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临床试验/NCT06974513
NCT06974513尚未招募不适用

Auditory Localization in Virtual Reality in Patients With a First Episode of Psychosis

Hôpital le Vinatier1 个研究点 分布在 1 个国家目标入组 60 人开始时间: 2025年6月30日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
尚未招募
发起方
入组人数
60
试验地点
1
主要终点
Auditory localization performance in virtual reality

研究概览

简要总结

Auditory sound localization is the ability to identify the position of a sound source in space. It is defined into 3 dimensions: by its position in azimuth, elevation and distance. If it is difficult to localize a sound source, it is possible to remove the localization ambiguity by interacting with the environment, in particular by changing one's position in relation to the source (e.g. by changing the orientation of the head).

Patients with schizophrenia have difficulties to localize and discriminate sounds in space but it is still poorly explored.

Additionally, deficits in auditory localization could underlie difficulties in source-monitoring (i.e., distinguish the source/origin of the information) reported in schizophrenia or deficits in auditory externalization (i.e., perception of sound outside the head).

Furthermore, schizophrenia is characterized by cerebral abnormalities in the auditory cortex, manifesting as auditory processing disorders at different stages of the pathology. Auditory localization may therefore be impaired from the onset of a first psychotic episode (FEP). This early phase of the disease is also referred to as the "critical" period, as the chances of remission are highest and the response to treatment is best. However, the three-dimensional aspect of auditory perception and the behavioral exploration strategies used to localize a sound in the early stages of schizophrenia are still little studied.

详细描述

The main objective of this study is to study the auditory localization performance on the horizontal and vertical planes (sound direction) in patients with a first episode psychosis (FEP) compared to healthy control subjects.

This study will:

  • evaluate the role of head movement on auditory localization abilities in patients with FEP compared with healthy control subjects;
  • evaluate the localization abilities of sounds in a noisy environment in patients with FEP compared with healthy control subjects;
  • evaluate the repercussions of poor auditory localization performance on the ability to distinguish between what comes from an internal source and what comes from an external source (source-monitoring abilities);
  • evaluate the repercussions of poor auditory localization performance on the ability to externalize an external auditory source compared with an internal source (auditory externalization abilities);
  • evaluate the relationships between auditory localization performance and auditory discrimination performance (pitch, volume, length);
  • evaluate the repercussions of the severity of symptoms in patients with FEP on auditory localization performance.

Subjects will undergo several auditory and cognitive tasks. The duration of the entire experiments will be 2.30 hours:

  • An auditory localization task in virtual reality with the SPHERE paradigm: the subject is immerged into a room and sounds are delivered through loudspeakers in different localization on the horizontal and vertical planes. Sounds are delivered in two experimental blocks: silent and noisy background. Each block is divided into two listening conditions: fixed head and active head movement (i.e., with the possibility of moving the head). Subjects have to localize each sound.
  • A source monitoring task divided into two parts: one part that will evaluate the reality-monitoring performances ('hear-imagine' task). Subjects either have to listen to words or imagine themselves listening to words; Another part evaluating internal source-monitoring performances ('say-imagine' task). Subjects either have to pronounce words or imagine themselves pronouncing words.
  • An auditory externalization task: Nonverbal sounds are delivered through headphones and processed to be perceived inside or outside the head. Subjects will have to discern whether a sound is perceived as coming from inside or outside the head.
  • A battery of psychoacoustic tests including the Tone Matching Task (TMT) which evaluates the capacity of discriminating static pitch.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Parallel
主要目的
Basic Science
盲法
None

入排标准

年龄范围
18 Years 至 35 Years(Adult)
性别
All
接受健康志愿者
是

入选标准

  • •Informed of the study and having signed the consent form
  • •With normal vision (with or without correction)
  • •Able to understand the experimental instructions
  • •Affiliated to the social security system
  • •French language spoken, read and written

排除标准

  • •Patients with a DSM-5 diagnosis of schizophrenia, schizoaffective disorder, schizophreniform disorder or brief psychotic disorder
  • •Early intervention for first psychotic episodes

研究组 & 干预措施

Patient group with a first episode psychosis

Experimental

Tasks will include an auditory localization task performed in virtual reality, a source-monitoring task, an externalization task and a battery of psychoacoustic tests.

干预措施: cognitive experiments' session (Behavioral)

Healthy control subjects

Active Comparator

Tasks will include an auditory localization task performed in virtual reality, a source-monitoring task, an externalization task and a battery of psychoacoustic tests.

干预措施: cognitive experiments' session (Behavioral)

结局指标

主要结局

Auditory localization performance in virtual reality

时间窗: Baseline

an auditory localization task in virtual reality was design for this study. Sounds are presented in different localization on the horizontal and vertical planes. Participants performed two blocks (noise, silent background) divided into two conditions (localization with the fixed head or with the possibility of moving the head). Participants have to determine the localization of sound in space. The main outcome will be the perception performance corresponding to the directionality error (2Dd error in cm) in relation to the sound source.

次要结局

  • Performance on basic auditory tasks(Baseline)
  • The impact of head movements on auditory localization performance(Baseline)
  • The impact of background noise on auditory localization performance(Baseline)
  • Source-monitoring performance(Baseline)
  • Performance on auditory externalization(Baseline)

研究者

发起方
Hôpital le Vinatier
申办方类型
Other
责任方
Sponsor

研究点 (1)

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