To the media,
K Trust Co., Ltd. (hereinafter "K Trust"), represented by President Tomoko Hirakawa and President Kazunori Hirakawa, has entered into a business partnership with JA Ochi-Imabari (represented by Chairman Hirohisa Watanabe and contact Kazutoyo Akutagawa) to advance the licensing and commercialization of the "Infinite-Key Multi-Time-Varying Establishment Point Theory" and other intellectual properties invented by Yuki Takeuchi of Point Kikou Co., Ltd. (hereinafter "Yuki Takeuchi").
Through this partnership, both parties will promote the widespread adoption and social implementation of the "Infinite-Key Multi-Time-Varying Establishment Point Theory," contributing to the improvement and resolution of various cybersecurity challenges faced by modern society—including AI attacks, ransomware, server intrusions, phishing scams, and secondary or tertiary damages resulting from data breaches. Furthermore, by advancing licensing initiatives across diverse sectors such as corporations, local governments, agricultural organizations, financial institutions, healthcare providers, and educational institutions, the partnership aims to strengthen cyber defense capabilities at the community and national levels, ultimately realizing a safe and secure digital society.
JA Ochi-Imabari
Background
In recent years, rapid advancements in AI technology have led to increasingly sophisticated and automated cyberattacks.
Incidents involving AI-driven automated attacks, ransomware, unauthorized access, malware, targeted attacks, and phishing scams are expanding globally, placing corporations, local governments, financial institutions, healthcare providers, and educational institutions under severe threat.
In the international cybersecurity field, there is growing recognition that defense strategies must shift from relying solely on fixed boundaries and entry points to emphasizing continuous trust verification and dynamic defense mechanisms.
Moreover, real-world cyberattacks often combine multiple tactics—not just exploiting vulnerabilities, but also including credential theft, privilege escalation, lateral movement, and internal spread—amplifying the scale of damage.
K Trust's Perspective on the Core Challenge of Modern Cyberattacks
K Trust identifies one of the most critical challenges in modern cyberattacks as the existence of "fixed attack establishment points."
In traditional systems, elements such as fixed IDs, fixed passwords, fixed encryption keys, fixed APIs, fixed administrator privileges, fixed sessions, and fixed communication routes are often maintained over long periods.
Attackers can repeatedly study and analyze these fixed elements, leveraging AI and automation tools to conduct persistent and repetitive attacks. While vulnerability mitigation is extremely important, as long as fixed attack targets remain, threats such as repeated attacks, concentrated single-point attacks, credential theft, privilege escalation, and the lateral spread of ransomware or viruses will persist.
Furthermore, while many systems implement extensive defenses before access is granted, challenges remain in areas such as continuous post-access verification, monitoring for anomalous behavior after access, and detecting privilege escalation after entry.
K Trust believes that in modern cyberattacks, the greater challenge lies not merely in being breached, but in the continued legitimacy of access after intrusion.
After gaining access, attackers may exploit fixed IDs, fixed privileges, fixed communication routes, and fixed APIs to escalate privileges, move laterally within networks, steal data, spread ransomware, leak customer information, or gather intelligence for phishing scams. Therefore, this theory emphasizes not only whether access was achieved, but also whether legitimacy is continuously maintained after access.
By implementing continuous monitoring, ongoing verification of legitimacy, and persistent trust assessment, the theory aims to establish a new defensive approach that suppresses the expansion of damage post-intrusion.
Secondary and Tertiary Damages Caused by Data Breaches
The impact of modern cyberattacks extends beyond system outages and data encryption.
Information leaked through ransomware attacks or unauthorized access can lead to secondary and tertiary damages such as phishing scams, impersonation, account takeovers, fraudulent transfers, and targeted attacks.
Leaked personal information—including names, email addresses, phone numbers, affiliations, and transaction records—can be exploited as material for more sophisticated attacks. As a result, the damage can extend beyond the organization to affect customers, cooperative members, business partners, affiliated companies, and local residents.
What is the Infinite-Key Multi-Time-Varying Establishment Point Theory?
The Infinite-Key Multi-Time-Varying Establishment Point Theory is a next-generation security framework based on the novel concept of not relying on fixed conditions for access establishment.
This theory combines techniques such as infinite key generation, multi-layering, time variation, short-duration validity, one-time-only access, multi-layered establishment point control, AI monitoring, and continuous trust evaluation to reduce dependency on fixed attack establishment points.
The core principles of this theory are: avoid fixed elements, implement time-varying mechanisms, shorten lifespans, distribute access points, continuously monitor even after access is granted, and invalidate access upon detection of anomalies.
Objectives of the Theory
The Infinite-Key Multi-Time-Varying Establishment Point Theory is a next-generation, revolutionary security model designed to make the success of AI attacks, ransomware, server intrusions, phishing scams, credential theft, unauthorized access, malware infections, privilege escalation, and lateral movement extremely difficult—potentially rendering them ineffective.
Rather than merely focusing on preventing intrusion, as traditional models do, this theory aims for a new defensive paradigm: making post-intrusion persistence difficult, preventing attack conditions from being established in the first place, and minimizing the expansion of damage.
Purpose of the Business Partnership
Licensing Promotion → Advance licensing of the Infinite-Key Multi-Time-Varying Establishment Point Theory and promote its adoption by corporations and organizations.
Social Implementation → Promote proof-of-concept (PoC) projects to achieve practical application and drive social implementation.
Contribution to Local Communities → Enhance cyber defense capabilities within local communities.
National Expansion → Promote adoption across corporations, local governments, agricultural cooperatives, financial institutions, healthcare providers, and educational institutions.
Expected Outcomes → Widespread adoption of the theory is expected to contribute to corporate data protection, customer and member information security, protection of regional infrastructure, financial data security, safeguarding critical systems, reducing data breach risks, mitigating secondary damages after leaks, suppressing phishing and impersonation fraud, limiting ransomware spread, reducing reliance on PINs and fixed credentials, and realizing new authentication and defense models suited for the AI era.
FACT BOX
- Source: PR TIMES
- Category: Partnership