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Pediatric Vascular Access in Brief: Preoperative, Operative, and Postoperative Considerations

Video Published 2022-09-15 Updated 2026-08-01

Timestops (3)

Topic Overview

A practical guide to pediatric central venous access covering catheter types (CVCs, ports, Broviacs, dialysis catheters), site selection (preferring chest/neck over femoral), and technical considerations. Key procedural points include using ultrasound guidance for internal jugular access, sticking low on the neck to minimize catheter redundancy, and micropuncture kits for neonates. Post-procedural management addresses line infections with a decision framework based on sepsis status and culture results, and discusses ethanol and EDTA-based locking solutions for line salvage.

Key Takeaways

  • Ultrasound-guided IJ access is preferred—lowest pneumothorax/carotid injury risk. Stick low on neck to minimize catheter redundancy. (5:25)
  • Use micropuncture kit (21G finder needle) for neonates instead of standard 18G to reduce vascular trauma in small vessels. (4:55)
  • Femoral access has higher infection/complication rates; prefer chest/neck sites when feasible for central venous catheters. (2:09)
  • Septic line infections require immediate removal for source control; non-septic cases may salvage line with cultures + locking solutions. (9:41)
  • Ethanol and EDTA (Kite) locks kill biofilm bacteria without resistance; useful for line salvage in complex vascular access patients. (10:56)

Inside this episode

Kai, the Library's AI content creator, listened to this episode and mapped who's speaking, the chapters, key claims, and cases. Every item links to the exact moment in the recording.

AI-enriched

Who's speaking

  • Rod — host
  • Alex Bonddo — guest
  • Speaker 3 — host
  • Speaker 4 — host
  • Paul Wales — guest

Chapters

  • 0:00Introduction and Catheter Types — Overview of central venous access in pediatric surgery, introduction of Dr. Bonddo, and review of four catheter types: non-tunneled CVCs, ports, Broviac catheters, and hemodialysis/pheresis catheters.
  • 1:54Site Selection and Pre-procedural Workup — Preference for chest/neck access over femoral, extensive indications, contraindications including thrombosis and stenosis, and imaging workup escalating from Doppler ultrasound to venography.
  • 3:59Procedural Technique: Positioning and Access — Vertical shoulder roll positioning, micropuncture needle use in neonates, ultrasound-guided IJ access with low neck puncture technique, and anatomic subclavian approach aiming at the sternal notch.
  • 7:46Catheter Tip Positioning and Imaging — Target location at RA-SVC junction, fluoroscopic triangle technique using trachea and right mainstem bronchus as landmarks, and selective use of post-procedural X-rays.
  • 9:06Complications and Line Infection Management — Immediate complications (pneumothorax, arterial injury) and long-term issues (thrombosis, infection). Line infection management based on sepsis status, with discussion of ethanol and EDTA-based (kite lock) locking solutions by Dr. Wales.
  • 12:09Salvage Techniques and Conclusion — Translumbar IVC access for exhausted sites and emergency facial vein cutdown technique for immediate access in crashing patients.

Key claims

  • 0:13An estimated 5 million central venous catheter lines are placed in the United States annually, with several in pediatric surgical patients — Rod
  • 0:26Cincinnati Children's Hospital handles the bulk of complex vascular access and all catheter-based access for dialysis — Alex Bonddo
  • 1:00Central venous catheters are not tunneled and typically for temporary hospital use with 1 to 3 lumens — Rod
  • 1:10Ports are for long-term access on the order of months to years, with tunneled catheters and totally implantable reservoirs, often used for chemotherapy — Speaker 3
  • 1:25Broviac catheters are tunneled lines with cuffs used for months to years for chemotherapy, parenteral nutrition, and frequent blood transfusions — Rod
  • 1:40Hemodialysis or pheresis catheters can be temporary if uncuffed or permanent if cuffed — Speaker 3
  • 2:09Chest and neck central venous access is preferred from a purely logistical standpoint — Alex Bonddo
  • 2:17There is fair evidence suggesting an increased rate of complications and infection with femoral access — Speaker 3
  • 2:29Indications for central access include need for total parenteral nutrition, resuscitation, or hemodialysis — Speaker 4
  • 2:39Contraindications for central access include thrombosis, collateralization, and central stenosis of the SVC — Alex Bonddo
  • 3:09Routine ultrasound is not necessary unless the patient has a congenital anomaly, usually cardiovascular — Alex Bonddo
  • 3:20For patients with multiple prior lines, Doppler venous ultrasound of the jugulars is the preferred first screening test — Alex Bonddo
  • 3:37Imaging may escalate to contrast-enhanced MR or CT venogram, and sometimes intraoperative venography with fluoroscopy — Alex Bonddo
  • 4:02Positioning over a vertically oriented shoulder roll is the most versatile approach for neonates and infants — Alex Bonddo
  • 4:12A vertical shoulder roll provides hyperextension of the neck and allows shoulders to drop posteriorly, giving access to bilateral subclavians and jugulars — Alex Bonddo
  • 4:43For really small babies, many surgeons prefer a cut-down approach — Rod
  • 4:55A micropuncture kit with a 21 gauge finder needle is preferred over the 18 gauge needle in standard kits for small neonates — Alex Bonddo
  • 5:25Using ultrasound for internal jugular central line placement is the number one preferred method, with lowest risk of pneumothorax and carotid injury — Alex Bonddo
  • 5:52For large bore access like dialysis catheters, sticking the patient as low as possible on the neck is recommended — Alex Bonddo
  • 6:00Levering the ultrasound probe (12mm diameter) against the clavicle provides a reasonable low puncture site — Alex Bonddo
  • 6:22Sticking low on the neck leaves less catheter to curve in the neck, reducing problems with catheter displacement when patients turn their heads — Alex Bonddo
  • 6:36Catheters have been observed to spit out of the SVC with excessive laxity in the neck — Alex Bonddo
  • 6:42Subclavian line placement is more anatomic and considered when IJ access is lost or patient is in cervical collar — Speaker 3
  • 6:56For subclavian access, puncture at least 1 finger breadth (almost 1cm) inferior and lateral to the junction of median and medial aspects of the clavicle — Alex Bonddo
  • 7:14When approaching the clavicle during subclavian access, keep the needle flat and push down on skin rather than angling at 30 degrees — Alex Bonddo
  • 7:34For subclavian access, aim directly at the sternal notch, then angle wider toward the angle of mandible in a radial motion if unsuccessful — Alex Bonddo
  • 7:46The catheter tip should be positioned at the junction between the right atrium and superior vena cava — Speaker 3
  • 8:04The right triangle technique uses the trachea as midline and the right mainstem bronchus as hypotenuse; catheter tip in this triangle will always be at the atrial-caval junction — Alex Bonddo
  • 8:38Routine post-procedural X-rays are not ordered for single-stick, uncomplicated procedures using fluoroscopy — Alex Bonddo
  • 8:45The practice of not routinely ordering X-rays is based on data from Children's Mercy Hospital Kansas City — Rod
  • 9:06Post-procedural complications include pneumothorax, hemothorax, arterial injury (subclavian or carotid), and rarely chylothorax or thoracic duct injury — Alex Bonddo
  • 9:21Long-term complications include thrombosis, catheter displacement, kinking, and eventual line degradation — Rod
  • 9:41The first clinical decision for line infection is determining if the patient is septic from the line — Alex Bonddo
  • 9:46If the patient is septic from the line, source control requires bedside removal under light sedation — Alex Bonddo
  • 10:04For non-septic line-dependent patients with complex vascular access, treatment involves identifying the organism, assessing sensitivity, and performing serial blood cultures to achieve sustained culture negativity for line salvage — Alex Bonddo
  • 10:35Antibiotic locking solutions have been around for a long time but predominantly develop resistance — Paul Wales
  • 10:56Ethanol locks are antimicrobial without resistance and kill both planktonic bacteria (floating in lumen) and sessile bacteria (embedded in biofilm) — Paul Wales
  • 11:12The price of ethanol in locking solutions skyrocketed, prompting search for alternatives — Rod
  • 11:24Kite lock is a 4% tetrasodium EDTA chemical found in Canada — Paul Wales
  • 11:36Kite lock is antimicrobial without resistance, antifibrinolytic, and antithrombotic — Paul Wales
  • 11:59Kite lock has been licensed in Canada for pediatric use, and is now licensed in Europe and Australia — Paul Wales
  • 12:19Translumbar line placement through back musculature into intrahepatic IVC is considered when femoral, IJ, and subclavian options are exhausted — Alex Bonddo
  • 12:48Emergency facial vein cutdown involves horizontal incision lateral to sternocleidomastoid at angle of mandible with the head turned — Alex Bonddo
  • 13:04For facial vein cutdown, beveling the catheter hard helps it follow a path when blindly passing without a wire — Alex Bonddo

Open questions

  • What is the optimal duration for attempting line salvage with locking solutions before declaring treatment failure?
  • Are there specific patient populations or catheter types where kite lock demonstrates superior efficacy compared to ethanol locks?
  • What are the long-term patency rates and complication profiles of translumbar IVC access compared to traditional sites?
This episode was analyzed and enriched by Kai, the Library's AI content creator. Every item links to the moment it comes from — click a timestamp to listen in context.
Written for:

Pediatric Central Venous Access: Site Selection, Technique, and Salvage Strategies

The episode's main topic retold as a plain-language walkthrough — what it is, why it matters, and what the speakers concluded. Written by Kai from the episode transcript and reviewed before publishing.

For the care team · Explainer · AI-written, human-reviewed

Why This Exists as a Distinct Discipline

Central venous access in children is not simply adult technique scaled down. The vessels are smaller, the margin for error tighter, and the stakes different — a thrombosed subclavian in a two-kilogram neonate with short gut may foreclose future options for years. An estimated 5 million central lines are placed annually in the United States, many in pediatric surgical patients requiring weeks to years of parenteral nutrition, chemotherapy, or dialysis 0:13. The discipline exists because these patients cannot tolerate the trial-and-error approach sometimes seen in adult practice, and because preserving future access is as important as securing it today.

The Core Clinical Problem

The problem is straightforward: deliver reliable central venous access to patients whose vessels range from 2mm neonatal jugulars to adolescent anatomy, in clinical contexts spanning emergency resuscitation to long-term TPN, while minimizing immediate complications (pneumothorax, arterial injury) and long-term sequelae (thrombosis, infection, vessel loss) that compound with each subsequent line 2:29 9:06 9:21. Indications are broad — TPN, resuscitation, hemodialysis — but contraindications matter more: thrombosis, collateralization, and central stenosis of the SVC render standard approaches futile or dangerous 2:39.

How the Approach Works

Pre-procedural Assessment

Routine imaging is not necessary unless the patient has a congenital cardiovascular anomaly 3:09. For patients with multiple prior lines, Doppler venous ultrasound of the jugulars is the preferred first screening test 3:20. Imaging may escalate to contrast-enhanced MR or CT venography, and sometimes intraoperative venography with fluoroscopy when vessel patency is uncertain 3:37. The goal is not perfection but information — knowing which vessels are open before you prep the patient.

Site Selection

Chest and neck access is preferred over femoral from both a logistical standpoint and because fair evidence suggests increased complication and infection rates with femoral lines 2:09 2:17. Within the chest and neck, ultrasound-guided internal jugular access is the number one preferred method, with the lowest risk of pneumothorax and carotid injury 5:25. Subclavian access is more anatomic and considered when IJ access is lost or the patient is in a cervical collar 6:42.

Positioning and Technique

Positioning over a vertically oriented shoulder roll — parallel to the spine rather than horizontal — is the most versatile approach for neonates and infants 4:02. This provides hyperextension of the neck and allows the shoulders to drop posteriorly, giving access to bilateral subclavians and jugulars simultaneously 4:12. For very small neonates, many surgeons prefer cutdown, but if percutaneous access is chosen, a micropuncture kit with a 21 gauge finder needle is preferred over the standard 18 gauge needle 4:43 4:55.

For IJ access, particularly for large-bore catheters like dialysis lines, sticking the patient as low as possible on the neck is recommended 5:52. Levering the ultrasound probe against the clavicle provides a reasonable low puncture site 6:00. This minimizes catheter redundancy in the neck, reducing problems with catheter displacement when patients turn their heads — catheters have been observed to migrate out of the SVC with excessive laxity 6:22 6:36.

For subclavian access, puncture at least one finger breadth inferior and lateral to the junction of the median and medial aspects of the clavicle 6:56. Keep the needle flat and push down on the skin rather than angling at 30 degrees when approaching the clavicle 7:14. Aim directly at the sternal notch, then angle wider toward the angle of the mandible in a radial motion if unsuccessful 7:34.

Catheter Tip Positioning

The target is the junction between the right atrium and superior vena cava 7:46. The right triangle technique uses the trachea as a theoretical midline and the right mainstem bronchus as the hypotenuse; a catheter tip within this triangle will always be at the atrial-caval junction 8:04. For single-stick, uncomplicated procedures using fluoroscopy, routine post-procedural X-rays are not necessary — a practice supported by data from Children's Mercy Hospital Kansas City 8:38 8:45.

Where Practice Is Contested

Line Infection Management

The first clinical decision for line infection is whether the patient is septic from the line 9:41. If septic, source control requires bedside removal under light sedation 9:46. For non-septic line-dependent patients with complex vascular access, treatment involves identifying the organism, assessing sensitivity, and performing serial blood cultures to achieve sustained culture negativity for potential line salvage 10:04.

Antibiotic locking solutions have been used for years but predominantly develop resistance 10:35. Ethanol locks are antimicrobial without resistance and kill both planktonic bacteria floating in the lumen and sessile bacteria embedded in biofilm 10:56, but cost has become prohibitive 11:12. Kite lock — a 4% tetrasodium EDTA solution available in Canada, Europe, and Australia — is antimicrobial without resistance, antifibrinolytic, and antithrombotic 11:24 11:36 11:59. The choice between salvage and removal for non-septic line infections remains institution-dependent and often involves infectious disease consultation.

When to Involve This Team

Refer early for patients requiring long-term central access (TPN, chemotherapy, dialysis) rather than after multiple failed attempts have thrombosed vessels. For patients with prior central lines, involve pediatric surgery or interventional radiology before attempting placement — pre-procedural imaging may reveal occult thrombosis or stenosis. When femoral, IJ, and subclavian options are exhausted, translumbar IVC access through the back musculature into the intrahepatic cava is considered 12:19. In extremis, emergency facial vein cutdown at the angle of the mandible provides immediate access when a patient is crashing 12:48 13:04. These salvage techniques exist because vessel preservation is a finite resource in pediatric patients with chronic disease.

Takeaways from this story

  • Low neck IJ puncture minimizes catheter redundancy, reducing displacement risk when patients turn their heads.
  • Vertical shoulder roll positioning provides simultaneous access to all four major central sites in small children.
  • The right triangle technique (trachea as midline, right mainstem as hypotenuse) reliably positions catheter tips at the atrial-caval junction.
  • Septic line infections require immediate removal; non-septic infections in line-dependent patients may allow salvage with culture-directed therapy.
  • Pre-procedural Doppler ultrasound in patients with multiple prior lines identifies occult thrombosis before attempting placement.

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