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临床试验/NCT05763056
NCT05763056已完成不适用

Comparison of the Effects of Intubation With a Machintosh Laryngoscope, McGrath Videolaryngoscope and C-Mac Videolaryngoscope on Intra-ocular Pressure, Optic Nerve Sheath Diameter and Haemodynamic Parameters

Inonu University1 个研究点 分布在 1 个国家目标入组 120 人开始时间: 2023年9月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
120
试验地点
1
主要终点
Intraocular pressure-5

研究概览

简要总结

Brief Summary:

In this study, the investigators aimed to compare the effects of different types of endotracheal instruments (Machintosh laryngoscope, McGrath videoingoscope and C-Mac videoryngoscope) on intraocular pressure, optic nerve diameter and hemodynamic parameters.

详细描述

Detailed Description:

Laryngoscopy and endotracheal intubation cause increased intracranial pressure due to hypoxia, hypercapnia, straining, or coughing. It may be an indirect result of increased arterial and venous pressure, as well as a direct effect of intubation.

With the emergence of neuroimaging techniques and new diagnostic tools, various methods have been developed that can replace invasive methods, which are the gold standard in intraocular pressure measurement. However, invasive methods such as intraventricular and intraparenchymal catheter systems have some disadvantages and are associated with significant risks in terms of infection, bleeding, and time lost until follow-up.

The intraorbital subarachnoid space surrounding the optic nerve shows the same pressure variation as the intracranial subarachnoid space, and any increase in intracranial pressure is also seen in the orbital subarachnoid space. With the increase in intracranial pressure, the optic nerve, optic nerve sheath diameter, and subarachnoid space enlarge. There are many studies reporting that optic nerve sheath diameter can be evaluated using ultrasonography. Although there is no clear cut-off value for optic nerve sheath diameter, previous studies have found that an optic nerve sheath diameter of 5.0 mm and above may indicate an increase in intracranial pressure.

Previous studies have determined that the distribution of intraocular pressure in the adult population varies between 11 mmHg and 21 mmHg, and the mean intraocular pressure is 16.5 mmHg. It is well known that the sympathoadrenergic response caused by laryngoscopy and tracheal intubation significantly increases intraocular pressure (at least 10-20 mmHg). In addition, intravenous pressure and intraocular pressure increase due to cough, airway obstruction, succinylcholine use, hypoxia and hypercapnia during intubation.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Prevention
盲法
Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)

盲法说明

Single (Participant)

入排标准

年龄范围
18 Years 至 65 Years(Adult, Older Adult)
性别
All
接受健康志愿者
是

入选标准

  • •Non-ophthalmic surgery
  • •Mallampati I or II classifications
  • •American Society of Anesthesiologists (ASA) I-II

排除标准

  • •Glaucoma,
  • •Diabetes mellitus,
  • •Cardiovascular diseases,
  • •Pulmonary diseases,
  • •ASA 3 and 4
  • •Body Mass Index (BMI) greater than 30
  • •Eye surgery
  • •Difficult intubation (Mallampati score of 3 or 4, thyromental distance of less than 6 cm and a maximum mouth opening of less than 3 cm)
  • •Intraocular pressure value more than 20 mmHg
  • •More than two intubation attempts
  • •A risk of regurgitation patients
  • •History of obstetric surgery
  • •Allergies to propofol, fentanyl or rocuronium

研究组 & 干预措施

McGrath videolaryngoscopy

Active Comparator

It is a portable videoryngoscope weighing only 325 grams. The CameraStickTM component consists of a light source and a miniature camera, and the image is displayed on a 1.7 inch LCD (Liquid Crystal Display) screen mounted on top of the laryngoscope handle. At the same time, the LCD screen maintains visual contact with the patient and the laryngoscope, can be rotated up to 90°, allowing the user to work in a comfortable posture while performing tracheal intubation. The blade length is suitable for children over 5 years old and adults, thus reducing the trouble of storing different sized blades in the emergency intubation trolley. The blades are sterile and there is no risk of contamination as they are disposable.

干预措施: McGrath videolaryngoscopy (Procedure)

McGrath videolaryngoscopy

Active Comparator

It is a portable videoryngoscope weighing only 325 grams. The CameraStickTM component consists of a light source and a miniature camera, and the image is displayed on a 1.7 inch LCD (Liquid Crystal Display) screen mounted on top of the laryngoscope handle. At the same time, the LCD screen maintains visual contact with the patient and the laryngoscope, can be rotated up to 90°, allowing the user to work in a comfortable posture while performing tracheal intubation. The blade length is suitable for children over 5 years old and adults, thus reducing the trouble of storing different sized blades in the emergency intubation trolley. The blades are sterile and there is no risk of contamination as they are disposable.

干预措施: C-MAC videolaryngoscopy (Procedure)

McGrath videolaryngoscopy

Active Comparator

It is a portable videoryngoscope weighing only 325 grams. The CameraStickTM component consists of a light source and a miniature camera, and the image is displayed on a 1.7 inch LCD (Liquid Crystal Display) screen mounted on top of the laryngoscope handle. At the same time, the LCD screen maintains visual contact with the patient and the laryngoscope, can be rotated up to 90°, allowing the user to work in a comfortable posture while performing tracheal intubation. The blade length is suitable for children over 5 years old and adults, thus reducing the trouble of storing different sized blades in the emergency intubation trolley. The blades are sterile and there is no risk of contamination as they are disposable.

干预措施: Direct laryngoscopy (Device)

C-MAC videolaryngoscopy

Active Comparator

Considering the importance of first attempt success in intubation, their use in emergency airway management has increased due to the high first attempt success rate in C-MAC VLs. In patients with cervical spine injury, semi-rigid collars used to prevent neck extension and neck movements cause poor laryngeal vision with Direct laryngoscope and difficulty intubation. C-MAC Video laryngoscope provides a better laryngeal view in these patients

干预措施: C-MAC videolaryngoscopy (Procedure)

C-MAC videolaryngoscopy

Active Comparator

Considering the importance of first attempt success in intubation, their use in emergency airway management has increased due to the high first attempt success rate in C-MAC VLs. In patients with cervical spine injury, semi-rigid collars used to prevent neck extension and neck movements cause poor laryngeal vision with Direct laryngoscope and difficulty intubation. C-MAC Video laryngoscope provides a better laryngeal view in these patients

干预措施: Direct laryngoscopy (Device)

C-MAC videolaryngoscopy

Active Comparator

Considering the importance of first attempt success in intubation, their use in emergency airway management has increased due to the high first attempt success rate in C-MAC VLs. In patients with cervical spine injury, semi-rigid collars used to prevent neck extension and neck movements cause poor laryngeal vision with Direct laryngoscope and difficulty intubation. C-MAC Video laryngoscope provides a better laryngeal view in these patients

干预措施: McGrath videolaryngoscopy (Procedure)

Direct laryngoscopy

Active Comparator

Macintosh laryngoscopy is still one of the most commonly used advanced airway methods today. For an ideal glottis view in direct laryngoscopy, the mouth and larynx should be in alignment. For this, longitudinal flexion and head extension maneuvers are performed. Reasons such as the clinical situation during intubation and the anatomical variation in the patient may prevent this maneuver from being performed.

干预措施: McGrath videolaryngoscopy (Procedure)

Direct laryngoscopy

Active Comparator

Macintosh laryngoscopy is still one of the most commonly used advanced airway methods today. For an ideal glottis view in direct laryngoscopy, the mouth and larynx should be in alignment. For this, longitudinal flexion and head extension maneuvers are performed. Reasons such as the clinical situation during intubation and the anatomical variation in the patient may prevent this maneuver from being performed.

干预措施: C-MAC videolaryngoscopy (Procedure)

Direct laryngoscopy

Active Comparator

Macintosh laryngoscopy is still one of the most commonly used advanced airway methods today. For an ideal glottis view in direct laryngoscopy, the mouth and larynx should be in alignment. For this, longitudinal flexion and head extension maneuvers are performed. Reasons such as the clinical situation during intubation and the anatomical variation in the patient may prevent this maneuver from being performed.

干预措施: Direct laryngoscopy (Device)

结局指标

主要结局

Intraocular pressure-5

时间窗: Intraocular pressure will be measured at 10 minutes after intubation

Right and left intraocular pressures will be measured with a Tono-pen (AVIA) (Reichert Technologies, Depew, NY, USA) device by an ophthalmologist unaware of the patient group. Initial intraocular pressure value will measured without using any sedative drugs. An ophthalmologist, unaware of the randomization, measured intraocular pressure using ocular sonography. It will be measured as intraocular pressure: mmHg.

Intraocular pressure-2

时间窗: Intraocular pressure will be measured at just before laryngoscopy and intubation

Right and left intraocular pressures will be measured with a Tono-pen (AVIA) (Reichert Technologies, Depew, NY, USA) device by an ophthalmologist unaware of the patient group. Initial intraocular pressure value will measured without using any sedative drugs. An ophthalmologist, unaware of the randomization, measured intraocular pressure using ocular sonography. It will be measured as intraocular pressure: mmHg.

Intraocular pressure-3

时间窗: Intraocular pressure will be measured at immediately after intubation

Right and left intraocular pressures will be measured with a Tono-pen (AVIA) (Reichert Technologies, Depew, NY, USA) device by an ophthalmologist unaware of the patient group. Initial intraocular pressure value will measured without using any sedative drugs. An ophthalmologist, unaware of the randomization, measured intraocular pressure using ocular sonography. It will be measured as intraocular pressure: mmHg.

Intraocular pressure-1

时间窗: Intraocular pressure will be measured at before induction

Right and left intraocular pressures will be measured with a Tono-pen (AVIA) (Reichert Technologies, Depew, NY, USA) device by an ophthalmologist unaware of the patient group. Initial intraocular pressure value will measured without using any sedative drugs. An ophthalmologist, unaware of the randomization, measured intraocular pressure using ocular sonography. It will be measured as intraocular pressure: mmHg.

Intraocular pressure-4

时间窗: Intraocular pressure will be measured at 5 minutes after intubation

Right and left intraocular pressures will be measured with a Tono-pen (AVIA) (Reichert Technologies, Depew, NY, USA) device by an ophthalmologist unaware of the patient group. Initial intraocular pressure value will measured without using any sedative drugs. An ophthalmologist, unaware of the randomization, measured intraocular pressure using ocular sonography. It will be measured as intraocular pressure: mmHg.

次要结局

  • Optic nerve diameter measurement-2(Optic nerve diameter measurement-2 will be measured at just before laryngoscopy and intubation)
  • Optic nerve diameter measurement-5(Optic nerve diameter measurement-5 will be measured at 10 minutes after intubation)
  • Optic nerve diameter measurement-3(Optic nerve diameter measurement-3 will be measured at immediately after intubation)
  • Optic nerve diameter measurement-4(Optic nerve diameter measurement-4 will be measured at 5 minutes after intubation)
  • Optic nerve diameter measurement-1(Optic nerve diameter measurement-1 will be measured at before induction)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Erol Karaaslan

Associate Professor

Inonu University

研究点 (1)

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