Difference between revisions of "Ultrasonography of the scrotum"

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==Extratesticular tumors==
 
==Extratesticular tumors==
Although most of the extratesticular lesions are benign, malignancy does occur; the most
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{{Main|Ultrasonography of extratesticular tumors}}
common malignant tumors in infants and children are rhabdomyosarcomas. Other malignant tumors include liposarcoma, leiomyosarcoma, malignant fibrous histiocytoma and mesothelioma.<ref name="MakTzeng2012"/>
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<gallery mode="packed" heights="150">
 
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[[File:Scrotal ultrasonography of rhabdomyosarcoma.jpg|Rhabdomyosarcoma (a) Longituidinal section (composite image) of high resolution ultrasound of a 14 year-old boy shows a well defined hypoechoic extratesticular mass is found in the left scrotum, hydrocele is also present. (b) Color Doppler ultrasound shows that the mass is hypervascular.<ref name="MakTzeng2012"/>
===Rhabdomyosarcoma===
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File:Scrotal ultrasonography of mesothelioma.jpg|Mesothelioma arising from the tunica vaginalis. Color Doppler ultrasound demonstrates a well-defined hypoechoic nodule occupying the left epididymal head, with a few areas of color flow demonstrated. The left testis is intact with no focal nodule detected. Hydrocele is also present.<ref name="MakTzeng2012"/>
[[File:Scrotal ultrasonography of rhabdomyosarcoma.jpg|thumb|Rhabdomyosarcoma (a) Longituidinal section (composite image) of high resolution ultrasound of a 14 year-old boy shows a well defined hypoechoic extratesticular mass is found in the left scrotum, hydrocele is also present. (b) Color Doppler ultrasound shows that the mass is hypervascular.<ref name="MakTzeng2012"/>]]
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File:Scrotal ultrasonography of leiomyoma.jpg|Leiomyoma arising from tunica albuginea. (a) Montage of 2 contiguous sonograms of a 67 year-old man shows a well-defined extratesticular mass with a whorl-shaped echotexture. (b) Color
 
 
Rhabdomyosarcoma is the most common tumor of the lower genitourinary tract in children in
 
the first two decades, it may develop anywhere in the body, and 4% occur in the paratesticular
 
region which carries a better outcome than lesions elsewhere in the genitourinary tract. Clinically, the patient usually presents with non-specific complaints of a unilateral, painless intrascrotal swelling not associated with fever.<ref name="MakTzeng2012"/>
 
 
 
Transillumination test is positive when a hydrocele is present, often resulting in a
 
misdiagnosis of epididymitis, which is more commonly associated with hydrocele.
 
The ultrasound findings of paratesticular rhabdomyosarcoma are variable. It usually
 
presents as an echo-poor mass [Fig. 11a] with or without hydrocele. With color Doppler sonography these tumors are generally hypervascular.<ref name="MakTzeng2012"/>
 
 
 
===Mesothelioma===
 
[[File:Scrotal ultrasonography of mesothelioma.jpg|thumb|Mesothelioma arising from the tunica vaginalis. Color Doppler ultrasound demonstrates a well-defined hypoechoic nodule occupying the left epididymal head, with a few areas of color flow demonstrated. The left testis is intact with no focal nodule detected. Hydrocele is also present.<ref name="MakTzeng2012"/>]]
 
 
 
Malignant mesothelioma is an uncommon tumor arising in body cavities lined by
 
mesothelium. The majority of these tumors are found in the pleura, peritoneum and less
 
frequently pericardium. As the tunica vaginalis is a layer of reflected peritoneum,
 
mesothelioma can occur in the scrotal sac. Although trauma, herniorrhaphy and long term
 
hydrocele have been considered as the predisposing factors for development of malignant mesothelioma, the only well
 
established risk factor is asbestos exposure. Patients with
 
malignant mesothelioma of the tunica vaginalis frequently have a progressively enlarging
 
hydrocele and less frequently a scrotal mass, rapid re-accumulation of fluid after aspiration
 
raises the suggestion of malignancy.<ref name="MakTzeng2012"/>
 
 
 
The reported ultrasound features of mesothelioma of the tunica vaginalis testis are variable.
 
Hydrocele, either simple or complex is present and may be associated with:<ref name="MakTzeng2012"/>
 
#multiple extratesticular papillary projections of mixed echogenicity;
 
#multiple extratesticular nodular masses of increased echogenicity;
 
#focal irregular thickening of the tunica vaginalis testis; (4) a simple
 
hydrocele as the only finding and
 
#A single hypoechoic mass located in the epididymal head. With color Doppler sonography, mesothelioma is hypovascular [Fig. 12].
 
 
 
===Leiomyoma===
 
[[File:Scrotal ultrasonography of leiomyoma.jpg|thumb|Leiomyoma arising from tunica albuginea. (a) Montage of 2 contiguous sonograms of a 67 year-old man shows a well-defined extratesticular mass with a whorl-shaped echotexture. (b) Color
 
 
Doppler sonogram shows no internal vascularity. Note the presence of multiple shadows
 
Doppler sonogram shows no internal vascularity. Note the presence of multiple shadows
not associated with echogenic foci in the mass.<ref name="MakTzeng2012"/>]]
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not associated with echogenic foci in the mass.<ref name="MakTzeng2012"/>
 
 
Leiomyomas are benign neoplasms that may arise from any structure or organ containing
 
smooth muscle. The majority of genitourinary leiomyomas are found in the renal capsule,
 
but this tumor has also been reported in the epididymis, spermatic cord, and tunica
 
albuginea. Scrotal leiomyomas have been reported in patients from the fourth to ninth
 
decades of life with most presenting during the fifth decade. These tumors are generally
 
slow growth and asymptomatic. The sonographic features of leiomyomas have been
 
reported as solid hypoechoic or heterogeneous masses that may or may not contain
 
shadowing calcification. Other findings include whorl shaped configuration [Fig. 13a] of the nodule and multiple, narrow areas of shadowing not cast by calcifications [Fig. 13b], but corresponding to transition zones between the various tissue components of the mass are characteristic of leiomyoma and may help
 
differentiate it from other scrotal tumors.<ref name="MakTzeng2012"/>
 
 
 
===Fat containing tumors===
 
====Lipoma====
 
[[File:Scrotal ultrasonography of lipoma.jpg|thumb|Lipoma at spermatic cord and testiscle. (a) Longitudinal scrotal sonography of a 61 year-old patient shows a well defined hyperechoic nodule is seen in the scrotum. (b) Scrotal sonography of the same patient shows a hyper echoic nodule in the left testis, pathology proved that this is a lipoma too.]]
 
 
 
Lipoma is the most common nontesticular intrascrotal tumor. It can be divided into 3 types
 
depending upon the site of origination and spread:<ref name="MakTzeng2012"/>
 
#Originating in the spermatic cord with spread to the scrotum;
 
#Originating and developing within the cord (most common type) and
 
#Originating and developing within the scrotum.
 
 
 
At ultrasound, lipoma is a well–defined, homogeneous, hyperechoic paratesticular lesion of
 
varying size [Fig. 14]. The simple finding of an echogenic fatty mass within the inguinal
 
canal, while suggestive of a lipoma, should also raise a question of fat from the omentum
 
secondary to an inguinal hernia. However lipomas are well-defined masses, whereas
 
herniated omentum appears to be more elongated and can be traced to the inguinal area,
 
hence scanning along the inguinal canal as well as the scrotum is necessary to make the
 
differential diagnosis. Magnetic resonance imaging and computerized tomography are
 
helpful in doubtful cases.<ref name="MakTzeng2012"/>
 
 
 
====Liposarcoma====
 
Malignant extratesticular tumors are rare. Most of the malignant tumors are solid and have
 
nonspecific features on ultrasonography. The majority of the malignant extratesticular
 
tumors arise from spermatic cord with liposarcoma being the most common in adults. On gross specimen, liposarcoma is a solid, bulky lipomatous tumor
 
with heterogeneous architecture, often containing areas of calcification. Although the sonographic appearances of liposarcoma are variable and nonspecific, it
 
still provides a clue about the presence of lipomatous matrix.Echogenic areas corresponding
 
to fat often associated with poor sound transmission and areas of heterogeneous
 
echogenicity corresponding to nonlipomatous component are present. Some
 
liposarcomas may also mimic the sonographic appearance of lipomas [Fig. 16] and hernias
 
that contain omentum, but lipomas are generally smaller and more homogeneous and
 
hernias are elongated masses that can often be traced back to the inguinal canal. CT and MR
 
imaging are more specific, as they can easily recognize fatty component along with other
 
soft tissue component more clearly than ultrasound.
 
 
 
<gallery widths=180 heights=150>
 
 
File:Scrotal ultrasonography of liposarcoma.jpg|Liposarcoma. A heterogeneous mass consists of an upper hyperechoic portion corresponds to lipomatous matrix and areas of hypoechogenicity corresponds to nonlipomatous component is seen.<ref name="MakTzeng2012"/>
 
File:Scrotal ultrasonography of liposarcoma.jpg|Liposarcoma. A heterogeneous mass consists of an upper hyperechoic portion corresponds to lipomatous matrix and areas of hypoechogenicity corresponds to nonlipomatous component is seen.<ref name="MakTzeng2012"/>
 
File:Scrotal ultrasonography of liposarcoma mimicking a lipoma.jpg|Fig. 16. Liposarcoma mimicking lipoma. A homogeneous hypoechoic mass presents with the same appearance of lipoma, rapid growth of this tumors grants surgical intervention with pathology proved to be well differentiated liposarcoma.<ref name="MakTzeng2012"/>
 
File:Scrotal ultrasonography of liposarcoma mimicking a lipoma.jpg|Fig. 16. Liposarcoma mimicking lipoma. A homogeneous hypoechoic mass presents with the same appearance of lipoma, rapid growth of this tumors grants surgical intervention with pathology proved to be well differentiated liposarcoma.<ref name="MakTzeng2012"/>
</gallery>
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File:Scrotal ultrasonography of adenomatoid tumor at epididymis.jpg|Adenomatoid tumor at epididymis. A nodule that is isoechoic to the testis is seen occupying nearly the entire epididymal tail.<ref name="MakTzeng2012"/>
 
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File:Scrotal ultrasonography of fibrous pseudotumour.jpg|Fibrous pseudotumor. A homogeneous hypoechoic nodular lesion is seen attached to the tunica associated with minimal amount of hydrocele.<ref name="MakTzeng2012"/>
===Adenomatoid tumor===
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File:Scrotal ultrasonography with Doppler of fibrous pseudotumour.jpg|Fibrous pseudotumor. With color Doppler, a little vascular flow is seen in this fibrous pseudotumor.<ref name="MakTzeng2012"/>
[[File:Scrotal ultrasonography of adenomatoid tumor at epididymis.jpg|thumb|Adenomatoid tumor at epididymis. A nodule that is isoechoic to the testis is seen occupying nearly the entire epididymal tail.<ref name="MakTzeng2012"/>]]
 
 
 
Adenomatoid tumors are the most common tumors of the epididymis and account for
 
approximately 30% of all paratesticular neoplasms, second only to lipoma. They are usually unilateral, more common on the left side, and usually involve the
 
epididymal tail. Adenomatoid tumor typically occurs in men during the third and fourth
 
decades of life. Patients usually present with a painless scrotal mass that is smooth, round
 
and well circumscribed on palpation. They are believed to be of mesothelial origin and are
 
universally benign. Their sonographic appearance is that of a round shaped, well-defined,
 
homogeneous mass with echogenicity ranging from hypo- to iso- to hyperechoic.<ref name="MakTzeng2012"/>
 
 
 
===Fibrous pseudotumor===
 
Fibrous pseudotumors, also known as fibromas are thought to be reactive, nonneoplastic
 
lesions. They can occur at any age, about 50% of fibromas are associated with hydrocele, and
 
30% are associated with a history of trauma or inflammation (Akbar et al, 2003). Although
 
the exact cause of this tumor is not completely understood, it is generally believed that these
 
lesions represent a benign reactive proliferation of inflammatory and fibrous tissue, in
 
response to chronic irritation.
 
Sonographic evaluation generally shows one or more solid nodules arising from the tunica
 
vaginalis, epididymis, spermatic cord and tunica albuginea [Fig. 18]. A hydrocele is frequently
 
present too. The nodules may appear hypoechoic or hyperechoic, depending on the amount of collagen or fibroblast present.
 
Acoustic shadowing may occur in the absence of calcification due to the dense collagen
 
component of this tumor. With color Doppler sonography, a small to moderate amount of
 
vascularity may be seen [Fig. 19].<ref name="MakTzeng2012"/>
 
 
 
<gallery widths=180 heights=150>
 
File:Scrotal ultrasonography of fibrous pseudotumour.jpg|Fig. 18. Fibrous pseudotumor. A homogeneous hypoechoic nodular lesion is seen attached to the tunica associated with minimal amount of hydrocele.<ref name="MakTzeng2012"/>
 
File:Scrotal ultrasonography with Doppler of fibrous pseudotumour.jpg|Fig. 19. Fibrous pseudotumor. With color Doppler, a little vascular flow is seen in this fibrous pseudotumor.<ref name="MakTzeng2012"/>
 
</gallery>
 
  
 
==Inflammation==
 
==Inflammation==

Revision as of 12:37, 9 July 2018

Authors: Mikael Häggström; Authors of Creative Commons article[1] [notes 1]

File:Ultrasonography of a normal testicle.jpg
Sonography of a normal testis. The normal testis presents as a structure having homogeneous, medium level, granular echotexture. The mediastinum testis appears as the hyperechoic region located at the periphery of the testis as seen in this figure.[1]

Scrotal (or transscrotal) ultrasound is used in the evaluation of testicular pain, and can help identify solid masses.[2]

Indications

Although the development of new imaging modality such as computerized tomography and magnetic resonance imaging have open a new era for medical imaging, high resolution sonography remains as the initial imaging modality of choice for evaluation of scrotal disease. Many of the disease processes, such as testicular torsion, epididymo-orchitis, and intratesticular tumor, produce the common symptom of pain at presentation, and differentiation of these conditions and disorders is important for determining the appropriate treatment. High resolution ultrasound helps in better characterize some of the intrascrotal lesions, and suggest a more specific diagnosis, resulting in more appropriate treatments and avoiding unnecessary operation for some of the diseases.[1]

Imaging technique

For any scrotal examination, thorough palpation of the scrotal contents and history taking should precede the sonographic examination. Patients are usually examined in the supine position with a towel draped over his thighs to support the scrotum. Warm gel should always be used because cold gel can elicit a cremasteric response resulting in thickening of the scrotal wall; hence a thorough examination is difficult to be performed. A high resolution, near-focused, linear array transducer with a frequency of 7.5 MHz or greater is often used because it provides increased resolutions of the scrotal contents. Images of both scrotum and bilateral inguinal regions are obtained in both transverse and longitudinal planes. Color Doppler and pulsed Doppler examination is subsequently performed, optimized to display low-flow velocities, to demonstrate blood flow in the testes and surrounding scrotal structures. In evaluation of acute scrotum, the asymptomatic side should be scanned first to ensure that the flow parameters are set appropriately. A transverse image including all or a portion of both testicles in the field of view is obtained to allow side-to-side comparison of their sizes, echogenicity, and vascularity. Additional views may also be obtained with the patient performing Valsalva maneuver.[1]

Anatomy

File:Ultrasonography of a normal epididymal head.jpg
Normal epididymal head. The epididymal head, usually iso- or slightly hyperechoic than the testis is seen located cephalad to the testis.[1]

The normal adult testis is an ovoid structure measuring 3 cm in anterior-posterior dimension, 2–4 cm in width, and 3–5 cm in length. Normal volume is 18 cm³ per testis on average (range 12 cm³ to 30 cm³.[3] Both the sizes and weights of the testes normally decrease with age. At ultrasound, the normal testis has a homogeneous, medium-level, granular echotexture. The testicle is surrounded by a dense white fibrous capsule, the tunica albuginea, which is often not visualized in the absence of intrascrotal fluid. However, the tunica is often seen as an echogenic structure where it invaginates into the testis to form the mediastinum testis. In the testis, the seminiferous tubules converge to form the rete testes, which is located in the mediastinum testis. The rete testis connects to the epididymal head via the efferent ductules. The epididymis is located posterolateral to the testis and measures 6–7 cm in length. At sonography, the epididymis is normally iso- or slightly hyperechoic to the normal testis and its echo texture may be coarser. The head is the largest and most easily identified portion of the epididymis. It is located superior-lateral to the upper pole of the testicle and is often seen on paramedian views of the testis. The normal epididymal body and tail are smaller and more variable in position.[1]

The testis obtains its blood supply from the deferential, cremasteric and testicular arteries. The right and left testicular arteries, branches of the abdominal aorta, arise just distal to the renal arteries, provide the primary vascular supply to the testes. They course through the inguinal canal with the spermatic cord to the posterior superior aspect of the testis. Upon reaching the testis, the testicular artery divides into branches, which penetrate the tunica albuginea and arborize over the surface of the testis in a layer known as tunica vasculosa. Centripetal branches arising from the capsular arteries carry blood toward the mediastinum, where they divide to form the recurrent rami that carry blood away from the mediastinum into the testis. The deferential artery, a branch of the superior vesicle artery and the cremasteric artery, a branch of the inferior epigastric artery, supply the epididymis, vas deferens, and peritesticular tissue.[1]

File:Ultrasonography of an appendix on a testicle in a hydrocele.jpg
Scrotal ultrasonography with Doppler of an 85 year old man with hydrocele, making the appendix of the testicle clearly distinctive as a 4 mm outpouching.

Four testicular appendages have been described: the appendix testis, the appendix epididymis, the vas aberrans, and the paradidymis. They are all remnants of embryonic ducts. Among them, the appendix testis and the appendix epididymis are usually seen at scrotal US. The appendix testis is a mullerian duct remnant and consists of fibrous tissue and blood vessels within an envelope of columnar epithelium. The appendix testis is attached to the upper pole of the testis and found in the groove between the testis and the epididymis. The appendix epididymis is attached to the head of the epididymis. The spermatic cord, which begins at the deep inguinal ring and descends vertically into the scrotum consists of vas deferens, testicular artery, cremasteric artery, deferential artery, pampiniform plexuses, genitofemoral nerve, and lymphatic vessel.[1]

Intratesticular tumors

Main article: Ultrasonography of intratesticular tumors

Extratesticular tumors

Main article: Ultrasonography of extratesticular tumors

Testicular torsion

File:Scrotal ultrasonography of testicular torsion.jpg
Fig. 26. Testicular torsion of the right testis. Absence of vascular flow and ill-defined hypoechoic lesions are seen in the testis.[1]

The normal testis and epididymis are anchored to the scrotal wall. If there is a lack of development of these attachments, the testis is free to twist on its vascular pedicle. This will result in torsion of the spermatic cord and interruption of testicular blood flow. Testicular torsion occurs most commonly at 12 to 18 years but can occur at any age. Torsion results in swelling and edema of the testis, and as the edema increases, testicular perfusion is further altered. The extent of testicular ischemia depends on the degree of torsion, which ranges from 180° to 720° or greater. The testicular salvage rate depends on the degree of torsion and the duration of ischemia. A nearly 100% salvage rate exists within the first 6 hours after the onset of symptoms; a 70% rate, within 6–12 hours; and a 20% rate, within 12–24 hours. Therefore testicular torsion is a surgical emergency and the role of ultrasound is to differentiate it from epididymitis as both disease presents with acute testicular pain clinically.[1]

There are two types of testicular torsion: extravaginal and intravaginal. Extravaginal torsion occurs exclusively in newborns. Ultrasound findings include an enlarged heterogeneous testis, ipsilateral hydrocele, thickened scrotal wall and absence of vascular flow in the testis and spermatic cord. The ultrasound findings of intravaginal torsion vary with the duration and the degree of rotation of the spermatic cord. Gray scale ultrasound may appear normal if the torsion is just occurred. At 4-6 hours after onset of torsion, enlarged testis with decreased echogenicity is seen. At 24 hours after onset, the testis appears heterogeneous due to vascular congestion, hemorrhage and infarction. As gray scale ultrasound is often normal during early onset of torsion, Doppler sonography is considered as essential in early diagnosis of testicular torsion. The absence of testicular flow at color and power Doppler ultrasound is considered diagnostic of ischemia, provided that the scanner is set for detection of slow flow, the sampling box is small and the scanner is adjusted for the lowest repetition frequency and the lowest possible threshold setting.[1]

Varicocele

File:Scrotal ultrasonography of varicocele.jpg
Fig. 27. Varicocele. (a) Multiple tortuous tubular like structure are seen in the left scrotum. (b) Color Doppler sonography shows vascular reflux during Valsalva’s maneuver.[1]
File:Scrotal ultrasonography of intratesticular varicocele.jpg
Fig. 28. Intratesticular varicocele. (a) Dilated tubular structures are seen within the testis. (b) Presence of vascular reflux is noted during Valsalva’s maneuver.[1]

Varicocele refers to an abnormal dilatation of the veins of the spermatic cord due to incompetence of valve in the spermatic vein. This results in impaired blood drainage into the spermatic vein when the patient assumes a standing position or during Valsalva’s maneuver. Varicoceles are more common on the left side due to the following reasons (a) The left testicular vein is longer; (b) the left testicular vein enters the left renal vein at a right angle; (c) the left testicular artery in some men arches over the left renal vein, thereby compressing it; and (d) the descending colon distended with feces may compress the left testicular vein.[1]

The US appearance of varicocele consists of multiple, hypoechoic, serpiginous, tubular like structures of varying sizes larger than 2 mm in diameter that are usually best visualized superior or lateral to the testis [Fig. 27a]. Color flow and duplex Doppler US optimized for low-flow velocities help confirm the venous flow pattern, with phasic variation and retrograde filling during a Valsalva’s maneuver [Fig. 27b]. Intratesticular varicocele may appear as a vague hypoechoic area in the testis or mimics tubular ectasia. With color Doppler, this intratesticular hypoechoic area also showed reflux of vascular flow during Valsalva’s maneuver [Fig. 28].[1]

Undescended testis

File:Scrotal ultrasonography of undescended testis.jpg
Fig. 29. Undescended testis. (a) Normal testis in the scrotum. (b) Atrophic and decreased echogenicity of the contralateral testis of the same patient seen in the inguinal region.[1]

Normally the testes begin its descent through the inguinal canal to the scrotum at 36 weeks’ of gestation and completed at birth. Failure in the course of testes descent will result in undescended testes (Cryptorchidism).

Undescended testis is found in 4% of full-term infants but only 0.8% of males at the age of 1 year have true cryptorchidism. Although an undescended testis can be found anywhere along the pathway of descent from the retroperitoneum to the scrotum, the inguinal canal is the most common site for an undescended testis. Deviation of testis from the normal pathway of descent will result in ectopic testis that is commonly seen in pubopenile, femoral triangle and perineal regions.[1]

Besides infertility, undescended testes carry an increased risk of malignancy even for the normally located contralateral testis. The risk of malignancy is estimated to be as high as 10 times the normal individual with seminoma being the most common malignancy. The incidence of infertility is decreased if surgical orchiopexy is carried out before the 1-3 years but the risk of malignancy does not change. Because of the superficial location of the inguinal canal in children, sonography of undescended testes should be performed with a high frequency transducer. At ultrasound, the undescended testis usually appears small, less echogenic than the contralateral normal testis and usually located in the inguinal region [Fig. 29]. With color Doppler, the vascularity of the undescended testis is poor.[1]

Testicular appendiceal torsion

File:Scrotal ultrasonography of testicular appendiceal torsion.jpg
Fig. 30. Testicular appendiceal torsion. A hyperechoic lesion with surrounding vascularity is seen in the groove between the testis and epididymis.[1]

At sonography, the appendix testis usually appears as a 5 mm ovoid structure located in the groove between the testis and the epididymis. Normally it is isoechoic to the testis but at times it may be cystic. The appendix epididymis is of the same size as the appendix testis but is more often pedunculated. Clinically pain may occur with torsion of either appendage. Physical examination showed a small, firm nodule is palpable on the superior aspect of the testis and a bluish discoloration known as ‘‘blue dot’’ sign may be seen on the overlying skin. Torsion of the appendiceal testis most frequently involved in boys aged 7-14 years (Dogra and Bhatt 2004). The sonographic features of testicular appendiceal torsion includes a circular mass with variable echogenicity located adjacent to the testis or epididymis [Fig. 30], reactive hydrocele and skin thickening of the scrotum is common, increased peripheral vascular flow may be found around the testicular appendage on color Doppler ultrasound. Surgical intervention is unnecessary and pain usually resolves in 2 to 3 days with an atrophied or calcified appendages remaining.[1]

Conclusion

Ultrasound remains as the mainstay in scrotal imaging not only because of its high accuracy, excellent depiction of scrotal anatomy, low cost and wide availability, it is also useful in determining whether a mass is intra- or extra-testicular, thus providing us useful and valuable information to decide whether a mass is benign or malignant even though malignancy do occur in extratesticular tumors and vice versa. Furthermore, ultrasound also provides information essential to reach a specific diagnosis in patients with testicular torsion, testicular appendiceal torsion and inflammation such as epididymo-orchitis, Fournier gangrene etc, thus enabling us to avoid unnecessary operation.[1]

References

  1. 1.00 1.01 1.02 1.03 1.04 1.05 1.06 1.07 1.08 1.09 1.10 1.11 1.12 1.13 1.14 1.15 1.16 1.17 1.18 1.19 1.20 1.21 1.22 1.23 1.24 1.25 1.26 1.27 1.28 1.29 1.30 1.31 1.32 1.33 Content originally copied from: Mak, Chee-Wai; Tzeng, Wen-Sheng (2012). Sonography of the Scrotum . doi:10.5772/27586.  from Kerry Thoirs. Sonography. ISBN 978-953-307-947-9Script error: No such module "check isxn"., Published: February 3, 2012, under the CC-BY-3.0 license.
  2. Sam D. Graham; Thomas E Keane (25 September 2009). Glenn's Urologic Surgery . Lippincott Williams & Wilkins. pp. 433–. ISBN 978-0-7817-9141-0. Retrieved on 1 July 2011. 
  3. [1]" By E. Nieschlag, Hermann M. Behre, H. van. Ahlen, Andrology: Male Reproductive Health and Dysfunction"


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