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Popliteal Plexus Block as a Potential Alternative to IPACK Block in Total-Knee Arthroplasty: Anatomical Rationale,
Sung Jun Kim1, Siwook Chung1, Jae Hoo Park2
1Department of Anesthesiology and Pain Medicine, Eunpyeong St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul 03312, Republic of Korea.
Abstract:
Total-knee arthroplasty (TKA) is associated with substantial acute postoperative pain. While the adductor canal block (ACB) is widely used to provide motor-sparing anterior knee analgesia, effective management of posterior knee pain remains an important clinical challenge. The infiltration between the popliteal artery and the capsule of the posterior knee (IPACK) block was developed to address posterior capsular pain but may be associated with technical and ergonomic limitations. More recently, the popliteal plexus block (PPB) has emerged as a novel motor-sparing alternative. This narrative review summarizes the anatomical basis, current clinical evidence, and practical considerations of combining the ACB with the PPB, with particular emphasis on its potential role as an alternative to the IPACK block within Enhanced Recovery After Surgery (ERAS) pathways. Current anatomical and early clinical evidence suggests that the PPB selectively targets the terminal articular branches around the adductor hiatus while preserving the major motor nerve trunks. Available randomized clinical trials indicate that the PPB provides analgesia comparable to IPACK while maintaining motor function, with additional practical advantages including shorter procedural time and, in individual studies, reduced postoperative opioid consumption and postoperative nausea. Overall, the combined ACB and PPB approach appears to be a promising motor-sparing strategy for perioperative analgesia after TKA. However, the current evidence is derived predominantly from cadaveric studies, early-phase randomized trials, and single-center clinical investigations. Therefore, larger multicenter studies with longer follow-ups are needed to establish its long-term efficacy, safety, and role relative to the established IPACK technique.