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临床试验/NCT05361473
NCT05361473进行中(未招募)不适用

Evaluation of a Mattress With Phase Change Material Can be Helpful to Start Hypothermia During Transport Before Admissions to Neonatal Ward

Karolinska Institutet2 个研究点 分布在 1 个国家目标入组 140 人开始时间: 2013年8月最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
进行中(未招募)
入组人数
140
试验地点
2
主要终点
Patient classification/ window of oppertunity Hypothermia during transport or start late

研究概览

简要总结

Background the research proposed herein is in line with the Swedish Research Council's current focus on International collaborations and postdoctoral work abroad. In this case the child brain and translational and clinical infant brain research. Neonatal hypoxic ischemic encephalopathy in term infants constitutes a serious health problem, not the least due to its often life-long consequences in the form of cerebral palsy and other forms of brain dysfunction.

An estimated 3-5 of every 1000 live term births are affected, a quarter of which with severe symptoms; 10-30% of the affected children do not survive, 30% suffer life-long disabilities. The incidence may be 10-fold higher in the developing world. In Sweden, an estimated 200 children are born each year with hypoxic ischemic asphyxia or oxygen deprivation during delivery of a severity necessitating treatment, in order to reduce future handicap. Not only the brain, but also other organs, such as the heart, liver or kidney can be damaged by hypoxic ischemia.

In clinical trials, proof has been obtained that cooling can have positive effects counteracting brain injury induced by oxygen deprivation (asphyxia). Recent research suggests that cooling may also have a positive effect in stroke during the pre-treatment/transportation to hospital phase.

PCM. A material with phase change properties (PCM) can be a chemical element, a solution or a substance with high melting energy. It melts/solidifies at a precise temperature and can store considerable amounts of energy (heat) before changing from one phase to another. The study group have used elements or solutions that change between solid and fluid phases within a narrow temperature interval. The most common use of PCM today is for energy storage, accomplished by having the PCM change between solid and fluid phases. Phase changes that include other PCMs, high temperatures and/or gas phases are less useful in medical applications due to the need of either large volumes in a low pressure setting or smaller amounts in a high pressure setting, increasing the risk for mistakes or secondary injury to medical staff or patients. For the clinical purposes of hypothermic treatment described here, the Glauber salt-based PCM in a mattress form developed by the applicant has near ideal properties; it is completely safe, does not cause over-cooling, can be reused many times, eliminates cooling fluctuations, is easy to handle and biodegradable.

详细描述

Background. The research proposed herein, is in line with the Swedish Research Council's current focus on International collaborations and postdoctoral work abroad. In this case the child brain and translational and clinical infant brain research. Neonatal hypoxic ischemic encephalopathy in term infants constitutes a serious health problem, not the least due to its often life-long consequences in the form of cerebral palsy and other forms of brain dysfunction.

An estimated 3-5 of every 1000 live term births are affected, a quarter of which with severe symptoms; 10-30% of the affected children do not survive, 30% suffer life-long disabilities [1-9]. The incidence may be 10-fold higher in the developing world. In Sweden, an estimated 200 children are born each year with hypoxic ischemic asphyxia or oxygen deprivation during delivery of a severity necessitating treatment, in order to reduce future handicap. Not only the brain, but also other organs, such as the heart, liver or kidney can be damaged by hypoxic ischemia.

In clinical trials, proof has been obtained that cooling can have positive effects counteracting brain injury induced by oxygen deprivation (asphyxia) [1-7, 9]. Recent research suggests that cooling may also have a positive effect in stroke (30000 new cases/year in Sweden) during the pre-treatment/transportation to hospital phase.

PCM. A material with phase change properties (PCM) can be a chemical element, a solution or a substance with high melting energy [10-13]. It melts/solidifies at a precise temperature and can store considerable amounts of energy (heat) before changing from one phase to another. The study project have used elements or solutions that change between solid and fluid phases within a narrow temperature interval. The most common use of PCM today is for energy storage, accomplished by having the PCM change between solid and fluid phases. Phase changes that include other PCMs, high temperatures and/or gas phases are less useful in medical applications due to the need of either large volumes in a low pressure setting or smaller amounts in a high pressure setting, increasing the risk for mistakes or secondary injury to medical staff or patients. For the clinical purposes of hypothermic treatment described here, the Glauber salt-based PCM in a mattress form developed by the applicant has near ideal properties; it is completely safe, does not cause over-cooling, can be reused many times, eliminates cooling fluctuations, is easy to handle and biodegradable. III. Methods Whole body cooling with PCM mattresses is straightforward. Rectal temperature will be monitored in standard ways. Several other vital parameters, such as LDH in blood, and standard procedures will be used to monitor condition of the infants continuously. 15 days after treatment, MRI will be carried out at the National Hospital of Pediatrics in Hanoi. Follow up of the treated and control children will be carried out at 18 months of age and will be the bases of the final evaluation of the clinical trial.

Design. The project is based on the applicant's dual expertise in engineering and medicine. The applicant developed a key technology, cooling using a special PCM composition, recently. The applicant has also participated in multicenter hypothermia studies of newborn infants (including the TOBY trial). As part of the PhD program, the applicant has also participated in animal research using a large newborn anesthetized piglet therapeutic hypothermia model in collaboration with Dr. Nicola Robertson and her team at University College of London. These experiences enable design of the current project.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Diagnostic
盲法
Single (Outcomes Assessor)

入排标准

年龄范围
— 至 36 Hours(Child)
性别
All
接受健康志愿者

入选标准

  • All children admitted to the neonatal ward above 32w of age, considered for blood sampling.

排除标准

  • parental consent missing
  • Gestational age less than 33 weeks postnatal age or above 36 hours after birth

研究组 & 干预措施

The NeoHilda Point of care method

Active Comparator

Evaluating baby including lactate dehydregenase Levels measured in umbilical core blood using the fast point of care method called Neo Hilda

干预措施: The NeoHilda Point of care method (Device)

No Measurement of LDH

Sham Comparator

Evaluating baby without Lactate dehydrogenase result

干预措施: Traditional evaluation (Procedure)

结局指标

主要结局

Patient classification/ window of oppertunity Hypothermia during transport or start late

时间窗: At 96 hours after admission to study for each patient, During the data collection time of the study.

Efficacy of sending patient to right level of care. Is it better to start early during transport by using the PCM mattress or miss the window of opportunity of 6h due to long transportation and/or long decision making. Usage of questionnaire that collect outcome of hypothermia.

次要结局

未报告次要终点

研究者

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

Linus Olson

Project Investigator, Dr.

Karolinska Institutet

研究点 (2)

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