MR Imaging of the Pudendal Nerve: a One-Year Experience on an Outpatient Basis

MR Imaging of the Pudendal Nerve: a One-Year Experience on an Outpatient Basis

MR imaging of the .modif.:--- 10/06/14 08:58 Pagina 54 Original article MR imaging of the pudendal nerve: a one-year experience on an outpatient basis VITTORIO PILONI1, MATTIA BERGAMASCO2, FLORIANA BREGOLIN2, MARCO BUZZOLANI2, ROSSANA CARRARO2, ANDREA CHIAPPERIN2, LISA DE TOGNI2, NICOLA FRIGO2, GIAMPIETRO GIOMO2, MATTEO MAZZUCCO2, NICOLA MISTRETTA2, MATTIA RIGATO2, RENEIDE ROSTEL - LATO2, MARIA C. STRAZZELLA2, ABDENEGO ZUCCHI2, PAOLA GARA VELLO3, GIULIA MELARA3 Diagnostic Imaging Centre, Iniziativa Medica s.p.a., Via Rialto 14, 35043 Monselice (Padova), Italy - www.iniziativamedica.it. 1 Radiologist, 2 Radiology Technician, 3 Nursing Service Abstract: Magnetic resonance (MR) neurography was used on an outpatient basis in 56 men, 244 women; mean age 41 ±0.8 and 53±1.4 years, respectively; range, 22-84 years with various pelvic floor dysfunctions and in 25 consecutive patients ( 8 males, 17 females; mean age, 38 years; range, 29-48 years) with chronic pelvic pain of undetermined origin to evaluate the appearance of the pudendal nerve. Most com- monly, a combination of fat-suppressed T2-W and short inversion time inversion recovery (STIR) imaging sequences allowed successful de- piction of nerve course anatomy and localization of lesions at site of disease, entrapment or injuries. Key images for interpretation were ob- tained in the axial and coronal orthogonal and oblique planes. A major disadvantage of these conventional imaging techniques is their inabil- ity to distinguish nerve from vessels due to similar MR signal intensity. To improve visualization of nerves, the bright fluid signal suppres- sion technique should be implemented. Key words: MR-neurography; Pudendal nerve neuropathy; Fat suppression technique; Nerve-oriented MR imaging; Blood suppression MRI. INTRODUCTION Monselice, Padova, Italy) to undergo the examination on an Despite its first description as far as 1992 by Howe and outpatient basis for a variety of pelvic floor dysfunctions Filler and various subsequent papers1-4 with generation of occurring alone or in combination, including chronic con- great interest almost since its inception, the practical appli- stipation and obstructive defecation syndrome (41%), cation of MR technique to imaging of peripheral nerves, al- pelvic organ prolapse (63%), minor or major fecal inconti- so called “ MR-neurography”, is still today an often over- nence (18%), anal sepsis and fistula-in-ano (24%), prior looked and underappreciated technique. This is unfortu- colorectal and urogynecological surgery such as STARR nate, since it can be highly accurate, easy to perform and procedure, Delorme operation and TVT or TOT procedure successful in many situations where other imaging tech- (39%) and abnormal pelvic organ support system from ob- niques yield ambiguous results. In particular, MR-neurog- stetric trauma (71%), as documented by physical examina- raphy of the pudendal nerve can produce detailed pictures tion. A small group of 25 consecutive patients ( 8 males, 17 in a wide variety of pathologies including nerve-compres- females ; mean age, 38 years; range, 29-48 years) with sion syndromes, small nerve tumors, dege nerative disease, chronic pelvic pain of undetermined origin was also en- entrapments, adhesions, and trauma.5-10 Radiologists be- rolled into the study to rule out pudendal neuropathy; in- coming involved in this field will experience an increasing formed consent forms were obtained from all patients to demand for these examinations as clinicians come to rely participate in this institutional board-approved study. more heavily on imaging studies for diagnosis, and to se- lect patients for appropriate therapies. The current study Imaging technique. Transverse, coronal, and sagittal TSE was undertaken to revitalize interest in the technique and to T2-weighted MRIs of the pelvic region were obtained at describe which elements of the pelvic floor anatomy can be 1.5 T with a slice thickness of 4 mm and a slice gap of 1 consistently used as landmarks for identification of the pu- mm using a XL TORSO coil wrapped around the patient’s dendal nerve along its entire course. Also, a description of pelvis. An anteroposterior frequency-encoding (right-to-left the technical principles, including scan planes and pulse se- phase encoding) direction was used for the axial planes to quences, will be offered using most of existing top quality prevent right-to-left chemical shift artifacts. With the sub- conventional scanners for optimal depiction of MRI nerve ject in the supine position, the transverse image acquisition characteristics. plane was perpendicular to the body axis. The coronal plane was perpendicular to the axial plane and parallel to the table. The sagittal plane was perpendicular to the coro- MATERIALS AND METHODS nal plane. In addition, oblique coronal images in the STIR Study population. The standardized MRI series of the pulse sequence were obtained taking the sacral promontory pelvis performed during a twelve months period (January- and the S1-3 vertebral bodies as reference, starting 0.5 cm December 2013) with conventional 1.5 T MR scanner dorsally to include the maximum gluteus muscle and end- (Philips, Achieva model, The Netherland) were retrospec- ing 4 cm ventrally at the level of the arcuate ligament. tively reviewed for evidence of pudendal nerve characteris- Similarly, oblique axial TSE T2-W and STIR images were tics. All examinations were performed and interpreted by obtained parallel to the pubococcygeal line (PCL), starting the same observer (P V) in close cooperation with the tech- at the anal verge up to the inferior margin of the symphysis nical staff (B M, B F, B M, C R, C A, DeT L, F N, G G, M pubis so as to include the clitoris anatomy (female). M, M N, R M, R R, S MC, Z A) and trained nurses ( G P, Oblique sagittal STIR images were also acquired 3 cm M G). Patients (56 males, 244 females; mean age 41 ±0.8 laterally on the right or left to the midline taking the ischial and 53±1.4 years, respectively; range, 22-84 years) were anterior ramus as reference to visualize the neurovascular referred to the diagnostic centre (Iniziativa Medica spa, bundle along the Alcock’s canal course. In a few cases, the 54 Pelviperineology 2014; 33: 54-59 http://www.pelviperineology.org MR imaging of the .modif.:--- 09/06/14 14:02 Pagina 55 MR imaging of the pudendal nerve: a one-year experience on an outpatient basis “black blood” pulse sequence technique was also experi- tact with the piriformis muscle as it exits the pelvis after mentally used in an attempt to improve visualization of overcoming the sacrospinous ligament. In this section the nerve structures. A complete summary of the technical set- nerve is seen to assume a more elongated oval shape of low- ting for MR neurography of pudendal nerve at our institu- intermediate signal intensity becoming almost iso-intense tion is reported in Table 1. with the surrounding structures, making it more difficult to recognize. At level III (c) the nerve resumes both its vertical Image analysis. Key images. In axial planes, 4 levels orientation and its dark dots appearance while descending were chosen which represented consistent anatomic bony into the narrow space between the posterior aspect of the in- landmarks allowing identification of the course of the nerve ferior gemellus muscle and the anterior margin of the gluteal down the pelvis after its origin in the sacral plexus, as fol- crease. More ventrally, the femoral nerve can be seen in lows: the region of the ischial margin and greater sciatic close contact with the anterior aspect of the psoas muscle. foramen (level I); the ischial spine and the roof of acetabu- Also visible at this level is the sacrotuberous ligament as a lar fossa (level II); the femoral head, neck, greater dark hypointense rectangular structure just in front of the trochanter and acetabolum (level III); the ischial tuberosity, gluteus maximus muscle. At level IV (d) the sciatic nerve lesser trochanter, and symphysis pubis (level IV). In coro- descends through the narrow ischial tunnel between the pos- nal planes, sections that lied parallel to the sacral promon- terior surface of the quadratus femoris muscle and the glu- tory were taken at the level of the greater sciatic foramen, teus maximus muscle without contacting the obturator inter- ischial spine and piriformis muscle (dorsally), and at the nus tendon. A modified axial oblique image taken at the level of the symphysis pubis and arcuate ligament (ventral- same level is occasionally useful to display at best the distal ly). Also, midsagittal key images were analyzed to display branching area at the outlet of the Alcock’s canal. the lumina of the organs and their relative positions with re- Coronal Images. T2-weighted coronal images that lie spect to the symphysis pubis (anteriorly) and to sacrococ- parallel to the table of the diagnostic unit at the level of the cygeal bony vertebrae (posteriorly); finally, sections paral- greater sciatic foramen (Figure 2a, b), show that in this ori- lel to the ischial rami, 2 cm on the right and on the left of entation the section plane is roughly parallel to the fibers of the midline were obtained to depict the neurovascular bun- distal lumbosacral spinal nerves. On the more posterior im- dle of the Alcock’s canal. ages the coccygeal part of the levator ani muscle is depict- ed on either side of the rectum; this section plane is ideal to display the anatomy of right and left nerve sacral roots as RESULTS they exit the spine travelling in essentially linear fashion With the method above described, an average number of for evidence of any distortion, narrowing and focal hyper- a hundred and fifty images per patient were obtained which intensity, as well as regional impingement. A series of vas- allowed detailed step-by-step analysis of the nerve course cular and neural structures are seen along their fiber direc- anatomy in the pelvis from all patients regardless of the tion.

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