Intraoperative Neuromonitoring of Pelvic Autonomous Nerve Plexus During Total Mesorectal Excision
Ориентир для пациента и семьи
Простыми словами
Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.
- Что изучают
- В протоколе указаны: Pelvic Intraoperative Neuromonitoring.
- Кому может быть актуально
- Состояния в реестре: Rectal Neoplasms. Базовые параметры: 18 лет — 90 лет · Все.
- Что важно проверить
- Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
- Где проводится
- Греция
- Следующий шаг
- Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →
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Обзор
The purpose of this research protocol is the evaluation of the improvement of the anorectal and urogenital urinary function, alongside the postoperative quality of life after the application of pIONM in patients submitted to TME for rectal cancer.
Подробное описание
The introduction of Total Mesorectal Excision (TME) resulted to the improvement of the overall survival and local recurrence rates of rectal cancer patients. However, the associated urogenital and anorectal functional deficit has a significant effect on the postoperative quality of life of the patient. More specifically, the postoperative rates of urogenital and sexual dysfunction that have been reported in the various series, are estimated at the levels of 70% and 90%, respectively. Additionally, TME is associated with the development of the low anterior syndrome (LARS). LARS is characterized by the onset of fecal incontinence, due to injury in the autonomic nerve plexuses that innervate the internal anal sphincter (IAS); who in turn is responsible for the 52-85% anal resting tone. According to a recent study, 38.8% and 33.7% of patients with normal preoperative urogenital function, developed postoperative stool and urine incontinence, respectively.
It becomes apparent that the incidence rates of these complications vary between the various series, mainly due to their small sample size, the lack of comparative data, the short follow up period, the use of non-validated tools and their retrospective design. Several predictive factors of these adverse events have been suggested in the literature, including old age, tumors located less than 12 cm from the anal verge, preoperative radiotherapy and injury to the pelvic autonomous nerves.
The clinical and functional anatomy of the pelvis are quite complex. The inferior hypogastric plexus is formed by the parasympathetic pelvic nerves, deriving from the I2-I4 and the sympathetic hypogastric nerve. It is a neural anatomic structure that carries organ-specific nerve fibers. Visual identification of the plexus is quite difficult, for various reasons, including the complexity of the nerve distribution, the narrow pelvis, the voluminous mesorectum, obesity, previous pelvic operations, neoadjuvant radiotherapy, locally advanced tumors, intraoperative bleeding and the extensive use of diathermy. According to the current literature, identification of the autonomous pelvic plexus is achievable in 72% of cases, whereas partial localization is possible only in 10.7% of patients.
Theoretically, intraoperative neuromonitoring of the pelvic autonomous nerves (pIONM), could quantify intraoperative nerve injuries, while in parallel, contribute to the improvement of the patients' postoperative quality of life. Several pIONM techniques have been described, including intra-urethral and intra-vesical pressure measurements. However, it was found that intermittent neuromonitoring objectifies the macroscopic integrity assessment of the sacral plexus. Recently, a promising technique, based on the simultaneous electromyography of the IAS and bladder manometry was developed, with encouraging results. During pIONM, the surgeon delivers electric stimuli to the autonomic nerve structures through a hand-held stimulator. At the same time, electromyogram changes of the IAS and the external anal sphincter (EAS), alongside intravesical pressure gradients are assessed.
Intraoperative neuromonitoring has been evaluated in several experimental studies. In a recent study, intraoperative simulation of the inferior hypogastric plexus with a bipolar stimulator resulted to the appearance of a measurable and repeatable electromyographic signal from the IAS.
Simultaneous signal processing from the IAS and urinary bladder, improves the, overall, diagnostic accuracy of these techniques. Stabilization of the electrodes outside the surgical field, has been, also, suggested by some researchers. Additionally, experimental studies evaluated the role of pIONM in the minimal invasive TME.
Moreover, the effectiveness of this technique has been a research subject in multiple clinical trials. In another study, where 85 patients underwent TME, after logistic regression, no use of pIONM and neoadjuvant radiotherapy, were identified as independent prognostic factors of postoperative urogenital deficit. Furthermore, the use of pIONM, was associated with a 100% sensitivity and a 96% specificity for the postoperative development of urogenital and anorectal functional complications.
The application of pIONM has been also suggested in the laparoscopic and robotic TME, using specially designed stimulators. In another trial, preservation of the plexus was achieved in 51.7% of patients submitted to a laparoscopic low anterior resection for rectal cancer. During one year follow-up, patients receiving pIONM, displayed a superiority in terms of postoperative urogenital function, as assessed by the IIEF, IPSS and FSFI questionnaires.
Вмешательства
- Другое Pelvic Intraoperative Neuromonitoring
Pelvic Intraoperative Neuromonitoring (pIONM) allows mapping of the pelvic autonomous plexus during total mesorectal excision (TME).
Первичные конечные точки
- Change in the quality of life of the patient at 3 months postoperatively, based on the SF-36 questionnaire [Срок оценки: Preoperatively, 3 months postoperatively]
Вторичные конечные точки (12)
- Operative time [Срок оценки: Intraoperative period]
- Intraoperative bleeding [Срок оценки: Intraoperative period]
- Postoperative discharge time [Срок оценки: Maximum time frame 15 days postoperatively]
- Postoperative complications [Срок оценки: 1 month postoperatively]
- Negative resection margin [Срок оценки: 1 month postoperatively]
- Local recurrence [Срок оценки: 1 year postoperatively]
- Bladder capacity [Срок оценки: Preoperatively and 2 months postoperatively]
- Bladder compliance [Срок оценки: Preoperatively and 2 months postoperatively]
- Detrusor pressure at maximum flow [Срок оценки: Preoperatively and 2 months postoperatively]
- Maximum urinary flow rate [Срок оценки: Preoperatively and 2 months postoperatively]
- Voiding volume [Срок оценки: Preoperatively and 2 months postoperatively]
- Post-void residual [Срок оценки: Preoperatively and 2 months postoperatively]
Критерии участия
Критерии включения
- Histologically confirmed rectal cancer
- Surgical resection with TME
- <90 years old
- Signed informed consent
Критерии исключения
- Emergency operation
- Presence of pacemaker
- Partial mesorectal excision
- Sepsis or systematic infection
- Physical or mental impairment
- Pregnancy or nursing
- Insufficient preoperative data for the urogenital/ anorectal function
- Lack of compliance with the research process
Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.
Здоровые добровольцы: Да
Дизайн исследования
- Распределение
- Рандомизированное
- Модель
- Параллельные группы
- Маскирование
- Простое слепое
- Основная цель
- Лечение
Центры проведения
Греция · 1 центр
- University Hospital of Larissa — Larissa
Публикации
- Kauff DW, Kempski O, Koch KP, Huppert S, Hoffmann KP, Lang H, Kneist W. Continuous intraoperative monitoring of autonomic nerves during low anterior rectal resection: an innovative approach for observation of functional nerve integrity in pelvic surgery. Langenbecks Arch Surg. 2012 Jun;397(5):787-92. doi: 10.1007/s00423-011-0900-x. Epub 2012 Feb 15. PMID 22350611
- Kauff DW, Lang H, Kneist W. Risk Factor Analysis for Newly Developed Urogenital Dysfunction after Total Mesorectal Excision and Impact of Pelvic Intraoperative Neuromonitoring-a Prospective 2-Year Follow-Up Study. J Gastrointest Surg. 2017 Jun;21(6):1038-1047. doi: 10.1007/s11605-017-3409-y. Epub 2017 Apr 4. PMID 28378317
- Wallner C, Lange MM, Bonsing BA, Maas CP, Wallace CN, Dabhoiwala NF, Rutten HJ, Lamers WH, Deruiter MC, van de Velde CJ; Cooperative Clinical Investigators of the Dutch Total Mesorectal Excision Trial. Causes of fecal and urinary incontinence after total mesorectal excision for rectal cancer based on cadaveric surgery: a study from the Cooperative Clinical Investigators of the Dutch total mesorect PMID 18802159
- Kauff DW, Kronfeld K, Gorbulev S, Wachtlin D, Lang H, Kneist W. Continuous intraoperative monitoring of pelvic autonomic nerves during TME to prevent urogenital and anorectal dysfunction in rectal cancer patients (NEUROS): a randomized controlled trial. BMC Cancer. 2016 May 21;16:323. doi: 10.1186/s12885-016-2348-4. PMID 27209237
- Delacroix SE Jr, Winters JC. Voiding dysfunction after pelvic colorectal surgery. Clin Colon Rectal Surg. 2010 Jun;23(2):119-27. doi: 10.1055/s-0030-1254299. PMID 21629630
- Kneist W, Kauff DW, Rahimi Nedjat RK, Rink AD, Heimann A, Somerlik K, Koch KP, Doerge T, Lang H. Intraoperative pelvic nerve stimulation performed under continuous electromyography of the internal anal sphincter. Int J Colorectal Dis. 2010 Nov;25(11):1325-31. doi: 10.1007/s00384-010-1015-5. Epub 2010 Jul 27. PMID 20661601
- Moszkowski T, Kauff DW, Wegner C, Ruff R, Somerlik-Fuchs KH, Kruger TB, Augustyniak P, Hoffmann KP, Kneist W. Extracorporeal Stimulation of Sacral Nerve Roots for Observation of Pelvic Autonomic Nerve Integrity: Description of a Novel Methodological Setup. IEEE Trans Biomed Eng. 2018 Mar;65(3):550-555. doi: 10.1109/TBME.2017.2703951. Epub 2017 May 12. PMID 28504930
- Kauff DW, Koch KP, Somerlik KH, Heimann A, Hoffmann KP, Lang H, Kneist W. Online signal processing of internal anal sphincter activity during pelvic autonomic nerve stimulation: a new method to improve the reliability of intra-operative neuromonitoring signals. Colorectal Dis. 2011 Dec;13(12):1422-7. doi: 10.1111/j.1463-1318.2010.02510.x. PMID 21087387
Идентификаторы
NCT: NCT04949646 · PelIONM