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<front>
<journal-meta>
  <journal-id journal-id-type="publisher-id">68</journal-id>
  <journal-id journal-id-type="short-title">gpessr</journal-id>
  <journal-id journal-id-type="doi">10.31703/gpessr</journal-id>
  <journal-title-group>
    <journal-title>Global Physical Education &amp; Sports Sciences Review</journal-title>
    <abbrev-journal-title abbrev-type="publisher">gpessr</abbrev-journal-title>
  </journal-title-group>
  <issn publication-format="print">2788-5070</issn>
  <issn publication-format="electronic">2788-5089</issn>
  <self-uri xlink:href="https://gpessrjournal.com"/>
  <publisher>
    <publisher-name>Humanity Publications</publisher-name>
    <publisher-loc>Pakistan</publisher-loc>
  </publisher>
</journal-meta>
<article-meta>
  <article-id pub-id-type="publisher-id">395044</article-id>
  <article-id pub-id-type="doi">10.31703/gpessr.2023(VI-I).03</article-id>
  <article-id pub-id-type="other" specific-use="submission-id">5511</article-id>
  <article-version article-version-type="publisher">1.0</article-version>
  <article-categories>
    <subj-group subj-group-type="heading">
      <subject>article</subject>
    </subj-group>
  </article-categories>
  <title-group>
    <article-title xml:lang="en">Effect of Plyometric Training on Flexibility of Balochistan Female Cricket Athletes</article-title>
  </title-group>
<contrib-group>
  <contrib contrib-type="author" seq="1" corresp="yes">
    <name>
      <surname>Aslam</surname>
      <given-names>Muhammad</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Conceptualization" vocab-term-identifier="https://credit.niso.org/contributor-roles/conceptualization/">Conceptualization</role>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Writing – original draft" vocab-term-identifier="https://credit.niso.org/contributor-roles/writing-original-draft/">Writing – original draft</role>
    <xref ref-type="aff" rid="aff1"/>
    <xref ref-type="corresp" rid="cor1"/>
  </contrib>
  <contrib contrib-type="author" seq="2">
    <name>
      <surname>Shah</surname>
      <given-names>Faiz ul Hassan</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Writing – review &amp; editing" vocab-term-identifier="https://credit.niso.org/contributor-roles/writing-review-editing/">Writing – review &amp; editing</role>
    <xref ref-type="aff" rid="aff2"/>
  </contrib>
  <contrib contrib-type="author" seq="3">
    <name>
      <surname>Ullah</surname>
      <given-names>Kaleem</given-names>
    </name>
    <role vocab="credit" vocab-identifier="https://credit.niso.org/" vocab-term="Writing – review &amp; editing" vocab-term-identifier="https://credit.niso.org/contributor-roles/writing-review-editing/">Writing – review &amp; editing</role>
    <xref ref-type="aff" rid="aff3"/>
  </contrib>
  <aff id="aff1">
    <label>1</label>
    <institution-wrap>
      <institution>Department of Physical Education Health &amp; Sports Science, Government College of Physical Education, Quetta</institution>
    </institution-wrap>
    <named-content content-type="author-role">Lecturer</named-content>
    <addr-line>Balochistan</addr-line>
    <country>Pakistan</country>
  </aff>
  <aff id="aff2">
    <label>2</label>
    <institution-wrap>
      <institution>Department of Physical Education and Sports Science, University of Jamshoro</institution>
    </institution-wrap>
    <named-content content-type="author-role">PhD Scholar</named-content>
    <addr-line>Sindh</addr-line>
    <country>Pakistan</country>
  </aff>
  <aff id="aff3">
    <label>3</label>
    <institution-wrap>
      <institution>Department of Physical Education and Sports Science, University of Karachi</institution>
    </institution-wrap>
    <named-content content-type="author-role">MPhil Scholar</named-content>
    <addr-line>Sindh</addr-line>
    <country>Pakistan</country>
  </aff>
</contrib-group>
<author-notes>
  <corresp id="cor1">Corresponding Author: Muhammad Aslam, Lecturer, Department of Physical Education Health &amp; Sports Science, Government College of Physical Education, Quetta, Balochistan, Pakistan</corresp>
<fn fn-type="COI-statement" id="fn-coi">
  <p>The authors declare that they have no conflicts of interest.</p>
</fn>
<fn fn-type="ethics-statement" id="fn-ethics">
  <p>Informed consents were taken from participants,
parents respective region presidents, secretary and team manager.</p>
</fn>
<fn fn-type="data-availability-statement" id="fn-data">
  <p>Data sharing is not applicable to this article.</p>
</fn>
</author-notes>
<pub-date pub-type="epub" date-type="pub" publication-format="electronic">
  <day>31</day>
  <month>12</month>
  <year>2023</year>
</pub-date>
<pub-date pub-type="collection">
  <month>12</month>
  <year>2023</year>
</pub-date>
<pub-date date-type="pub" publication-format="print">
  <day>19</day>
  <month>04</month>
  <year>2024</year>
</pub-date>
  <volume>6</volume>
  <issue>1</issue>
  <season>Fall</season>
  <fpage>16</fpage>
  <lpage>23</lpage>
  <history>
    <date date-type="accepted">
      <day>19</day>
      <month>04</month>
      <year>2024</year>
    </date>
  </history>
<funding-group>
  <funding-statement>
<p>The authors received no specific funding for this work.</p>
  </funding-statement>
</funding-group>
<permissions>
  <copyright-year>2023</copyright-year>
  <copyright-holder>Humanity Publications</copyright-holder>
  <license license-type="open-access" xml:lang="en" xlink:href="https://creativecommons.org/licenses/by/4.0/">
    <license-p>This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License.</license-p>
  </license>
</permissions>
<self-uri content-type="text/html" xlink:href="https://gpessrjournal.com/article/effect-of-plyometric-training-on-flexibility-of-balochistan-female-cricket-athletes"/>
<self-uri content-type="pdf" xlink:href="https://gpessrjournal.com/pdf/gpessr/r7hqr0setX.pdf"/>
<supplementary-material id="suppl-pdf" content-type="pdf" xlink:href="https://gpessrjournal.com/pdf/gpessr/r7hqr0setX.pdf">
  <label>PDF</label>
  <caption>
    <title>Full Text PDF</title>
  </caption>
</supplementary-material>
  <abstract>
    <p>The study sought to determine the impact of a 12-week plyometric workout regimen on the flexibility of female cricket players in Balochistan. Twenty participants were divided into two groups: an experimental group that received plyometric workouts, and a control group that wasn&apos;t involved in any specific physical activity program. Flexibility was assessed using the sit-and-reach test, and anthropometric characteristics were measured before and after the training period. The results showed a significant increase in flexibility in the experimental group compared to the control group. Additionally, the experimental group exhibited significant changes in weight and waist-hip ratio post-intervention. These findings suggest that plyometric training can effectively improve flexibility in female cricket athletes.Additional studies might concentrate on the long-term consequences of plyometric training and address potential limitations such as diet and weather conditions to enhance understanding further.</p>
  </abstract>
<kwd-group kwd-group-type="author-keywords">
  <kwd>Plyometric Training</kwd>
  <kwd>Flexibility</kwd>
  <kwd>Female Cricket Athletes</kwd>
  <kwd>Balochistan</kwd>
  <kwd>Sit-and-reach Test</kwd>
  <kwd>Anthropometric Attributes</kwd>
  <kwd>Sports Training</kwd>
  <kwd>Athletic Performance</kwd>
</kwd-group>
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</front>
<body>
<sec id="sec-1">
  <title>Introduction</title>
<p>The
amortization phase is a critical component of plyometric training, representing
the transition between the eccentric (lengthening) and concentric (shortening)
muscle actions. This phase is vital because it determines how effectively
maintained flexible energy from the eccentric phase is transferred into the
subsequent concentric phase. A shorter amortization phase is associated with
greater power output and performance gains. In plyometric exercises, such as
jumps or throws, the goal is to minimize the amortization phase to efficiently
use the stored elastic energy and enhance force production in the subsequent
concentric phase. Training methods focus on optimizing this phase through
specific exercises and techniques, such as depth jumps, which require athletes
to quickly transition from the landing (eccentric) to the takeoff (concentric)
phase, reducing the time spent in amortization. Singla, D., &amp; Hussain, M. E. <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Singla">(2019).</ext-link></p><p>Factors
that can influence the efficiency of the stretch-shortening cycle and the
amortization phase include muscle stiffness, muscle fibre type, and
neuromuscular coordination. Proper plyometric training can improve these
factors, leading to enhanced athletic performance. Concentric phase: This is
the explosive phase, where the muscle shortens and contracts, releasing the
stored energy. Plyometric training can improve muscular power by enhancing the
efficiency of the SSC, allowing athletes to generate more force in less time.
It can also improve neuromuscular coordination, which is essential for
performing complex movements with speed and accuracy. In the context of female
cricket athletes in Baluchistan, plyometric training can be particularly
beneficial for improving agility, speed, and power, which are important for
success in the sport. Additionally, plyometric training can also have positive
effects on flexibility, as the rapid stretching and contracting of muscles can
help improve their elasticity and range of motion. Robin, V. M. <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Robin">(2022).</ext-link></p><p>Plyometric
training is a popular method used in sports to enhance power and agility by
rapidly stretching and then contracting muscles. In the context of female
cricket athletes in Baluchistan, plyometric training can be a valuable tool for
improving not only power and agility but also flexibility. Flexibility is
crucial for cricket players, which can improve performance and reduce the risk
of injuries. Research on the effects of plyometric training on the flexibility
of female cricket athletes, particularly in Baluchistan, is limited. This study
aims to address this gap by examining how plyometric training impacts the
flexibility of female cricket athletes in Baluchistan. Understanding these effects
can offer valuable insights for coaches, trainers, and athletes, aiding in the
development of more tailored and effective training programs. Ultimately, this
research could enhance performance and reduce injury risk among female cricket
athletes in Baluchistan. Gayatri,
C., &amp; Sarojini, G. S. <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Gayatri">(2022).</ext-link></p>
</sec>
<sec id="sec-2">
<p>The
physical development of female cricket players is crucial for their performance
and injury prevention. Several key areas of physical development are
particularly important for female cricket players: Strength: Building strength
is essential for generating power in batting, bowling, and fielding. Strength
training should focus on the muscles used in cricket-specific movements, such
as the legs, core, and upper body. Speed and Agility: Cricket involves quick
movements and changes of direction. Speed and agility training can help players
react faster and move more efficiently on the field. Endurance: Cricket matches
can be long and physically demanding. Developing endurance through aerobic and
anaerobic training can help players maintain performance throughout a match.
Flexibility: Flexibility is important for cricket players to achieve a full
range of motion in their movements, which can improve performance and reduce
the risk of injury. Stretching and mobility exercises are key for improving
flexibility. Sanaullah, M.,
Sunble, S., Afzal, M. F., Khan,
L., Arif, A., &amp; Qadir, Z., <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Sanaullah">(2023).</ext-link></p><p>Balance
and Coordination: Good balance and coordination are essential for cricket
players to execute skills such as batting, bowling, and fielding effectively.
Balance and coordination exercises can help improve these skills. Injury
Prevention: Female cricket players should also focus on injury prevention
strategies, absolutely, it&apos;s crucial for female cricket athletes to adhere to
proper warm-up and cool-down routines, wear suitable protective gear, and
maintain good technique in their skills. These practices can significantly
reduce the risk of injuries and enhance performance, ensuring the athletes&apos;
long-term health and success on the field. Overall, a well-rounded training
program that addresses these key areas of physical development is essential for
female cricket players to reach their full potential and stay healthy on the
field. Ramachandran, A. K., Singh,
U., &amp; Lathlean, T. J. <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Ramachandran">(2022).</ext-link></p><p>Flexibility is a crucial component of athletic performance,
influencing an athlete&apos;s ability to move effectively and efficiently during
sports activities. In cricket, a sport that requires a combination of strength,
agility, and flexibility, enhancing flexibility can contribute to improved
performance and reduced risk of injury. Plyometric training, characterized by
rapid and explosive movements, is demonstrated to improve multiple facets of
athletic performance, which includes strength, power, and agility. However, its effects on flexibility,
particularly in female cricket athletes, remain relatively unexplored.</p><p>Balochistan, a province in Pakistan, boasts a rich cricketing
tradition and has produced several talented players. Despite this, there is a
lack of research focusing on the training methods and physical attributes of
female cricketers in the region. Understanding the effects of plyometric training
on the flexibility of Balochistan&apos;s female cricket athletes could provide
valuable insights for coaches, trainers, and athletes looking to improve
performance and reduce injury risk. The present research intends to fill
the void by investigating the effect of a 12-week plyometric workout program on the flexibility of female cricket
athletes in Balochistan. The study hypothesizes that plyometric training will
lead to improvements in flexibility, as assessed by a sit-and-reach test. The
findings of this study could have implications for training programs designed
to enhance the performance of female cricket athletes in</p><p>Balochistan
and beyond.</p>
</sec>
<sec id="sec-3">
  <title>Materials and Methodology</title>
<p>The goal of this study was to figure
out what effect performing plyometric exercises has on the flexibility &amp; anthropometric attributes of
female cricket athletes in Baluchistan.</p>
</sec>
<sec id="sec-4">
  <title>Study Site</title>
<p>The study was conducted at Quetta
region female cricket team Bugti cricket stadium in Quetta, Baluchistan.</p>
</sec>
<sec id="sec-5">
  <title>Participants</title>
<p>Twenty
participants met the study&apos;s inclusion criteria and The participants were
separated into two (2) groups: test (EG, N=10) and control (CG, N=10). The
experimental group followed a 12-week plyometric training protocol, whereas the
control group did not participate in any structured exercise program. The
plyometric training protocol included exercises such as jump squats, box jumps,
and lunge jumps, aimed at enhancing lower body strength and power. The
sit-and-reach test was used to assess flexibility and physical measurements
were taken before and after the period of exercise to determine height, weight,
BMI, and body fat percentage.</p> <p>Statistical
analysis, including paired t-tests, and the study compared pre- and
post-training measurements, with a significance level of p &lt; 0.05.</p> <p><bold><break/> </bold></p><p><bold>Table 1</bold></p> <table-wrap id="table1"><label>Table 1</label><caption><title>Table 1</title></caption><table><tbody><tr><td> <p><bold>S. No</bold></p> </td><td valign="top"> <p><bold>Inclusion </bold></p> </td><td valign="top"> <p><bold>Exclusion</bold></p> </td></tr><tr><td> <p>1.</p> </td><td valign="top"> <p>No Chronic disease</p> </td><td valign="top"> <p>Chronic disease</p> </td></tr><tr><td> <p>2.</p> </td><td valign="top"> <p>No physical disability</p> </td><td valign="top"> <p>Physical disability</p> </td></tr><tr><td> <p>3.</p> </td><td valign="top"> <p>Age between 16-22 years</p> </td><td valign="top"> <p>Age below 16 and above 22</p> </td></tr></tbody></table></table-wrap>
</sec>
<sec id="sec-6">
  <title>Training Protocol for the Participants</title>
<p>In this study, the researcher
administered a 12-week plyometric protocol to the participants.</p>
</sec>
<sec id="sec-7">
  <title>Selection of Tests and Procedures</title>
<p>In this study, the researcher
selected the test of sitting and reaching to evaluate flexibility, particularly
focusing on the hamstring muscles and back of the leg muscles, in female
cricket athletes from Baluchistan. The sit-and-reach test is a widely used
measure of flexibility and is often employed in fitness assessments and
research studies due to its simplicity and effectiveness. In this test, the
female cricketers sit on the floor with their legs raised in front and reach as
far along a measurement line as necessary. The length of time travelled is
recorded as well, giving an assessment of flexibility within the back region
and the hamstrings. The siting &amp; reaching test was chosen for its ease of
administration and relevance to the specific flexibility requirements of
cricket athletes.</p> <p><bold><break/> </bold></p><p><bold>Figure 1</bold></p>
</sec>
<sec id="sec-8">
<p><italic>Sit &amp; Reach Test</italic></p>
</sec>
<fig id="fig-1"><alt-text>Selection of Tests and Procedures</alt-text><caption><title>Selection of Tests and Procedures</title></caption><graphic xlink:href="https://gpessrjournal.com/r7hqr0setX/selection of test.png"/></fig>
<sec id="sec-9">
  <title>Analysis of the Data</title>
<p>The
data analysis for the study was conducted using inferential statistical
methods, specifically the paired and T-tests with independent
samples. The statistical analyses were performed using IBM and the statistical package for the Social
Sciences (SPSS) version 27</p>
</sec>
<sec id="sec-10">
  <title>Results</title>
<table-wrap id="table2"><label>Table 2</label><caption><title>Paired sample T-test demonstrating the difference between experimental
and control groups&apos; flexibility before and after testing.</title></caption><table><thead><tr><th valign="top"> <p><bold>Name of variable</bold></p> </th><th valign="top"> <p><bold>Groups</bold></p> </th><th> <p><bold>Pre-test results(Mean ± SD)</bold></p> </th><th> <p><bold>Post-test</bold></p> <p><bold>results
   (Mean ±</bold></p> <p><bold>SD)</bold></p> </th><th> <p><bold>Pre
   and</bold></p> <p><bold>post-
   test</bold></p> <p><bold>results
   (Mean ±</bold></p> <p><bold>SD)
   difference</bold></p> </th><th>  <p><bold>t</bold></p> </th><th> <p><bold>Sig.(2-</bold></p> <p><bold>tailed)</bold></p> </th></tr></thead><tbody><tr><td valign="top"> <p>Flexibility</p> </td><td valign="top"> <p>CG</p>   <p>EG</p> </td><td> <p>25.40000±5.358275</p>   <p>27.60000±5.274677</p> </td><td> <p>7.60000±5.796551</p>   <p>39.10000±5.108816</p> </td><td> <p>2.200±0.43827 -1.500</p>  <p>11.500±0.16586 -5.983</p> </td><td>  </td><td> <p>168</p>   <p>.000</p> </td></tr></tbody></table></table-wrap> <p><italic>Significant level = 0.05, SD=Standard Deviation </italic></p>  <p><break/></p> <p>Table 02 shows no Significant
differences in the control group (CG) for the pre-and post-intervention
flexibility of Baluchistan female cricket athletes. The pre-intervention mean
flexibility was 25.40 ± 5.36, and post-intervention flexibility was 27.60 ± 5.80.
The paired samples t-test yielded a t-value of 1.500 (df = 10) and a p-value of
0.168, indicating no meaningful difference in flexibility before and after the
intervention in the control group. In contrast, Table 01 demonstrates a
significant difference in the experimental group (EG) for the pre-and
post-intervention flexibility of Baluchistan female cricket athletes. The
pre-intervention mean flexibility was 27.60 ± 5.27, and post-intervention
flexibility was 39.10 ± 5.11. The paired samples t-test yielded a t-value of
-5.983 (df = 10) and a p-value of &lt; 0.001, indicating a significant increase
in flexibility in the experimental group after the intervention.</p> <p><bold><break/> </bold></p>  <table-wrap id="table3"><label>Table 3</label><caption><title>Paired sample T-test demonstrating the distinction among anthropometric
measurement attributes such as weight, and the waist-hip ratio. Pre and
subsequent tests of (experimental and control groups)</title></caption><table><tbody><tr><td valign="top"> <p><bold>Name
  of</bold></p> <p><bold>variable</bold></p> </td><td valign="top">  <p><bold>Groups</bold></p> </td><td> <p><bold>Pre-test results</bold></p> <p><bold>(Mean ± SD)</bold></p> </td><td> <p><bold>Post-test</bold></p> <p><bold>results</bold></p> <p><bold>(Mean ± SD)</bold></p> </td><td> <p><bold>Pre and post</bold></p> <p><bold>test results</bold></p> <p><bold>(Mean ± SD)</bold></p> <p><bold>difference</bold></p> </td><td>  <p><bold>T</bold></p> </td><td> <p><bold>Sig.(2- tailed)</bold></p> </td></tr><tr><td valign="top">   <p>Weight</p> <p>Waist hip
  ratio</p> </td><td valign="top"> <p>CG</p>  <p>EG</p>  <p>CG</p>  <p>EG</p> </td><td> <p>46.50000±6.132790</p>  <p>61.50000±8.058812</p>  <p>28.90000±1.370320</p>  <p>31.60000±1.955050</p> </td><td> <p>45.70000±6.864563</p>  <p>55.90000±7.125073</p>  <p>28.90000±1.523884</p>  <p>29.60000±1.264911</p> </td><td> <p>0.8±0.731773
  1.714</p> <p>5.6±0.933739
  14.000</p> <p>0±0.153664
  0.000</p> <p>2±0.690139
  6.000</p> </td><td>  </td><td> <p>.121</p>  <p>.000</p>  <p>1.00</p>  <p>.000</p> </td></tr></tbody></table></table-wrap> <p><italic>Significant
level = 0.05, SD=Standard Deviation </italic></p>  <p><break/></p><p>Table 03
presents the pre-and post-intervention characteristics of the control and
experimental groups of Baluchistan female cricket athletes. The prior to and
after the intervention data were compared using a paired samples t-test
characteristics of the control group (CG). The results indicate no significant
difference in the control group regarding pre- and post-intervention
characteristics. The mean and standard deviation values for weight and
waist-hip ratio in the control group were as follows: pre-intervention (Weight
= 46.500 ± 6.132790, waist-hip ratio = 28.900 ± 1.370320) and post-intervention
(Weight = 45.700 ± 6.864563, waist-hip ratio = 28.900 ± 1.523884), with t
values (10) = 1.714, 0.000, and p-values &gt; 0.05 (weight = 0.121, waist-hip
ratio = 1.000).</p><p>Similarly, a
t-test of paired was used to assess</p><p>the pre-and the intervention traits
of the group that underwent the experiment (EG). The results indicate a
significant difference in the experimental group regarding pre- and
post-intervention characteristics. The mean and standard deviation values for
weight and waist-hip ratio in the experimental group were as follows:
pre-intervention (Weight = 61.50000 ± 8.058812, waist-hip ratio = 31.60000 ±
1.955050) and post-intervention (Weight = 55.90000 ± 7.125073, waist-hip ratio
= 29.60000 ± 1.264911), with t values (10) = 14.000, 6.000, and p-values &lt;
0.05 (weight = 0.000, waist-hip ratio = 0.000). These results indicate a
significant difference in the experimental group regarding pre- and
post-intervention characteristics.</p>
</sec>
<sec id="sec-11">
  <title>Discussion</title>
<p>The primary
goal of this research was to determine the impact of a 12-week plyometric
exercise schedule on the mobility of female cricketers from Baluchistan. The
analysis revealed no significant difference in flexibility among Baluchistan
female cricket athletes in the control group (p = 0.168, above the significance
level of 0.05). This aligns with previous studies that have also reported
insignificant differences in flexibility prior to specific training
interventions. Maker, R., &amp;
Taliep, M. S. <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Maker">(2021).</ext-link></p><p>In
contrast, the present study reported a significant improvement in the
flexibility of Baluchistan female cricket athletes in the experimental group
after the intervention. This aligns with previous findings showing that
plyometric training significantly improved the skills of female soccer and
tennis players, which corresponds to an improved level of flexibility (Mengesh
et al., 2015). Plyometric training has been shown to increase adolescent
cricket players&apos; strength, agility, and jump performance, with the plyometric
group showing a greater improvement (6%) than the control group. Saran, M., Pawaria, S., &amp; Kalra, S. <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Saran">(2022).</ext-link></p><p>The
findings indicate a significant enhancement in flexibility following the
post-training assessment, suggesting that the 12-week plyometric training
program positively influenced the selected physical parameter, particularly
flexibility, among female cricket athletes from Baluchistan. This aligns with
prior research by Aydogmus (2022) and Ozmen and Aydogmus (2022), which observed
that plyometric training led to increased strength, agility, and jump
performance in adolescent cricket players, with the plyometric group exhibiting
a 6% greater improvement than the control group. Additionally, Pancar et al.
(2021) and Miller et al. (2022) noted that a 6-week plyometric training regimen
can be beneficial for enhancing athletes&apos; agility, which could prove
advantageous during the final stages of preseason preparation.</p><p>Other
researchers have also found similar positive outcomes in agility with shorter
training periods, such as a 5-week training program (Robinson and Owens, <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Robin">2022</ext-link>). The
training effect was observed in 8-week and 10-week interventions. Hulton, A, Nonnato, A.,. T., Beato, M, &amp;
Brownlee, T. <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Hulton">(2022).</ext-link> The
results also showed significant changes in anthropometric variables such as
weight and waist-hip ratio post-intervention. These findings are consistent
with previous research indicating that long-term plyometric training can
improve flexibility, upper and lower body strength, weight, and waist-hip
ratio. Sole, C. J., Bellon, C. R.,
&amp; Beckham, G. K. <ext-link ext-link-type="uri" xlink:href="file:///C:/Users/Muhammad%20Ali/AppData/Local/Microsoft/Windows/INetCache/IE/QDRABGKK/3-EFFECT%20OF%20PLYOMETRIC%20TRAINING%20ON%20FLEXIBILITY%5b2%5d.docx#Sole">(2022).</ext-link></p>
</sec>
<sec id="sec-12">
  <title>Limitation</title>
<p>A potential limitation of the study
was the lack of control over the subjects&apos; diets. Addressing this gap in future
studies could provide a better understanding of the phenomena under
investigation. Another limitation was the weather conditions during the
intervention, which took place on open grounds and in cold weather. Conducting
the intervention in controlled and normal weather conditions could lead to more
reliable outcomes.</p>
</sec>
<sec id="sec-13">
  <title>Recommendations</title>
<p>1.       Regular
participation in plyometric training, up to 3 to 5 days a week, is beneficial
for girls to improve flexibility.</p> <p>2.       Plyometric
training programs can be helpful in improving flexibility, which may in turn
reduce lower back pain in female cricketers.</p> <p>3.       Plyometric
training programs have the</p> <p>potential
to effectively reduce weight and decrease waist-hip ratio.</p> <p>4.       The
study found a significant effect of 12 weeks of plyometric training on the
selected physical parameters, including flexibility. The researchers recommend
that Quetta region authorities provide maximum opportunities for Quetta girls
to participate in cricket games regularly to improve flexibility.</p> <break/>
</sec>
</body>
<back>
<fn-group content-type="conflict-of-interest">
  <title>Conflict of Interest</title>
  <fn fn-type="conflict">
<p>The authors declare that they have no conflicts of interest.</p>
  </fn>
</fn-group>
<fn-group content-type="ethics-statement">
  <title>Ethics Statement</title>
  <fn fn-type="ethics">
<p>Informed consents were taken from participants,
parents respective region presidents, secretary and team manager.</p>
  </fn>
</fn-group>
<fn-group content-type="data-availability">
  <title>Data Availability</title>
  <fn fn-type="data-availability-statement">
<p>Data sharing is not applicable to this article.</p>
  </fn>
</fn-group>
<app-group>
  <app id="app-suppl">
    <title>Supplementary Materials</title>
<supplementary-material id="suppl-pdf" content-type="pdf" xlink:href="https://gpessrjournal.com/pdf/gpessr/r7hqr0setX.pdf">
  <label>PDF</label>
  <caption>
    <title>Full Text PDF</title>
  </caption>
</supplementary-material>
  </app>
</app-group>
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