scieee AI-readable full text Open interactive document viewer

Comparative Effectiveness of Iontophoresis vs. Low Dye Taping in Plantar Fasciitis: A Systematic Review

Castro Méndez, Aurora; Roldán-Fernández, Lucía; Tovaruela Carrión, Natalia; Pabón Carrasco, Manuel; Álvarez-Cordero, Juan; Vázquez‐Castro, M. A.

Abstract

Background Plantar fasciitis (PF) is a frequent cause of heel pain, affecting approximately 10% of the population. Conserva tive treatments such as iontophoresis and low-dye taping (LDT) are widely used to alleviate symptoms, often providing short-term pain relief. Objective This systematic review aims to compare the efficacy of iontophoresis (with 5% acetic acid, 0.4% dexamethasone, dexamethasone and lidocaine, or placebo) versus low-dye taping (LDT) in treating plantar fasciitis. Additionally, it evaluates the combined effect of iontophoresis and LDT application. Methods A systematic search was conducted in Scopus, PubMed, Web of Science, CINAHL, and the Cochrane Library databases, following PRISMA guidelines and the Cochrane Handbook for Systematic Reviews of Interventions. Inclusion and exclusion criteria were predefined. Two independent reviewers screened and extracted data from eligible studies, assessing their quality. Included studies comprised randomized controlled trials, non-randomized clinical trials, case–control studies, systematic reviews, and meta-analyses. The review protocol was registered with PROSPERO (registration number: [blind for review]). Results Eight studies published between 1997 and 2018 were included, providing a moderate level of evidence. Both ion tophoresis (with the specified agents) and low-dye taping, alone or combined, were associated with statistically significant reductions in pain scores compared to baseline. Conclusion Iontophoresis and low-dye taping are effective conservative interventions for plantar fasciitis, with their com bined use also showing beneficial effects. These treatments can be considered viable options to reduce pain in patients with plantar fasciitis.

Full text

Vol.:(0123456789) Indian Journal of Orthopaedics https://doi.org/10.1007/s43465-025-01477-4 REVIEW ARTICLE Comparative Effectiveness ofIontophoresis vs. Low Dye Taping inPlantar Fasciitis: ASystematic Review AuroraCastro‑Méndez1· LucíaRoldán‑Fernández2· NataliaTovaruela‑Carrión3 · ManuelPabón‑Carrasco4· JuanÁlvarez‑Cordero2· MaríaVázquez‑Castro2 Received: 17 February 2025 / Accepted: 25 June 2025 © The Author(s) 2025 Abstract Background Plantar fasciitis (PF) is a frequent cause of heel pain, affecting approximately 10% of the population. Conservative treatments such as iontophoresis and low-dye taping (LDT) are widely used to alleviate symptoms, often providing short-term pain relief. Objective This systematic review aims to compare the efficacy of iontophoresis (with 5% acetic acid, 0.4% dexamethasone, dexamethasone and lidocaine, or placebo) versus low-dye taping (LDT) in treating plantar fasciitis. Additionally, it evaluates the combined effect of iontophoresis and LDT application. Methods A systematic search was conducted in Scopus, PubMed, Web of Science, CINAHL, and the Cochrane Library databases, following PRISMA guidelines and the Cochrane Handbook for Systematic Reviews of Interventions. Inclusion and exclusion criteria were predefined. Two independent reviewers screened and extracted data from eligible studies, assessing their quality. Included studies comprised randomized controlled trials, non-randomized clinical trials, case–control studies, systematic reviews, and meta-analyses. The review protocol was registered with PROSPERO (registration number: [blind for review]). Results Eight studies published between 1997 and 2018 were included, providing a moderate level of evidence. Both iontophoresis (with the specified agents) and low-dye taping, alone or combined, were associated with statistically significant reductions in pain scores compared to baseline. Conclusion Iontophoresis and low-dye taping are effective conservative interventions for plantar fasciitis, with their combined use also showing beneficial effects. These treatments can be considered viable options to reduce pain in patients with plantar fasciitis. Keywords Low-dye taping· Iontophoresis· Plantar fasciitis· Foot· Therapy * Natalia Tovaruela-Carrión nto[email protected] Aurora Castro-Méndez auroracastr[email protected] Lucía Roldán-Fernández roldanfer[email protected] Manuel Pabón-Carrasco [email protected] 1 Grupo de Investigación en Liderazgo Hermes CTS-601, Departamento de Podología, Facultad de Enfermería, Fisioterapia y Podología. Liderazgo DS-30 Bases biomédicas del pie que afectan al apoyo y la marcha, Instituto de Biomedicina de Sevilla, IBiS/Universidad de Sevilla, 41009, Sevilla, España 2 Independent Researchers, Luis Montoto St: 91, 41018, Seville, Spain 3 Grupo de Investigación Hermes CTS-601, Departamento de Podología, Facultad de Enfermería, Fisioterapia y Podología. Grupo de Investigación DS-30 Bases biomédicas del pie que afectan al apoyo y la marcha, Instituto de Biomedicina de Sevilla, IBiS/ Universidad de Sevilla, 41009, Sevilla, España 4 CTS-1050 “Complex Care, Chronicity andHealth Outcomes” Research Group, Faculty ofNursing, Physiotherapy andPodiatry, University ofSeville, 41009, Seville, Spain Indian Journal of Orthopaedics Abbreviations PF Plantar Fasciitis LDT Low dye tape technique MFA Medial foot arch PRP Platelet-rich plasma AWB Autologous whole blood Introduction Plantar fasciitis (PF), also referred to as plantar fasciosis, is the most common cause of heel pain [1, 2], affecting approximately 10% of the population during their lifetime [3]. The etiology of PF is considered multifactorial and not yet fully understood, with risk factors including obesity, sedentary lifestyle, repetitive stress, physical activity, and male sex among others [4–9]. According to Mardani etal., PF is regarded as a degenerative condition (fasciosis) when symptoms persist beyond 8 weeks, with the chronic stage defined after this time frame [10, 11]. The diagnosis of PF is primarily clinical [12–14], but imaging techniques such as ultrasound, elastography, or sonoelastography can confirm characteristic plantar fascia thickening [15, 16]. Typical ultrasound findings include hypoechogenicity, increased tissue rigidity, and disruption of the normal fibrillar pattern [17, 18]. Conservative treatment is the first-line approach in managing PF, with surgical interventions reserved for cases refractory to conservative therapies [19]. Common conservative modalities include orthotics, dry needling, stretching, pharmacological therapy, manual therapy, shockwave therapy, night splints, physical therapy techniques (ultrasound, electrotherapy, phonophoresis), intrinsic foot muscle strengthening, and taping [1, 20, 21]. Corticosteroid injections are frequently used for their anti-inflammatory and analgesic effects in PF [22]. Crawford etal. reported pain relief up to one month post-injection, although effects typically diminish by three months [23]. However, injections can be painful and are not suitable for all patients, with potential adverse effects including infection, skin atrophy, and plantar fascia rupture [22]. Iontophoresis is a non-invasive technique that uses lowvoltage electrical currents to deliver corticosteroids or acetic acid transdermally into soft tissues [24–26]. It is employed in approximately 13.04% of PF cases [27]. Studies have demonstrated that iontophoresis with 0.4% dexamethasone can restore function in musculoskeletal conditions and may serve as an alternative to corticosteroid injections [28]. Acetic acid (typically 5%) delivered by iontophoresis forms calcium acetate, which binds and facilitates the removal of calcium deposits, making this technique useful in PF and other calcific tendinitis conditions [29, 30]. Advantages of iontophoresis include preservation of the skin barrier and avoidance of needle-related tissue damage and pain. This minimizes risks such as plantar fascia rupture and infection commonly associated with corticosteroid injections [22]. Low-Dye taping (LDT) is a widely used taping technique designed to provide temporary external support to the medial foot arch (MFA), addressing biomechanical factors contributing to PF [31, 32]. Among various taping methods (e.g., X-arch, High-Dye), LDT is considered the gold standard and is frequently applied in early PF management [32]. Orthopedic devices combined with taping have demonstrated enhanced effectiveness compared to single modalities [27]. Despite advances in PF treatment, symptom management remains challenging. Corticosteroid injections offer transient pain relief but are associated with potential complications and lack standardized guidelines for use [19, 26]. Thus, exploring alternative or adjunctive conservative treatments is essential. This review specifically compares iontophoresis and LDT, given their widespread use and potential complementary mechanisms—iontophoresis delivering anti-inflammatory agents directly into affected tissues and LDT providing mechanical support to the foot arch. Additionally, the combined application of both treatments is assessed, as this may offer synergistic benefits. Therefore, this review aims to compare the efficacy of iontophoresis (with 5% acetic acid, 0.4% dexamethasone, dexamethasone and lidocaine, or placebo) versus LDT in the treatment of PF. Furthermore, it evaluates the combined effect of iontophoresis and LDT application. The guiding research question is: In the symptomatic treatment (pain reduction) of PF, which is more effective—iontophoresis, LDT, or their combined use? Methods The search strategy was conducted between February and October 2021 on the databases: Scopus, PubMed, Web of Science, CINHAL, and the Cochrane Library. This systematic review was conducted following the Preferred Reporting Items for Systematic Reviews (PRISMA) guidelines and the Cochrane Guide for Systematic Reviews of Interventions. The systematic review protocol was registered in the International Prospective Register of Systematic Reviews PROSPERO (number: ‘‘[blinded for review]”). The research question followed the PICOS criteria (P— patients: adult population with PF; I—intervention: symptomatological treatment of PF with iontophoresis; C—comparison with LD-type bandage and with combined treatment with LDT-type bandage with iontophoresis; and O—Outcomes: pain reduction). Indian Journal of Orthopaedics To design the search strategy, index terms and free text words related to keywords of the review objective were used and connected with Bolean operators (AND, OR and NOT). The following two common search strategies were used for all databases: (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND (‘‘iontophoresis’’ OR 'dexamethasone' OR ‘‘acetic acid’’) NOT (‘‘injections’’ OR ‘‘surgery’’) and (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND 'low dye taping'. The description of the database is shown in Table1. After removing duplicates (Check for duplicates of Mendeley toll), two independent reviewers (LRF and ACM) screened the title and abstract of all articles for eligibility. In case of disagreement, a consensus was reached with the opinion of a third reviewer (EFG). The inclusion criteria for this review were as follows: studies published in English, Spanish, French, or German; involving adult participants diagnosed with plantar fasciitis (PF), either unilateral or bilateral. Eligible studies were published within the last 25years (from 1996 to 2021) and included randomised controlled trials (RCTs), non-randomised clinical trials, case–control studies, cohort studies, systematic reviews, and meta-analyses. Studies were required to evaluate the effect of iontophoresis (using dexamethasone and/or acetic acid) in the treatment of PF. This included studies comparing iontophoresis with placebo, no treatment, Low-Dye taping (LDT), or the combined application of iontophoresis and LDT. Additionally, studies had to report outcomes using validated measurement tools such as the Visual Analogue Scale (VAS), the Maryland Foot Score (MFS), or the Foot Function Index (FFI). The exclusion criteria were: studies involving animal models, and those comparing iontophoresis with surgical interventions, corticosteroid infiltrations, or other conservative treatment methods not under review in this study. Data Extraction The review was carried out independently by two researchers; study authors (LRC, ACM). The references found were exported to the Mendeley bibliographic manager, and duplicate articles were deleted. Subsequently, the reviewers read the abstracts of the preselected researches, and finally the full texts of the articles that still met the inclusion criteria were analysed. Any discrepancy was resolved by a joint discussion and a third review. The following data were extracted: (1) first author; (2) study Title; (3) publication year; (4) type of design; (5) type of intervention; (6) method and duration of intervention; (7) sample size; (8) age of study participants; (9) rating scale(s) used; (10) main findings and conclusions. Table 1 Search strategies used in each database Database Search strategies Results Medline (Pubmed) 1st search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND (‘‘iontophoresis’’ OR ‘‘dexamethasone’’ OR ‘‘acetic acid’’) NOT (‘‘injections’’ OR ‘‘surgery’’) 8 2nd search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND ‘‘Low-Dye Taping’’ 5 CINAHL 1st search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND (‘‘iontophoresis’’ OR ‘‘dexamethasone’’ OR ‘‘acetic acid’’) NOT (‘‘injections’’ OR ‘‘surgery’’) 18 2nd search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND ‘‘Low-Dye Taping’’ 4 Web of Science 1st search 2nd search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND (‘‘iontophoresis’’ OR ‘‘dexamethasone’’ OR ‘‘acetic acid’’) NOT (‘‘injections’’ OR ‘‘surgery’’) 15 17 2nd search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND (‘‘iontophoresis’’ OR ‘‘dexamethasone’’ OR ‘‘acetic acid’’) NOT (‘‘injections’’ OR ‘‘surgery’’) 17 Scopus 1st search (‘‘plantar fasciitis’’ OR ‘‘heel pain’’) AND treatment AND (‘‘iontophoresis’’ OR ‘‘dexamethasone’’ OR ‘‘acetic acid’’) NOT(‘‘injections’’OR ‘‘surgery’’) 5 2nd search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND ‘‘Low-Dye Taping’’ 17 Cochrane 1st search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND (‘‘iontophoresis’’ OR ‘‘dexamethasone’’ OR ‘‘acetic acid’’) NOT (‘‘injections’’ OR ‘‘surgery’’) 24 2nd search (‘‘Plantar fasciitis’’ OR ‘‘Heel pain’’) AND treatment AND ‘‘Low-Dye Taping’’ 2 Indian Journal of Orthopaedics Data Synthesis andRisk ofBias With the tool provided by Cochrane 'Review Manager' or 'RevMan', was assessed the risk of bias of the selected studies (version 5.4.1.was used). Quality Assessment Two researchers (EFG, ACM) reviewed methodological quality based on the Critical Assessment Skills Programme and a PRISMA Declaration Checklist (Preferred Reporting Items for Systematic Reviews and Meta-Analyses). This process was carried out by the two different researchers to decrease the probability or risk of bias. Results According to the guidance of PRISMA guidelines, the first search generated 70 articles, while the second generated 35 articles, and finally where added the 3 articles by snowball sampling, so the total was of 108 articles. After using the ''check for duplicates'' option of the bibliographic manager, we discard those documents that we find in duplicate in several databases. In this way, we are left with 53 articles from the first search, 26 from the second search, and 3 of the articles obtained by snowball. After discarding duplicates, we proceeded to make a more exhaustive selection of the 82 articles we had. To do this, we reviewed and read the titles and abstracts of all articles and proceeded to remove those that were not correctly classified by the databases. By this method, we limited the selection of articles to 23, of which the full texts were assessed so that they met the requirements of our PICO research question. After that only nine of the 23 articles fully met the selection criteria, so the remaining 14 were eliminated, among the main reasons being language and not original research articles. However, it should be noted that, after conducting an in-depth reading of the 9 articles, we could observe that 2 of them had exactly the same methodology and arrived at exactly the same results, despite being published in different scientific journals. For this reason, we included the original article and removed the duplicate study, with eight articles finalising our systematic review. Finally, the eight selected studies were analysed in detail to corroborate that their content was in accordance with the requirements previously established for the PICO research question (Fig.1). Risk of bias in included studies was assessed using the Review Manager software (Review Manager® or RevMan tool®), developed by The Cochrane Collaboration. This tool facilitated a structured evaluation of potential biases across studies, with results visually summarized in Fig.2, indicating a generally low risk of bias in the majority of included publications. Furthermore, a detailed matrix diagram (Fig.3) depicts the risk of bias levels for each study individually, categorized by color codes: green for low risk, yellow for moderate risk, and red for high risk of bias. Statistical Analysis ofStudy Quality The CASPe and PRISMA assessment guidelines were used and applied to the eight articles included in the systematic review [33]. This process was carried out by two different researchers (LRF and ACM) to reduce the probability or risk of bias, and the score obtained is shown in Table2. Results ofSyntheses Table3 provides a comprehensive synthesis of the objectives, methodologies, results, and conclusions of all included studies. Each study is subsequently analyzed individually, with detailed descriptions of key characteristics, including methodological quality assessed using the Sackertt evidence classification system [34]. Main Results Gudeman etal. published in 1997 was the first known study in which the effects of iontophoresis with 0.4% dexamethasone were studied in the symptomatic treatment of PF were studied. The results obtained were very significant; they concluded that the application of iontophoresis with 0.4% dexamethasone reduces pain and increases foot functionality in the short term (2–3 weeks) in patients with PF, and recommended it insituations where immediate reduction in symptoms of PF was needed, for example, in elite athletes. As a limitation, this study only shows statistically significant differences in the short term (2–3 weeks), with no differences in the one-month follow-up [35]. Subsequently, Japour etal., 1999 studied the effectiveness of 5% acetic acid in reducing chronic heel pain, concluding that application of iontophoresis with 5% acetic acid reduces heel pain in the first step of the day (a characteristic sign of PF) and is therefore an effective conservative treatment for acute or recalcitrant heel pain, although it is necessary to continue investigating in this line to confirm these results. In this study, it should be noted as a limitation that it lacks a control group [36]. In 2006 Osborne etal. conducted a study randomly dividing the sample into 3 groups: Group 1 (G1) received LDT and iontophoresis with 0.4% dexamethasone as treatment, Group 2 (G2) applied LDT and iontophoresis with placebo (0.9% NaCl) and Group 3 (G3) received LDT as treatment together with iontophoresis with 5% acetic acid. Furthermore, the three groups received guidelines to stretch the leg muscle [25]. Pain and morning stiffness were measured using the Indian Journal of Orthopaedics Fig. 1 PRISMA flowchart of study selection Fig. 2 General analysis of the risks of bias in the studies analyzed Indian Journal of Orthopaedics Visual Analogue Scale (VAS), the Visual Analogue Stiffness Scale, and the Morning Stiffness Duration Questionnaire. These measurements were taken at the beginning of treatment, at the end of it, and after 4 weeks from the end of treatment. As a result, all groups showed significant improvements in morning pain and stiffness. However, for morning pain, the acetic acid and bandage group showed a significantly greater improvement than the rest of the groups. The researchers concluded that applying LDT together with iontophoresis and acetic acid, dexamethasone, or placebo reduces the pain and stiffness caused by PF. As indicated in the title of the study, the results shown are short-term, so the conclusions are limited to the period observed, lacking long-term results [25]. Following this line of research, Goyal etal. compared the effectiveness of LDT with the combination of this bandage and iontophoresis to reduce foot pain and increase its functionality in PF, the authors concluded that both LDT and combined bandage therapy and iontophoresis cause a significant decrease in pain and disability in patients with PF The effects of combination therapy are more beneficial. As a limitation, since it is a study with a quasi-experimental design, the study lacks randomization of groups, which increases the risk of bias and limits the strength of causal inferences. Differences between groups at baseline could influence the results [37]. In relation to combined treatments, Chetri etal. concluded that the combination of iontophoresis with acetic acid and conservative treatments can promote the recovery of foot functionality and the reduction of pain more effectively compared to the use of treatment approaches in which only one method is used. LDT is very beneficial and effective in the symptomatic treatment of PF, and acetic acid iontophoresis has shown promising results [38]. However, Kalra, 2016 concluded in his study that the application of iontophoresis with 0.4% dexamethasone and lidocaine hydrochloride shows better results in the symptomatic treatment of PF compared to iontophoresis with distilled water (placebo) [39]. Regarding the systematic review by Podolsky etal., 2015 it concluded that although several bandaging techniques have been shown to reduce pain in PF, LDT has the best evidence for the treatment of PF in the short term, although the long-term effect and effectiveness of this technique must be investigated. This review is limited by the quality of the included studies, since the individual limitations presented by the included RCTs, crossover studies, and repeated measures cluster study are transferred to the conclusions of the review [40]. Verbruggen etal. In 2018, studies in which the duration of treatment was longer (6 weeks instead of 2 or 3) produced the greatest effects, suggesting that long-term LDT treatment may be more beneficial in reducing PF pain. This review is limited by the quality of the included studies and the search parameters (2005–2016) [41]. Fig. 3 Risks of bias according to each study included in the systematic review Table 2 Score of each study analyzed according to the critical appraisal guides Study Scales Researcher 1 Researcher 2 Gudeman etal., 1997 CASPe 9/11 9/11 Japour etal., 1999 CASPe 7/11 8/11 Osborne etal., 2006 CASPe 9/11 10/11 Goyal etal., 2013 CASPe 9/11 9/11 Chetri etal., 2016 CASPe 8/11 8/11 Kalra, 2016 CASPe 9/11 9/11 Podolsky etal., 2015 PRISMA 18/27 21/27 Verbruggen etal., 2018 PRISMA 17/27 20/27 Indian Journal of Orthopaedics Table 3 Main characteristics of the studies included in this systematic review Author/s, years Study title Design type Type of intervention Method and duration Sample size and age Level of evidence (Sackett Assessment scale/s Results Conclusions Gudeman etal., 1997 Treatment of Plantar Fasciitis by Iontophoresis of 0.4% Dexamethason e. A randomized, double-blind, placebocontrolled study RCT, double blind GC: stretching, heel support, exercises and placebo iontophoresis GExp: stretching, heel support, exercises and iontophoresis with 0.4% dexamethason e 2weeks 6iontophoresis sessions (placebo or with dexamethason e), each lasting 20min with a current of 40mA N = 39 patients (40 feet), mean age 42.1 years Grade Ib (A) Maryland Foot Score (measures the pain and functionality of the foot, where 100 points implies maximum independence and < 45 points great dependence G1 had a much more significant improvement (6.8 ± 5.6 increase in the MFS scale) than the GC (3.1 ± 4.1 increase). (P = 0.022) 1-month followup: there was no significant difference. (P = 0.434) The application of dexamethasone iontophoresis reduces pain and increases foot functionality in the short term (2–3weeks) in patients with PF Japour etal., 1999 Management of Heel Pain Syndrome with Acetic Acid Iontophoresis Quasiexperim ental study (no control group) Exp:iontophoresis with 5% acetic acid 3weeks 2–3 sessions of iontophoresis with acetic acid per week of 20min N = 35 patients, mean age 58.6 years Grade II-b (B) Pain scale from 0 to 10, where 0 represents no pain and 10 represents maximum pain Pre-treatment pain: 7.5/10 Post-treatment pain: 1.8/10 The application of iontophoresis with acetic acid reduces pain in PF Osborne etal., 2006 Treatment of plantar fasciitis by LowDye taping and iontophoresis: short term results of a double blinded, randomized, placebo controlled clinical trial RCT, double blind G1: Low-Dye bandage, stretching and iontophoresis (0.4% dexamethason e) G2: Low-Dye bandage, stretching and iontophoresis (placebo) G3: Low-Dye bandage, stretching and iontophoresis (5% acetic acid) 2weeks 6 iontophoresis sessions (with placebo, dexamethason e or acetic acid) with 40 mA current and Low-Dye bandage N = 31 patients (42 feet), age between 18 and 75years Grade Ib (A) Visual Analogue Scale (VAS), Visual Analogue Scale of stiffness and morning stiffness duration questionnaire All groups showed significant improvements in morning pain, mean pain, and morning stiffness. However, for morning pain, the acetic acid + bandage group showed greater improvement Low-dye taping application + iontophoresis with acetic acid, dexamethasone, or placebo reduces pain and stiffness caused by PF. For best results at 4weeks, the bandage combined with acetic acid is preferred Indian Journal of Orthopaedics Table 3 (continued) Author/s, years Study title Design type Type of intervention Method and duration Sample size and age Level of evidence (Sackett Assessment scale/s Results Conclusions Goyal et., al., 2013 Treatment of Plantar Fasciitis by Taping vs. Iontophoresis: A Randomized Clinical Trial Quasiexperim ental study (no randomi zation of groups) GExp: LDT and iontophoresis with 0.9% NaCl G2: LOD 1week 1 session per day of taping + iontophoresis with NaCl with a current of 40mA, or only bandage N = 30 patients, age between 24 and 58years Grade II-b (B) Visual analogue scale (VAS) and Foot Function Index (FFI) After one week, there was a significant difference in VAS and FFI in both groups, but the improvement was more significant in G1 than in G2 (p < 0.05) The combined therapy of taping and iontophoresis causes a significant decrease in pain and disability in patients with PF Podolsky etal., 2015 Taping for plantar fasciitis Systema tic review The effects of various types of bandage in the treatment of PF were analyzed in 5 RCTs, 2 crossover studies and 1 repeated measures cluster study We searched PubMed, CINAHL, PEDro, ISIWeb of Science, and Google Scholar in 2012. Studies published between 2004 and 2012 were included N = 8 studies analyzed Grade Ia (A) The methodologica l quality of the studies was assessed using the PEDro rating scale All 8 studies favored the use of different bandaging techniques. The most common technique was the LDT The LDT has the best evidence for the treatment of PF in the short term. The longterm effect and effectiveness of this technique needs to be investigated Chetri etal., 2016 A comparative study on effectiveness of tapping with iontophoresis and taping alone in chronic plantar fasciitis RCT GExp: bandage, stretching and iontophoresis with 5% acetic acid GC: bandage and stretching 2weeks 6 treatment sessions with iontophoresis + bandage, or only bandage N = 50 patients, age between 30 and 60years Grade Ib (A) Visual analogue scale (VAS) and Foot Function Index (FFI) The VAS and FFI scores showed a significant improvement (p < 0.05) in both groups, but greater in G1 Iontophoresis together with taping and stretching gave additional benefit compared to taping and stretching alone in reducing pain in PF Indian Journal of Orthopaedics Table 3 (continued) Author/s, years Study title Design type Type of intervention Method and duration Sample size and age Level of evidence (Sackett Assessment scale/s Results Conclusions Kalra, 2016 Treatment of plantar fasciitis with dexamethason e with lidocaine hydrochloride RCT G1: ultrasound, stretching and iontophoresis with 0.4% dexamethason e + 4% lidocaine hydrochloride GC: ultrasound, stretching and iontophoresis with placebo 2weeks 3 iontophoresis sessions (placebo or with dexamethason e + lidocaine hydrochloride) per week with a current of 40mA N = 40 patients, age: between 30 and 40years Grade Ib (A) Visual analogue scale (VAS) and Foot Function Index (FFI) G1 had a greater improvement (from 7 points to 3′17 on the EVA scale and from 44′17 to 30′17 on the FFI) than the GC (from 5.8 points to 4′40 on the EVA scale and from 43 ′40 to 37 in the FFI) The application of iontophoresis is effective in the treatment of PF, but if it is administered with dexamethasone and lidocaine hydrochloride, it is significantly more effective Verbruggen etal., 2018 The Effectiveness of LDT in Reducing Pain Associated With Plantar Fasciitis Revive systemat ic vision The effects of various types of bandaging (alone or combined with other treatments) in the treatment of PF were analyzed in 5 studies: 4 level 2 RCTs and 1 level 2 controlled clinical trial Searches were made inPubMed, EBSCOhost, Sport Discus, Medline, and Google Scholar Articles published between 2005 and 2016 were selected N = 5 studies analyzed Grade Ia (A) The methodologica l quality of the studies was assessed using the PEDro rating scale Compared with other taping techniques for PF, LDT taping (alone or combined with other treatments) was found to be the most effective in reducing pain and increasing foot function in PF Studies where the duration of treatment was longer produced the largest effect sizes: long-term LDT treatment may be more beneficial in reducing PF pain Current evidence supports its use as part of a multimodal intervention scheme