观察者间的一致性。
II、III和IV组在两个时间点的弹性成像模式和应变率变化在两位放射科医生的判断下均具有统计学意义(P <.01)。II组和III组的弹性成像模式在第8小时到第24小时从模式2变为模式3,III组变为模式4(P <.05),但IV组模式相反,两个时间点均观察到模式1。IV组左侧睾丸病理显示严重坏死(4级)。其他组左侧睾丸的病理分级如下:I组和II组大多为1级,III组大多为2级。弹性成像显示IV组右侧睾丸也受到影响,弹性成像模式和应变率存在显著差异(P <.01)。观察者间对右侧睾丸弹性成像模式的一致性在第8小时为实质性(κ = 0.72),其他时间为优秀(κ = 0.81 - 0.85)。观察者间在第8小时和第24小时对右侧和左侧睾丸应变率的一致性均为优秀(组内相关系数,第8小时为0.990,第24小时为0.987)。
我们的结果表明,实时应变弹性成像可作为评估睾丸扭转中睾丸组织的一种辅助方法,并可指导外科医生的手术方式。