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References
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References
1. Pereira BM, de Campos CC, Calderan TR, Reis LO, Fraga GP.Bladder injuries after external trauma: 20 years experience report in a population-based cross-sectional view. World J Urol. 2013;31(4):913–7. https://doi.org/10.1007/s00345- 012- 0871- 8. Epub 2012 Apr 28
2. Matlock KA, Tyroch AH, Kronfol ZN, McLean SF, Pirela-Cruz MA. Blunt trau­matic bladder rupture: a 10-year perspective. Am Surg. 2013;79(6):589–93. https://doi.
org/10.1177/000313481307900619.
3. Deibert CM, Spencer BA. The association between operative repair of bladder injury and improved survival: results from the National Trauma Data Bank [Erratum in: J Urol. 2012 May;187(5):1938]. J Urol. 2011;186(1):151–5. https://doi.org/10.1016/j.juro.2011.03.002. Epub 2011 May 14
4. Gomez RG, Ceballos L, Coburn M. Consensus statement on bladder injuries. BJU Int. 2004;94(1):27–32.
5. Simon LV, Sajjad H, Lopez RA, Burns B.Bladder rupture. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2022.
6. Kong JP, Bultitude MF, Royce P, Gruen RL, Cato A, Corcoran NM.Lower urinary tract injuries following blunt trauma: a review of contemporary management. Rev Urol. 2011;13(3):119–30.
7. Kang L, Geube A.Bladder trauma. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2022.
8. Anderson RE, Keihani S, Moses RA, etal. Current management of extraperitoneal bladder injuries: results from the Multi-Institutional Genito-Urinary Trauma Study (MiGUTS). J Urol. 2020;204(3):538–44. https://doi.org/10.1097/JU.0000000000001075. Epub 2020 Apr 7. PMID: 32259467; PMCID: PMC8717861
9. Morey AF, Brandes S, Dugi DD 3rd, Armstrong JH, Breyer BN, Broghammer JA, Erickson BA, Holzbeierlein J, Hudak SJ, Pruitt JH, Reston JT, Santucci RA, Smith TG 3rd, Wessells H, American Urological Assocation. Urotrauma: AUA guideline. J Urol. 2014;192(2):327–35.
https://doi.org/10.1016/j.juro.2014.05.004. Epub 2014 May 20. PMID: 24857651; PMCID:
PMC4104146
10. Yeung LL, McDonald AA, Como JJ, Robinson B, Knight J, Person MA, Lee JK, Dahm P. Management of blunt force bladder injuries: a practice management guideline from the Eastern Association for the Surgery of Trauma [Erratum in: J Trauma Acute Care Surg 2019 Aug;87(2):511]. J Trauma Acute Care Surg. 2019;86(2):326–36. https://doi.org/10.1097/
TA.0000000000002132.
Part IV
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Urethral Injuries
An injured and obstructed urethra can be compared to a tunnel collapsing just before the prisoners escape after the unlimited risks and tremendous efforts to dig it. Yet the distress of the patient unable to void would still be greater given the agonizing physical pain and direct repercussions to his health.
Introduction toUrethral Injury
Urethral injuries account for only 4% of genitourinary trauma [1, 2]. Nonetheless, they are probably the most abundantly studied topic of all urinary tract traumatol­ogy because of multiple controversies in their management, and the growing inter­est of surgeons and researchers in their challenging surgical approach [3]. Indeed, arguments start from the embryology of the urethra up to the classication and management of its injuries.
The importance of the urethra can be summarized as being the sole nal outlet of the whole urinary transportation system which starts from the collecting renal tubules, and, for males, the exit channel for semen during ejaculation.
The urethra is anatomically divided into two parts, the posterior and the anterior, and this classication has a great bearing on the causes, mechanisms, and manage­ment of its injury. Its posterior part is very difcult to access through open proce­dures, being conned in an exiguous space between the pubic symphysis and rami, the vagina and uterine cervix in females, and the rectum in males. Unlike the blad­der, and to a lesser degree the ureter, the urethra has very few reserve tissues to overcome losses.
The posterior urethra is protected by the pubic bones. However, in pelvic frac- ture or dislocation which is mostly caused by road trafc accidents (RTA), this protective shield instantly turns into a severing sword or a shredding lever. Replacing the old term “pelvic fracture urethral distraction defects” (PFUDD) introduced
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by Turner-Warwick [4], the concept of “pelvic fracture urethral injury” (PFUI) is frequently used nowadays to refer to this anatomopathological entity as current evidence shows that these injuries are not usually complete nor they are necessarily distracted [5].
The anterior urethra is protected by the corpus spongiosum of the penis, and its pendulous part is generally spared from violent blunt trauma such as those arising from RTA and falling astride. It is however exposed to stab injuries, gunshots, ani­mal or human bites, and iatrogenic injuries. The bulbar part of the anterior urethra is the segment most prone to straddle injuries and also pays a bitter price to iatro­genic trauma.
Historically, urethral injury was almost always fatal because of the inability to pass urine, the hematoma, and the secondary urine extravasation and infection. With the progress of modern medicine, urethral injuries not only are no longer fatal per se but also rarely jeopardize renal function since a rapid suprapubic catheterization is an easy, effective, and safe way to protect the upper urinary tract. Nonetheless, injury to the urethra exposes the patient to prolonged morbidity related to the mech­anism (pelvic fracture) and other possible associated injuries (rectum, vagina, penis) and yields a high rate of functional complications (urinary incontinence, impotence).
The diagnosis of urethral injury is mainly reached through retrograde urethrog­raphy which can be combined with an antegrade urethrography in patients with complete disruption of the urethra provisionally treated with an SPC.
The repair of posterior urethral injuries requires a complex technique where there is almost no room for a pedicled graft or a free ap and efforts have to be made to approximate the urethral ends even when the gaps are long, by mobilizing the bulbar urethra. However, repair of anterior urethral injuries with long gaps is fre­quently performed using various interposition of inlay or onlay grafts.
The average total cost of the management of a urethral injury and stricture widely varies from publications and depends on the management strategies. It was esti­mated to be as low as $3000 for a simple anterior stricture requiring a mere ure­throtomy/urethral dilatation, to as high as around $170,000 for a complex posterior urethral injury repair [6–10]. It is important to remember that this cost does not include the loss of productivity and quality of life.
Urethral Injuries
References
1. McGeady JB, Breyer BN.Current epidemiology of genitourinary trauma. Urol
Clin North Am. 2013;40(3):323–34. https://doi.org/10.1016/j.ucl.2013.04.001. Epub 2013 Jun 12.
2. Alwaal A, Zaid UB, Blaschko SD, Harris CR, Gaither TW, McAninch JW,
Breyer BN.The incidence, causes, mechanism, risk factors, classication, and diagnosis of pelvic fracture urethral injury. Arab J Urol. 2015;13(1):2–6. https://
doi.org/10.1016/j.aju.2014.08.006. Epub 2014 Sep 16.
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3. Barbagli G, Sansalone S, Djinovic R, Romano G, Lazzeri M.Current contro-
versies in reconstructive surgery of the anterior urethra: a clinical overview. Int Braz J Urol. 2012;38(3):307–16; discussion 316. https://doi.org/10.1590/
s1677- 55382012000300003.
4. Turner-Warwick RT.Principles of urethral reconstruction. In: Wesbter G, Kirby
R, King L, editors. Reconstructive urology. Oxford: Blackwell Scientic Publications; 1993. p.609–42.
5. Gómez RG, Mundy T, Dubey D, El-Kassaby AW, Firdaoessaleh, Kodama R,
Santucci R. SIU/ICUD consultation on urethral strictures: pelvic fracture urethral injuries. Urology. 2014;83(3 Suppl):S48–58. https://doi.org/10.1016/j.
urology.2013.09.023. Epub 2013 Nov 8.
6. Tausch TJ, Lotan Y, Zhao L, Morey AF.Decision analysis model comparing
cost of management strategies for pelvic fracture urethral injuries. Urol Pract.
2016. https://doi.org/10.1016/j.urpr.2016.07.004.
7. Johnsen NV, Penson DF, Reynolds WS, Milam DF, Dmochowski RR, Kaufman
MR. Cost-effective management of pelvic fracture urethral injuries. World J Urol. 2017;35(10):1617–23. https://doi.org/10.1007/s00345- 017- 2022- 8. Epub 2017 Feb 22.
8. Rourke KF, Jordan GH.Primary urethral reconstruction: the cost minimized
approach to the bulbous urethral stricture. J Urol. 2005;173(4):1206–10. https://
doi.org/10.1097/01.ju.0000154971.05286.81.
9. Osterberg EC, Murphy G, Harris CR, Breyer BN.Cost-effective strategies for
the management and treatment of urethral stricture disease. Urol Clin North Am. 2017;44(1):11–7. https://doi.org/10.1016/j.ucl.2016.08.002.
10. Greenwell TJ, Castle C, Andrich DE, MacDonald JT, Nicol DL, Mundy
AR.Repeat urethrotomy and dilation for the treatment of urethral stricture are neither clinically effective nor cost-effective. J Urol. 2004;172(1):275–7.
https://doi.org/10.1097/01.ju.0000132156.76403.8f.
Anatomy oftheUrethra
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26
26.1 Embryology oftheUrethra
The cloacal membrane appears between the fourth and the fth week and separates the cloaca from the amniotic cavity. Furthermore, the urorectal septum divides the cloaca into the urogenital sinus and the hindgut, the former being the precursor of the bladder and posterior urethra [1].
The development of the spongy urethra proceeds through three stages: a solid epithelial plate, a deep urethral groove, and a fused urethra [2]. Herein a grooved urethral plate was observed to develop from proximal to distal at 6weeks and to be completely fused by 8weeks. The glanular urethra development starts also at 6weeks and is a longer process evolving in four stages: a solid epithelial plate (sixth week), a blind central canal (13th week), a deep glanular groove (14th week), and the oor from the preputial lamella (14th week) [2].
The distinction between the male and female genital systems is triggered once the gonad assumes characteristics of the testis or ovary in the eighth week of gestation. However, the external genital organs acquire specic sexual char­acteristics only from the 11th or 12th week [3].
The penile urethra was proposed to arise from the fusion of the urogenital swell­ings with primary luminization, whereas the glandular urethra was created by sec­ondary luminization of the epithelial cord formed by the fusion of the arms of the genital tubercle, i.e., the glans [4].
An interesting theory, “the double zipper hypothesis”, states that the human male urethra develops through two mechanisms: an initial “opening zipper” that produces distal canalization of the solid urethral plate resulting in the urethral groove, which proceeds through a high rate of epithelial proliferation, and a subse­quent “closing zipper” that consists of a fusion of the two epithelial surfaces of the urethral groove, resulting in the distal extension of the penile urethra [5].
Critical events have been described for the normal development of the urethra and genitals: (a) development of the external genitalia, (b) cloacal membrane fate,
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023 S. A. AL-Mamari, Urogenital Trauma: A Practical Guide,
https://doi.org/10.1007/978-981-99-6171-9_26
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and (c) distal urethra formation [6]. Hypospadias occurs when there is a faulty ven­tral opening of the urethra as a result of either a defect in the external genitalia or in the distal urethra formation.
Does the urethral plate arise from the ectoderm, the mesoderm, or the endoderm?
There are ongoing controversies not only about the origin of the urethral plate but also concerning its role in the development of the urethra. However, most embryologists believe that the epithelial urethral plate is formed by the prolifera-
tion of the endoderm of the anterior cloacal wall, and grows anteriorly in the mesoderm of the genital tubercle while remaining in contact with the ectoderm
covering the caudal median surface of the tubercle at the cloacal groove [7].
Even if you manage to comprehend the aforementioned sentence, you still won’t be off the hook, as the role of the urethral plate is also up for debate. Some consider it to be the precursor of the sole glandular urethra while most of the penile urethra would develop from the urogenital sinus, and others state that it is the precursor of the whole penile urethra [7]. However, a consensus exists on the fact that the
urethral plate disintegrates creating the urethral groove which is then trans­formed into the urethra by fusion of the urethral folds which are present on the sides of the groove. Yet again, this theory is challenged by some studies which deny
the existence of a groove and folds, calling for revisiting the concept of hypospadias itself since this is considered to result from the failure of the fusion of the folds [8]. Hynes and Fraher found that the urethral plate is a mere temporary apposition of the walls of the phallic cloaca in the distal shaft and proximal glans and that the forma­tion of the entire urethra results from a proximo-distal movement of waves of sub­epithelial migration and fusion of paramedian folds of mesoderm. They described
four pairs of folds being involved in its formation, namely urethral, frenular, preputial, and lacunar which act in a similar manner to form their corresponding
portions [9].
26 Anatomy oftheUrethra
26.2 Gross Anatomy oftheMale Urethra
Contrary to its female counterpart, the male urethra has a double function: it plays a key function in micturition as the terminal anatomical channel for urine elimina­tion, but also has an essential role in the male reproductive system by conveying the semen emitted during ejaculation. It is a relatively long tubular structure whose length is about 22 cm in the adult male with no signicant correlation with the patient’s height, weight, body mass index, or age [10].
There are many subdivisions of the male urethra based on embryologic, topo­graphic, anatomic, and clinical criteria. One of the proposals is to divide the urethra according to the surrounding organs or structures. Hence three portions can be described, namely the prostatic, membranous, and spongy urethra, in relation to the prostate gland, the urogenital diaphragm, and the corpus spongiosum, respec­tively [11].
26.2 Gross Anatomy oftheMale Urethra
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However, most frequently, the male urethra is divided into two parts: The poste­rior urethra (prostatic and membranous urethra) and the anterior or spongy urethra
(bulbar, penile urethra or pendulous urethra, fossa navicularis, and glandular ure­thra). The urethral meatus is the exiting orice of the urethra at the tip of the penis. A pre-prostatic urethra is also described as a very short segment, 0.5–1.5cm long, embedded within the wall of the urinary bladder before entering the prostate. It is lined by the same transitional epithelium or urothelium covering the bladder lumen. It is surrounded by the internal urethral sphincter made of thickened involuntary circular smooth muscle.
Hereafter is a brief description of the different urethral parts [1215]:
1. Prostatic urethra: Found within the prostate, measures 3–4cm. It is the widest
portion of the male urethra and contains many structures or appendices: the urethral crest, seminal colliculus, prostatic utricle, verumontanum, and the orices of the prostatic ducts. The entrance of the prostatic utricle lies between the two orices of the ejaculatory ducts. The verumontanum is an important anatomic landmark serving as the distal limit during prostatic resection to pre­serve the voluntary striated sphincter which lies just distal to it. It is a prominent structure visible at the posterior distal prostatic urethra which can also be seen as a lling defect in urethrography. The prostatic urethra is lined by a continuation of the urothelium from the bladder and the upper urinary tract. The urothelium of the prostatic urethra is in direct contact with the glandular and stromal tissue of the periurethral zone of the prostate.
2. Membranous urethra: It is short, measuring 1–2.5 cm in length. It begins
immediately below the prostate and ends just above the penile bulb. It passes through the deep perineal pouch, and the perineal membrane and is surrounded
by the external urethral sphincter, which is longer anteriorly and whose bers do not meet posteriorly. Posteriorly the membranous urethra is in close contact with the bulbourethral or Cowper’s glands. It is lined by a pseudostrati­ed columnar epithelium. It is closely and intimately attached anteriorly to the pubis by the suspensory ligaments.
3. Anterior or Spongy urethra: This is the longest segment of the urethra, travel-
ing within the corpus spongiosum of the penis. It has an average length of 15cm and comprises two widenings at the bulb of the penis and in the glans penis where it forms the fossa navicularis. Bulbourethral and urethral glands empty in this portion and can be visualized in urethrography as small dots. It is lined by a pseudostratied columnar epithelium up to the terminal portion which is lined by a stratied squamous epithelium. Five layers can be seen in a cross-section of the anterior urethra: urethral epithelium, lamina propria, corpus spongio- sum, tunica albuginea, and Buck’s fascia. The bulbar urethra measures 3–4 cm, is located within the bulbospongiosus muscle and extends from the urogenital diaphragm to the penoscrotal junction. The penile urethra measures about 15cm, is entirely surrounded by the corpus spongiosum, and dilates as the fossa navicularis within the glans penis before ending by the external meatus (Fig.26.1).
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Fig. 26.1 The whole length of the lumen of the male urethra exposed by an incision extending into it from its dorsal aspect. (From Ellis H [15], with permission from Elsevier)
26 Anatomy oftheUrethra
Females have only the posterior urethra, the anterior one being replaced by the labia minora resulting from the persistent separation of the urethral folds on the ventral surfaces of the genital tubercle [16].
Unlike other epithelia (e.g., gastrointestinal epithelium), the urethral wall lacks a supporting muscularis mucosa. Therefore, anteriorly it lies directly on the vas­cular erectile corpus spongiosum contained within the tight Buck’s fascia. This direct contact exposes the corpus spongiosum to urine inundation once the urethral epithelium is breached. Thus, whenever the patient tries to void, the extravasation will increase inside the corpus spongiosum and the pressure might rupture Buck’s fascia, allowing further urine extravasation and hematoma to reach the Colles’ fas­cia, with a characteristic perineal buttery bruising [17, 18].
26.4 Congenital Urethral Abnormalities
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26.3 Urethral Blood Supply
The urethra passes through several compartments in the perineum, therefore receiv­ing blood supply from different sources: the inferior vesical artery, bulbourethral artery, and the internal pudendal artery. Moreover, the anterior urethra and its surrounding corpus spongiosum receive blood from both antegrade and retrograde streams mainly from the bulbar and dorsal arteries which arise from the common
penile artery. The common penile artery is a continuation of the internal puden­dal artery which divides into bulbar, urethral, and dorsal arteries: the bulbar
arteries are responsible for the antegrade ow to the urethra and corpus spongiosum, and the dorsal arteries provide the retrograde blood supply starting from the glans [12, 13].
The venous drainage is organized distally from a plexus within the spongy glans that develops into periurethral veins running within the corpus spongiosum and communicating with the deep dorsal vein via multiple circumex veins. Proximally these veins unite at Santorini’s plexus proximal to the pubic bone and adjacent to the prostate [13].
26.4 Congenital Urethral Abnormalities
Congenital urethral abnormalities are rare but their anatomopathological forms are multiple [1, 19]:
1. Hypospadias: This pathology is characterized by abnormal development of the
urethral fold and the ventral prepuce resulting in the urethral opening developing on the ventral aspect proximal to the penile tip. Hypospadias is classied as anterior (70%) (glandular and subcoronal), middle (distal and proximal penile and midshaft), and posterior (penoscrotal, scrotal, and perineal) [20]. The inci­dence of hypospadias varies from 1/200 to 1/300 boys. The embryological mechanism of hypospadias is not well understood, and many theories exist stat­ing that it results from the failure of formation of the various primary urethral folds or from their non-fusion with their counterparts, or from a defect in the cloacal membrane. Moreover, the chordee associated with hypospadias is believed to arise from a failure of the increase in volume in the phallic length and the persistence of the urethral plate [9].
2. Posterior urethral valves (PUV): Occur in 1/5000–8000 newborn boys, and can
have grim consequences such as bilateral renal obstruction, bladder dysfunction, vesicoureteral reux, bilateral upper tract dilatation (hydroureteronephrosis) and renal damage [19] (Fig.26.2). Hugh Hampton Young etal. proposed a classica­tion of the PUV into three types in 1919 [21]:
Type I valves (the most common): they develop from the verumontanum and extend distally attaching the lateral urethral walls as two leaets (type Ia) or as a unicuspid leaet (type Ib).
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26 Anatomy oftheUrethra
a
b
d
c
Fig. 26.2 Posterior urethral valves (PUV) in a 3-day-old male. Longitudinal grayscale ultrasound images of the right (a) and left (b) kidneys demonstrate dilation of the pelvicalyceal systems and right proximal ureter (U). P Renal pelvis, C calyx. (c) Transverse grayscale ultrasound image of the bladder (B) depicts severe wall thickening with dilation of the distal ureters (arrows). (d) VCUG image demonstrates marked dilation of the posterior urethra (PU). Arrow indicates the site of the valves. (From Kassab GH etal. [19], with permission from Springer Nature)
Type II valves: they extend from the bladder neck to the verumontanum. This type is no longer considered a valve, being regarded as a normal variant. Type III valves: Appear as a diaphragm xed on the whole circumference of the urethra, leaving a central hole. These are referred to as type IIIa, or type IIIb, if they are distal or proximal to the verumontanum, respectively. Cobb considered the type III valve merely as congenital urethral strictures, and they are sometimes referred to as Cobb’s collar [22].
3. Anterior urethral valves: These rare anomalies have variable locations, distrib-
uted almost equally between the bulbar urethra (40%), the penoscrotal junction (30%), and the penile urethra (30%) [19].
4. Prune-Belly Syndrome (PBS): Also referred to by the eponym Eagle-Barret syn-
drome after the authors who rst described it in 1950 [23]. Its incidence is esti­mated to be 3.8 per 100,000 live male births in the United States, and female occurrence is extremely rare, representing less than 5% of all PBS cases [24]. It is characterized by a triad comprising decient abdominal wall muscles,