Добавил:
kiopkiopkiop18@yandex.ru t.me/Prokururor I Вовсе не секретарь, но почту проверяю Опубликованный материал нарушает ваши авторские права? Сообщите нам.
Вуз: Предмет: Файл:

Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_740_Библиотеки_им_академика_М_И_Перельмана

.pdf
Скачиваний:
0
Добавлен:
30.08.2026
Размер:
50 Мб
Скачать
42 Postoperative Chronic Pain Assessment andTHOPA Philosophy
419
and/or hip is likely to provide the most high-yield information. Moreover, a MR of lumbar-sacral column and pelvis is useful to identify a different cause of pain, other than postoperative pain: hip joint injury such as stress fractures, labral tears, femoroacetabular impingement, and iliopsoas bursitis. As such, MR should be considered as both the denitive and rst-line modality for the most specic evaluation of the PCP. However, this modality is radiologist dependent [11].
42.2 Treatment
Data in the literature are poor and inconsistent due to limited information on the preoperative demographics, differences in denition and eval­uation of pain degree, and limited follow-up, so comparison among different strategies and their results is very difcult.
As previously written, PCP is a product of neuropathic and nociceptive pain and is also inuenced by socioeconomic, emotional, cogni­tive, and genetic factors. So, a multimodal, multi­disciplinary approach to PCP is therefore necessary. Early involvement and cooperation with pain management specialists are important for the optimal management of these patients.
Initial acute postoperative pain treatment should be as effective as possible, and standard pharmacological pain treatment (gabapentanoids, tricyclics, etc.) [12] for neuropathic pain should be instituted earlier in patients with severe pain. The question of whether this may reduce devel­opment of chronic pain is debatable in the absence of any conclusive data [13].
It has been proven that analgesic patches (lidocaine patch (5%) and capsaicin (8%)) do not reduce summed pain intensity (at rest, during movement, and during pressure) [14].
Nerve inltration with anesthetics is a mini­mally invasive technique for treating peripheral neuropathy after inguinal surgery [15, 16]. Varying success rates have been reported, but the relative ease of application is a main advantage [17, 18]. Several studies [1927] reported the use of diagnostic blocks presurgery. The use of ultrasound- guided regional anesthesia has
increased in the last decade and enables direct visualization of peripheral nerves, facilitating the success rate of the blocks [17]. However, there is no scientic evidence of any short-term or long- term analgesic efcacy of local anes­thetic blocks in PCP following inguinal hernia repair.
If nerve blocks do provide short-term relief, the patient should subsequently benet from neu­rolytic or neuroablative techniques. These include chemical neurolysis with alcohol or phenol, cryo­ablation, or pulsed radiofrequency ablation. Several different techniques of neuromodulation have been proposed. Pulsed radiofrequency (PRF) is an invasive pain treatment technique that employs electromagnetic energy deposited in or near nerve tissue [28, 29]. An insulated nee­dle with an active tip is inserted at the vertebral level or at the peripheral level. Paresthesias are then elicited in the painful area, by electrical stimulation as an indication of adequate position­ing of the needle tip. The voltage applied to the treatment needle is rapidly raised and lowered, with voltages typically alternating between 0 and 40V with a frequency of 300–500kHz. The tem­perature is held below 42°C avoiding structural damage to the nerve tissue. The moderate heating of the nerve tissue is believed to temporarily block the nerve conduction.
Conventional continuous radiofrequency (CRF) produces temperatures at the tip of the treatment needle of 45–80°C leading to irrevers­ible thermocoagulation of nerve structures and has proven to be considerably more efcacious than PRF in various chronic pain states [28]. A recent retrospective uncontrolled study reported a longer duration of pain relief in the CRF group than in the local anesthetic block group at 12-month control [30].
Peripheral nerve stimulation utilizing a trans­peritoneal laparoscopic approach with selective implantation of quadripolar electrodes at the genitofemoral nerve (anterior surface psoas major muscle) or ilioinguinal nerve, iliohypo­gastric nerve, and femoro-cutaneous lateral nerve (anterior surface quadratus lumborum muscle) has recently been presented with prom­ising result [31].
420
Данная книга находится в списке для перевода на русский язык сайта https://meduniver.com/
G. Campanelli et al.
Although preliminary reports with neuromod­ulation techniques are enthusiastic and promis­ing, the evidence is still of low quality, and the strength of recommendation is weak to moderate [29]. The scientic rigor is generally not consid­ered adequate, and study designs should be improved in regard to control groups, randomiza­tion, blinding procedures, and adequate sampling sizes [32].
Patients who are refractory to a conservative regimen can be considered for operative inter­vention. However, successful surgical manage­ment is entirely dependent on selecting patients with discrete, neuroanatomic problems that can be corrected with previous surgery [33].
The working group of the international guide­lines for prevention and management of PCP fol­lowing inguinal hernia repair decided to consider reasonable surgical treatment only after 1 year postoperatively, when the inammatory response has decreased and only when pain intensity cur­tails activity and conventional treatment has failed (L.E. 5, G.R.D) [33].
Neuropathic pain not present before the oper­ation, isolated to the inguinal distribution, with demonstrated improvement from diagnostic and therapeutic nerve blocks is most likely to benet from operative neurectomy [4].
Surgical options proposed in literature for the treatment of PCP are various and include selec­tive neurolysis or neurectomy alone or along with removal of mesh and xation material with revi­sion of prior hernia repair [9, 10, 1925, 32, 34
47]. Most of the studies reported an open surgical
approach, few studies reported a laparoscopic approach, and only three studies reported a com­bined approach. Consistently satisfactory results in the majority of patients are reported.
Selective neurolysis or neurectomy may improve a small subset of patients with PCP [19,
25, 26, 40, 43]. However, electron microscopy of
grossly normal nerves resected during triple neu­rectomy for CPIP demonstrates ultrastructural damage contributing to PCP but unseen to the naked eye [7, 19, 25, 40, 43]. There is also sig­nicant variation and cross innervation of the inguinal nerves in the retroperitoneum and ingui­nal canal, resulting in an overlap of their sensory
innervation, that make selective neurectomy less reliable [19, 33, 48].
For these reasons, we always prefer triple
neurectomy.
About follow-up, it is important to remember that nerve transection is known be associated with delayed onset of neuropathic pain symptoms, from months to years, so extended follow- up times are suggested [32].
Data on surgical management clearly demon­strate that neurectomy with or without mesh removal may provide long-lasting analgesic effects in most patients with severe PCP follow­ing inguinal hernia repair.
Open anterior approach involves re- exploration through the prior operative eld, and it permits the removal of mesh and xation placed in the previ­ous surgery but could be frustrating and challeng­ing to proceed in a scarred eld to identify nerve, and so the approach could become unreliable.
Endoscopic access in the retroperitoneum allows for the identication of the ilioinguinal nerve (IIN) and iliohypogastric nerve (IHN) at the L1 nerve root overlying the quadratus lumbo­rum and the genital and femoral branches of the genitofemoral nerve (GFN) exiting from the psoas muscle [2123, 27]. The advantage of this operation is the proximal access to potential sites of peripheral neuropathy safety and separation from the scar tissue of any prior inguinal hernia repair, but mesh or plug removal is not feasible in this way [2123, 27].
After a clinical experience of more than 100 patients with PCP, we drafted and normally adopt the Total Hope Pain Solving Approach (THOPA.): in this approach, we try to operate “against” all the possible causes of pain in order to improve the patient’s chance to x his painful symptoms.
So, we propose a total simultaneous double anterior-posterior open approach to the inguinal region: through a 6–8-cm-long suprapubic trans­verse lateral incision, 2 cm below the anterior superior iliac spine (Fig.42.1), we rst approach the preperitoneal space, and we identify IIN and IHN on the quadratus lumborum (Fig.42.2) and the genital and femoral branches of the GFN run­ning on the psoas muscle (Fig.42.2) or along the
42 Postoperative Chronic Pain Assessment andTHOPA Philosophy
421
Pubic bone
ASIS
Fig. 42.1 Left inguinal region, the incision line (dotted)
is 2cm below the anterior superior iliac spine (ASIS)
IIN
IHN
Umbelicus
GFN
GFN
IA
Fig. 42.3 Right side, genitofemoral nerve (GFN) run-
ning along the iliac artery
plug
vas
cord
External oblique
aponeurosis
Fig. 42.2 Right side, approach to the preperitoneal space
and identication of iliohypogastric nerve (IHN) and ilio­inguinal nerve (IIN) running on the quadratus lumborum muscle and of the genitofemoral nerve (GFN) running on the psoas muscle
iliac artery (Fig. 42.3) and proceed with triple neurectomy.
Proceeding with a blunt dissection at retropu­bic level, the Retzius space is reached and Cooper’s ligaments are identied. Going from the pubic symphysis toward the psoas muscle, the Bogros space is approached, and the external iliac vessels, the cord, and the recurrent hernia sac, if present, are identied.
If a plug has been placed during previous sur­gery, it can be safely removed now (even if not always easily) (Fig.42.4).
If a mesh has been placed in the preperitoneal space during the previous surgery, blunt dissec-
Fig. 42.4 Plug previously placed is carefully divided
from the cord and removed during the preperitoneal approach
tion and its removal can be challenging: in this case, we suggest to open the peritoneum, access the abdominal cavity, and, after the viscera have been safely reduced, cut the peritoneum all around the mesh previously implanted. The peri­toneal cavity can be closed then with a running suture or with a bridged vicryl or biological mesh, in case of loss of substance. Only in this way, then it is possible to focus on the mesh and remove it safely.
Then, through the same incision, after the dissection of the skin and subcutaneous space toward the pubic bone, the anterior region is approached (Fig. 42.5), the external oblique aponeurosis is open, and the meshoma or mesh and suture or stitches placed can be completely removed (Fig.42.6). It is important to remem­ber that the cord may be found below the fascia
422
Данная книга находится в списке для перевода на русский язык сайта https://meduniver.com/
Rectus muscle
G. Campanelli et al.
External oblique
aponeurosis
Rectus m.
Fig. 42.5 The drawing shows the double (anterior and
posterior) approach through the same incision in the right inguinal region
External oblique
External oblique
aponeurosis and mesh
Fig. 42.6 Left inguinal region, the anterior region is
approached and the external oblique aponeurosis is open: one nerve, probably the ilioinguinal, is isolated enclosed in scar tissue and mesh previously placed
Internal
obl. m.
aponeurosis
Preperitoneal
space
but also above the fascia, in the subcutaneous space, depending on the technique used in the previous surgery. So, a prudent dissection is required to identify and preserve the cord. The IIN and IHN and the genital branch of GFN can be sometimes reidentied and resected once again (even if in scar tissue it is not reliable) (Fig.42.7).
If, during preoperative evaluation of the patient, we understand that a PIPS was likely misdiagnosed and treated like an hernia and the patient is still suffering from PIPS, we complete the surgery with a partial calibrated tenotomy of the abdominal rectus muscle and longus adduc­tor muscle, like we usually do in PIPS treatment (see Chap. 38) [49]. Both tenotomies can be
Cord in the
anterior space
Cord in the
preperitoneal space
Fig. 42.7 Left inguinal region after posterior and ante-
rior approach and removal of mesh previously placed. The cord is isolated in both approaches
feasibly achieved during the anterior step at the approach.
Finally, a new reinforcement is done with an ultralight or biological mesh in the preperitoneal space xed with glue [9].
We remove always the mesh previously placed because the real reason of pain (neuropathic or non-neuropathic) cannot be surely detected. The choice of placing a new mesh in the preperitoneal space is due to the fact that, even if at the moment of surgery no recurrence is present, the removal of mesh previously placed should make the pos­terior inguinal wall weak. For this reason, an ultralight mesh is normally implanted.
In our experience (follow-up ranges between 6 and 108months), 80% of patients are free of pain at 1year after surgery. As previously writ­ten, the late evaluation (almost 1year) is impor­tant because nerve transection can be associated with delayed onset of neuropathic pain symptoms.
In patients who underwent also a double par­tial calibrated tenotomy, a physio-kinetic pro­gram is established.
We wonder often what the reason of persisting pain could be in some patients (20%), even if all patients suffered with similar preoperative symp­toms and underwent the same surgical procedure. We think that psychological attitude should be
®
investigated, and we included the MMPI-2
test in the preoperative evaluations, but, until now, no clear connection has been found.
42 Postoperative Chronic Pain Assessment andTHOPA Philosophy
423
We strongly believe that more attention should be paid to identify a test that can determine the real cause of pain and optimize nonsurgical and surgical options.
References
1. Aasvang E, Kehlet H. Chronic postoperative pain:
the case of inguinal herniorrhaphy. Br J Anaesth. 2005;95:69–76.
2. Campanelli G.Pubic inguinal pain syndrome: the so-
called sports hernia. Hernia. 2010;14(1):1–4.
3. PK A.Radiological images of meshoma: a new phe-
nomenon after prosthetic repair of abdominal wall hernia. Arch Surg. 2004;139:1297–8.
4. Nguyen DK, Amid PK, Chen DC.Groin pain after
inguinal hernia repair. Adv Surg. 2016;50(1):203–20.
5. Hakeem A, Shanmugam V.Current trends in the diag-
nosis and management of postherniorraphy chronic groin pain herniorraphy chronic groin pain. World J Gastrointest Surg. 2011;3:73–81.
6. Cunningham J, Temple WJ, Mitchell P, et al.
Cooperative hernia study. Pain in the postrepair patient. Ann Surg. 1996;224:598–602.
7. Loos MJ, Roumen RM, Scheltinga MR.Classifying
post-herniorrhaphy pain syndromes follow­ing elective inguinal hernia repair. World J Surg. 2007;31:1760–5.
8. Jones RC 3rd, Backonja MM. Review of neuro-
pathic pain screening and assessment tools. Curr Pain Headache Rep. 2013;17(9):363.
9. Campanelli G, Bertocchi V, Cavalli M, Bombini G,
Biondi A, Tentorio T, Sfeclan C, Canziani M.Surgical treatment of chronic pain after inguinal hernia repair. Hernia. 2013;17:347–53.
10. Starling JR, Harms BA, Schroeder ME, Eichman
PL. Diagnosis and treatment of genitofemoral and ilioinguinal entrapment neuralgia. Surgery. 1987;102:581–6.
11. Miller JM, Ishimitsu DN, Saouaf R.Radiologic evalu-
ation for postoperative groin pain. In: The sages man­ual of groin pain. Jacob BP, Chen DC, Ramshaw B, Towgh S, editor. NewYork: Springer; 2016.
12. Finnerup NB, Otto M, McQuay HJ, Jensen TS, Sindrup
SH.Algorithm for neuropathic pain treatment: an evi­dence based proposal. Pain. 2005;118:289–305.
13. Brennan TJ, Kehlet H.Preventive analgesia to reduce
wound hyperalgesia and persistent postsurgical pain: not an easy path. Anesthesiology. 2005;103: 681–3.
14. Bischoff JM, Petersen M, Uceyler N, Sommer C,
Kehlet H, Werner MU.Lidocaine patch (5%) in treat­ment of persistent inguinal postherniorrhaphy pain: a randomized, double-blind, placebo-controlled cross­over trial. Anesthesiology. 2012;119:1444–52.
15. DB C. Local anesthetic blockade for neuralgias:
“why is the sky blue, daddy?”. Anesth Analg. 2011;112(6):1283–5.
16. Kissin I, Vlassakov KV, Narang S. Local anes­thetic blockade of peripheral nerves for treatment of neuralgias: systematic analysis. Anesth Analg. 2011;112:1487–93.
17. Bischoff JM, Koscielniak-Nielsen ZJ, Kehlet H, Werner MU. Ultrasound-guided ilioinguinal/iliohy­pogastric nerve blocks for persistent inguinal posth­erniorrhaphy pain: a randomized, double-blind, placebo-controlled, crossover trial. Anesth Analg. 2012;114(6):1323–9.
18. Vlassakov KV, Narang S, Kissin I. Local anes­thetic blockade of peripheral nerves for treatment of neuralgias: systematic analysis. Anesth Analg. 2011;112(6):1487–93.
19. Starling JR, Harms BA.Diagnosis and treatment of genitofemoral and ilioinguinal neuralgia. World J Surg. 1989;13:586–91.
20. Kim DH, Murovic JA, Tiel RL, Kline DG.Surgical management of 33 ilioinguinal and iliohypogas­tric neuralgias at Louisiana State University Health Sciences Center. Neurosurgery. 2005;56:1013–20.
21. Rosen MJ, Novitsky YW, Cobb WS, Kercher KW, Heniford BT. Combined open and laparoscopic approach to chronic pain following open inguinal her­nia repair. Hernia. 2006;10:20–4.
22. Keller JE, Stefanidis D, Dolce CJ, Iannitti DA, Kercher KW, Heniford BT. Combined open and laparoscopic approach to chronic pain after inguinal hernia repair. Am Surg. 2008;74:695–700.
23. Giger U, Wente MN, Büchler MW, Krähenbühl S, Lerut J, Krähenbühl L. Endoscopic retroperitoneal neurectomy for chronic pain after groin surgery. Br J Surg. 2009;96:1076–81.
24. Vuilleumier H, Hubner M, Demartines N.Neuropathy after herniorrhaphy: indication for surgical treatment and outcome. World J Surg. 2009;33:841–5.
25. Zacest AC, Magill ST.Long-term outcome following ilioinguinal neurectomy for chronic pain. J Neurosurg. 2010;112:784–9.
26. Loos MJ, Scheltinga MR, Roumen RM.Tailored neu­rectomy for treatment of postherniorrhaphy inguinal neuralgia. Surgery. 2010;147:275–81.
27. Chen DC, Hiatt JR, Amid PK. Operative manage­ment of refractory neuropathic inguinodynia by a laparoscopic retroperitoneal approach. JAMA Surg. 2013;148:962–7.
28. Chua NH, Vissers KC, Sluijter ME.Pulsed radiofre­quency treatment in interventional pain management: mechanisms and potential indications—a review. Acta Neurochir. 2011;153:763–71.
29. Werner MU, Bischoff JM, Rathmell JP, Kehlet H.Pulsed radiofrequency in the treatment of persistent pain after inguinal herniotomy: a systematic review. Reg Anesthesiol Pain Med. 2012;37(3):340–3.
30. Kastler A, Aubry S, Piccand V, Hadjidekov G, Tiberghien F, Kastler B. Radiofrequency neuroly­sis versus local nerve inltration in 42 patients with refractory chronic inguinal neuralgia. Pain Physician. 2012;15:237–44.
31. Possover M.Use of the LION procedure on the sensi­tive branches of the lumbar plexus for the treatment
424
Данная книга находится в списке для перевода на русский язык сайта https://meduniver.com/
G. Campanelli et al.
of intractable postherniorrhaphy neuropathic inguino­dynia. Hernia. 2013;17:333–7.
32. Werner MU. Management of persistent postsur­gical inguinal pain. Langenbeck’s Arch Surg. 2014;399:559–69.
33. Aleri S, Amid PK, Campanelli G, Izard G, Kehlet H, Wijsmuller AR, Di Miceli D, Doglietto GB.International guidelines for prevention and man­agement of post-operative chronic pain following inguinal hernia surgery. Hernia. 2011;15:239–49.
34. Amid PK.Causes, prevention and surgical treatment of postherniorrhaphy neuropathic inguinodynia: triple neurectomy with proximal end implantation. Hernia. 2004;8:343–9.
35. Bower S, Moore BB, Weiss SM. Neuralgia after inguinal hernia repair. Am Surg. 1996;62:664–7.
36. Heise CP, Starling JR. Mesh inguinodynia: a new clinical syndrome after inguinal herniorrhaphy? J Am Coll. 1998;187:514–8.
37. Lee CH, Dellon AL. Surgical management of groin pain of neural origin. J Am Coll Surg. 2000;191:137–42.
38. Deysine M, Deysine GR, Reed WP Jr. Groin pain in the absence of hernia: a new syndrome. Hernia. 2002;6:64–7.
39. Amid PK.A 1-stage surgical treatment for posther­niorrhaphy neuropathic pain: triple neurectomy and proximal end implantation without mobilization of the cord. Arch Surg. 2002;137:100–4.
40. Madura JA, Madura JA, Copper CM, Worth RM.Inguinal neurectomy for inguinal nerve entrap­ment: an experience with 100 patients. Am J Surg. 2005;189:283–7.
41. Amid PK, Hiatt JR.New understanding of the causes and surgical treatment of postherniorrhaphy inguino­dynia and orchalgia. J Am Coll Surg. 2007;205:381–5.
42. Ducic I, West J, Maxted W. Management of chronic postoperative groin pain. Ann Plast Surg. 2008;60:294–8.
43. Aasvang EK, Kehlet H.The effect of mesh removal and selective neurectomy on persistent postherniot­omy pain. Ann Surg. 2009;249:327–34.
44. Amid PK, Chen DC. Surgical treatment of chronic groin and testicular pain after laparoscopic and open preperitoneal inguinal hernia repair. J Am Coll Surg. 2011;213:531–6.
45. Koopmann MC, Yamane BH, Starling JR.Long-term follow-up after meshectomy with acellular human dermis repair for postherniorrhaphy inguinodynia. Arch Surg. 2011;146:427–31.
46. Bischoff JM, Enghuus C, Werner MU, Kehlet H. Long-term follow-up after mesh removal and selective neurectomy for persistent inguinal posther­niorrhaphy pain. Hernia. 2013;17:339–45.
47. Valvekens E, Nijs Y, Miserez M. Long-term out­come of surgical treatment of chronic postop­erative groin pain: a word of caution. Hernia. 2015;19:587–94.
48. Klaassen Z, Marshall E, Tubbs RS, etal. Anatomy of the ilioinguinal and iliohypogastric nerves with obser­vations of their spinal nerve contributions. Clin Anat. 2011;24(4):454–61.
49. Cavalli M, Bombini G, Campanelli G.Pubic ingui­nal pain syndrome: the so-called sports hernia. Surg Technol Int. 2014;24:189–94.
Laparoscopic Approaches toChronic Postoperative InguinalPain
DavidK.Nguyen andDavidC.Chen
43
Inguinal hernia repair continues to be one of the most commonly performed operations, with an estimated 20 million cases performed worldwide and 800,000in the United States per year [13]. The introduction of mesh and renement of ten­sion-free techniques have markedly reduced recurrence rates and improved patient outcomes. However, chronic postoperative inguinal pain (CPIP) remains a signicant complication. This is dened as a new or different quality of pain persisting 3 months after the hernia has been repaired. Up to 63% of patients are affected by some degree of chronic pain, with 6–8% experi­encing signicant interference with quality of life and activities of daily living [36].
CPIP can happen for multiple reasons. Hernia recurrence must be ruled out. The patient can also experience neuropathic pain associated with injury to the ilioinguinal, iliohypogastric, genito­femoral, and lateral femoral cutaneous nerves. These injuries can happen during dissection, tis­sue handling, mesh xation, or scarring. Nociceptive pain is another culprit, associated with tissue injury and inammation caused by tissue handling and trauma or foreign body inammation due to meshoma [312]. Management of CPIP is difcult as there is often not a discrete distinction between nociceptive
D. K. Nguyen · D. C. Chen (*) Lichtenstein Amid Hernia Clinic at UCLA, Los Angeles, CA, USA e-mail: dcchen@mednet.ucla.edu
and neuropathic pain. Diagnosis is also often complicated by psychosocial factors.
Most patients are successfully treated with multimodal pharmacologic, interventional, and behavioral therapies through a multidisciplinary approach involving surgeons, pain specialists, radiologists, psychiatrists, and primary physi­cians [3]. Some patients, however, will require remedial surgery. With regard to neuropathic inguinodynia, the most denitive of these surger­ies is a triple neurectomy of the ilioinguinal, ilio­hypogastric, and genitofemoral nerves. This was rst described as a two-stage operation approached through the inguinal and retroperito­neal elds but was rened by Amid into a single­stage, open operation in 1995. Recent technical modications have yielded response rates of 85–95% [13].
With the evolution of mesh-based, tension­free repairs, recurrence rates declined, and pain became the more relevant clinical outcome of inguinal repair. Surgical options for chronic post­inguinal hernia repair pain have also progressed and evolved to utilize minimally invasive opera­tive approaches. The guiding principle is identi­cation of the involved or at-risk inguinal nerves with division proximal to the area of the repair. However, identifying the three nerves in the scarred re-operative eld is difcult, and the neu­roanatomic variation increases along the course of the nerves especially within the inguinal canal [1517].
© Springer International Publishing AG, part of Springer Nature 2018 G. Campanelli (ed.), The Art of Hernia Surgery, https://doi.org/10.1007/978-3-319-72626-7_43
425
426
Данная книга находится в списке для перевода на русский язык сайта https://meduniver.com/
D. K. Nguyen and D. C. Chen
In the last three decades, use of the extraperi­toneal space has become ubiquitous as a part of endoscopic transabdominal preperitoneal (TAPP) repairs, totally extraperitoneal (TEP) repairs, and open preperitoneal repairs [1820]. However, inguinodynia that arises after preperi­toneal operations and those that cross both the anterior and posterior planes pose a more com­plex challenge. Nerve injuries associated with these operations are often too proximal to reach through an open anterior inguinal approach, and addressing preperitoneal mesh through an open incision is also difcult [1921]. Orchialgia resulting from vas and spermatic cord injury proximal to the internal ring is also a technical challenge. These aforementioned challenges make an endoscopic approach, either retroperi­toneally or transabdominally, a desirable alterna­tive [2123].
Patients with CPIP should be offered surgical intervention if there are appropriate targets for remediation (meshoma, neuropathic pain, recur­rence, orchialgia) after attempting and failing conservative therapies for a minimum of 3 but optimally 6months after the initial repair. CPIP is traditionally dened by this 3-month chronic­ity, but the timing of mesh integration and resolu­tion of normal postoperative scarring with mesh-based repairs make 6months a more con­servative time frame. The preoperative workup needs to be thorough and methodical as success­ful intervention and the minimization of second­ary complications are primarily predicated on proper patient selection. Characterization of symptoms, assessment of prior pharmacologic and interventional treatments, as well as cross­sectional imaging to identify recurrence, meshoma, or other anatomic abnormalities should be done. A plain lm of the pelvis or scout lms from a CT scan may determine whether metallic xation tacks were used and where they were placed. Prior operative reports should be reviewed to determine the type of operation, use of mesh, location of mesh, xation, identica­tion, and handling of nerves as all these factors can inuence the most appropriate type of reme­dial operation. Dermatosensory mapping should be used during the preoperative assessment to
help determine if neuropathic pain is present and which nerve distributions are implicated. Quantitative sensory testing when available is also useful in characterizing neuropathic inguino­dynia but is often too time and labor intensive for daily clinical practice. All patients considered for neurectomy should undergo diagnostic and thera­peutic blocks of the ilioinguinal, iliohypogastric, and genitofemoral nerves.
A thorough discussion of risks, benets, and expectations should be carried out with the patient undergoing remedial surgery [24, 25]. These include but are not limited to failure to identify or resect all three nerves, persistent pain, permanent numbness, bulging of the lateral abdominal wall muscles due to motor denerva­tion of the lower oblique muscles, labial numb­ness, testicular atrophy or loss, loss of cremasteric reex, injury to the spermatic cord, and deaffer­entation hypersensitivity. If the patient has noci­ceptive pain caused by tissue injury, meshoma, or other factors, their pain will not be alleviated with triple neurectomy alone, and mesh-, hernia-, or tissue-based causes must also be addressed. Similarly, isolated orchialgia is unlikely to resolve with inguinal neurectomy alone.
43.1 Surgical Techniques
43.1.1 Endoscopic Groin Exploration
Endoscopic groin exploration should be consid­ered a part of the diagnostic evaluation and can be used as an adjunct (with hybrid approaches to the inguinal canal) or primary means to address many of the pathologies associated with CPIP.It is appropriate for patients with a prior history of laparoscopic inguinal hernia repair (TEP or TAPP) with evidence of meshoma and use of lat­eral penetrating xation or for patients with ante­rior or preperitoneal approach, equivocal imaging, and unremitting pain that is mesh­related or neuropathic on physical exam. Diagnostic laparoscopy is the rst step, as it allows for identication of interstitial hernias, recurrent hernias, mesh migration, and intra­abdominal adhesions that could be contributing
43 Laparoscopic Approaches toChronic Postoperative Inguinal Pain
to the patient’s symptoms. Offending tacks or other types of xation can also be identied and often removed from the intraperitoneal working space without violating the preperitoneal space.
Exploration of the preperitoneal space and myopectineal orice, whether through a transab­dominal or totally extraperitoneal approach, is
LFC
an important next step. Developing the preperi­toneal view of the myopectineal orice helps to rule out occult causes of pain including recur­rence, retained lipoma, and mesh migration and allows for subsequent preperitoneal mesh repair of the resultant or recurrent hernia if desired. This allows for visualization of the cord struc­tures and hernia spaces and identication of the lateral femoral cutaneous nerve and genitofemo-
Fig. 43.1 Left preperitoneal inguinal neuroanatomy.
Lateral femoral cutaneous (LFC) nerve over iliacus. Genitofemoral nerve (GFN) with its genital (GB) and femoral (FB) branches passing over the psoas medial to the iliac vessels
ral nerves. The peritoneal ap should be initially separated from the mesh and preserved; how-
43.1.2 Meshoma
ever, this is sometimes not possible. If the main issue is recurrence and the mesh is otherwise at, it may be left in place with creation of a larger dissection space, and additional mesh is placed. Alternatively, recurrence may be addressed with an anterior Lichtenstein repair avoiding the preperitoneal plane altogether. However, if recurrence is not the only factor leading to pain, hernia repair alone is unlikely to remediate the problem.
Neuropathic pain that arises with laparoscopic preperitoneal repair without traumatic xation should by anatomy and mechanism be isolated to the genitofemoral or lateral femoral cutaneous nerves. Similarly, cases with dermatosensory mapping suggestive of an isolated neuropathic distribution involving the genital or lateral femo­ral cutaneous nerves can be addressed in the pre­peritoneal space without involvement of the ilioinguinal and iliohypogastric nerves. The geni­tal and femoral branches of the genitofemoral nerve may be identied over the psoas and iliac vessels as they pass toward the internal ring and iliopubic tract. The lateral femoral cutaneous nerve can be identied lateral to the psoas pass­ing over the iliacus muscle toward the lateral thigh. Neurectomy of these two nerves may be safely and effectively performed during endo­scopic groin exploration with minimal morbidity in this location (Fig.43.1).
Meshoma pain after laparoscopic preperitoneal repair may require mesh removal. Laparoscopic mesh removal is difcult and fraught with poten­tial dangers. However, compared to open mesh removal, laparoscopic dissection and visualiza­tion allow for a broad assessment of mesh posi­tion and conguration, involvement of surrounding visceral structures, and potential mechanisms of pain. Laparoscopic dissection also provides a controlled approach to removal of the mesh especially with regard to adherence to vascular structures. In the case of an isolated pre­peritoneal laparoscopic mesh (TEP, TAPP) (Figs. 43.2 and 43.3), open preperitoneal mesh placement (TIPP, Kugel, TREPP), or plug (Fig.43.4a), removal may often be accomplished entirely through a laparoscopic approach. With repairs that traverse the anterior and posterior plane (plug and patch and bilayered meshes), laparoscopic mesh removal can address the pos­terior mesh component alone or may be used as an adjunct to facilitate the posterior dissection as part of a hybrid open inguinal and laparoscopic preperitoneal approach (Fig.43.4).
Meshoma is typically scarred, xated, or con­tracted around the epigastric and iliac vessels along with the cord structures. Occasionally the bladder is adherent to the mesh as well. Preoperative counseling must include discussion
Psoas M.
427
FB
GB
Iliac A.
GFN
428
cd
Данная книга находится в списке для перевода на русский язык сайта https://meduniver.com/
D. K. Nguyen and D. C. Chen
a
b
Fig. 43.2 Laparoscopic removal of tack-xated preperitoneal mesh. (a) Intra-abdominal view (b) Preperitoneal view
with mesh and tacks (c) Tack removal (d) Mesh and tacks dissected off cord and vascular structures
about injury to these structures and contingency plans to control bleeding and repair any potential damage carefully thought out before starting the operation. When separation from the vessels, the viscera, or the spermatic cord is difcult, it is
surgery, may be helpful for complex cases as the added range of motion, superior optics and visu­alization, and increased operative dexterity may facilitate more precise mesh dissection and mini­mally invasive vascular repair.
often prudent and safer to leave a cuff of mesh behind to minimize injury to these structures especially in cases of xation with tacks and
43.1.3 Fixation
suture. With meshoma pain, patients typically are affected by the amount of mesh present and its three-dimensional conguration and bulk. Reduction in the mass of the meshoma can poten­tially alleviate symptoms with decreased morbid­ity and risk by leaving small adherent areas of mesh behind. Bladder decompression for laparo­scopic mesh removal operations is recommended to maximize the operative eld and facilitate mesh removal or repair in the case of bladder ero­sion. Robotic-assisted groin exploration, follow­ing the same operative principles of laparoscopic
Penetrating xation with tacks or permanent suture may cause nociceptive symptoms at the point of xation or neuropathic injury with distal dermatosensory effects. Tacks or other penetrat­ing xation devices can be removed if they cor­respond to areas of targeted pain on preoperative exam. Tack removal may be accomplished intra­peritoneally or extraperitoneally. Isolated tack pain can occasionally be addressed with simple cutdown over the site of pain. However, laparoscopic removal is recommended for multi-