A Study Protocol on Impact of an 8-Week Integrated Neuromuscular Training Program on Anthropometric Profile, Jump-Landing Mechanics, and Vertical Jump Height in Male Volleyball Players
试验速览
- 阶段
- 不适用
- 状态
- Enrolling By Invitation
- 发起方
- 入组人数
- 38
- 试验地点
- 1
- 主要终点
- Body Weight
研究概览
简要总结
Background
Volleyball is a sport that requires frequent jumping, landing, rapid movements, and changes in direction. During a match, players repeatedly perform actions such as spikes, blocks, and quick defensive movements. Because of these repetitive high-impact movements, volleyball players are at risk of lower-limb injuries, especially to the knees, ankles, and hips.
Many injuries occur when athletes land incorrectly after jumping, when muscles are not strong enough, or when the body's balance and coordination are not optimal. Poor movement control during landing can place excessive stress on the joints and surrounding tissues. For this reason, improving the way athletes jump, land, and control their movements is very important for both performance and injury prevention.
Purpose of the Study
The main purpose of this study was to determine whether an 8-week Integrated Neuromuscular Training program could improve the following aspects in male volleyball athletes: Anthropometric profile, Jump-landing mechanics, Vertical jump height. Male volleyball athletes volunteered to participate in this research. All participants were active players who regularly took part in volleyball training and competitions. Integrated Neuromuscular Training (INT) is a structured exercise approach designed to improve the coordination between the muscular system and the nervous system. In simple terms, it helps the body learn how to move more efficiently, safely, and powerfully. The training program used in this study included a combination of exercises such as strength training to improve muscle power and joint stability, balance and stability exercises to enhance body control, plyometric exercises.
This study used a single-blind pretest-posttest design. Pretest: The athletes were evaluated before the training program started. Training period: The participants completed the 8-week Integrated Neuromuscular Training program.
Posttest: After the training program, the same measurements were taken again.
详细描述
Volleyball players frequently perform jumping and landing movements during actions such as spiking, blocking, and serving. Improper landing techniques and weak muscle coordination can increase the risk of injuries, particularly to the knee, ankle, and lower back.
This study aims to determine whether an 8-week Integrated Neuromuscular Training (INT) program can improve:
Body measurements such as weight and muscle composition Jumping ability (vertical jump height) Landing technique and movement control
Improving these factors may help athletes perform better and reduce the risk of injury. Integrated Neuromuscular Training combines several types of exercises designed to improve how muscles and the nervous system work together. The training program includes Strength exercises, balance training, Plyometric exercises, Coordination and agility drills. Participants in this study are:
Male volleyball athletes, physically active and currently involved in volleyball training, Free from serious injuries that prevent exercise participation. The exercises are similar to normal volleyball training activities, so risks are minimal.
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
- Single (Outcomes Assessor)
入排标准
- 年龄范围
- 18 Years 至 25 Years(Adult)
- 性别
- Male
- 接受健康志愿者
- 是
入选标准
- •subjects with one year of playing experience
- •least Subjects training twice per week
排除标准
- •Any previous history of lower limb injury in the past 6 months
- •Any surgery performed in the lower extremity
- •Other vestibular and neurological disorders
结局指标
主要结局
Body Weight
时间窗: From enrollment to the end of treatment at 8 weeks
Measured using a calibrated digital weighing scale Unit: Kilograms (kg) Procedure: Participants will be measured barefoot and in light clothing. They will stand upright at the center of the weighing scale platform without support, with weight evenly distributed on both feet. The measurement will be recorded to the nearest 0.1 kg. The scale will be calibrated prior to data collection.
Landing Mechanics
时间窗: From enrollment to the end of treatment at 8 weeks
The LESS evaluates movement quality during a jump-landing task. It helps clinicians and researchers identify errors such as: Poor knee alignment, Excessive trunk movement, Limited knee or hip flexion, Asymmetrical landing, Improper foot placement. Higher LESS scores indicate more movement errors and potentially greater injury risk.
Height
时间窗: From enrollment to the end of treatment at 8 weeks
Assessment method: Measured using a wall-mounted stadiometer Unit: Meters (m) Procedure: Participants will stand barefoot with heels together, back straight, and head positioned in the Frankfort horizontal plane. The heels, buttocks, shoulders, and head will be in contact with the stadiometer where possible. The headpiece will be lowered to rest firmly on the crown of the head. Height will be recorded to the nearest 0.1 cm and converted to meters.
Body Mass Index
时间窗: From enrollment to the end of treatment at 8 weeks
Body Mass Index (BMI) will be calculated using the formula: weight (kg) ÷ height (m²).
Body Fat Percentage (%)
时间窗: From enrollment to the end of treatment at 8 weeks
Assessment method: Measured using Bodystat 1500MD bioelectrical impedance analyzer Unit: Percentage (%) Procedure: Participants will be assessed in a supine position. Surface electrodes will be placed on the hand and foot according to manufacturer guidelines. A low-level electrical current will be passed through the body, and body fat percentage will be estimated using impedance values.
Lean Mass Percentage (%)
时间窗: From enrollment to the end of treatment at 8 weeks
Assessment method: Measured using Bodystat 1500MD bioelectrical impedance analyzer Unit: Percentage (%) Procedure: Using the same electrode placement and testing position, lean body mass percentage will be derived from impedance measurements through built-in predictive equations of the device.
Total Body Water (%)
时间窗: From enrollment to the end of treatment at 8 weeks
Assessment method: Measured using Bodystat 1500MD bioelectrical impedance analyzer Unit: Percentage (%) Procedure: Total body water will be estimated from bioelectrical impedance analysis using standard equations embedded in the device, with participants positioned supine and electrodes placed on the hand and foot.
次要结局
- Jump Height(From enrollment to the end of treatment at 8 weeks)
研究者
Vinosh Kumar Purushothaman
Lecturer
INTI International University
