The Classic Minimally Invasive Puncture Method — Closed Technique With The Veress Needle

Aug 26, 2026

https://en.wikipedia.org/wiki/Veress_needle

Introduction

In our previous article, we discussed the four conventional minimally invasive puncture techniques that every surgeon should master. Currently, the four primary methods for establishing pneumoperitoneum in clinical practice are: the classic closed Veress needle technique, the open (Hasson) technique, direct trocar insertion, and optical trocar insertion. Today, we will focus on the first and most widely used method - the Veress needle closed technique.

Although the establishment of pneumoperitoneum may appear straightforward, it is a fundamental skill that every laparoscopic surgeon - especially beginners - must master thoroughly. This step is not only the starting point of the entire procedure but also the key determinant of subsequent operative safety.


I. Selection of Puncture Site and Incision

1.1 Why Is the Umbilicus the Preferred Site?

The puncture site for pneumoperitoneum typically coincides with the location of the primary trocar. The umbilicus, as a natural scar of the abdominal wall, is the thinnest area with the fewest blood vessels. It contains virtually no subcutaneous fat or muscle tissue, and its anatomical vascular network is sparse. As a result, the risk of both intraoperative and postoperative bleeding is minimal. Furthermore, an umbilical incision heals with little to no visible scarring, offering excellent cosmetic outcomes.

In the vast majority of laparoscopic procedures, a 10 mm incision​ is made at the umbilical center or slightly above/below it. A thorough understanding of the layered anatomy at this level is essential for the safe placement of the primary trocar.

1.2 Adjusting the Insertion Angle According to Body Habitus

The thickness of the umbilical tissue varies significantly across patients of different weights. The Veress needle insertion angle must be adjusted accordingly:

Patient Body Habitus (BMI)

Abdominal Wall Characteristics

Recommended Insertion Angle

Lean (BMI < 25 kg/m²)

Thin umbilical tissue

45° angle

Obese (BMI > 30 kg/m²)

Thick abdominal wall with significant fat

60° angle

1.3 Site Adjustments for Special Circumstances

Infected umbilicus or deep previous scarring: The puncture should be made at the inferior umbilical edge.

Large pelvic mass: If the pelvis is occupied by a large tumor, the puncture site should be shifted above the umbilicus.

Additional accessory ports: Bilateral subcostal regions, bilateral iliac fossae, or McBurney's point - selected flexibly based on the specific surgical procedure.

History of prior abdominal surgery: As a general principle, the puncture site should be ≥ 3 cm away from the original scar​ to avoid potentially adherent bowel.


II. Technical Principles and Procedure of the Veress Needle Closed Technique

2.1 Design Essence of the Veress Needle

Since its invention in 1938 by Hungarian surgeon János Veress, the Veress needle closed technique has become one of the most commonly employed methods for establishing pneumoperitoneum. Its ingenious safety design includes:

Blunt-tipped, hollow stylet with lateral side-ports: Allows insufflation, irrigation, and aspiration through the needle hub.

Spring-loaded safety mechanism at the base: When resistance is encountered during abdominal wall penetration, the stylet retracts into the sharp outer cannula. Once the cannula tip breaches the peritoneum and enters the abdominal cavity, resistance disappears and the spring deploys the blunt stylet forward. This mechanism effectively prevents the sharp cannula tip from inadvertently injuring intra-abdominal viscera.

2.2 Mandatory Pre-Puncture Checks

Before each use, the following checks must be performed - make them an indispensable part of your routine:

Confirm that the stylet lumen is patent and unobstructed.

Test that the spring-loaded safety mechanism extends and retracts smoothly.

Inspect the cannula tip for any bending or blunting.

These checks prevent misjudgment of insertion force and minimize the risk of iatrogenic injury during puncture.

2.3 Standardized Puncture Procedure

Step 1: Umbilical Cleaning and Disinfection

Thoroughly clean the umbilical fossa with antiseptic gauze to remove accumulated debris and sebum. This often-overlooked step is critical for preventing postoperative wound infection.

Step 2: Skin Incision

Use skin forceps to grasp both sides of the umbilical edge, and make a ~1 cm midline incision​ at the umbilicus using a scalpel.

Step 3: Elevating the Abdominal Wall

Remove the skin forceps and replace them with towel clamps (Backhaus clamps)​ applied to both sides of the umbilical skin, pulling cephalad. This increases the distance between the anterior abdominal wall and the underlying omentum and bowel, significantly reducing the risk of puncture injury.

Step 4: Veress Needle Insertion

The surgeon holds the Veress needle in the right hand and advances it slowly with a rotational motion, perpendicular to the abdominal wall (or at the angle specified above). When the needle passes through the anterior rectus sheath and peritoneum, a distinct "loss of resistance" or "pop"​ is felt. Stop advancing immediately at this point.

Alternative common technique: Some surgeons prefer to grasp the abdominal wall with the left hand and directly insert the Veress needle with the right hand using a twisting motion. Both methods are valid; beginners may choose the one that provides better tactile feedback.


III. Confirming Successful Entry into the Peritoneal Cavity

This is the most critical verification step​ of the entire procedure. Even when a loss of resistance is felt, confirmation through the following methods is mandatory.

3.1 Basic Confirmation Methods

Method

Key Maneuver

Normal Finding

Loss of resistance

Passing through the anterior rectus sheath and peritoneum

Sudden disappearance of resistance, like "breaking through a thin membrane"

Saline drop test (syringe method)

Attach a small syringe filled with saline to the needle hub

Saline flows passively into the cavity due to intra-abdominal negative pressure

CO₂ pressure gauge method

Connect the CO₂ tubing to the hub while lifting the abdominal wall

Pressure gauge reads within the negative pressure range

3.2 Advanced Verification Methods (When Loss of Resistance Is Unclear)

❶ Aspiration Test

Connect a syringe filled with normal saline to the Veress needle.

First, aspirate: If no blood or bowel contents are returned, inject 5–10 ml of saline.

Interpretation:

✅ Smooth injection with inability to aspirate → Needle tip is correctly in the peritoneal cavity.

❌ Aspiration returns blood or bowel contents → Injury to bowel or major vessel; immediate assessment for conversion to open surgery is required.

❌ Heavy or pulsatile bleeding → Immediate conversion to open laparotomy is mandatory.

❷ Drop Test

Attach a syringe barrel without a plunger to the needle hub, or place a few drops of saline directly onto the hub. If the fluid is rapidly drawn into the abdomen​ by negative pressure, the needle tip is correctly positioned.

❸ Early Insufflation Test - The Gold Standard Every Beginner Must Master

The above tests only confirm entry into a "cavity," but cannot definitively confirm that this cavity is the peritoneal cavity​ (it could be an intermuscular or preperitoneal space). The early insufflation test provides the final confirmation:

Connect the insufflation tubing and set the safety pressure limit.

Begin insufflation at a low flow rate of 1 L/min.

Closely observe the combination of pressure and flow readings:

Pressure & Flow Pattern

Clinical Judgment

Management

Pressure gradually and steadily rises from low to the set value; flow rate remains stable

✅ Successful entry into the peritoneal cavity

Gradually increase flow rate and continue insufflation

Pressure remains persistently high (often exceeding the set limit), flow rate is very low or zero, accompanied by high-resistance alarms

❶ Needle has not entered the cavity; ❷ Needle tip is in close contact with viscera or adhesions; ❸ Obstruction in the insufflation system (e.g., valve not opened)

Reposition the needle or re-puncture; check equipment

Both pressure and flow remain at low levels, with minimal abdominal distension (after excluding system leakage)

⚠️ Possible inadvertent entry into a hollow viscus or even a major blood vessel

Stop insufflation immediately and reassess

3.3 Special Situations Requiring Vigilance

If both the pneumoperitoneum pressure and gas flow remain at low levels with minimal abdominal distension, and after excluding system leakage, inadvertent insertion of the Veress needle into a hollow viscus (such as the stomach or bowel) or a major blood vessel must be highly suspected. This is a rare but extremely dangerous complication requiring immediate recognition and intervention.


IV. Conclusion

The Veress needle closed technique offers the advantages of simplicity and time efficiency, making it the most widely used method for establishing pneumoperitoneum in laparoscopic surgery. However, its inherent drawback is the potential for blind puncture-related injuries to blood vessels or viscera. Therefore, beginners must develop a thorough familiarity with the entire process, including all possible abnormal scenarios and their correct management strategies, in order to perform safe and confident operations in clinical practice.

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