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Keywords = cocking phase

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9 pages, 225 KB  
Article
Relationship Between Shoulder Rotation Strength and Upper Extremity Functional Assessments in Collegiate Baseball Players
by Andy Waldhelm, Jaclyn Aida, Jackson Boyd, Garrett Chandler, Matthew Demboski, Caroline Monson and Neil Schwarz
J. Funct. Morphol. Kinesiol. 2025, 10(2), 120; https://doi.org/10.3390/jfmk10020120 - 3 Apr 2025
Viewed by 875
Abstract
Background/Objectives: In overhead throwing sports such as baseball and softball, upper extremity injuries are prevalent at both collegiate and high school levels. Currently, there is no universal assessment protocol to identify athletes at risk for injury or to determine their readiness to [...] Read more.
Background/Objectives: In overhead throwing sports such as baseball and softball, upper extremity injuries are prevalent at both collegiate and high school levels. Currently, there is no universal assessment protocol to identify athletes at risk for injury or to determine their readiness to return to sport. This study aimed to investigate the relationship between shoulder internal rotation (IR) and external rotation (ER) isometric strength in a throwing position and three upper extremity functional tests among collegiate baseball players. It was hypothesized that there would not be significant correlations between shoulder IR and ER peak isometric force and the following functional assessments: the Upper Quarter Y Balance Test (YBT-UQ), seated single-arm shot put, and Closed Kinematic Chain Upper Extremity Strength Test (CKCUEST). Methods: Forty healthy collegiate baseball players volunteered for the study. After completing a self-guided warm-up, participants performed bilateral isometric shoulder IR and ER strength tests at 90 degrees of shoulder abduction and elbow flexion, followed by the three functional tests in random order. Relationships were analyzed using Pearson’s correlation coefficients (r), with a significance level set at p < 0.05. Results: Correlations were generally low, ranging from r = 0.001 to r = 0.551. Significant correlations were observed between the CKCUEST and dominant IR strength (r = 0.345, p = 0.031), dominant ER strength (r = 0.407, p = 0.010), and non-dominant ER strength (r = 0.551, p < 0.001). Additionally, a significant correlation was found between the dominant ER/IR strength ratio and the dominant arm superolateral reach on the YBT-UQ (r = −0.352, p = 0.026). No significant correlations were identified between isometric shoulder strength and the single-arm shot put. Conclusions: Most correlations were low to moderate, and only significant correlations between shoulder rotation isometric strength and one direction of the YBT-UQ and the CKCUEST were observed. Thus, shoulder rotation strength in a position similar to the cocking phase of overhead throwing may be valuable for return-to-sport criteria and injury screening for overhead athletes. However, further research is needed to validate these findings. Full article
(This article belongs to the Section Sports Medicine and Nutrition)
16 pages, 7770 KB  
Review
Subregions of the Rotator Cuff Muscles Present Distinct Anatomy, Biomechanics, and Function
by Emma Cavanaugh, Atenas Arcot Santillan, Kyosuke Hoshikawa and Hugo Giambini
Sports 2024, 12(12), 349; https://doi.org/10.3390/sports12120349 - 18 Dec 2024
Viewed by 3117
Abstract
Shoulder and elbow injuries are prevalent among baseball players, particularly pitchers, who experience repetitive eccentric loading of the shoulder, leading to muscle damage and increased injury risk. Nearly 40% of shoulder injuries in baseball occur in pitchers, with many facing low rates of [...] Read more.
Shoulder and elbow injuries are prevalent among baseball players, particularly pitchers, who experience repetitive eccentric loading of the shoulder, leading to muscle damage and increased injury risk. Nearly 40% of shoulder injuries in baseball occur in pitchers, with many facing low rates of return to sport. The rotator cuff (RC) muscles—supraspinatus (SSP), infraspinatus (ISP), subscapularis (SSC), and teres minor (TMin)—are crucial for shoulder stability, movement, and force generation, particularly in overhead sports. Each RC muscle comprises subregions with distinct biomechanical properties, such as strength, moment arm behavior, and activation patterns. These differences allow for a finely tuned balance between joint stability and mobility. For example, the superior subregion of the ISP significantly contributes to external rotation, a function critical in sports like baseball that require precision and power. During pitching, the SSP, ISP, and SSC stabilize the glenohumeral joint through high activation during explosive phases, such as stride, arm cocking, and arm acceleration. Understanding these functional subregional differences is vital for diagnosing and managing shoulder pathologies like RC tears. Despite advancements, clinicians face challenges in predicting re-injury risks and determining return-to-play readiness for athletes with shoulder injuries. Integrating insights into subregional biomechanics with patient care could enhance outcomes. Tailored interventions—whether surgical or rehabilitative—targeting specific subregions could improve recovery times, reduce re-injury risks, and enable more personalized treatment plans. Such approaches are especially beneficial for athletes, older individuals, and those prone to RC injuries, promoting better long-term shoulder health and performance. The present work aims to highlight some of the research on these subregions and their differences, providing insights to enhance treatment approaches for shoulder injuries. Full article
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14 pages, 266 KB  
Article
A Kashmiri Woman Stuck in Crossfire: Exploring the Impact of Militarisation on Everyday Lives in Farah Bashir’s Rumours of Spring
by A. S. Adish and Reju George Mathew
Religions 2024, 15(8), 970; https://doi.org/10.3390/rel15080970 - 10 Aug 2024
Viewed by 2086
Abstract
Political conflict has plagued Kashmir, a Muslim-majority region of Hindu-majority India, ever since the partition. The crisis worsened by the end of the 1980s and has continued to disrupt peace in the valley to date. The conflict arguably entered a new phase as [...] Read more.
Political conflict has plagued Kashmir, a Muslim-majority region of Hindu-majority India, ever since the partition. The crisis worsened by the end of the 1980s and has continued to disrupt peace in the valley to date. The conflict arguably entered a new phase as the Hindu nationalist Bharatiya Janata Party (BJP) was elected to power in 2014, which also joined the ruling coalition of the Jammu and Kashmir state in 2015 for the first time. Over this period, Kashmir’s resistance evolved into subtler forms, including cultural expressions like memoirs. Published in 2021, Farah Bashir’s debut work, Rumours of Spring, is a deeply personal yet undeniably political exploration of the crisis in Kashmir from its aggravated phase in the beginning of the 1990s. This paper argues that the nuanced depiction of the crisis in the memoir demands an intersectional reading of the traumatising impact of militarisation and militarism on Kashmir’s everyday life, especially given the subject position of the narrator as a Muslim woman. The works on militarisation by Jacklyn Cock, as employed by Samreen Mushtaq to analyse the situation in Kashmir, provide theoretical insights for this reading. Set in Kashmir’s identitarian conflict, the Muslim identity is central to the narrative. We argue that in Bashir’s memoir, religion finds a complex representation, with the Qur’an and Kashmiri folklore serving as respites in times of crisis, even as the fundamentalist factions contribute to their oppressive reality. Bashir’s work openly engages with the experience of being a Muslim in Hindu India. The paper also attempts to place the work in a larger corpus of life-writing by women in conflict zones, comparing the work with Sharon and My Mother-in-Law: Ramallah Diaries (2003), a Palestinian memoir by Suad Amiry. Full article
(This article belongs to the Special Issue Indian Muslims amidst Hindutva Politics)
15 pages, 2165 KB  
Article
Kinematics of the Tennis Serve Using an Optoelectronic Motion Capture System: Are There Correlations between Joint Angles and Racket Velocity?
by Julien Jacquier-Bret and Philippe Gorce
Sensors 2024, 24(11), 3292; https://doi.org/10.3390/s24113292 - 22 May 2024
Cited by 8 | Viewed by 3876
Abstract
The serve is the most important stroke in tennis. It is a complex gesture consisting of numerous rotations with a wide amplitude, which are important to manage for performance. The aim of this study was to investigate whether correlations exist between joint kinematic [...] Read more.
The serve is the most important stroke in tennis. It is a complex gesture consisting of numerous rotations with a wide amplitude, which are important to manage for performance. The aim of this study was to investigate whether correlations exist between joint kinematic parameters and racket velocity. A quantitative kinematics analysis of four ranked players (two boys and two girls) was carried out using an optoelectronic system composed of 10 cameras (150 Hz). Five flat serves per player were analyzed. Eighty-two markers were located across the 15 body segments and on the racket. A descriptive statistical analysis including a correlation analysis was carried out between joint angles and racket kinematic parameters (vertical position, velocity, and acceleration) during the cocking and acceleration phases. Ten very high (0.7 < r < 0.9) and three almost perfect (r > 0.9) correlations were found. Shoulder and hip axial rotations, knee flexion, and trunk extension were correlated linearly with racket vertical position and velocity during the cocking phase. For the acceleration phase, elbow flexion, trunk flexion/extension, and trunk axial rotation were linked to racket kinematics. Some of these parameters showed differences between slow and fast serves. These parameters, which are involved in transmitting ball velocity, are important to consider for tennis players and coaches in training programs, education, and performance enhancement. Full article
(This article belongs to the Special Issue Sensor Techniques and Methods for Sports Science)
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14 pages, 956 KB  
Article
Bridging the Gap between Clinical Service and Academic Education of Hand-Splinting Practice: Perspectives and Experiences of Thai Occupational Therapists
by Anuchart Kaunnil, Veerawat Sansri, Surachart Thongchoomsin, Kannika Permpoonputtana, Mandy Stanley, Piyawat Trevittaya, Chirathip Thawisuk and Peeradech Thichanpiang
Int. J. Environ. Res. Public Health 2022, 19(15), 8995; https://doi.org/10.3390/ijerph19158995 - 24 Jul 2022
Cited by 1 | Viewed by 3648
Abstract
A gap in knowledge about current splinting practice exists between the educational program and clinical service. To bridge this gap, we investigated the perspectives and experiences of Thai occupational therapists regarding contemporary hand splinting practices in clinical use. A mixed-method study was designed. [...] Read more.
A gap in knowledge about current splinting practice exists between the educational program and clinical service. To bridge this gap, we investigated the perspectives and experiences of Thai occupational therapists regarding contemporary hand splinting practices in clinical use. A mixed-method study was designed. An explanatory sequential mixed methods design was used. In the first quantitative phase, a survey questionnaire was mailed to occupational therapists. The questions were regarding contemporary hand splinting practices in clinical use at seven hospitals in the capital city of Bangkok and outskirt areas. In the second phase, semi-structured interviews were completed to explore expert occupational therapists’ perspectives on practice in the same hospital settings. Transcripts were analyzed using thematic analysis. The results showed that most conditions receiving splints were nerve injuries, orthopedics, and stroke, which represented the service frequency of splint types: functional resting (100%), cock-up (93.3%), and thumb spica splints (80%). Bone and joint deformity prevention ranked first with muscle contracture prevention being ranked second, and the third-ranked was maintaining range of motion. Three themes emerged from the interviews: starting with the patient condition; effective function and value; knowledge and experiential skills. Perspectives and experiences of occupational therapists in splinting practice contribute to education based on the reality of practice. Integrated numerical and textual data of professional skills and knowledge in actual splinting practice can be reflected through splints and orthoses program revisions to meet future learning outcomes. Full article
(This article belongs to the Special Issue Orthosis and Prothesis from Bench to Real Life)
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11 pages, 1234 KB  
Article
Effect of Glenohumeral Internal Rotation Deficit on Shoulder in Baseball Pitchers during Fastball Pitching
by Hwai-Ting Lin, Yu-Chuan Lin, You-Li Chou, Hung-Chien Wu, Rong-Tyai Wang and Paul Pei-His Chou
Int. J. Environ. Res. Public Health 2020, 17(21), 8211; https://doi.org/10.3390/ijerph17218211 - 6 Nov 2020
Cited by 7 | Viewed by 3486
Abstract
Previous studies have reported that pitchers with glenohumeral internal rotation deficit (GIRD) may increase the risk of shoulder injury. However, limited information is available regarding the specific effects of GIRD in baseball pitching. The purpose of this study was to investigate whether baseball [...] Read more.
Previous studies have reported that pitchers with glenohumeral internal rotation deficit (GIRD) may increase the risk of shoulder injury. However, limited information is available regarding the specific effects of GIRD in baseball pitching. The purpose of this study was to investigate whether baseball pitchers with GIRD change their pitching mechanism. Fifteen baseball pitchers with GIRD and 15 pitchers without GIRD were recruited from university or senior high-school teams. A three-dimensional motion analysis system (Eagle System, Motion Analysis Corporation, Santa Rosa, CA, USA) was used to capture the pitching motion while performing fastball pitches. The kinematics and kinetics of the throwing shoulder and trunk were analyzed based on motion captured data. The Mann–Whitney U test was used to test the differences of the analyzed parameters between two groups. At the instant of ball release, the GIRD group showed lower shoulder external rotation and trunk rotation, and larger shoulder horizontal adduction. In addition, the GIRD group exhibited a significantly larger shoulder inferior force in the cocking and acceleration phase, and a significantly larger internal rotation torque in the acceleration phase. The present results suggested that pitchers with GIRD need stretch training to enlarge joint range of motion, and to improve trunk strength and flexibility to alleviate potential problems associated with pitching in GIRD pitchers. Full article
(This article belongs to the Special Issue Physical Rehabilitation and Sports Medicine of Human Movement)
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16 pages, 1291 KB  
Article
Association between the On-Plane Angular Motions of the Axle-Chain System and Clubhead Speed in Skilled Male Golfers
by Morgan V. Madrid, Marco A. Avalos, Nicholas A. Levine, Noelle J. Tuttle, Kevin A. Becker and Young-Hoo Kwon
Appl. Sci. 2020, 10(17), 5728; https://doi.org/10.3390/app10175728 - 19 Aug 2020
Cited by 6 | Viewed by 3732
Abstract
The on-plane rotations of the inclined axle-chain system on the functional swing plane (FSP) can represent the angular motions of the golfer–club system closely. The purpose of this study was to identify key performance factors in golf through a comprehensive investigation of the [...] Read more.
The on-plane rotations of the inclined axle-chain system on the functional swing plane (FSP) can represent the angular motions of the golfer–club system closely. The purpose of this study was to identify key performance factors in golf through a comprehensive investigation of the association between the angular motion characteristics of the axle-chain system and clubhead speed in skilled golfers. Sixty-six male golfers (handicap ≤ 3) performed full-effort shots in three club conditions: driver, 5-iron, and pitching wedge. Swing trials were captured with an optical motion capture system, and the hip/shoulder lines, upper lever, club, and wrist angular positions/velocities were calculated. Time, angular position, range of rotation, and peak angular velocity parameters were extracted and their correlation coefficients (Pearson and Spearman) to actual and normalized clubhead speeds were computed (p < 0.05). Higher clubhead speed was associated with shorter downswing phases, larger rotation ranges (hip/shoulder lines, and upper lever), larger hip–shoulder separation at impact, delayed transitions (hip line and upper lever), faster rotations (backswing, downswing, and impact), and larger angular velocity losses (hip line and upper lever) with additional club- and body-specific correlations. Clubhead speed was not well associated with wrist cock angles/ranges, X-factors/stretches, and timings of the downswing peak. Full article
(This article belongs to the Special Issue Applied Biomechanics: Sport Performance and Injury Prevention)
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18 pages, 7679 KB  
Article
A Real-Time Wearable Assist System for Upper Extremity Throwing Action Based on Accelerometers
by Kuang-Yow Lian, Wei-Hsiu Hsu, Deepak Balram and Chen-Yi Lee
Sensors 2020, 20(5), 1344; https://doi.org/10.3390/s20051344 - 29 Feb 2020
Cited by 5 | Viewed by 3786
Abstract
This paper focuses on the development of a real-time wearable assist system for upper extremity throwing action based on the accelerometers of inertial measurement unit (IMU) sensors. This real-time assist system can be utilized to the learning, rectification, and rehabilitation for the upper [...] Read more.
This paper focuses on the development of a real-time wearable assist system for upper extremity throwing action based on the accelerometers of inertial measurement unit (IMU) sensors. This real-time assist system can be utilized to the learning, rectification, and rehabilitation for the upper extremity throwing action of players in the field of baseball, where incorrect throwing phases are recognized by a delicate action analysis. The throwing action includes not only the posture characteristics of each phase, but also the transition of continuous posture movements, which is more complex when compared to general action recognition with no continuous phase change. In this work, we have considered six serial phases including wind-up, stride, arm cocking, arm acceleration, arm deceleration, and follow-through in the throwing action recognition process. The continuous movement of each phase of the throwing action is represented by a one-dimensional data sequence after the three-axial acceleration signals are processed by efficient noise filtering based on Kalman filter followed by conversion processes such as leveling and labeling techniques. The longest common subsequence (LCS) method is then used to determine the six serial phases of the throwing action by verifying the sequence data with a sample sequence. We have incorporated various intelligent action recognition functions including automatic recognition for getting ready status, starting movement, handle interrupt situation, and detailed posture transition in the proposed assist system. Moreover, a liquid crystal display (LCD) panel and mobile interface are incorporated into the developed assist system to make it more user-friendly. The real-time system provides precise comments to assist players to attain improved throwing action by analyzing their posture during throwing action. Various experiments were conducted to analyze the efficiency and practicality of the developed assist system as part of this work. We have obtained an average percentage accuracy of 95.14%, 91.42%, and 95.14%, respectively, for all the three users considered in this study. We were able to successfully recognize the throwing action with good precision and the high percentage accuracy exhibited by the proposed assist system indicates its excellent performance. Full article
(This article belongs to the Special Issue Sensor-Based Assistive Devices and Technology)
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9 pages, 743 KB  
Article
Relationship between Kinematic Variables of Jump Throwing and Ball Velocity in Elite Handball Players
by Abdel-Rahman Akl, Ibrahim Hassan, Amr Hassan and Phillip Bishop
Appl. Sci. 2019, 9(16), 3423; https://doi.org/10.3390/app9163423 - 20 Aug 2019
Cited by 7 | Viewed by 7531
Abstract
The purpose of this pilot study was to evaluate the relationship between the kinematic variables of the right hand and left leg with ball velocity during jump-throwing phases in handball for better-informed training. We investigated ball velocity and the key kinematic variables of [...] Read more.
The purpose of this pilot study was to evaluate the relationship between the kinematic variables of the right hand and left leg with ball velocity during jump-throwing phases in handball for better-informed training. We investigated ball velocity and the key kinematic variables of jump throwing during different throwing phases in three strides. Ten right-handed male handball professional players who had competed in the Egyptian Handball Super League participated in this study. Jump throwing performance was divided into three phases (cocking, acceleration and follow-through), which included eight events during the throwing. Five trials were captured for each player, and a 3D analysis was performed on the best trial. Results indicated that the velocity of the throwing hand was the most important variable during jump throwing, which was correlated with ball velocity during the three phases of performance in four events: Initial contact (IC) (r = 0.66*), initial flight (IF) (r = 63*), maximum height of the throwing hand (Max-HH) (r = 0.78*) and ground contact (GC) (r = 0.83*). In addition, the initial flight was the most important event in which players need to be using the best angles during performance, particularly the shoulder angle. Full article
(This article belongs to the Special Issue Biomechanical Spectrum of Human Sport Performance)
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12 pages, 349 KB  
Article
Kinematics and Kinetics of Youth Baseball Catchers and Pitchers
by Gretchen Oliver, Keith Lohse and Sarah Gascon
Sports 2015, 3(3), 246-257; https://doi.org/10.3390/sports3030246 - 1 Sep 2015
Cited by 2 | Viewed by 7019
Abstract
The purpose of this study was to compare the throwing kinematics and kinetics of youth catchers and pitchers. It was hypothesized that catchers and pitchers would exhibit differences throughout the throwing motion. Descriptive statistics were used to investigate kinematics during the four events [...] Read more.
The purpose of this study was to compare the throwing kinematics and kinetics of youth catchers and pitchers. It was hypothesized that catchers and pitchers would exhibit differences throughout the throwing motion. Descriptive statistics were used to investigate kinematics during the four events of throwing: foot contact (FC), maximum shoulder external rotation (MER), ball release (BR) and maximum shoulder internal rotation (MIR). Additionally, kinetics were investigated within phases of the events: Phase 1 (cocking; FC to MER), Phase 2 (acceleration; MER to BR) and Phase 3 (deceleration; BR to MIR). Results revealed significant difference in torso flexion, lateral flexion, pelvis lateral flexion and segment velocities between the catchers and pitchers. Based on data from the current study, it appears that the youth catchers execute their throw as they have been instructed. It is unclear if the throwing mechanics displayed by these youth are efficient for a catcher, thus further investigation is needed to determine long-term injury susceptibility. Full article
(This article belongs to the Special Issue Sports Medicine)
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