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    <title>DEV Community: Pranay Gandhamaneni</title>
    <description>The latest articles on DEV Community by Pranay Gandhamaneni (@gandhamanenip).</description>
    <link>https://dev.to/gandhamanenip</link>
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      <title>DEV Community: Pranay Gandhamaneni</title>
      <link>https://dev.to/gandhamanenip</link>
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    <item>
      <title>Exploring the Power of Artificial Intelligence in Modern Healthcare</title>
      <dc:creator>Pranay Gandhamaneni</dc:creator>
      <pubDate>Sat, 08 Jul 2023 12:29:42 +0000</pubDate>
      <link>https://dev.to/gandhamanenip/exploring-the-power-of-artificial-intelligence-in-modern-healthcare-788</link>
      <guid>https://dev.to/gandhamanenip/exploring-the-power-of-artificial-intelligence-in-modern-healthcare-788</guid>
      <description>&lt;p&gt;Introduction:&lt;br&gt;
In recent years, artificial intelligence (AI) has emerged as a game-changer across various industries, and healthcare is no exception. The integration of AI technologies in healthcare has the potential to revolutionize patient care, diagnostics, treatment, and research. In this blog post, we will delve into the profound impact of AI in modern healthcare and explore its applications, benefits, and potential challenges.&lt;/p&gt;

&lt;p&gt;1) AI-Powered Diagnostics:&lt;/p&gt;

&lt;p&gt;&lt;a href="https://res.cloudinary.com/practicaldev/image/fetch/s--tLcmQIIj--/c_limit%2Cf_auto%2Cfl_progressive%2Cq_auto%2Cw_800/https://dev-to-uploads.s3.amazonaws.com/uploads/articles/vphjpedpeopyxkrxkg5x.png" class="article-body-image-wrapper"&gt;&lt;img src="https://res.cloudinary.com/practicaldev/image/fetch/s--tLcmQIIj--/c_limit%2Cf_auto%2Cfl_progressive%2Cq_auto%2Cw_800/https://dev-to-uploads.s3.amazonaws.com/uploads/articles/vphjpedpeopyxkrxkg5x.png" alt="Image description" width="800" height="600"&gt;&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;One of the most promising applications of AI in healthcare is its ability to enhance diagnostics. Machine learning algorithms can analyze vast amounts of patient data, including medical images, lab results, and genetic information, to aid in the early detection and accurate diagnosis of diseases. We will discuss examples of AI systems such as computer-aided diagnosis (CAD) tools and their role in improving diagnostic accuracy.&lt;/p&gt;

&lt;p&gt;2) Personalized Medicine:&lt;/p&gt;

&lt;p&gt;&lt;a href="https://res.cloudinary.com/practicaldev/image/fetch/s--RMp5EUfI--/c_limit%2Cf_auto%2Cfl_progressive%2Cq_auto%2Cw_800/https://dev-to-uploads.s3.amazonaws.com/uploads/articles/32shu68862w0u04lese6.png" class="article-body-image-wrapper"&gt;&lt;img src="https://res.cloudinary.com/practicaldev/image/fetch/s--RMp5EUfI--/c_limit%2Cf_auto%2Cfl_progressive%2Cq_auto%2Cw_800/https://dev-to-uploads.s3.amazonaws.com/uploads/articles/32shu68862w0u04lese6.png" alt="Image description" width="237" height="212"&gt;&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;AI algorithms can leverage patient-specific data, including genetic information, medical history, and lifestyle factors, to provide personalized treatment recommendations. This enables healthcare providers to deliver targeted therapies, predict treatment outcomes, and minimize adverse effects. We will explore how AI is transforming the field of precision medicine and its potential to revolutionize patient care.&lt;/p&gt;

&lt;p&gt;3)Robotic Surgery and Assistance:&lt;/p&gt;

&lt;p&gt;&lt;a href="https://res.cloudinary.com/practicaldev/image/fetch/s--FNMsJhcs--/c_limit%2Cf_auto%2Cfl_progressive%2Cq_auto%2Cw_800/https://dev-to-uploads.s3.amazonaws.com/uploads/articles/r2y1ljhij5avdz2kvar5.png" class="article-body-image-wrapper"&gt;&lt;img src="https://res.cloudinary.com/practicaldev/image/fetch/s--FNMsJhcs--/c_limit%2Cf_auto%2Cfl_progressive%2Cq_auto%2Cw_800/https://dev-to-uploads.s3.amazonaws.com/uploads/articles/r2y1ljhij5avdz2kvar5.png" alt="Image description" width="300" height="168"&gt;&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;AI-powered surgical robots and robotic-assisted systems are revolutionizing surgical procedures, making them less invasive, more precise, and reducing recovery times. We will explore the advancements in robotic surgery, including examples of robotic-assisted procedures and their impact on patient outcomes.&lt;/p&gt;

&lt;p&gt;4)Predictive Analytics and Disease Prevention:&lt;/p&gt;

&lt;p&gt;By analyzing vast datasets and identifying patterns, AI can help predict disease outbreaks, optimize resource allocation, and improve population health management. We will discuss the use of AI in predictive analytics and its role in proactive disease prevention strategies, including early intervention and targeted public health campaigns.&lt;/p&gt;

&lt;p&gt;Conclusion:&lt;/p&gt;

&lt;p&gt;Artificial intelligence is reshaping the landscape of healthcare, empowering clinicians, researchers, and patients alike. From diagnostics to personalized treatment, disease prevention, and drug discovery, AI is driving innovation and improving patient outcomes. However, it is crucial to navigate the ethical considerations and challenges associated with AI implementation. By embracing AI technologies responsibly, we can unlock the full potential of AI in revolutionizing modern healthcare and delivering better patient care.&lt;/p&gt;

</description>
    </item>
    <item>
      <title>STACK (DATA STRUCTURE)</title>
      <dc:creator>Pranay Gandhamaneni</dc:creator>
      <pubDate>Sat, 01 Jul 2023 04:34:30 +0000</pubDate>
      <link>https://dev.to/gandhamanenip/stack-data-structure-1777</link>
      <guid>https://dev.to/gandhamanenip/stack-data-structure-1777</guid>
      <description>&lt;ol&gt;
&lt;li&gt;What is Stack:
Stack is an linear data structure in which both insertion and deletion take's place at one end which is the TOP Of the Stack.&lt;/li&gt;
&lt;/ol&gt;

&lt;p&gt;Stack is also known as LIFO&lt;br&gt;
LIFO=LAST IN FIRST OUT.&lt;br&gt;
This state's that the element that is inserted at last will come first out.&lt;/p&gt;

&lt;p&gt;&lt;a href="https://res.cloudinary.com/practicaldev/image/fetch/s--0OXjMtJo--/c_limit%2Cf_auto%2Cfl_progressive%2Cq_auto%2Cw_800/https://dev-to-uploads.s3.amazonaws.com/uploads/articles/i1m02qgw40yzixsp2lc6.png" class="article-body-image-wrapper"&gt;&lt;img src="https://res.cloudinary.com/practicaldev/image/fetch/s--0OXjMtJo--/c_limit%2Cf_auto%2Cfl_progressive%2Cq_auto%2Cw_800/https://dev-to-uploads.s3.amazonaws.com/uploads/articles/i1m02qgw40yzixsp2lc6.png" alt="Image description" width="718" height="339"&gt;&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;It is an example of plate's which indicate's the Stack OPeration LIFO.&lt;/p&gt;

&lt;p&gt;There are some Basic operation's which are performed on Stack's&lt;br&gt;
they are :&lt;br&gt;
1.Push()&lt;br&gt;
2.Pop()&lt;br&gt;
3.top()&lt;br&gt;
4.isEmpty()&lt;/p&gt;

&lt;p&gt;Push():&lt;/p&gt;

&lt;p&gt;Adds an item to stack. If the stack is full,then it is said to be &lt;br&gt;
OVERFLOW.&lt;/p&gt;

&lt;p&gt;Pop():&lt;/p&gt;

&lt;p&gt;Remove's an item from the stack.If the stack is empty it is said to be UNDERFLOW.&lt;/p&gt;

&lt;p&gt;Top():&lt;/p&gt;

&lt;p&gt;Return's top element of stack.&lt;/p&gt;

&lt;p&gt;isempty():&lt;/p&gt;

&lt;p&gt;Returns True if stack is empty and false if stack is Full.&lt;/p&gt;

&lt;p&gt;Basic Implementation of stack using array's in c:&lt;/p&gt;

&lt;p&gt;`#include &lt;/p&gt;

&lt;h1&gt;
  
  
  define SIZE 5
&lt;/h1&gt;

&lt;p&gt;int stack[SIZE];&lt;br&gt;
int top = -1;&lt;br&gt;
void push();&lt;br&gt;
void pop();&lt;br&gt;
void display();&lt;br&gt;
int main()&lt;br&gt;
{&lt;br&gt;
    int choice = 0;&lt;br&gt;
    printf("******&lt;strong&gt;&lt;em&gt;Stack operations using array&lt;/em&gt;&lt;/strong&gt;******\n");&lt;br&gt;
    while (choice != 4)&lt;br&gt;
    {&lt;br&gt;
        printf("-----------------------------------------------\n");&lt;br&gt;
        printf("Choose the stack operation to be performed:\n");&lt;br&gt;
        printf("-----------------------------------------------\n");&lt;br&gt;
        printf("1. Push\n2. Pop\n3. Display\n4. Exit\n");&lt;br&gt;
        printf("Enter your choice: ");&lt;br&gt;
        scanf("%d", &amp;amp;choice);&lt;br&gt;
        switch (choice)&lt;br&gt;
        {&lt;br&gt;
            case 1:&lt;br&gt;
                push();&lt;br&gt;
                break;&lt;br&gt;
            case 2:&lt;br&gt;
                pop();&lt;br&gt;
                break;&lt;br&gt;
            case 3:&lt;br&gt;
                display();&lt;br&gt;
                break;&lt;br&gt;
            case 4:&lt;br&gt;
                printf("Exiting...\n");&lt;br&gt;
                break;&lt;br&gt;
            default:&lt;br&gt;
                printf("Please enter a valid choice.\n");&lt;br&gt;
        }&lt;br&gt;
    }&lt;br&gt;
    return 0;&lt;br&gt;
}&lt;br&gt;
void push()&lt;br&gt;
{&lt;br&gt;
    int val;&lt;br&gt;
    if (top == SIZE - 1)&lt;br&gt;
    {&lt;br&gt;
        printf("Overflow: Stack is full!\n");&lt;br&gt;
    }&lt;br&gt;
    else&lt;br&gt;
    {&lt;br&gt;
        printf("Enter the value to be pushed: ");&lt;br&gt;
        scanf("%d", &amp;amp;val);&lt;br&gt;
        top++;&lt;br&gt;
        stack[top] = val;&lt;br&gt;
    }&lt;br&gt;
}&lt;br&gt;
void pop()&lt;br&gt;
{&lt;br&gt;
    if (top == -1)&lt;br&gt;
    {&lt;br&gt;
        printf("Underflow: Stack is empty!\n");&lt;br&gt;
    }&lt;br&gt;
    else&lt;br&gt;
    {&lt;br&gt;
        top--;&lt;br&gt;
    }&lt;br&gt;
}&lt;br&gt;
void display()&lt;br&gt;
{&lt;br&gt;
    if (top == -1)&lt;br&gt;
    {&lt;br&gt;
        printf("Stack is empty.\n");&lt;br&gt;
    }&lt;br&gt;
    else&lt;br&gt;
    {&lt;br&gt;
       printf("Elements inside the stack are:\n");&lt;br&gt;
        for (int i = top; i &amp;gt;= 0; i--)&lt;br&gt;
        {&lt;br&gt;
            printf("%d\n", stack[i]);&lt;br&gt;
        }&lt;br&gt;
    }&lt;br&gt;
}&lt;br&gt;
`&lt;br&gt;
Complexity analysis:&lt;/p&gt;

&lt;p&gt;Push()    O(1)&lt;br&gt;
Pop()     O(1)&lt;br&gt;
isEmpty() O(1)&lt;/p&gt;

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