1.Penile fracture and its treatment: is retrograde urethrograghy necessary for management of penile fracture?
Hassan AHMADNIA ; Mehdi Younesi ROSTAMI ; Ali KAMALATI ; Mohammad Mehdi IMANI
Chinese Journal of Traumatology 2014;17(6):338-340
OBJECTIVEPenile fracture, being defined as rupture of the tunica albuginea of the corpus cavernosum, is uncommon. Here, we analyze findings on our patients during a 10-year period and evaluate the role of retrograde urethrography.
METHODSFrom February 2002 to April 2012, 116 patients were admitted with penile fracture at Ghaem Medical Center. Patient history and physical examination were taken at their admittance to detect probable urethral injury. Before surgery, retrograde urethrography was performed in all patients. The size and site of the tunical rupture were recorded. Then the rupture of tunica albuginea was sutured with nonabsorbable (3-0 nylon) sutures and the ties were placed on the internal surface (continuous method). All patients were followed up for 12 months.
RESULTSPatients' mean age was (32.78 ± 10.61) years and ranged (16-62) years. The mechanism of trauma was sexual intercourse in 103 patients (89%) and masturbation in 13 patients (11%). The most common site of injury found after exploration was right (55%) and lateral (74%) of the corpus cavernosum. The size of the tunical rupture was from 0.5 to 3.0 cm (mean 1.88 ± 0.72). Three of the patients had Marphan's syndrome. Urethral injury was detected by retrograde urethrography in 4 patients (3%) who had macroscopic hematuria and urethrorrhagia. During 12 months follow-up, no complication was seen.
CONCLUSIONThere is no need to perform retrograde urethrography unless the patients have gross hematuria or urethrorrhagia. The key to success in treatment of penile fracture is to achieve a rapid diagnosis based on history and a physical examination, avoid unnecessary imaging tests and perform immediate surgery to reconstruct the site of injury.
Adolescent ; Adult ; Humans ; Male ; Middle Aged ; Penis ; injuries ; surgery ; Rupture ; Sutures ; Urethra ; diagnostic imaging ; Young Adult
2.Three-dimensional modeling of female urinary system based on MRI and CT data.
Lan CHEN ; Chunlin CHEN ; Ping LIU ; Ruiying CHEN ; Caixia LI ; Lian TANG ; Kedan LIAO ; Wenxuan JIANG ; Shiqi LIANG
Journal of Zhejiang University. Medical sciences 2020;40(7):1056-1061
OBJECTIVE:
To reconstruct a three-dimensional model of female urinary system based on magnetic resonance imaging (MRI) and tomography angiography (CTA) data.
METHODS:
MRI and CTA datasets were collected from 20 patients in our department in 2018 for reconstructing 3D models of the bladder urethra in resting state using Mimics19.0 software combined with engineering software. The metric parameters of the bladder urethra were analyzed in the reconstructed 3D model.
RESULTS:
The bladder and urethra were successfully reconstructed using 10 MRI datasets, and the kidney, ureter and bladder were reconstructed using 10 CTA datasets. Using engineering software, we measured a number of cysto-urethral geometric parameters, including the cysto-urethral posterior angle (151.1±17.9°), beta angle (137.3±14.0°), urethral pubic angle (47.8± 12.1°), urethral tilt angle (21.5±7.3°), alpha angle (83.8±13.8°), the posterior pubic space (15.3±3.0 mm), and the urethral striated muscle thickness (2.6±0.6 mm).
CONCLUSIONS
Three-dimensional reconstruction of the anatomical model of the human urinary system provides a platform for studying the fine anatomy of the female urinary system and allows measurement of multiple parameters to better understand the functional differences of the bladder and urethra in different populations.
Female
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Humans
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Imaging, Three-Dimensional
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Magnetic Resonance Imaging
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Models, Anatomic
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Muscle, Skeletal
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Tomography, X-Ray Computed
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Urethra
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diagnostic imaging
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Urinary Bladder
;
diagnostic imaging
3.Reconstruction of the urethral defects with autologous fascial tube graft in a rabbit model.
Cagri SADE ; Kemal UGURLU ; Derya OZCELIK ; Ilkay HUTHUT ; Kursat OZER ; Nil USTUNDAG ; Ibrahim SAGLAM ; Lutfu BAS
Asian Journal of Andrology 2007;9(6):835-842
AIMTo investigate the feasibility of the autologous fascia graft in urethra defect reconstruction.
METHODSIn 24 adult male rabbits, a standardized defect (17 mm) was created within the midportion of each urethra. Two-cm long fascial tube grafts were interposed between the cut ends of the urethra. Twenty-four rabbits were divided into 12 groups. At 0, 3, 10, 15, 21, 30, 45, 60, 90, 120, 150, and 180 days postoperatively, one group was killed. In the first four groups, rabbits were killed and specimens were obtained for histological examination. After 21 postoperative days, in the subsequent eight groups, retrograde urethrograms were carried out to evaluate urethral patency and caliber, then rabbits were killed and specimens were obtained.
RESULTSIn the histological study, advancement of the urethral transitional epithelium along scaffold provided by the fascial graft was determined. At the 30th day, the new urethra was completely covered with the transitional epithelium. Fistula formation was observed in two of 24 rabbits. In urethrograms, narrowing was determined in three of 16 rabbits.
CONCLUSIONFor segmental urethral reconstruction, fascial graft is a good urethral substitute because of its rapid epithelization capacity, low contraction degree and thinness. We therefore propose the use of fascial grafts for reconstruction of male-urethra defects in humans.
Animals ; Disease Models, Animal ; Fascia ; diagnostic imaging ; pathology ; transplantation ; Male ; Pilot Projects ; Rabbits ; Radiography ; Urethra ; diagnostic imaging ; pathology ; surgery ; Urethral Diseases ; pathology ; surgery ; Urologic Surgical Procedures, Male ; methods
4.Anti-cicatricial and anti-restenosis effect of verapamil on anterior urethral stricture: A randomized controlled clinical trial.
Ruizhi XUE ; Jintang LIAO ; Ting TIAN ; Zhengyan TANG
Journal of Central South University(Medical Sciences) 2018;43(8):843-851
To evaluate the anti-cicatricial and anti-restenosis effect of verapamil on anterior urethral stricture.
Methods: A total of 32 patients received anterior urethral stricture were enrolled in this study. They were divided into 4 blocks according to the duration of previous urethral operations and dilations. Every block was further randomly divided into an experimental group and a control group. Experimental groups received 2 mL injection of verapamil around the anastomosis site of urethra before and after the surgery (2, 4, 6, 8, and 10 weeks after the surgery), while the control groups only received the anastomosis surgery. After surgery, maximal urinary flow rate (Qmax) was examined for all patients once the catheter was removed. In addition, they were also conducted palpation of urethral scar range. The sum of long transverse diameters of urethral scar was measured, and the narrowest urethral inner diameter was examined. The Qmax was rechecked and the urethral scar range was assessed by penis color Doppler elastography after 12 weeks of surgery. The above 4 indexes were used to evaluate the inhibitory effect of verapamil on urethral scar.
Results: The length of palpated urethral scar in the Block 1 to 4 of the experimental groups was (22.75±1.03), (21.25±0.25), (20.75±1.03), and (20.0±0.58) mm, respectively; and those in the control groups (26.00±0.82), (24.5±1.04), (25.75±1.65), and (28.25±1.75) mm, respectively. The Qmax rates in the Block 1 to 4 of the experimental groups were (11.85±0.77), (11.33±0.81), (10.23±0.26), and (10.35±0.17) mL/s, respectively; and those in the control groups were (10.85±0.39), (10.50±0.76), (10.53±1.00), (12.60±0.39) mL/s, respectively. The Qmax rates in the Block 1 to 4 of the experimental groups were (11.73±0.87), (10.65±0.25), (10.23±0.19), and (10.35±0.29) mL/s, respectively; and those in the control groups were (8.05±0.28), (7.73±0.68), (7.53±0.92), and (9.60±0.32) mL/s, respectively. The narrowest diameters of urethral in the Block 1 to 4 of the experimental groups were (9.00±0.58), (7.50±2.89), (7.00±0.10), and (7.00±0.41) mm, respectively; and those in the control groups were (5.50±0.29), (5.00±0.41), (4.75±0.48), and (6.75±0.48) mm, respectively. The ultrasound strain ratio in the Block 1 to 4 of the experimental groups were 6.10±0.22, 6.10±0.17, 5.10±0.16, and 6.90±0.19, respectively; and those in the control groups were 8.00±0.25, 10.60±0.29, 11.30±0.16, and 8.90±0.33, respectively. Compared with the control groups, the experimental groups displayed smaller urethral scar range, less severe scarring, improved Qmax rates and wider inner diameters (all P<0.05).
Conclusion: Urethral regional injection of verapamil intraoperatively or postoperatively can prevent overgrowth of urethral scar tissues after the transperineal anastomosis surgery, and reduce the tendency of postoperative restenosis of anterior urethral stricture.
Anastomosis, Surgical
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adverse effects
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Cicatrix
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diagnostic imaging
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drug therapy
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prevention & control
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Dilatation
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adverse effects
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Humans
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Male
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Penis
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diagnostic imaging
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Postoperative Complications
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diagnostic imaging
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drug therapy
;
prevention & control
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Secondary Prevention
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Ultrasonography
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Urethra
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diagnostic imaging
;
surgery
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Urethral Stricture
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prevention & control
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surgery
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Urination
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Urological Agents
;
therapeutic use
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Verapamil
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therapeutic use
5.Adipose-Derived Regenerative Cell Injection Therapy for Postprostatectomy Incontinence: A Phase I Clinical Study.
Jae Young CHOI ; Tae Hwan KIM ; Jung Dug YANG ; Jang Soo SUH ; Tae Gyun KWON
Yonsei Medical Journal 2016;57(5):1152-1158
PURPOSE: We report our initial experience with transurethral injection of autologous adipose-derived regenerative cells (ADRCs) for the treatment of urinary incontinence after radical prostatectomy. MATERIALS AND METHODS: After providing written informed consent, six men with persistent urinary incontinence after radical prostatectomy were enrolled in the study. Under general anesthesia, about 50 mL of adipose tissue was obtained from the patients by liposuction. ADRCs were obtained by separation with centrifugation using the Celution cell-processing device. A mixture of ADRCs and adipose tissue were transurethrally injected into the submucosal space of the membranous urethra. Functional and anatomical improvement was assessed using a 24-h pad test, validated patient questionnaire, urethral pressure profile, and magnetic resonance imaging (MRI) during 12-week follow-up. RESULTS: Urine leakage volume was improved with time in all patients in the 24-h pad test, with the exemption of temporal deterioration at the first 2 weeks post-injection in 2 patients. Subjective symptoms and quality of life assessed on the basis of questionnaire results showed similar improvement. The mean maximum urethral closing pressure increased from 44.0 to 63.5 cm H2O at 12 weeks after injection. MRI showed an increase in functional urethral length (from 6.1 to 8.3 mm) between the lower rim of the pubic bone and the bladder neck. Adverse events, such as pelvic pain, inflammation, or de novo urgency, were not observed in any case during follow-up. CONCLUSION: This study demonstrated that transurethral injection of autologous ADRCs can be a safe and effective treatment modality for postprostatectomy incontinence.
Adipose Tissue/*cytology/transplantation
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Aged
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Female
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Humans
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Injections/methods
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Magnetic Resonance Imaging
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Male
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Middle Aged
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Prostatectomy/*adverse effects
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Quality of Life
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Stem Cell Transplantation/*methods
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Surveys and Questionnaires
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Transplantation, Autologous
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Treatment Outcome
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Urethra/diagnostic imaging
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Urinary Incontinence/etiology/*therapy
6.F4.8 visual miniature nephroscope for the diagnosis and treatment of hematospermia.
Ke-Yi ZHOU ; Wen-Zeng YANG ; Zhen-Yu CUI ; Ruo-Jing WEI ; Chun-Li ZHAO ; Tao MA ; Feng AN
National Journal of Andrology 2018;24(6):525-528
ObjectiveTo explore the practicability and safety of the F4.8 visual miniature nephroscope in the diagnosis and treatment of hematospermia.
METHODSThis study included 12 cases of refractory hematospermia accompanied by perineal or lower abdominal pain and discomfort. All the patients failed to respond to two months of systemic anti-inflammatory medication and local physiotherapy. Seminal vesicle tumor and tuberculosis were excluded preoperatively by rectal seminal vesicle ultrasonography, MRI or CT. Under epidural anesthesia, microscopic examination was performed with the F4.8 miniature nephroscope through the urethra and ejaculatory duct orifice into the seminal vesicle cavity, the blood clots washed out with normal saline, the seminal vesicle stones extracted by holmium laser lithotripsy and with the reticular basket, the seminal vesicle polyps removed by holmium laser ablation and vaporization, and the seminal vesicle cavity rinsed with diluted iodophor after operation.
RESULTSOf the 10 patients subjected to bilateral seminal vesiculoscopy, 3 with unilateral and 2 with bilateral seminal vesicle stones were treated by holmium laser lithotripsy, saline flushing and reticular-basket removal, 2 with seminal vesicle polyps by holmium laser ablation and vaporization, and the other 3 with blood clots in the seminal vesicle cavity by saline flushing for complete clearance. The 2 patients subjected to unilateral seminal vesiculoscopy both received flushing of the seminal vesicle cavity for clearance of the blood clots. The operations lasted 10-55 (25 ± 6) minutes. There were no such intra- or post-operative complications as rectal injury, peripheral organ injury, and external urethral sphincter injury. The urethral catheter was removed at 24 hours, anti-infection medication withdrawn at 72 hours, and regular sex achieved at 2 weeks postoperatively. The patients were followed up for 6-20 (7 ± 2.3) months, during which hematospermia and related symptoms disappeared in 10 cases at 3 months and recurrence was observed in the other 2 at 4 months after surgery but improved after antibiotic medication.
CONCLUSIONSThe F4.8 visual miniature nephroscope can be applied to the examination of the seminal vesicle cavity and treatment of seminal vesicle stones and polyps, with the advantages of minimal invasiveness, safety and reliability.
Calculi ; diagnostic imaging ; surgery ; Ejaculatory Ducts ; Endoscopes ; Endoscopy ; instrumentation ; Genital Neoplasms, Male ; Hemospermia ; diagnosis ; therapy ; Holmium ; Humans ; Lasers, Solid-State ; Lithotripsy ; Magnetic Resonance Imaging ; Male ; Natural Orifice Endoscopic Surgery ; instrumentation ; Neoplasm Recurrence, Local ; Postoperative Complications ; Reproducibility of Results ; Seminal Vesicles ; diagnostic imaging ; Urethra