Меню
Идёт набор NCT07607340

Unloaded Minds - How Prolonged Unloading Shapes Human Performance in Lunar Gravity

Без фазы С лечением Unilateral Lower Limb Suspension (Simulated Microgravity)

Ориентир для пациента и семьи

Простыми словами

Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.

Что изучают
В протоколе указаны: Unilateral lower limb suspension.
Кому может быть актуально
Состояния в реестре: Unilateral Lower Limb Suspension (Simulated Microgravity). Базовые параметры: 18 лет — 60 лет · Все.
Что важно проверить
Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
Где проводится
Швеция
Следующий шаг
Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →

Обзор

During spaceflight and lunar missions, reduced gravitational loading causes the muscles and nervous system to decondition rapidly. While muscle wasting is well documented, much less is known about how the brain and spinal cord adapt to the absence of normal mechanical loading - and how these central changes interact with muscle deterioration to impair movement control. This study investigates how two weeks of simulated lower limb unloading affects the brain's movement programs (motor engrams), the functional connection between nerves and muscles, and overall movement quality. Healthy participants undergo 14 days of Unilateral Lower Limb Suspension (ULLS), a model in which one leg is kept unloaded using a raised shoe and crutches while the other leg functions normally. After the unloading period, participants travel to Bordeaux, France, where they walk on a treadmill for the first time - in lunar gravity - during a parabolic flight. Before and after the unloading period, participants are assessed with MRI (muscle size), force plate tests (jump performance and balance), nerve stimulation (number of functional motor units), and treadmill gait analysis combining brain activity (EEG), muscle activity (EMG), joint movement, and plantar pressure measurements. The same gait analysis is repeated during the parabolic flight under lunar gravity (0.16G). The results will shed light on how the brain and muscles adapt to disuse and reactivate under partial gravity - with direct relevance to astronaut safety and rehabilitation, as well as clinical conditions involving prolonged limb immobilization.

Подробное описание

The study combines two spaceflight analogues in sequence: a 14-day Unilateral Lower Limb Suspension (ULLS) protocol followed by a parabolic flight campaign simulating lunar gravity (0.16G). This design allows investigation of both the neuromuscular consequences of unloading and the acute reactivation of the system upon first weight-bearing locomotion under partial gravity.

During ULLS, participants keep one lower limb (randomized in a counterbalanced manner) unloaded continuously using a shoe with a 10-cm thick sole and short-length crutches with forearm support. The suspended limb remains in a near-straight position and swings freely from the hip during all upright and ambulatory activity. Compliance is verified daily via telephone interviews, continuous midcalf skin temperature monitoring, and accelerometer data. Fragmin 5000 IU is administered subcutaneously once daily throughout the ULLS period as thromboprophylaxis.

Following the 14-day ULLS period, participants travel to Bordeaux where they continue the ULLS protocol until initiating the first steps on a treadmill during the lunar gravity phases of a parabolic flight. Each participant is allocated 15 parabolas (\~20 seconds of 0.16G each): parabolas 1-8 at 3 km/h and parabolas 9-15 at 5 km/h.

Gait analysis is performed on a treadmill at 3 and 5 km/h at baseline (pre-ULLS) and during the parabolic flight. Kinematic data (knee and ankle joint angles) are recorded bilaterally using 2D electronic goniometers (Biometrics, 500 Hz) in the frontal and sagittal planes. Ground reaction forces and spatiotemporal parameters (step and stride length, cadence, step width, gait cycle duration and variability) are recorded using plantar pressure insoles (200 Hz). All signals are synchronized to allow left/right (loaded/unloaded) differentiation.

EEG is recorded during all gait sessions using a 64-channel cap (EasyCap GmbH) with electrodes placed per the international 10-20 system (reference: FCz; ground: AFz). Data are processed in BrainVision Analyzer 2.2 using visual inspection, automated artefact rejection (gradient threshold \>60 µV), ICA, and bandpass filtering (0.5-40 Hz). Cortical current density in the motor cortex (M1, Brodmann area 4) is computed using the sLORETA module.

Surface EMG is recorded continuously during gait from eight bilateral lower limb muscles (rectus femoris, lateral hamstrings, gastrocnemius lateralis, tibialis anterior) using a wireless system (Delsys, USA; 2000 Hz), with electrode placement per SENIAM guidelines. Data are bandpass filtered (12-500 Hz), full-wave rectified, and lowpass filtered (7 Hz) to derive linear activation envelopes.

Motor Unit Number Estimation (MUNE) is performed using the MScanFit method, which applies incremental electrical stimuli to the peripheral nerve at 0.6-second intervals across varying intensities, recording the full stimulus-response curve via surface EMG to estimate the number of functional motor units innervating lower leg muscles.

MRI is performed before and after ULLS using a 3-Tesla system. T2-weighted images are acquired to quantify thigh and calf muscle volumes bilaterally. Participants rest supine for \~30 minutes prior to each scan to minimize fluid shift artefacts.

Neuromuscular performance and balance are assessed before ULLS and immediately after the parabolic flight using dual force plates (MuscleLab, 200 Hz). Measures include countermovement jump height, peak power, rate of force development, and centre-of-pressure-based postural stability variables.

Statistical Analysis Data will be assessed for normality using the Shapiro-Wilk test. Continuous outcome variables will be analysed using linear mixed-effects models (LMMs) with Time (pre, post), Leg (unloaded, control), and their interaction (Time × Leg) as fixed effects, and Subject as a random intercept. This approach appropriately handles the repeated-measures, within-subject structure of the data and accommodates missing observations without listwise deletion. Degrees of freedom will be estimated using the Satterthwaite approximation. Where a significant interaction is detected, pairwise post-hoc comparisons will be performed with Bonferroni correction. Effect sizes will be reported as Cohen's d.

For the parabolic flight gait analysis, outcomes recorded at 1G (pre-ULLS) and 0.16G (during flight) will be compared using LMMs with Gravity Condition (1G, 0.16G), Leg (unloaded, control), and Speed (3 km/h, 5 km/h) as fixed effects, and Subject as a random intercept.

Associations between central (EEG-derived cortical current density, MUNE) and peripheral (muscle volume, jump performance, EMG) outcomes will be examined using Pearson or Spearman correlation coefficients, depending on data distribution.

A sample size of 12 participants provides 95% power to detect a moderate effect size (f = 0.6) at a significance level of α = 0.05 for a within-subject design comparing outcomes across gravity conditions (G\*Power; λ = 17.3, critical F = 4.85). Twenty-four participants will be recruited to account for potential dropouts (including motion sickness during the parabolic flight, which may be a common, impossible-to-predict cause of dropout) and ensure the required sample is available for analysis. Statistical analyses will be performed in R (R Foundation for Statistical Computing). The significance threshold is set at p \< 0.05.

Вмешательства

  • Поведенческое Unilateral lower limb suspension
    Unilateral Lower Limb Suspension (ULLS) is a validated spaceflight analog for the lower limbs, which mimics unloading specifically in the lower limbs 3. In ULLS, participants wear a shoe with \~100 mm elevated sole and use short-length crutches aided by a hand grip and forearm support distal to the elbow. This allows the contralateral lower limb to remain unloaded in a straight position and move passively at the hip. The ULLS model specifically targets skeletal muscle unloading in the lower limb

Первичные конечные точки

  • Muscle volume [Срок оценки: Three days before the initiation of the ULLS intervention and at day 15 of unloading, for both thigh and calf muscles bilaterally.]
Вторичные конечные точки (5)
  • Gait analysis [Срок оценки: Gait analysis will be performed three-to-five days before the ULLS phase and during the lunar gravity phases of a parabolic flight]
  • Electroencephalogram [Срок оценки: Three-to-five days before the ULLS phase and during the lunar gravity phases of a parabolic flight, during the gait analysis tests.]
  • Electromyography [Срок оценки: Three-to-five days before the ULLS phase and during the lunar gravity phases of a parabolic flight, during the gait analysis tests.]
  • Muscle function and balance [Срок оценки: Three days before initiation of ULLS and immediately after the parabolic flight.]
  • Motor unit number estimation [Срок оценки: Three days before initiation of ULLS and immediately after the parabolic flight.]

Критерии участия

Критерии включения

\- 18-60 years of age, willing to participate

Критерии исключения

  • high activity level according to the GLTEQ
  • contraindications to exercise
  • pregnancy
  • contraindications to MRI
  • active cardiovascular disease
  • cerebrovascular disease including previous stroke
  • aneurysm (large vessels or intracranial)
  • pulmonary disease including pulmonary hypertension or COPD
  • metabolic diseases (including: hyper/hypoparathyroidism, hyper/hypothyroidism, Cushing's disease, type 1 or type 2 diabetes)
  • active inflammatory bowel disease
  • kidney disease
  • malignancy
  • recent steroid treatment (within the past 6 months), or hormone replacement therapy
  • coagulation disorders
  • musculoskeletal or neurological diseases
  • diseases requiring long-term medication, including statin therapy
  • smoking

Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.

Здоровые добровольцы: Да

Дизайн исследования

Распределение
Не применимо
Модель
Одна группа
Маскирование
Открытое
Основная цель
Фундаментальное исследование

Центры проведения

Швеция · 1 центр
  • Karolinska Institutet — Huddinge

Публикации

  • Badali C, Wollseiffen P, Schneider S. Shades of gravity - effects of planetary gravity levels on electrocortical activity and neurocognitive performance. Brain Struct Funct. 2024 Jun;229(5):1265-1277. doi: 10.1007/s00429-024-02803-6. Epub 2024 May 3. PMID 38700553
  • Badali C, Wollseiffen P, Puck L, Klein T, Schneider S. Neurophysiological markers of cognitive workload under altered gravity conditions using a gamified dual-task paradigm. Sci Rep. 2026 Jan 9;16(1):1292. doi: 10.1038/s41598-025-34426-0. PMID 41507273
  • Fernandez-Gonzalo R, Irimia JM, Cusso R, Gustafsson T, Linne A, Tesch PA. Flywheel resistance exercise to maintain muscle oxidative potential during unloading. Aviat Space Environ Med. 2014 Jul;85(7):694-9. doi: 10.3357/asem.3856.2014. PMID 25022156
  • Tesch PA, Lundberg TR, Fernandez-Gonzalo R. Unilateral lower limb suspension: From subject selection to "omic" responses. J Appl Physiol (1985). 2016 May 15;120(10):1207-14. doi: 10.1152/japplphysiol.01052.2015. Epub 2016 Feb 4. PMID 26846557
  • Berg HE, Dudley GA, Haggmark T, Ohlsen H, Tesch PA; New Collective Author. Effects of lower limb unloading on skeletal muscle mass and function in humans. J Appl Physiol (1985). 1991 Apr;70(4):1882-5. doi: 10.1152/jappl.1991.70.4.1882. PMID 2055867
  • Berg HE, Tesch PA. Changes in muscle function in response to 10 days of lower limb unloading in humans. Acta Physiol Scand. 1996 May;157(1):63-70. doi: 10.1046/j.1365-201X.1996.476217000.x. PMID 8735655

Идентификаторы

NCT: NCT07607340 · 2025-02981-01 - UnloadedMinds

Первоисточники (государственные реестры)

Открыть это исследование на ClinicalTrials.gov ↗