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Comparison Between Paravertebral and Erector Spinal Block Efficacy in Robotic Thoracic Surgeries (TPVB vs ESP)

19. august 2026 oppdatert av: Alexander Smirnov MD, Soroka University Medical Center

A Prospective Comparison of Continues Catheter Paravertebral Block vs Continues Catheter Erector Spinal Block in Patients Undergoing Robotic Assistant Thoracic Surgery

The overall goal of this work is to find the preferred continues catheter- based thoracic block for patients who undergoing major ROBOTIC assisted thoracic surgery (Lobectomy, multiple segmental resection and thoracotomy). Specifically, this project aims to complete the following:

  1. To compare analgesic efficiency of continuous TPVB vs ESP block in patients undergoing major robotic thoracoscopic operation
  2. To assess failure rate, time to catheter placement and patient satisfaction of each block group
  3. To compare complication rate of each block

Studieoversikt

Detaljert beskrivelse

All adult patients undergoing major robotic thoracic procedures, such as Lobectomy, multiple segmental resection and thoracotomy. The recruitment period is planned for approximately 1 year. The follow-up period will be from admission until hospital discharge.

Video-assisted thoracic surgery (VATS) is a type of minimally invasive thoracic surgery that can remove parts of the diseased lung and lymph nodes. In video-assisted thoracoscopic surgery (VATS), a small tube called a thoracoscope is inserted through a small cut (incision) between the ribs. At the end of the tube is a small camera. This lets the surgeon see the entire chest cavity without having to open up the chest or spread the ribs. The surgeon then removes lung tissue with specially designed instruments inserted through one or two additional small incisions. The VATS technique can be used for other types of chest procedures involving the lungs, esophagus, thymus, pleural or pericardium besides lung cancer surgery.

Thoracic paravertebral block (TPVB) is the technique of injecting local anesthetic adjacent to the thoracic vertebra close to where the spinal nerves emerge from the intervertebral foramina. This results in ipsilateral somatic and sympathetic nerve blockade in multiple contiguous thoracic dermatomes above and below the site of injection

In recent years a new conceptual type of regional anesthesia has emerged: the Erector Spinae Plane Block (ESP block). Originally it was described in 2016 in a case report regarding analgesia intervention for thoracic neuropathic pain. Since then, there has been growing interest and research adding experience about the ESP block for pain control after thoracic and abdominal surgery and also traumatic injury of chest and abdomen. Current literature is limited to approximately 60 publications, the majority of which is case reports and case series.

Comparison of both techniques:

In thoracic surgery, both the Erector Spinae Plane (ESP) block and the Thoracic Paravertebral Block (TPVB) are utilized for analgesia.

Erector Spinae Plane (ESP) Block:

Advantages:

  • Technical Simplicity: The ESP block is generally easier to perform due to its superficial anatomical location, making it more accessible, especially for practitioners less experienced with deeper blocks.
  • Safety Profile: There's a reduced risk of complications such as pneumothorax because the injection site is farther from the pleura and major vascular structures.
  • Analgesic Efficacy: Studies suggest that ESP blocks provide effective analgesia for thoracic surgeries, with benefits comparable to TPVB when a similar number of injections are administered.

Disadvantages:

  • Potentially Limited Analgesic Coverage: While effective, the ESP block may not provide as extensive analgesic coverage as TPVB in some cases, potentially necessitating additional analgesic measures.
  • Limited Long-Term Data: As a relatively newer technique, long-term efficacy and safety data are less comprehensive compared to TPVB.

Thoracic Paravertebral Block (TPVB):

Advantages:

  • Established Efficacy: TPVB has a long-standing history of providing reliable analgesia for thoracic surgeries, with well-documented outcomes.
  • Comprehensive Analgesia: It offers effective unilateral analgesia, which can be advantageous for procedures involving one side of the thorax.

Disadvantages:

  • Technical Complexity: TPVB requires a higher degree of technical skill due to the proximity to the pleura and neurovascular structures, increasing the risk of complications.
  • Risk of Complications: There's a higher potential for adverse events such as pneumothorax, vascular puncture, and hypotension.

In summary, both ESP and TPVB are effective for analgesia in thoracic surgery. The choice between them should be guided by patient-specific factors, surgical requirements, and the clinician's expertise with each technique.

Studietype

Intervensjonell

Registrering (Antatt)

60

Fase

  • Ikke aktuelt

Kontakter og plasseringer

Denne delen inneholder kontaktinformasjon for de som utfører studien, og informasjon om hvor denne studien blir utført.

Studiesteder

      • Beersheba, Israel
        • Soroka Medical Center

Deltakelseskriterier

Forskere ser etter personer som passer til en bestemt beskrivelse, kalt kvalifikasjonskriterier. Noen eksempler på disse kriteriene er en persons generelle helsetilstand eller tidligere behandlinger.

Kvalifikasjonskriterier

Alder som er kvalifisert for studier

  • Voksen
  • Eldre voksen

Tar imot friske frivillige

Nei

Beskrivelse

Inclusion Criteria:

  • Age ≥18 years
  • All patients undergo major robotic thoracic surgery

Exclusion Criteria:

  • Patients who refuse to participate in the study.
  • Patients who are unable to give an informed consent.
  • Patients with local inflammation at the puncture site
  • Patients with known allergy to local anesthetisc
  • Pregnancy

Studieplan

Denne delen gir detaljer om studieplanen, inkludert hvordan studien er utformet og hva studien måler.

Hvordan er studiet utformet?

Designdetaljer

  • Primært formål: Behandling
  • Tildeling: Randomisert
  • Intervensjonsmodell: Parallell tildeling
  • Masking: Enkelt

Våpen og intervensjoner

Deltakergruppe / Arm
Intervensjon / Behandling
Aktiv komparator: group A - TPVB
continues paravertebral block

Thoracic paravertebral block (TPVB) is the technique of injecting local anesthetic adjacent to the thoracic vertebra close to where the spinal nerves emerge from the intervertebral foramina. This results in ipsilateral somatic and sympathetic nerve blockade in multiple contiguous thoracic dermatomes above and below the site of injection It is effective in treating acute and chronic pain of unilateral origin from the chest and abdomen. Bilateral use of TPVB has also been described.

Our understanding of the safety and efficacy of TPVB has improved significantly in the last two decades, prompting its use in children and neonates and for surgical anesthesia The TPVB is used to provide anesthesia and analgesia for breast surgery, surgery that requires coverage of the axilla (eg, creation of dialysis access, axillary lymph node dissection), or for thoraco-abdominal surgery as an alternative to thoracic epidural.

The selected level for the block should be as close to the loca

Aktiv komparator: group B - ESP
continues erector spinal block

we started performing ESP block for postoperative pain control in thoracic and abdominal surgery, with very satisfactory results so far. The block appears to be sufficient for postoperative pain control and the complications are yet to be seen. The results of our previous study show that ESP block is superior to pectoralis and serratus blocks-also used in thoracic surgery-in regard for a larger area of analgesia, easier injection, and longer duration. Also, it offers better safety profile than neuraxial analgesia or the thoracic paravertebral block

The current literature suggests that ESP block is an excellent adjuvant to multi-modal analgesia not just for thoracic, but for abdominal surgery as well.

It is an ultrasound guided interfacial block, achieved by injecting the local anesthetic solution between the transverse process and the erector spinae muscles (iliocostalis, longissimus, and spinalis). It can be performed either as a single shot or as a continuous catheter techniqu

Hva måler studien?

Primære resultatmål

Resultatmål
Tiltaksbeskrivelse
Tidsramme
Post operative opioid consumption
Tidsramme: From completion of surgery through hospital discharge, assessed up to 24 hours postoperatively
measured by MME (morphine equivalent)
From completion of surgery through hospital discharge, assessed up to 24 hours postoperatively
post operative pain
Tidsramme: Every 2 hours starting from PACU admission until hospital discharge, assessed up to 96 hours postoperatively.
measured by Visual Analog Scale (VAS); measured from 0 to 5, when 5- is maximal pain and 0 - no pain at all.
Every 2 hours starting from PACU admission until hospital discharge, assessed up to 96 hours postoperatively.

Sekundære resultatmål

Resultatmål
Tiltaksbeskrivelse
Tidsramme
Patient satisfaction
Tidsramme: immediately before discharge from the hospital
measured by score of 1 to 5, when 1 is the lowest (very not satisfied) and 5 is the highest (Very satisfied).
immediately before discharge from the hospital

Samarbeidspartnere og etterforskere

Det er her du vil finne personer og organisasjoner som er involvert i denne studien.

Publikasjoner og nyttige lenker

Den som er ansvarlig for å legge inn informasjon om studien leverer frivillig disse publikasjonene. Disse kan handle om alt relatert til studiet.

Generelle publikasjoner

  • 1. H,Nagano, T. Suda, Advantages and disadvantages of robotic and uniportal video-assisted thoracoscopic surgery, Video-assist Thorac Surg 2021;6:14 | http://dx.doi.org/ 2. Veronesi G. Robotic lobectomy and segmentectomy for lung cancer: results and operating technique. J Thorac Dis 2015;7 3. Novellis P, Bottoni E, Vonlaz E, et al. Robotic surgery, video-assisted thoracic surgery, and open surgery for early stage lung cancer: comparison of costs and outcomes at a single institute. J Thorac Dis 2018;1 4. Louie BE, Farivar AS, Aye RW, et al. Early experience with robotic lung resection results in similar operative outcomes and mobidity with compared with matched video-assisted thoracoscopic surgery cases. Ann Thorac Surg 2012;93:1598-6 5. Karmakar M., Thoracic Paravertebral Block, Anesthesiology 2001; 95:771-80 6. S. Feray,J. Lubach,G. P. Joshi,F. Bonnet, M. Van de Velde, PROSPECT guidelines for video-assisted thoracoscopic surgery: a systematic review and procedure-specific postoperative pain management recommendations, Anaesthesia 2022, 77, 311-325 7. Krishna, S.N.; Chauhan, S.; Bhoi, D.; Kaushal, B.; Hasija, S.; Sangdup, T.; Bisoi, A.K. Bilateral Erector Spinae Plane Block for Acute Post-Surgical Pain in Adult Cardiac Surgical Patients: A Randomized Controlled Trial. J. Cardiothorac. Vasc. Anesth. 2019, 33, 368-375. 8. Kawagoe, I.; Hayashida, M.; Satoh, D.; Kochiyama, T.; Fukuda, M.; Kishii, J. Postoperative analgesia in patients undergoing robot-assisted thoracic surgery: A comparison between thoracic epidural analgesia and intercostal nerve block combined with intravenous patient-controlled analgesia. Ann. Palliat. Med. 2021, 10, 1985-1993 9. A. Pawa,, T. Wojcikiewicz,, A. Barron, ,K. El-Boghdadly,, Paravertebral Blocks: Anatomical, Practical, and Future Concepts, Current Anesthesiology Reports (2019) 9:263-270 10. A. Ardon, J. Lee, C. D. Franco, K. T. Riutort, R. A. Greengrass, Paravertebral block: anatomy and relevant safety issues, Korean J Anesthe

Studierekorddatoer

Disse datoene sporer fremdriften for innsending av studieposter og sammendragsresultater til ClinicalTrials.gov. Studieposter og rapporterte resultater gjennomgås av National Library of Medicine (NLM) for å sikre at de oppfyller spesifikke kvalitetskontrollstandarder før de legges ut på det offentlige nettstedet.

Studer hoveddatoer

Studiestart (Faktiske)

1. juli 2026

Primær fullføring (Antatt)

1. juli 2027

Studiet fullført (Antatt)

1. juli 2028

Datoer for studieregistrering

Først innsendt

28. juli 2026

Først innsendt som oppfylte QC-kriteriene

19. august 2026

Først lagt ut (Faktiske)

24. august 2026

Oppdateringer av studieposter

Sist oppdatering lagt ut (Faktiske)

24. august 2026

Siste oppdatering sendt inn som oppfylte QC-kriteriene

19. august 2026

Sist bekreftet

1. august 2026

Mer informasjon

Begreper knyttet til denne studien

Plan for individuelle deltakerdata (IPD)

Planlegger du å dele individuelle deltakerdata (IPD)?

JA

IPD-planbeskrivelse

all IPD that underlie results in a publication will be shared in future publication

Legemiddel- og utstyrsinformasjon, studiedokumenter

Studerer et amerikansk FDA-regulert medikamentprodukt

Nei

Studerer et amerikansk FDA-regulert enhetsprodukt

Nei

produkt produsert i og eksportert fra USA

Nei

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