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Picard Medical / SynCardia Presents Emperor Total Artificial Heart Architecture for the First Time at IEEE EMBC 2026

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Picard Medical (NYSE American: PMI), parent of SynCardia, announced a key milestone for its Emperor Total Artificial Heart (Emperor TAH) program with the first public scientific presentation of the integrated Emperor TAH architecture at IEEE EMBC 2026 in Toronto.

The poster detailed how the patent-pending Emperor Drive System (EDS), a compact electromechanical driver, integrates with the clinically proven SynCardia Total Artificial Heart ventricles. According to the company, the architecture preserves existing blood-contacting components used in more than 2,100 patients while introducing next-generation drive technology designed to support future advances in mobility, quality of life, and potential full implantability.

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Positive

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Negative

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News Explained

The July 26–30 presentation adds reported mock-circulation and acute porcine-test results to the Emperor program’s preliminary architecture record, while the release describes FDA approval and commercial availability for SynCardia’s existing heart, not the Emperor platform, making this technical development information rather than a commercialization milestone.

Market Context

PMI’s short positioning was categorized as high in the platform data, adding a sourced volatility ri...
Analysis

PMI’s short positioning was categorized as high in the platform data, adding a sourced volatility risk. The announcement concerns architecture disclosure and does not report FDA approval or a clinical endpoint, leaving regulatory validation separate.

Key Figures

Conference edition: 48th Annual International Conference Conference dates: July 26-30 Patients supported: more than 2,100 patients
3 metrics
Conference edition 48th Annual International Conference IEEE EMBC 2026
Conference dates July 26-30 IEEE EMBC 2026 in Toronto
Patients supported more than 2,100 patients SynCardia Total Artificial Heart worldwide

Historical Context

5 past events · Latest: Jul 21 (Neutral)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jul 21 Reverse stock split Neutral -27.1% 1-for-50 reverse split announced to support continued NYSE American listing compliance
Jul 15 Emperor publication Positive +6.5% Independent commentary reviewed Emperor platform and reported three successful acute implants
Jul 13 Stockholder presentation Positive -7.5% Presentation cited revenue growth, margin improvement, and Emperor development milestones
Jul 02 Stockholder presentation Positive -1.6% Presentation highlighted revenue growth, margin improvement, and Emperor platform development
Jun 24 Leadership transition Neutral -2.5% CEO and director stepped down; executive chairman appointed interim CEO

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

PMI's prior Emperor-related publication was followed by a 6.52% gain, while two stockholder presentation announcements were followed by declines of 7.47% and 1.63%.

Key Terms

total artificial heart, electromechanical drive system, preload-dependent output, afterload, +1 more
5 terms
total artificial heart medical
"Emperor Total Artificial Heart architecture at the 48th Annual International Conference"
A total artificial heart is a surgically implanted mechanical device that replaces the heart’s two main pumping chambers and takes over circulation, acting like a continuous pump that keeps blood moving through the body. Investors care because it is a high-cost, high-stakes medical product whose commercial success depends on clinical trial results, regulatory approvals, hospital adoption, reimbursement rules and long-term patient outcomes — factors that drive revenue potential and risk.
electromechanical drive system technical
"introducing a next-generation electromechanical drive system"
An electromechanical drive system is the combination of electrical components (motors, power electronics, controllers and sensors) and mechanical parts (gearboxes, shafts, couplings and bearings) that convert electrical energy into controlled motion. For investors, these systems matter because their efficiency, durability, cost and maintainability affect a company’s product performance, manufacturing capital needs and operating margins—similar to how an engine and transmission determine a vehicle’s performance and upkeep.
preload-dependent output technical
"demonstrating physiologic preload-dependent output in Donovan mock circulation testing"
The amount of blood the heart pumps that changes depending on how much blood returns to the heart before each beat (preload). Like a water pump that pushes out more when its intake pipe is fuller, a preload-dependent output means cardiac performance rises or falls with filling volume; this matters to investors because drugs, devices or trials that alter preload sensitivity can affect clinical outcomes, safety profiles and market value for cardiovascular products.
afterload medical
"stable performance across clinically relevant afterload ranges"
Afterload is the force or pressure the heart’s left ventricle must overcome to eject blood into the arteries during each heartbeat. Think of it like the resistance you feel when trying to push water through a narrow hose; higher resistance makes the pump work harder. For investors, afterload matters because drugs, medical devices, and clinical conditions that change vascular resistance or blood pressure can alter heart function, treatment needs, regulatory outcomes, and the potential market for cardiovascular therapies.
hemodynamic stability medical
"short-duration hemodynamic stability under electromechanical actuation"
Hemodynamic stability means a patient’s heart and blood vessels are maintaining steady blood flow, blood pressure, and organ perfusion so tissues get the oxygen and nutrients they need. For investors, it matters because treatments or procedures that improve or jeopardize this balance can change hospital stays, complication rates, regulatory assessments, and the commercial outlook for drugs or devices—much like steady water pressure indicates a healthy plumbing system.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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–First public scientific presentation provides the biomedical engineering community with its first detailed view of the next-generation total artificial heart platform–

TUCSON, Ariz., July 31, 2026 (GLOBE NEWSWIRE) -- Picard Medical, Inc. (NYSE American: PMI) (“Picard” or the “Company”), parent company of SynCardia Systems LLC, today announced a major milestone in the development of its Emperor Total Artificial Heart (Emperor TAH) program following the first public scientific presentation of the integrated Emperor Total Artificial Heart architecture at the 48th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (IEEE EMBC 2026) held July 26-30 in Toronto.

Presented by Taha Hasekioglu, Director, Office of the COO & Emperor Program Lead, the poster entitled “The Emperor Total Artificial Heart: A Preliminary Electromechanical Architecture for a Total Artificial Heart” marked the first public disclosure of the Company's next-generation total artificial heart system architecture. The presentation provided the science and engineering community with its first detailed view of how the Emperor Drive System (EDS) integrates with the clinically proven SynCardia Total Artificial Heart (STAH) ventricles to create the Emperor Total Artificial Heart platform.

The Emperor Total Artificial Heart represents the next evolution of the SynCardia Total Artificial Heart platform, combining the proven STAH ventricles with the Company’s patent-pending Emperor Drive System (EDS), a compact electromechanical driver designed to replace the pneumatic drivers currently used with the SynCardia Total Artificial Heart system. The EDS is designed to provide the next-generation drive technology necessary to advance the platform toward future full implantability.

“The IEEE EMBC presentation represented an important milestone for the Emperor program because, for the first time, at the leading globally recognized forum for engineers, we were able to publicly share the integrated architecture of the Emperor TAH,” said Taha Hasekioglu, Director, Office of the COO & Emperor Program Lead. “The Emperor program is built on the foundation of the SynCardia Total Artificial Heart, and our approach has been to preserve the proven, blood-contacting components while advancing the drive technology that powers the system. The EDS represents a significant engineering evolution with a smaller, self-confined driver, designed to support the continued advancement of total artificial heart technology.”The Emperor TAH architecture preserves the clinically proven SynCardia Total Artificial Heart ventricles, diaphragm assemblies, chamber geometry, and mechanical valve interfaces that have supported more than 2,100 patients worldwide. By maintaining these established components while introducing a next-generation electromechanical drive system, the Company believes the Emperor platform builds upon decades of clinical experience while advancing total artificial heart technology toward a future fully implantable solution.

The poster associated with the latest Emperor design, also presented this week, highlighted the engineering principles behind the patent-pending Emperor TAH architecture, including the integration of the Emperor Drive System with the SynCardia Total Artificial Heart ventricles. The poster also summarized previously reported preclinical evaluations demonstrating physiologic preload-dependent output in Donovan mock circulation testing, stable performance across clinically relevant afterload ranges, and novel acute porcine implantation results supporting anatomic compatibility and short-duration hemodynamic stability under electromechanical actuation.

The SynCardia Total Artificial Heart remains the only U.S. Food and Drug Administration (FDA)-approved, commercially available total artificial heart and has supported thousands of patients with end-stage biventricular heart failure worldwide. The Emperor TAH builds upon this clinical foundation by pairing the established SynCardia ventricles with a next-generation electromechanical drive system designed to enable future advances in mobility, quality of life, and implantability.

About Picard Medical and SynCardia

Picard Medical, Inc. is the parent company of SynCardia Systems, LLC (“SynCardia”), the Tucson, Arizona–based leader with the only commercially available total artificial heart technology for patients with end-stage heart failure. SynCardia develops, manufactures, and commercializes the SynCardia Total Artificial Heart (“STAH”), an implantable system that assumes the full functions of a failing or failed human heart. It is the first artificial heart approved by both the FDA and Health Canada, and it remains the only commercially available artificial heart in the United States and Canada. With more than 2,100 implants performed at hospitals across 27 countries, the STAH is the most widely used and extensively studied artificial heart in the world. For additional information about Picard Medical, please visit www.picardmedical.com or review the Company’s filings with the U.S. Securities and Exchange Commission (the “SEC”) at www.sec.gov.

Forward-looking Statements

This press release includes forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995 that are based on management’s current expectations, assumptions, and beliefs and involve risks and uncertainties. Forward-looking statements are statements that are not historical facts. Forward-looking statements can often be identified by words such as “anticipate,” “believe,” “continue,” “expect,” “goal,” “intend,” “may,” “plan,” “remain,” “target,” “will,” “advance,” “expand,” and similar expressions, and variations or negatives of these words.

These statements include, but are not limited to, statements regarding the Company’s financial condition, future operating results, commercialization activities, expectations for growth, expanding utilization of the SynCardia Total Artificial Heart, expanding patient access at transplant centers, supporting clinical partners, advancing development of the Emperor Total Artificial Heart and other next-generation technologies, regulatory submissions and approvals, manufacturing and supply chain initiatives, capital raising activities, strengthening the Company’s commercial and financial position, strategic initiatives, leadership transitions, and other statements that are not historical facts.

Such forward-looking statements are subject to risks and uncertainties that could cause actual results to differ materially from those expressed or implied by the forward-looking statements. Factors that may cause such differences include, but are not limited to, risks relating to the Company’s ability to obtain additional financing, maintain compliance with applicable stock exchange listing requirements, achieve commercial adoption of its products, obtain regulatory approvals, execute manufacturing and supply chain initiatives, successfully develop next-generation technologies, manage market conditions, and other risks described in the Company’s filings with the U.S. Securities and Exchange Commission (”SEC”).

The Company expressly disclaims any obligation or undertaking to publicly update or revise any forward-looking statements contained herein, whether as a result of new information, future events, changed circumstances, or otherwise, except as required by law.

Additional information about the Company, including risk factors that may affect the Company’s business, financial condition, and results of operations, is contained in the Company’s filings with the SEC, including the Company’s Annual Report on Form 10-K and Quarterly Reports on Form 10-Q, which are available free of charge at www.sec.gov and on the Company’s investor relations website at www.picardmedical.com.

Contact:

Investors
Eric Ribner
Managing Director
LifeSci Advisors LLC
eric@lifesciadvisors.com

Picard Medical, Inc./SynCardia Systems, LLC
IR@picardmedical.com

General/Media
Brittany Lanza
blanza@syncardia.com


FAQ

What did Picard Medical (PMI) present about the Emperor Total Artificial Heart at IEEE EMBC 2026?

Picard Medical presented the first public scientific view of the integrated Emperor Total Artificial Heart (Emperor TAH) architecture. According to the company, the poster described how the patent-pending Emperor Drive System (EDS) works with SynCardia Total Artificial Heart ventricles, outlining the electromechanical platform’s preliminary design.

How does the Emperor Drive System (EDS) enhance the SynCardia Total Artificial Heart platform for PMI?

The Emperor Drive System (EDS) is a compact electromechanical driver designed to replace current pneumatic drivers. According to Picard Medical, EDS aims to provide next-generation drive technology, supporting future advances in mobility, quality of life, and potential progression toward a fully implantable total artificial heart solution.

What existing components are preserved in Picard Medical’s Emperor Total Artificial Heart architecture (PMI)?

The Emperor TAH preserves SynCardia’s clinically proven ventricles, diaphragm assemblies, chamber geometry, and mechanical valve interfaces. According to the company, these components have supported more than 2,100 patients worldwide, providing a clinical foundation while the new electromechanical drive system advances overall platform technology.

What preclinical results did Picard Medical report for the Emperor Total Artificial Heart platform (PMI)?

Picard Medical reported previously conducted preclinical evaluations showing physiologic preload-dependent output and stable performance across clinically relevant afterload ranges. According to the company, acute porcine implantation studies also demonstrated anatomic compatibility and short-duration hemodynamic stability under electromechanical actuation using the Emperor Drive System.

Why is the IEEE EMBC 2026 presentation important for Picard Medical’s Emperor TAH program (PMI)?

The IEEE EMBC 2026 presentation marked the first public disclosure of the integrated Emperor TAH architecture. According to the company, sharing detailed electromechanical design at a leading global engineering forum represents an important milestone in advancing and validating the Emperor Total Artificial Heart program.